Prof. Anca Oana Hermenean|Pharmacology |Best Innovation Award|

Prof. Anca Oana Hermenean at Vasile Goldis Western University of Arad, Romania

PROFILE  

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Early Academic Pursuits 📚

Prof. Dr. Anca Hermenean began her academic journey at Babes-Bolyai University of Cluj-Napoca, Romania, where she earned her Bachelor’s degree in Biology from 1989 to 1994. This foundational education set the stage for her extensive career in biochemistry and molecular biology. Her academic prowess continued to shine as she pursued a PhD in Biology from 1997 to 2003, focusing on electron microscopy, histopathology, and immunohistochemistry. This period of intense study was marked by rigorous research and a commitment to understanding the microscopic and molecular mechanisms underlying various biological processes.

Professional Endeavors 🏛️

Prof. Hermenean’s professional career is distinguished by her roles in academia and research management. Since 2010, she has served as a Professor at the Faculty of Medicine, Vasile Goldis Western University of Arad (VGWU), where she has made significant contributions to the fields of histology and cell biology. Her expertise in these areas is evidenced by her ongoing research and teaching responsibilities.

In 2016, Prof. Hermenean was appointed Director of the VGWU Doctoral Studies Council, a role in which she has overseen the management and strategic development of doctoral programs in Medicine and Biology. Her leadership extended further in 2017 when she joined the Faculty of Engineering in Foreign Languages at Politehnica University of Bucharest, contributing to the Master Program in Biomaterials for Tissue Engineering. She has taught various courses related to cell and tissue biology, tissue regeneration, and debilitating diseases of tissue.

In 2020, Prof. Hermenean became the Director of the Life Science Institute and Principal Investigator at the Institute of Life Sciences, VGWU. Here, she manages research projects and oversees activities in microscopy labs and the animal facility, reflecting her deep engagement in both research and administration.

Contributions and Research Focus 🔬

Prof. Hermenean’s research contributions are broad and impactful, focusing on several key areas:

  1. Histology and Histopathology: Her work in these fields explores the microscopic structure of tissues and the pathological changes associated with various diseases. This includes significant contributions to understanding how cellular and tissular alterations can affect health.
  2. Phytomedicine: Prof. Hermenean has researched the modulation of signal transduction pathways by phytochemicals, their molecular regulation of anti-inflammatory and anti-fibrotic responses, and their interactions with drugs and chemicals.
  3. Nanobiotechnology: She has been involved in the characterization of bio-interfaces and in vivo biocompatibility studies of nanomaterials. Her work includes assessing the interactions between nanomedicines and biological systems, as well as evaluating structural and ultrastructural toxicological effects.
  4. Regenerative Medicine: Prof. Hermenean’s research also covers tissue repair and regeneration pathways, focusing on molecular signals, growth factors, and the mechanisms of tissue regeneration.

Accolades and Recognition 🏆

Prof. Hermenean’s work has garnered significant recognition within the scientific community. She holds a habilitation in Biology, a postdoctoral qualification that allows her to supervise PhD candidates. Her research has led to numerous publications in peer-reviewed journals, with an H-index of 30 on Scopus and 34 on Google Scholar. Additionally, she has been awarded several patents for her innovations in pharmaceutical compositions and drug delivery systems, underscoring her contributions to practical and applied sciences.

Impact and Influence 🌍

Prof. Hermenean’s influence extends beyond her research and teaching. Her roles in managing research councils and institutes highlight her ability to shape research strategies and educational programs. Her contributions have had a tangible impact on the advancement of biomedical sciences, particularly in the fields of histology, nanobiotechnology, and regenerative medicine.

Her work on phytomedicine and nanobiotechnology is particularly notable for its potential applications in developing new therapeutic approaches and improving existing medical treatments. Her patents and research projects reflect her commitment to translating scientific discoveries into practical solutions.

Legacy and Future Contributions 🔮

Prof. Hermenean’s legacy is marked by her dedication to advancing scientific knowledge and training the next generation of researchers. Her leadership in establishing and managing research infrastructures, such as the animal facility and microscopy labs at VGWU, demonstrates her commitment to fostering a supportive environment for cutting-edge research.

Looking ahead, Prof. Hermenean is poised to continue making significant contributions to her fields of expertise. Her ongoing research and collaborations are expected to yield further advancements in phytomedicine, nanobiotechnology, and regenerative medicine. Her role as a mentor and educator will also play a crucial part in shaping future research and development in these areas.

🎓Publication 

Chrysin-loaded calixarene-cyclodextrin ternary drug delivery system inhibits TGF-β and galectin-1 mediated pathways in diabetic liver

  • Authors   :Balta, C., Herman, H., Ciceu, A., D’Amico, M., Hermenean, A..
  • Journal    :Biochemical Pharmacology
  • Year         :2024

Dexmedetomidine improves the circulatory dysfunction of the glymphatic system induced by sevoflurane through the PI3K/AKT/ΔFosB/AQP4 pathway in young mice

  • Authors   :Wang, S., Yu, X., Cheng, L., Lu, Y., Wu, X..
  • Journal    :Cell Death and Disease
  • Year         :2024

Exploring In Vivo Pulmonary and Splenic Toxicity Profiles of Silicon Quantum Dots in Mice

  • Authors   :Cristian, R.-E., Balta, C., Herman, H., Dinischiotu, A., Stan, M.S..
  • Journal    :Materials.
  • Year         :2024

Ketamine administration causes cognitive impairment by destroying the circulation function of the glymphatic system

Colloidal and Biological Characterization of Dual Drug-Loaded Smart Micellar Systems

  • Authors   :Herman, H., Rata, D.M., Cadinoiu, A.N., Atanase, L.I., Hermenean, A..
  • Journal    :Polymers
  • Year         :2024
Prof. Anca Oana Hermenean |Pharmacology |Best Innovation Award

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