Niclas Nikolai Stephanson | Pharmaceutical Science | Best Researcher Award

Mr. Niclas Nikolai Stephanson | Pharmaceutical Science | Best Researcher Award

Scientist from Karolinska University Hospital, Sweden

Niclas Nikolai Stephanson is a seasoned clinical pharmacologist and forensic chemist based at the Karolinska University Hospital in Stockholm, Sweden. With a career spanning over three decades, he has carved out a notable reputation in the scientific community, particularly in the analysis of drugs of abuse. Holding a PhD in Medicine from the prestigious Karolinska Institutet, he combines academic rigor with practical experience. Niclas is a licensed pharmacist, senior chemist, and prolific researcher whose contributions include over 35 peer-reviewed scientific publications. His research focus lies at the intersection of pharmacology and toxicology, with a specialization in mass spectrometry and method development for detecting drugs in biological materials. He plays a pivotal role in improving clinical and forensic diagnostics through enhanced analytical techniques. Niclas’s work has contributed to better accuracy in detecting and quantifying illicit and therapeutic drugs, ultimately supporting public health and justice systems. His long-standing association with one of Europe’s most reputable hospitals is a testament to his dedication, expertise, and continuous contribution to the advancement of clinical pharmacology. Stephanson stands out not only for his technical skills but also for his impactful research that bridges laboratory science with real-world applications in healthcare and law enforcement.

Professional Profile

Education

Niclas Nikolai Stephanson received his academic training at the renowned Karolinska Institutet in Stockholm, Sweden, where he earned his PhD in Medicine in 2007. His doctoral work was rooted in the Department of Medicine and focused on the interdisciplinary field of clinical pharmacology, an area combining pharmacokinetics, pharmacodynamics, and toxicology. Prior to his doctoral studies, Niclas qualified as a licensed pharmacist, which provided him with a strong foundation in pharmaceutical sciences, drug interactions, and patient-centered pharmacotherapy. His dual academic background in pharmacy and medicine positions him at the nexus of research and clinical practice. This educational pathway has enabled him to integrate principles of chemistry, biology, and medicine in his professional work. Niclas’s academic experience at Karolinska Institutet—a globally respected institution known for its role in awarding the Nobel Prize in Physiology or Medicine—further highlights the high standards and intellectual rigor of his training. The comprehensive and multidisciplinary nature of his education has empowered him to design and conduct advanced analytical research while maintaining a deep understanding of clinical implications. Overall, his educational background has significantly influenced his ability to carry out complex method development and toxicological investigations with precision and clinical relevance.

Professional Experience

Niclas Nikolai Stephanson has been professionally affiliated with Karolinska University Hospital in Stockholm since August 1992, where he currently holds the position of Senior Chemist in the Department of Clinical Pharmacology. Over the span of more than three decades, he has contributed significantly to the hospital’s mission of delivering cutting-edge clinical diagnostics and therapeutic monitoring. As a licensed pharmacist and senior forensic chemist, Niclas has specialized in the analysis of drugs of abuse, playing a key role in the development and implementation of advanced analytical techniques for routine and investigational use. His daily responsibilities involve overseeing laboratory operations, mentoring junior staff, and collaborating with clinicians to interpret toxicological results. His long tenure reflects not only technical proficiency but also institutional trust in his expertise and leadership. Working within a hospital setting, he has consistently ensured that his research aligns with real-world clinical demands, particularly in the identification and quantification of illicit substances and medications in complex biological matrices. Stephanson’s role at Karolinska University Hospital also supports legal and forensic proceedings, as accurate drug analysis is crucial for both medical and judicial outcomes. His professional experience highlights a unique blend of scientific inquiry, clinical application, and public health impact.

Research Interests

Niclas Nikolai Stephanson’s research interests are centered on clinical pharmacology, forensic toxicology, and analytical chemistry, with a particular focus on the detection and analysis of drugs of abuse. He is especially committed to method development in toxicological screening, applying advanced techniques such as mass spectrometry to improve the precision and sensitivity of drug detection. His work often explores various biological matrices—ranging from blood and urine to less conventional materials like hair or oral fluid—to assess the presence and metabolism of illicit and therapeutic substances. Niclas’s interest in mass spectrometry enables the high-resolution identification of complex compounds, which is critical for timely and accurate diagnoses in both clinical and forensic settings. He is also interested in validating new protocols for routine use in healthcare facilities, aiming to bridge the gap between research and clinical practice. Additionally, his work contributes to public safety by improving methodologies used in legal and judicial drug testing. Through collaborations and internal projects at Karolinska University Hospital, his research continues to evolve in response to emerging substances and new analytical challenges. Overall, his interests reflect a strong alignment with societal needs in healthcare and law enforcement, emphasizing both scientific innovation and practical application.

Research Skills

Niclas Nikolai Stephanson possesses a robust set of research skills that underscore his success as a senior clinical chemist and academic contributor. One of his core strengths lies in advanced method development, particularly in the field of forensic toxicology, where he designs, tests, and refines techniques for detecting drugs of abuse in biological matrices. His proficiency in mass spectrometry—including LC-MS/MS and GC-MS systems—is central to his work, enabling precise identification and quantification of substances even in trace amounts. Niclas is also skilled in biological sample preparation, including extraction and purification techniques that are critical for ensuring reliable analytical results. He demonstrates strong data analysis and validation abilities, ensuring that his methods meet rigorous standards for reproducibility, sensitivity, and specificity. In addition, he has experience in regulatory compliance and quality assurance, ensuring that laboratory practices align with healthcare and forensic standards. His skill set extends to scientific writing and publication, as evidenced by his record of more than 35 peer-reviewed articles. These competencies, combined with his practical knowledge of clinical workflows, empower him to translate complex research into diagnostic and therapeutic tools. His research skills are not only technical but also strategic, aiming to meet real-world challenges with innovative scientific solutions.

Awards and Honors

Although specific awards or honors for Niclas Nikolai Stephanson are not explicitly listed, his sustained position at Karolinska University Hospital and the volume of his peer-reviewed publications are indicative of high professional recognition and esteem. Holding a senior chemist position at one of Europe’s leading medical institutions is a reflection of both his expertise and institutional trust in his abilities. His role in the department of Clinical Pharmacology implies consistent recognition through internal appointments, research responsibilities, and possibly departmental accolades for contributions to method development and toxicological analysis. Publishing over 35 scientific articles in peer-reviewed journals also suggests peer recognition and validation of his work within the scientific community. It is not uncommon in the medical sciences for researchers with such a track record to be involved in national and international working groups or to serve as peer reviewers or advisors in forensic and clinical pharmacology. His continued association with the Karolinska Institutet—home to Nobel-level research—implies a professional standing that exceeds routine recognition. While specific honors may not be documented publicly, his contributions and career longevity highlight a professional trajectory marked by consistent achievement and expert-level contribution to clinical science.

Conclusion

Niclas Nikolai Stephanson stands as a highly accomplished clinical pharmacologist and forensic chemist whose contributions span research, diagnostics, and public health. His work at Karolinska University Hospital since 1992, combined with a PhD from Karolinska Institutet, demonstrates a career dedicated to scientific excellence and societal impact. He has specialized in the development of analytical methods using mass spectrometry to detect drugs of abuse, contributing to over 35 peer-reviewed publications. His research not only enhances clinical decision-making but also supports forensic and legal systems by ensuring accurate and timely drug testing. While his achievements are impressive, expanding his international collaborations and diversifying his research themes could further amplify his academic influence. Nonetheless, his sustained excellence and deep specialization in clinical pharmacology make him a valuable asset to the scientific and medical community. Stephanson’s profile exemplifies the rare blend of research depth, clinical utility, and long-term dedication, positioning him as a strong candidate for prestigious honors such as the Best Researcher Award. His work bridges the gap between bench science and bedside application, marking him as a leader in toxicological innovation and a model for aspiring researchers in the field.

Publications Top Notes

  1. Title: Application of liquid chromatography combined with high resolution mass spectrometry for urine drug testing
    Authors: O.M.L. Beck (Olof M.L.), A. Rylski (Alexia), N.N. Stephanson (Nikolai N.)
    Citations: 4

  2. Title: Use of LC–HRMS in full scan-XIC mode for multi-analyte urine drug testing – a step towards a ‘black-box’ solution?
    Authors: N.N. Stephanson (Nikolai N.), P. Signell (Patrick), A. Helander (Anders), O.M.L. Beck (Olof M.L.)
    Year: 2017
    Citations: 19

Muhammad Usama Mazhar | Pharmaceutical Science | Best Researcher Award

Mr. Muhammad Usama Mazhar | Pharmaceutical Science | Best Researcher Award

PhD scholar at Quaid-i-Azam university, Pakistan

Muhammad Usama Mazhar is a dedicated pharmacologist and educator with over 4 years of teaching experience in nursing, medicine, dentistry, and pharmacy. He has recently submitted his Ph.D. thesis in pharmacology at Quaid-i-Azam University, Islamabad, and his research focuses on immunopharmacology and toxicology, particularly the anti-inflammatory potential of probiotics. With nine research publications and a total impact factor of 19.2, his work has contributed significantly to understanding inflammation, arthritis, and neuroinflammation. He has been recognized for academic excellence, receiving multiple scholarships and the Best Teacher award at Yusra Institute of Pharmaceutical Sciences. Additionally, he has actively participated in conferences and workshops, demonstrating a commitment to continuous learning and professional growth. His technical skills include proficiency in software like SPSS, GraphPad Prism, and Image J. Muhammad Usama Mazhar is a motivated researcher with strong potential in his field.

Profile:

Education

Muhammad Usama Mazhar has a solid educational background in pharmacology. He is currently pursuing a Doctor of Philosophy (Ph.D.) in Pharmacology at Quaid-i-Azam University, Islamabad, with his thesis already submitted for foreign evaluation, marking a significant milestone in his academic journey. Prior to this, he completed his Master of Philosophy (M.Phil) in Pharmacology from Riphah International University, Islamabad, in 2017, achieving a commendable CGPA of 3.54/4. His academic foundation was laid with a Doctor of Pharmacy (Pharm.D.) from The University of Lahore, where he graduated in 2014 with an impressive CGPA of 3.73/4. Throughout his studies, Muhammad Usama Mazhar consistently demonstrated academic excellence, earning multiple scholarships and securing the 2nd position in his class on several occasions. His educational background showcases a strong focus on pharmacological research, which has been complemented by his professional and research experiences in the field.

Professional Experience

Muhammad Usama Mazhar has accumulated over four years of diverse professional experience, primarily in academia and the healthcare sector. He has served as a lecturer and lab instructor at prestigious institutions, including Quaid-i-Azam University and CMH Lahore Medical College, where he taught subjects like anatomy and pharmacology to students in nursing, medicine, dentistry, and pharmacy. His teaching experience is complemented by his administrative role as a warden at CMH Lahore Medical College, where he also contributed to promotional activities. Additionally, he worked as a pharmacist at Ali Medical Center and completed an internship at Quaid-e-Azam International Hospital, providing him with practical experience in clinical pharmacology. His roles have allowed him to merge academic teaching with practical healthcare skills, establishing a well-rounded career in pharmacology and pharmaceutical sciences.

Research Interest

Muhammad Usama Mazhar’s research interests primarily lie in immunopharmacology and toxicology, with a particular focus on the anti-inflammatory potential of probiotics and the pharmacological mechanisms of natural compounds. His work explores how probiotics like Bacillus subtilis can modulate immune responses and protect against inflammatory diseases, such as arthritis. He also investigates the toxicological effects of various agents and their potential therapeutic applications in combating inflammation and oxidative stress. Mazhar is keen on understanding the pharmacokinetics and safety profiles of these compounds, seeking to bridge the gap between natural remedies and clinical applications. His recent studies have delved into the neuroinflammatory pathways involved in stress-induced seizures and the anti-arthritic potential of Coagulansin-A, a compound with promising immunomodulatory properties. His research aims to contribute to the development of safer, more effective therapeutic agents for inflammatory and autoimmune diseases.

Research Skills

Muhammad Usama Mazhar possesses a diverse set of research skills, particularly in the fields of immunopharmacology and toxicology. His expertise spans experimental design, laboratory techniques, and data analysis, as demonstrated by his work on the anti-inflammatory potential of probiotics and the pharmacological evaluation of compounds such as Bacillus subtilis and Coagulansin-A. He has a strong command of statistical tools such as GraphPad Prism and SPSS, which he uses for complex data analysis and interpretation. Additionally, his proficiency in software like ImageJ for image processing further enhances his analytical capabilities. With nine peer-reviewed publications in high-impact journals, Usama has effectively conducted in vivo and in vitro studies, showcasing his ability to manage multifaceted research projects. His active participation in workshops and conferences demonstrates his commitment to staying updated on current trends in pharmacology and biomedical research, making him a well-rounded researcher in his field

Award and Recognitions

Muhammad Usama Mazhar has received notable awards and recognitions throughout his academic and professional career. During his Pharm.D. studies, he earned multiple scholarships for academic excellence, securing 2nd position in his class across several semesters and graduating 2nd in his batch with a CGPA of 3.73. His dedication to teaching was acknowledged with a Certificate of Appreciation from Yusra Institute of Pharmaceutical Sciences and recognition as the Best Teacher for the 2015-16 session. These accolades reflect his commitment to academic excellence and his impactful contributions as an educator. Additionally, his extensive research efforts have been recognized through publications in reputable journals, further solidifying his reputation in the field of pharmacology. These honors highlight his consistent performance, commitment to research, and significant contributions to both education and the scientific community.

Conclusion

Muhammad Usama Mazhar is a strong candidate for the Best Researcher Award, particularly due to his impressive publication record, teaching experience, and honors. Expanding his international collaborations and focusing on larger research projects could elevate his profile further. Given his recent Ph.D. submission and ongoing research, he is on a promising trajectory for future accolades in pharmacology.

Publication Top Notes

 

Kifayat Ullah Shah | Pharmaceutics | Best Researcher Award

Dr. Kifayat Ullah Shah | Pharmaceutics | Best Researcher Award

Associate Professor at Quaid-i-Azam University, Pakistan

Dr. Kifayat Ullah Shah is an accomplished academic and researcher in the field of pharmaceutical sciences, currently serving as an Associate Professor at Quaid-e-Azam University in Islamabad since September 2014. He previously held positions as an Assistant Professor at Hamdard University and a Teaching Assistant at Gomal University. Dr. Shah earned his Ph.D. in Pharmaceutics from Gomal University, where he also completed his Bachelor of Pharmacy. His research interests include the formulation and development of pharmaceuticals, controlled drug delivery, and nanotechnology applications in drug delivery. He has authored several publications with significant impact, reflecting his contributions to the field, and has supervised over 35 MPhil and five PhD students. Dr. Shah has received grants for various research projects, showcasing his commitment to advancing pharmaceutical sciences. Additionally, he is actively involved in academic administration and quality assurance within higher education.

Education

Dr. Kifayat Ullah Shah holds an impressive educational background in pharmaceutical sciences. He earned his Doctor of Philosophy (Ph.D.) in Pharmaceutics from Gomal University, Dera Ismāīl Khān, Khyber Pakhtunkhwa, Pakistan, between 2008 and 2014. Prior to that, he obtained a Bachelor of Pharmacy (B.Pharmacy) degree from the same institution, Gomal University, from 2002 to 2006. His early education includes a Pre-Medical F.Sc. from Govt. P.G. College Bannu in 2000-2001 and Matriculation in Science from Govt. High School-02 Bannu in 1998-1999. This strong academic foundation has equipped Dr. Shah with the knowledge and skills necessary to excel in both research and teaching within the field of pharmaceutical sciences.

Professional Experience

Dr. Kifayat Ullah Shah has extensive professional experience in academia and the pharmaceutical industry. He has served as an Associate Professor at Quaid-e-Azam University, Islamabad, since September 2014, where he has contributed to teaching and research in pharmaceutical sciences. Prior to this role, Dr. Shah was an Assistant Professor at Hamdard University from January to August 2014 and worked as a Teaching Assistant at Gomal University for a brief period in late 2011. His early career included experience as a Production Pharmacist at Glitz Pharmaceuticals in Islamabad, where he gained practical insights into pharmaceutical production and formulation. Dr. Shah’s diverse professional background, coupled with his research focus on drug delivery systems and nanotechnology, has positioned him as a prominent figure in his field.

Research Interest

Dr. Kifayat Ullah Shah’s research interests are centered around the formulation and development of pharmaceutical products, with a particular focus on controlled drug delivery systems. His expertise encompasses a variety of advanced techniques, including microencapsulation, nanotechnology, and thermal analysis, which he applies to improve the efficacy and safety of drug formulations. Dr. Shah has conducted significant research on targeted drug delivery mechanisms, exploring innovative methods to enhance therapeutic outcomes for various medical conditions. His work also includes the design, preparation, and evaluation of controlled release polymeric formulations, aiming to investigate drug release patterns and mechanisms. Through his research, Dr. Shah seeks to contribute to the advancement of pharmaceutical sciences and improve patient care through effective drug delivery systems.

Research Skills

Dr. Kifayat Ullah Shah possesses a robust skill set in pharmaceutical research, particularly in the formulation and development of drug delivery systems. His expertise includes advanced techniques such as microencapsulation, controlled drug delivery, and targeted drug delivery, which are essential for optimizing the therapeutic effects of pharmaceuticals. Dr. Shah is proficient in utilizing various analytical instruments, including UV/Visible spectrophotometry, differential scanning calorimetry (DSC), and thermal analysis, to evaluate and characterize pharmaceutical formulations. His research skills also extend to pre-formulation studies and the application of nanotechnology in drug delivery, enabling him to design innovative solutions for complex pharmaceutical challenges. Through his comprehensive knowledge and practical experience, Dr. Shah effectively contributes to the advancement of pharmaceutical sciences and the development of new therapeutic strategies.

Award and Recognition

Dr. Kifayat Ullah Shah has garnered several awards and recognitions throughout his career, highlighting his significant contributions to the field of pharmaceutics. He successfully obtained funding for key research projects, including a grant of 0.5 million PKR from the Higher Education Commission (HEC) of Pakistan for the fabrication, characterization, and in vitro evaluation of finasteride nanoparticles. Additionally, he received a substantial grant of 4.5 million PKR for his project on silica-based nanoparticles as hemostatic agents for controlling internal bleeding. Dr. Shah has also been recognized for his academic excellence, having supervised over 35 MPhil and five PhD students, and for his impactful research publications, which have contributed to advancements in drug delivery systems. His work has earned him respect and acknowledgment in the academic and research communities, reflecting his dedication to enhancing pharmaceutical sciences and improving patient care.

Conclusion

Dr. Kifayat Ullah Shah’s impressive academic credentials, extensive research experience, impactful publications, successful funding acquisitions, and contributions to education and administrative services strongly position him as a deserving candidate for the Research for Best Researcher Award. His ongoing commitment to advancing pharmaceutical sciences through research and mentorship further strengthens his suitability for this recognition.

Publication Top Notes

  • “Non-pharmacological management of hypertension: in the light of current research”
    • Journal: Irish Journal of Medical Science (1971-)
    • Cited by: 180
    • Year: 2019
    • Volume: 188
    • Pages: 437-452
  • “From nanoemulsions to self-nanoemulsions, with recent advances in self-nanoemulsifying drug delivery systems (SNEDDS)”
    • Journal: Expert Opinion on Drug Delivery
    • Cited by: 148
    • Year: 2017
    • Volume: 14, Issue 11
    • Pages: 1325-1340
  • “Proniosomes derived niosomes: recent advancements in drug delivery and targeting”
    • Journal: Drug Delivery
    • Cited by: 121
    • Year: 2017
    • Volume: 24, Issue 2
    • Pages: 56-69
  • “A review on chitosan and its development as pulmonary particulate anti-infective and anti-cancer drug carriers”
    • Journal: Carbohydrate Polymers
    • Cited by: 106
    • Year: 2020
    • Volume: 250
    • Pages: 116800
  • “Elemental analysis of some medicinal plants used in traditional medicine by atomic absorption spectrophotometer (AAS)”
    • Journal: Journal of Medicinal Plants Research
    • Cited by: 93
    • Year: 2010
    • Volume: 4, Issue 19
    • Pages: 1987-1990
  • “Polymeric nanogels as versatile nanoplatforms for biomedical applications”
    • Journal: Journal of Nanomaterials
    • Cited by: 81
    • Year: 2019
    • Volume: 2019, Issue 1
    • Pages: 1526186
  • “Hemostatic strategies for uncontrolled bleeding: A comprehensive update”
    • Journal: Journal of Biomedical Materials Research Part B: Applied Biomaterials
    • Cited by: 73
    • Year: 2021
    • Volume: 109
  • “Development, in-vitro and in-vivo evaluation of ezetimibe-loaded solid lipid nanoparticles and their comparison with marketed product”
    • Journal: Journal of Drug Delivery Science and Technology
    • Cited by: 72
    • Year: 2019
    • Volume: 51
    • Pages: 583-590
  • “Prevalence of non-adherence to antihypertensive medication in Asia: a systematic review and meta-analysis”
    • Journal: International Journal of Clinical Pharmacy
    • Cited by: 56
    • Year: 2021
    • Volume: 43
    • Pages: 486-501
  • “Co-delivery strategies to overcome multidrug resistance in ovarian cancer”
    • Journal: International Journal of Pharmaceutics
    • Cited by: 47
    • Year: 2017
    • Volume: 533, Issue 1
    • Pages: 111-124
  • “Regulating drug release behavior and kinetics from matrix tablets based on fine particle‐sized ethyl cellulose ether derivatives: An in vitro and in vivo evaluation”
    • Journal: The Scientific World Journal
    • Cited by: 46
    • Year: 2012
    • Volume: 2012, Issue 1
    • Pages: 842348

 

 

Justine Benevent | Pharmaceutical Science | Best Scholar Award

Dr. Justine Benevent | Pharmaceutical Science | Best Scholar Award

MCU-PH at CHU Toulouse, INSERM CERPOP, France

Based on the provided information, Justine Benevent appears to be a strong candidate for the Best Scholar Award. Here is a detailed assessment of her suitability, structured by various criteria:

Education

Justine Benevent’s educational background is distinguished by a series of advanced degrees in pharmacology and related fields. She holds a Diplôme d’état de Docteur en Pharmacie from Bordeaux, providing a comprehensive foundation in pharmacy. She further specialized with a DESC de Pharmacologie médicale from Bordeaux, focusing on medical pharmacology. Her academic journey continued with a Thèse d’Université de Pharmacologie in Toulouse, where she engaged in in-depth research. She also earned a Diplôme Universitaire de pédagogie en Santé from Toulouse, enhancing her skills in health education. Additionally, she completed the DES Pharmacie hospitalière from Bordeaux, highlighting her expertise in hospital pharmacy. These qualifications reflect her extensive training and dedication to the field of pharmacology, underpinning her expertise and contributions to research and clinical practice.

Research Contributions

Justine Benevent has made significant research contributions in pharmacology, with a focus on medications, reproduction, pregnancy, and breastfeeding. She has a solid publication record with 33 papers, including 6 as the first author, and a notable h-index of 10, indicating her research impact and recognition in the academic community.

Geographic Impact

Her research has a wide geographic impact, involving collaborations with international institutions such as PharmaSafe at the University of Oslo, Norway. Her work with the European Consortium IMI ConcePTION highlights her ability to engage in research that transcends national boundaries, addressing health issues relevant to diverse populations.

Collaborative Efforts

Justine Benevent is actively involved in several collaborative research projects and networks. She is a partner of the European Consortium IMI ConcePTION, a member of the national network REGARDs, and participates in various working groups, including those focused on mental health and reproductive risks of drugs. These collaborations demonstrate her commitment to multi-disciplinary and international research efforts.

Applied Research

Her research is highly applied, focusing on real-world health issues such as the effects of medications during pregnancy and breastfeeding. Her role in the project “Maison des Femmes” at CHU de Toulouse, aimed at improving healthcare for women, underscores her dedication to applying research findings to enhance community health and well-being.

Specific Projects and Publications

Justine Benevent has led and contributed to numerous impactful projects. Her work within the “Santé périnatale, pédiatrique et des adolescents” team at CERPOP addresses critical aspects of perinatal and pediatric health. She has also been involved in leading two projects within the IMI ConcePTION consortium, further highlighting her leadership in significant research initiatives.

Environmental Health

While her primary focus is on pharmacology and reproductive health, her work indirectly impacts environmental health by addressing the safe use of medications during critical periods such as pregnancy and breastfeeding. This contributes to overall community health by ensuring safer pharmaceutical practices.

Vector Control

There is no direct mention of research in vector control in her profile. However, her extensive work in pharmacology and drug safety may intersect with public health strategies that could include elements of vector control indirectly.

Waste Management and Water Quality

Justine Benevent’s profile does not indicate direct involvement in waste management and water quality research. Her expertise lies primarily in pharmacology and clinical research methodology.

Parasitology and Infectious Diseases

Although parasitology and infectious diseases are not explicitly mentioned, her pharmacological research, especially in the context of reproductive health, could contribute to understanding and managing infections that affect pregnant women and infants.

Awards and Recognition

Justine Benevent’s academic and research achievements have been recognized through various positions and memberships, such as her role as Treasurer of the CNPM (Collège National de Pharmacologie Médicale) and her involvement in the French Society of Pharmacology and Therapeutics (SFPT). Her significant publication record and citation count further attest to her recognition in the field.

Conclusion

Justine Benevent is a highly accomplished scholar with a strong background in pharmacology, evidenced by her extensive research contributions, collaborative efforts, and applied research impact. Her work addresses crucial health issues related to medications and reproductive health, making her a deserving candidate for the Best Scholar Award. Her leadership in various national and international research projects and her dedication to improving community health through applied research are particularly commendable.

Publications Top Notes

  1. Teaching pharmacovigilance to French medical students during the COVID-19 pandemic: Interest of distance learning clinical reasoning sessions
    • Authors: F. Montastruc, F. Muscari, I. Tack, G. Durrieu, A. Sommet
    • Year: 2024
  2. Adverse perinatal outcomes associated with prenatal exposure to protease-inhibitor-based versus non-nucleoside reverse transcriptase inhibitor-based antiretroviral combinations in pregnant women with HIV infection: A systematic review and meta-analysis
    • Authors: L. Saint-Lary, J. Benevent, C. Damase-Michel, V. Leroy, A. Sommet
    • Year: 2023
    • Citations: 2
  3. Drug monitoring in pregnant women: about the Regards network | Surveillance des médicaments chez les femmes enceintes : à propos du réseau Regards
    • Authors: I. Lacroix, M. Araujo, A. Caillet, L. Delteil, C. Damase-Michel
    • Year: 2023
    • Citations: 1
  4. Risk of Hypertensive Disorders of Pregnancy in Women Treated With Serotonin-Norepinephrine Reuptake Inhibitors: A Comparative Study Using the EFEMERIS Database
    • Authors: J. Benevent, M. Araujo, S. Karki, S. Tebeka, C. Damase-Michel
    • Year: 2023
    • Citations: 2
  5. Adverse drug reactions in pregnant women: Do they differ from those in non-pregnant women of childbearing age?
    • Authors: M. Balon, S. Tessier, C. Damase-Michel, J. Benevent, I. Lacroix
    • Year: 2023
    • Citations: 5
  6. First trimester pregnancy exposure to fosfomycin and risk of major congenital anomaly: a comparative study in the EFEMERIS database
    • Authors: J. Benevent, M. Araujo, A.-B. Beau, I. Lacroix, C. Damase-Michel
    • Year: 2023
    • Citations: 3
  7. Interactions between antiseizure medications and contraception: A study about the knowledge of patients and their specialist physicians
    • Authors: A. Gosset, M. Denuelle, L. Valton, B.énévent, F. Tremollières
    • Year: 2022
    • Citations: 5
  8. Prenatal Drug Exposure in Children With a History of Neuropsychiatric Care: A Nested Case-Control Study
    • Authors: J. Benevent, C. Hurault-Delarue, M. Araujo, I. Lacroix, C. Damase-Michel
    • Year: 2022
  9. What changes in prescription patterns of antiemetic medications in pregnant women in France?
    • Authors: C. Hurault-Delarue, M. Araujo, C. Vabre, C. Damase-Michel, I. Lacroix
    • Year: 2021
    • Citations: 4
  10. Maternal Medication Use and Childhood Cancer in Offspring-Systematic Review and Considerations for Researchers
    • Authors: S. Hjorth, C.H. Hemmingsen, J. Benevent, M. Hargreave, H. Nordeng
    • Year: 2021
    • Citations: 2

 

 

Xin Wang | Pharmaceutical Science | Best Researcher Award

Assoc Prof Dr. Xin Wang | Pharmaceutical Science | Best Researcher Award

Assoc. Professor and PhD supervisor of Shanghai Jiao Tong University, China.

Xin Wang is a Tenure-Track Associate Professor at Shanghai Jiao Tong University, specializing in pharmaceutical and biomedical analysis. He earned his Ph.D. in Analytical Chemistry from Peking University and completed postdoctoral work at MIT and UC Berkeley. His research focuses on mass spectrometry, metabolomics, and proteomics, with key projects including drug metabolism analysis, human neurogenesis studies, and advanced sample preparation techniques. Wang’s contributions have garnered several awards, such as the Shanghai Pujiang Talent Plan Award and recognition at MIT. His expertise in analytical techniques and innovative methods has significantly impacted both academic research and industry practices.

Professional Profiles:

Education

Xin Wang completed his B.Sc. in Chemistry at Wuhan University, China, in 2010. He pursued his Ph.D. in Analytical Chemistry at Peking University, graduating in 2015. Following his doctoral studies, Dr. Wang undertook postdoctoral research at the Massachusetts Institute of Technology (MIT) from 2015 to 2018. Since 2020, he has been serving as a Tenure-Track Associate Professor at the School of Pharmaceutical Sciences, Shanghai Jiao Tong University, China.

Professional Experience

Xin Wang’s professional experience includes a significant role as a Tenure-Track Associate Professor at the School of Pharmaceutical Sciences, Shanghai Jiao Tong University, where he has been since 2020. Before this, he was a Senior Postdoctoral Associate at MIT’s Department of Biological Engineering from 2018 to 2019, and a Postdoctoral Associate in the same department from 2015 to 2018. His earlier academic journey includes a Ph.D. in Analytical Chemistry from Peking University, where he also worked as a Visiting Graduate Student at UC Berkeley.

Research Interest

Xin Wang’s research interests are at the forefront of pharmaceutical and biomedical analysis, emphasizing the use of advanced analytical techniques. His work primarily focuses on mass spectrometry and its applications in drug metabolism and toxicity testing, aiming to replace traditional trials with in vitro human systems. He is also deeply engaged in metabolomics and proteomics, using these techniques to unravel metabolic features in human neurogenesis and other physiological processes. Wang has developed innovative methods in solid-phase microextraction to enhance the sensitivity and accuracy of analyzing low-molecular-mass compounds. His research integrates these areas to advance understanding in drug testing, biomarker discovery, and the mechanistic insights into human health and disease. This multidisciplinary approach not only pushes the boundaries of analytical chemistry but also contributes to more effective and efficient drug development and disease treatment strategies.

Award and Honors

Xin Wang has received several prestigious awards and honors throughout his career. In 2023, he was recognized as an Outstanding Individual with Exceptional Contributions in Education by the School of Pharmacy at Shanghai Jiao Tong University. He also won the Second Prize in the Young Professor Teaching Skills Competition at Shanghai Jiao Tong University in 2022. Wang’s accolades include the Shanghai Overseas High-Level Talent Program Award and the Shanghai Pujiang Talent Plan Award, both in 2020. In 2016, he earned First Place in the MIT Center for Environmental Health Sciences Session. Additionally, he was awarded the First Prize in the Science and Technology Award from the China Association for Instrumental Analysis in 2015. Earlier achievements include the Aoqing Tang Scholarship (2015), the Brilliance Scholarship (2014), and multiple awards for his graduate research and innovation.

Research Skills

Xin Wang possesses advanced research skills in several key areas of analytical and biomedical science. His expertise includes pharmaceutical and biomedical analysis, utilizing techniques such as mass spectrometry, metabolomics, and proteomics to study complex biological systems. He is proficient in solid-phase microextraction and has developed innovative methods for capturing and quantifying low-molecular-mass compounds. Wang’s work with time-dependent metabolomics and LC-MS-based quantitation reflects his ability to apply cutting-edge analytical techniques to understand human neurogenesis and drug metabolism. His research in automated sample preparation and ambient mass spectrometry demonstrates his skills in developing novel methodologies for high-sensitivity detection and analysis. Wang’s contributions to bioanalytical strategies and experimental design have been recognized and published in top scientific journals, showcasing his ability to push the boundaries of current research methodologies.

Publications

  1. “Mass spectrometry‐based metabolomics for the investigation of antibiotic–bacterial interactions”
    • Authors: Xin Wang
    • Year: 2024
  2. “A new approach towards highly sensitive detection of endogenous N-acetylaspartic acid, N-acetylglutamic acid, and N-acetylaspartylglutamic acid in brain tissues based on strong anion exchange monolith microextraction coupled with UHPLC-MS/MS”
    • Authors: Xin Wang
    • Year: 2024
  3. “Mass spectrometry-based quantitation combined with time-dependent metabolomics to discover metabolic features in human neurogenesis using neural constructs generated from neural progenitor cells”
    • Authors: Xin Wang
    • Year: 2023
  4. “Mass spectrometry analysis of S-nitrosylation of proteins and its role in cancer, cardiovascular and neurodegenerative diseases”
    • Authors: Xin Wang
    • Year: 2022
  5. “Low Doses of Arsenic in a Mouse Model of Human Exposure and in Neuronal Culture Lead to S-Nitrosylation of Synaptic Proteins and Apoptosis via Nitric Oxide”
    • Authors: Xin Wang
    • Year: 2020
  6. “Analysis of an Integrated Human Multiorgan Microphysiological System for Combined Tolcapone Metabolism and Brain Metabolomics”
    • Authors: Xin Wang
    • Year: 2019
  7. “Automated Online Solid-Phase Derivatization for Sensitive Quantification of Endogenous S-Nitrosoglutathione and Rapid Capture of Other Low-Molecular-Mass S-Nitrosothiols”
    • Authors: Xin Wang
    • Year: 2018
  8. “Shank3 mutation in a mouse model of autism leads to changes in the S-nitroso-proteome and affects key proteins involved in vesicle release and synaptic function”
    • Authors: Xin Wang
    • Year: 2018
  9. “Fast analysis of glycosides based on HKUST-1-coated monolith solid-phase microextraction and direct analysis in real-time mass spectrometry”
    • Authors: Xin Wang
    • Year: 2017
  10. “Polymer‐based monolithic column with incorporated chiral metal–organic framework for enantioseparation of methyl phenyl sulfoxide using nano‐liquid chromatography”
    • Authors: Xin Wang
    • Year: 2016