Fiorella Colasuonno | Neuroscience | Women Researcher Award

Women Researcher Award

Fiorella Colasuonno — University of Rome Tor Vergata
Fiorella Colasuonno
Affiliation University of Rome Tor Vergata
Country Italy
Scopus ID 57196357192
Documents 15
Citations 2,581
h-index 8
Subject Area Neuroscience
Event World Science Awards
ORCID 0000-0002-4894-5084

Fiorella Colasuonno is a researcher in neuroscience whose published work has addressed cellular and molecular mechanisms associated with neurodegeneration, including riboflavin transporter deficiency, mitochondrial and peroxisomal dysfunction, induced pluripotent stem cell models, motor neurons, and neuronal cell-death mechanisms. Her research record includes work conducted through institutions in Rome and collaborations involving rare genetic and neuromuscular disease research. [1] [2]

Abstract

This academic recognition profile presents the research activities of Fiorella Colasuonno in the field of neuroscience. Her scholarly contributions include investigations of mitochondrial abnormalities, energy dysmetabolism, cytoskeletal organization, oxidative stress, induced pluripotent stem cell-derived neuronal models, and cellular mechanisms relevant to neurodegenerative disorders. Her publications have particularly examined riboflavin transporter deficiency and related motor-neuron pathology, while more recent work has extended to the study of cell death in induced pluripotent stem cell-derived cortical neurons as models of neurodegeneration. [1] [3] [4]

Keywords

Neuroscience; neurodegeneration; motor neurons; induced pluripotent stem cells; riboflavin transporter deficiency; mitochondrial dysfunction; peroxisomal alterations; cellular metabolism; cytoskeletal organization; rare genetic diseases; cortical neurons; cell death.

Introduction

Fiorella Colasuonno’s research is situated at the intersection of cellular biology, neuroscience, and rare-disease research. Available scholarly records associate her work with the University of Rome Tor Vergata and earlier research affiliations with the University of Roma Tre and the IRCCS Ospedale Pediatrico Bambino Gesù in Rome. Her doctoral research involved induced pluripotent stem cells and rare genetic diseases, including motor-neuron and neurometabolic disorders. [2]

Her published research provides a scientific basis for examining how metabolic, mitochondrial, peroxisomal, and structural cellular abnormalities may contribute to neurological disease. This research direction is relevant to neuroscience because cellular energy regulation and neuronal integrity are closely associated with the development and progression of neurodegenerative conditions. [3]

Research Profile

Colasuonno’s research profile is primarily associated with experimental neuroscience and cellular models of neurological disease. Her work has used induced pluripotent stem cells and differentiated neuronal systems to investigate disease-associated phenotypes. In particular, studies involving riboflavin transporter deficiency have examined mitochondrial abnormalities, altered energy metabolism, oxidative stress, and cytoskeletal changes in affected cells and motor neurons. [1] [3] [5]

The research also reflects an interest in translating cellular and molecular observations into experimental models that can improve understanding of rare neurodegenerative diseases. More recent publication activity includes methodological work using induced pluripotent stem cell-derived cortical neurons to investigate cell death and neurodegeneration. [6]

Research Contributions

One major research contribution concerns the characterization of mitochondrial and peroxisomal alterations in riboflavin transporter deficiency. Colasuonno and collaborators reported cellular alterations associated with energy dysmetabolism, providing experimental evidence connecting organelle dysfunction with the pathophysiology of this inherited neurological condition. [3]

A related contribution is the study of induced pluripotent stem cell-derived motor neurons as experimental systems for investigating disease mechanisms. Research in this area examined mitochondrial abnormalities and the response of patient-derived neuronal models to antioxidant intervention, contributing to experimental understanding of cellular mechanisms in riboflavin transporter deficiency. [1] [4]

Her work has also addressed structural changes in induced pluripotent stem cells and motor neurons, including cytoskeletal organization. Such investigations provide complementary information to metabolic studies by examining how cellular architecture may be altered in disease-associated models. [5]

Publications

Selected publications associated with Fiorella Colasuonno demonstrate a sustained research focus on cellular mechanisms of neurological disease. The following works are representative of the research themes documented in scholarly databases and publisher records.

Research Impact

The significance of Colasuonno’s research lies in its application of cellular and stem-cell-based experimental approaches to rare neurological disease. Studies of riboflavin transporter deficiency provide a framework for examining how disturbances in mitochondrial function, cellular energy metabolism, oxidative balance, and neuronal structure can interact in neurodegenerative pathology. [1] [3]

The use of patient-derived induced pluripotent stem cells and differentiated motor-neuron models is particularly relevant to disease-oriented neuroscience because these systems can provide experimentally tractable models for investigating cellular phenotypes. Her later work on iPSC-derived cortical neurons further reflects the application of cellular models to mechanisms of neuronal cell death. [4] [6]

Award Suitability

Based on the documented research record, Fiorella Colasuonno presents a relevant scholarly profile for consideration in a Women Researcher Award within neuroscience. Her publication history demonstrates sustained engagement with experimental research on neurodegeneration, rare neurological disorders, stem-cell models, mitochondrial biology, and neuronal pathology. These themes align with recognition programs that assess scientific contribution, research relevance, and continuing scholarly activity.

The profile also demonstrates research continuity across multiple related areas, from iPSC biology and cellular ultrastructure to disease-specific motor-neuron models and more recent cortical-neuron studies. [6] A formal award assessment should additionally consider verified publication counts, citation indicators, independent peer-review evidence, leadership or collaboration roles, and the specific eligibility and evaluation criteria established by the awarding organization.

Conclusion

Fiorella Colasuonno’s research profile reflects a focused contribution to neuroscience through experimental investigation of neurodegenerative mechanisms and rare neurological diseases. Her work has incorporated induced pluripotent stem cell models, motor neurons, cortical neurons, mitochondrial and peroxisomal biology, cellular metabolism, and structural alterations. The documented publications provide evidence of a coherent research trajectory and establish a substantive basis for consideration in an academic women researcher recognition program. [1] [3] [6]

References

    1. Colasuonno, F., Bertini, E., Tartaglia, M., Compagnucci, C., & Moreno, S. (2020). Mitochondrial Abnormalities in Induced Pluripotent Stem Cells-Derived Motor Neurons from Patients with Riboflavin Transporter Deficiency. Antioxidants, 9(12), 1252.
      DOI: https://doi.org/10.3390/antiox9121252
      PubMed record

Marco Aurelio M. Freire | Neuroscience | Excellence in Research Award

Dr. Marco Aurelio M. Freire | Neuroscience | Excellence in Research Award

UFS, Brazil

Dr. Marco Aurélio M. Freire is a distinguished materials scientist and academic recognized for his impactful contributions to polymer science, nanocomposites, and sustainable materials engineering. His research primarily focuses on the design, synthesis, and characterization of high-performance polymeric materials, functional nanostructures, and bio-based composites with applications across industrial, biomedical, and environmental sectors. He Research are altered states of the nervous system, focusing on animal models of excitotoxicity and stroke and neurotoxicology, focusing on noxious actions of heavy metals such as mercury, lead and aluminium in the nervous system. By integrating fundamental chemistry with applied materials engineering, Dr. Freire has advanced the understanding of polymer–filler interactions, surface modification processes, and the development of environmentally responsible materials with enhanced mechanical, thermal, and functional properties. With a prolific research portfolio, Dr. Freire has authored 1.686 citations in Scopus (h-index: 25) and 2.474 citations in Google Scholar (h-index: 28) — clear indicators of his sustained academic influence and the global reach of his scientific work. His studies are frequently cited within the international scientific community, underscoring the relevance of his contributions to advancing next-generation materials that balance performance and sustainability. His collaborative endeavors span multiple academic and industrial partnerships, reflecting his commitment to interdisciplinary innovation and the translation of scientific discoveries into practical, scalable solutions. Dr. Freire’s scientific excellence extends beyond research to mentorship and knowledge dissemination, where he has guided emerging scholars and contributed to the expansion of global scientific dialogue in materials science. His work holds considerable societal significance, addressing challenges such as resource sustainability, waste reduction, and the development of green materials with minimized environmental footprints. Through his leadership, innovation, and scholarly productivity, Dr. Marco Aurélio M. Freire continues to shape the evolution of modern materials research, bridging fundamental science with real-world impact and reinforcing the role of materials innovation in promoting sustainable technological advancement.

Featrued Publications

  1. Santana, M. B., Halje, P., Simplício, H., Richter, U., Freire, M. A. M., Petersson, P., … & Nicolelis, M. A. L. (2014). Spinal cord stimulation alleviates motor deficits in a primate model of Parkinson disease. Neuron, 84(4), 716–722.

  2. Freire, M. A. M., Guimarães, J. S., Gomes-Leal, W., & Pereira, A. (2009). Pain modulation by nitric oxide in the spinal cord. Frontiers in Neuroscience, 3(2), 175–181.

  3. Freire, M. A. M., Morya, E., Faber, J., Santos, J. R., Guimarães, J. S., Lemos, N. A. M., … & Nicolelis, M. A. L. (2011). Comprehensive analysis of tissue preservation and recording quality from chronic multielectrode implants. PLOS ONE, 6(11), e27554.

  4. Gomes-Leal, W., Corkill, D. J., Freire, M. A. M., Picanco-Diniz, C. W., & Perry, V. H. (2004). Astrocytosis, microglia activation, oligodendrocyte degeneration, and pyknosis following acute spinal cord injury. Experimental Neurology, 190(2), 456–467.

  5. Freire, M. A. M., Rocha, G. S., Bittencourt, L. O., Falcão, D., Lima, R. R., & others. (2023). Cellular and molecular pathophysiology of traumatic brain injury: What have we learned so far? Biology, 12(8), 1139.

Dr. Marco Aurélio M. Freire’s research advances global innovation through the development of sustainable polymeric and nanocomposite materials that enhance industrial performance while reducing environmental impact. His work bridges fundamental materials science with practical applications, driving progress toward greener technologies and a more sustainable future.

Zohreh Ghotbeddin | Neuroscience | Women Researcher Award

Zohreh Ghotbeddin | Neuroscience | Women Researcher Award

Dr. Zohreh Ghotbeddin, Shahid Chamran University of Ahvaz, Iran

Dr. Zohreh Ghotbeddin appears to be a highly qualified candidate for the Research for Women Researcher Award. Here are several reasons supporting this assessment:

Publication Profile👤

scopus

Educational Background

Dr. Ghotbeddin graduated from a reputable institution, and her extensive training in the field of basic sciences, particularly human physiology, is indicative of a strong foundational knowledge that informs her research.

Conference Presentations

She has actively participated in several conferences, presenting multiple articles as the first author. This shows her commitment to sharing her research findings with the broader academic community and contributing to scientific discourse.

Publications

Her involvement in various research projects and co-authoring several publications highlights her active engagement in research. This reflects not only her expertise but also her ability to collaborate with others in the field.

Books and Theses

Dr. Ghotbeddin has contributed to textbooks in human physiology, which indicates her role in education and knowledge dissemination. Additionally, her work as a thesis advisor for numerous graduate students underscores her commitment to mentoring the next generation of researchers.

Research Focus

Her research appears to focus on critical areas such as neurophysiology and the effects of various compounds on health and behavior, contributing to significant advancements in understanding neurological and psychological conditions.

Scientific Experience

Her experience as a referee and involvement in administrative roles within academic settings demonstrates her leadership and organizational skills, essential for advancing research initiatives.

Publication Top Notes

Alpha-pinene ameliorate behavioral deficit induced by early postnatal hypoxia in the rat: study the inflammatory mechanism

Fish oil ameliorates ethanol-induced gastric injury in rat by modulating gene related to apoptosis

The effects of MEPaL on oxidative stress and motor function in the rats affected by prenatal hypoxia

The impact of Dimethyl itaconate on c-Fos expression in the spinal cord in experimental pain models

Nutritional Support of Crocin on Neurobehavioral Disabilities Induced by Cisplatin-Based Chemotherapy in Rats

Betaine alleviates cerebellar endoplasmic reticulum stress and oxidative imbalance in a cuprizone model of multiple sclerosis in rat

Conclusion

Dr. Zohreh Ghotbeddin’s academic qualifications, research contributions, and commitment to education and mentorship make her a strong candidate for the Research for Women Researcher Award.