Georg Feigl | Clinical Medicine | Research Excellence Award

Prof. Dr. Georg Feigl | Clinical Medicine | Research Excellence Award

Institut für Anatomie und klinische Morphologie, Universität Witten | Germany

Prof. Dr. Georg Christoph Feigl is a Germany-based academic researcher at Universität Witten/Herdecke, specializing in clinical anatomy, surgical education, anesthesiology-related anatomy, and cadaver-based medical training. He has authored over 120 peer-reviewed publications, accumulating 2,419 citations with an h-index of 25, reflecting sustained international impact. His research focuses on anatomical optimization for surgical and interventional procedures, including regional anesthesia, orthopedic and thoracic surgery, and advanced cadaveric models (Thiel and Dodge embalming techniques). Prof. Feigl collaborates widely across disciplines, with 300+ co-authors, contributing to translational studies that bridge anatomy, imaging, and clinical practice. His work supports safer surgical techniques, improved medical training, and evidence-based procedural standards, delivering clear societal benefits through enhanced patient safety, education quality, and clinical outcomes.

Citation Metrics (Scopus)

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25

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Featured Publications

Sipping Kemegne Marius Tresor | Pharmacology | Best Researcher Award

Dr. Sipping Kemegne Marius Tresor | Pharmacology | Best Researcher Award

Research scholar | Slovak Academy of Sciences | Slovakia

Dr. Sipping Kemegne Marius Tresor is a biochemist and postdoctoral research fellow whose expertise spans immunopharmacology, cancer biology, inflammatory diseases, and phytomedicine, with a focus on natural bioactive compounds and their translational therapeutic applications. Trained at leading institutions across Africa and Europe, he has developed a strong multidisciplinary foundation integrating molecular biology, pharmacology, biotechnology, and clinical research principles to advance innovation in precision therapeutics. His research has pioneered the exploration and characterization of polysaccharide-rich bioactive fractions from medicinal fungi, particularly Ganoderma species, elucidating their antioxidant, anti-inflammatory, and anti-metastatic potentials and offering promising chemopreventive and therapeutic leads for cancer and immune-mediated disorders. His scientific contributions include peer-reviewed publications in internationally indexed journals and authorship of a scholarly book, demonstrating sustained commitment to advancing biomedical knowledge and global research excellence. Dr. Sipping’s work has been strengthened through impactful collaborations across Africa, Europe, and Asia with prominent scientists and international research groups, fostering interdisciplinary partnerships and capacity building in natural product research and immunotherapeutics. His ongoing investigations focus on isolating novel polysaccharides and developing nanotechnology-enabled drug delivery systems to enhance therapeutic efficacy against chronic inflammatory conditions, such as rheumatoid arthritis, bridging traditional bioresources with cutting-edge biomedical strategies. Beyond laboratory research, he is a certified clinical research professional committed to strengthening translational pathways from preclinical discovery to potential clinical application. His membership in distinguished scientific bodies reflects his dedication to contributing to the global research community. Driven by the vision to harness bioresources and advanced biotechnology for improved public health, Dr. Sipping aims to deliver innovative, accessible, and safe therapeutic options addressing cancer, autoimmune, and infectious diseases, thereby contributing to scientific progress and societal well-being. He has 81 citations from 9 documents with an h-index of 5.

Profiles:  Scopus | ORCID

Featured Publications

1. Sipping, M., Thakur, D., Singh, B., Njamen, D., & Mukherjee, S. (2025). Polysaccharide extract of Ganoderma resinaceum restricts breast cancer progression in vitro by intervening in epithelial–mesenchymal transition and cancer stemness. Revista Brasileira de Farmacognosia.

2. Sipping, M., Sathish Kumar, T., & Kamdem, N. (2025). Scientific investigation on antibacterial, antioxidant, cytotoxic effects and TLC bioautography of Terminalia schimperiania stem bark extracts. Journal of Complementary and Integrative Medicine.

3. Kamga Silihe, K., Defo Mbou, W., Ngo Pambe, J. C., Kenmogne, L. V., Fotso Maptouom, L., Kemegne Sipping, M. T., Zingue, S., & Njamen, D. (2023). Comparative anticancer effects of Annona muricata Linn (Annonaceae) leaves and fruits on DMBA-induced breast cancer in female rats. BMC Complementary Medicine and Therapies.

4. Nana Tchoupang, E., Yadji, V., Wangbara, J. B., Kemegne Sipping, M. T., Zingue, S., Njamen, D., & Mutalik, S. (2022). In vitro and in vivo antiproliferative actions of Solanum gilo Raddi (Solanaceae) fruit extract on breast tissues. Advances in Pharmacological and Pharmaceutical Sciences.

5. Kamga Silihe, K., Zingue, S., Kemegne Sipping, M. T., Busuioc Cazanevscaia, A., Dediu Botezatu, A. V., Njamen, D., & Dinica, R. M. (2022). The antioxidant potential of Ficus umbellata Vahl (Moraceae) that accelerates in vitro and in vivo anti-inflammatory protective effects. Applied Sciences.

Fatemeh Molaabasi | Health Technology | Best Researcher Award

Assist. Prof. Dr. Fatemeh Molaabasi | Health Technology | Best Researcher Award 

Assistant Professor | Breast Cancer Research Center, Motamed Cancer Institute, ACECR | Iran

Dr. Fatemeh Molaabasi is an accomplished scholar in analytical chemistry, biomaterials, and medical nanotechnology, serving as an Assistant Professor at the Motamed Cancer Institute, ACECR, where she contributes to the Biomaterials and Tissue Engineering and Medical Nanotechnology Research Groups. Her research advances bio-inspired nanomaterials for drug delivery, biosensing, regenerative medicine, cancer diagnostics, and theranostics, with a strong emphasis on clinically translatable platforms. She has produced a substantial body of peer-reviewed work in international journals and scholarly books and holds a record of impactful scientific contributions evidenced by a high citation profile and sustained editorial and reviewing responsibilities in leading journals. Dr. Molaabasi has pioneered innovative tools including tumor apoptosis assay platforms, viral detection systems, electrochemical biosensing strips, three-dimensional tumor models, and targeted diagnostic devices for circulating tumor cells, demonstrating excellence in merging chemistry, biology, engineering, and clinical needs. Her portfolio also includes the development of medical diagnostic kits, rapid assays, and dialysis-based devices designed to support metastatic cancer patients, reflecting a strong translational orientation toward patient-centered technology development. She has secured national funding, engaged in interdisciplinary and global research collaborations with leading academic and biomedical centers, and contributed to national innovation initiatives and industry-linked diagnostic technology development. Beyond research and innovation, she has actively served in editorial boards and scientific committees, reviewed national scientific grants, and mentored emerging researchers. Dr. Molaabasi’s work embodies a commitment to strengthening early cancer detection, precision medicine, and bio-nanotechnology infrastructure, while advancing sustainable and biocompatible nanoplatforms. Her efforts contribute to global research in cancer diagnostics and biosensors and to the development of affordable, high-performance biomedical technologies, reinforcing her role as a leader in next-generation healthcare innovation and applied nanoscience. She has 1274 citations from 55 documents with an h-index of 22.

Profiles: Google Scholar | Scopus | ORCID

Featured Publications

1. Fathi Ganje Lou, E., Rezayan, A. H., Malekmohamadi, M., Abbasi, V., et al. (2025). Very simple and ultra-sensitive fluorescence resonance energy transfer aptasensor for turn-on C-reactive protein detection in biological matrices.

2. Feizi, F., Molaabasi, F., Ezati, M., Shamsipur, M., Mousavi, F., Roshanfekr, A., et al. (2025). Ratiometric fluorescence chiral sensors for pH monitoring and its applications in indicator paper and bioimaging. Analytical Chemistry.

3. Molaabasi, F., Mohseni, N., Hajipour-Verdom, B., Agheli, A., et al. (2025). Ultra-efficient label-free cell death detection based on multifunctional colorimetric fluorescent in-situ silver nanocluster/graphene nanohybridzyme and its application in environmental biological samples and cellular imaging. Biosensors and Bioelectronics.

4. Shahrashoob, M., Dehshiri, M., Yousefi, V., Moassesfar, M., Saberi, H., et al. (2025). Optical and electrochemical biosensors for detection of pathogens using metal nanoclusters: A systematic review. Biosensors.

5. Besharati, M., Radi, H. C., & Molaabasi, F. (2025). A highly sensitive and simple platform for enzyme-free detection of ethanol based on a nano-porous glassy carbon electrode with electrodeposited Ni nanoparticles. Russian Journal of Electrochemistry.

Yang Zhang | Clinical Medicine | Best Researcher Award

Prof. Dr. Yang Zhang | Clinical Medicine | Best Researcher Award 

Director | Department of Laboratory Medicine Chongqing University | China

Dr. Yang Zhang, Ph.D., currently serves as Director of the Department of Laboratory Medicine at Chongqing University Affiliated Renji Hospital and is an Associate Chief Physician, Postdoctoral Fellow in Clinical Laboratory Diagnostics, and doctoral and master’s supervisor at Chongqing University. She earned her Bachelor of Medicine in Laboratory Medicine (2008), Master of Medicine in Clinical Laboratory Diagnostics (2011), and Ph.D. in Clinical Laboratory Diagnostics (2015) from the Third Military Medical University, complemented by a Ministry of Education-sponsored visiting scholarship at Loma Linda University, USA (2012–2015). Her research centers on precision molecular diagnostics in oncology, with a special focus on POCT rapid diagnostic reagents and spectroscopy-based label-free diagnostic techniques. Dr. Zhang has led multiple high-level research projects, including three funded by the National Natural Science Foundation of China, one by the National Key R&D Program, and numerous provincial and military projects, securing over 6.88 million RMB in funding. She has published more than 40 academic papers as first or corresponding author, with 15 SCI-indexed articles, an H-index of 24, and a single paper cited over 280 times. Her scholarly contributions extend to 12 Chinese invention patents, 1 international PCT patent, and five co-edited scientific monographs, including works on molecular diagnostics and terahertz applications. Dr. Zhang’s achievements have been recognized with numerous honors, such as Chongqing High-Level Young Medical Talent (2022), the “Top Ten Young Scientists in Shapingba District” (2022), First Prize in the Chongqing Association for Science and Technology Innovation (2023), and the National Laboratory Medicine Science and Technology Innovation Award (2021). She also serves as a reviewer for the NSFC and contributes to several national professional committees in laboratory medicine. She has 1044 citations from 43 documents with an h-index of 16.

Profile: Scopus | ORCID 

Publications

1. Zhang, Y. (2020). ENT1 inhibition attenuates apoptosis by activation of cAMP/pCREB/Bcl2 pathway after MCAO in rats. Experimental Neurology, 331, 113362.

2. Zhang, Y. (2020). Identification of immune-related prognostic biomarkers based on the tumor microenvironment in 20 malignant tumor types with poor prognosis. Frontiers in Oncology, 10, 1008.

3. Tian, H., Yuan, C., Liu, Y., Xia, K., Li, M., Xie, F., Chen, Q., Chen, M., Fu, W., & Zhang, Y. (2020, July 28). A sample-to-answer quantification platform for point-of-care testing of circulating microRNAs based on allosteric spherical nanoprobe. Preprint.

4. Zhang, Y. (2020). Evaluation of the reliability of six commercial SERS substrates. Plasmonics, 15(5), 1323–1332.

5. Zhang, Y. (2020). Dataset concerning plasmonic thermal destruction of murine melanoma by gold nanoparticles obtained by green chemistry. Data in Brief, 30, 105370.