Kambiz Akbari Noghabi | Biological Sciences | Best Researcher Award

Prof. Dr. Kambiz Akbari Noghabi | Biological Sciences | Best Researcher Award

Prof. Dr. Kambiz Akbari Noghabi, National Institute of Genetic Engineering and Biotechnology (NIGEB), Iran.

Dr. Kambiz Akbari Noghabi is a distinguished microbiologist and biotechnologist whose academic journey began with a Ph.D. in Applied Microbiology-Biotechnology from Gyeongsang National University, South Korea. His pioneering research on cold-induced biopolymers by Pseudomonas fluorescens has been a cornerstone in microbial environmental applications. With a strong foundation in environmental and industrial biotechnology, his research explores the molecular biology of microorganisms, focusing on their potential to address pressing ecological issues.

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🎓 Early Academic Pursuits

Dr. Kambiz Akbari Noghabi embarked on his academic journey with a deep passion for the microscopic world of microorganisms. He pursued his Ph.D. in Applied Microbiology-Biotechnology at Gyeongsang National University (GNSU), South Korea, from 2003 to 2006. Demonstrating academic excellence, he graduated with an average grade of “A.” His doctoral thesis, entitled “Production of a novel cold-induced biopolymer by Pseudomonas fluorescens BM07; its structural characterization & environmental applications,” not only explored an innovative microbial product but also reflected his dedication to eco-conscious scientific discovery. Recognizing his outstanding capabilities, he was awarded a prestigious BK21 (Brain Korea 21 Program) scholarship—one of South Korea’s most competitive supports for international scholars.

🧫 Research Focus and Scientific Curiosity

Driven by a profound interest in microbial science, Dr. Akbari Noghabi’s research is centered on Environmental and Industrial Biotechnology, with an emphasis on the cellular and molecular biology of microorganisms. His interdisciplinary work spans microbial natural products, environmental microbiology, and bio-nanotechnology. He has continuously explored innovative applications of microbes in solving environmental challenges, demonstrating an exceptional blend of academic rigor and creativity. His research on cold-induced biopolymers remains an example of how basic microbiological insight can inspire sustainable technological advancement.

🔬 Professional Endeavors and Multidisciplinary Integration

Throughout his career, Dr. Akbari Noghabi has collaborated across various disciplines within biological sciences. His scientific curiosity led him to initiate and participate in multidisciplinary projects, which often integrate aspects of biotechnology, molecular biology, and environmental engineering. Whether exploring the behavior of bacteria at the genetic level or developing new methods for environmental cleanup using microbial technologies, he has consistently contributed to the expanding interface between science and society.

🏅 Accolades and Recognition

Recognition has been a natural outcome of Dr. Akbari Noghabi’s relentless pursuit of scientific excellence. His academic merit earned him the highly respected BK21 scholarship during his doctoral studies, acknowledging him as an emerging leader in biotechnology. Beyond this, his work continues to be acknowledged globally through invitations to contribute as a referee for some of the most prestigious scientific journals, affirming the value and credibility of his scientific judgment.

📚 Refereeing Excellence and Scholarly Impact

As a reviewer for an extensive list of world-renowned journals—including Enzyme and Microbial Technology, Bioresource Technology, Scientific Reports, PLoS ONE, and Biotechnology & Bioengineering—Dr. Akbari Noghabi has helped shape the direction of microbial biotechnology research. His engagement with journals from Elsevier, Wiley, Springer, and others reflects not only his subject expertise but also the trust placed in him by the global scientific community to uphold rigorous academic standards and promote impactful research.

🌍 Impact on Science and Society

Dr. Akbari Noghabi’s work carries significant implications for both science and society. His research contributes directly to solving real-world problems, especially in the realm of environmental sustainability. By leveraging microbial capabilities for biopolymer production and environmental remediation, he has provided pathways for cleaner technologies and greener industry practices. His contributions echo in environmental policy discussions, technological innovation, and the academic development of future scientists.

🔮 Legacy and Future Contributions

Looking forward, Dr. Kambiz Akbari Noghabi remains poised to inspire the next generation of biotechnologists and microbiologists. His career is a testament to the power of interdisciplinary science, international collaboration, and persistent curiosity. With a legacy already grounded in scientific integrity and environmental advocacy, his ongoing efforts will undoubtedly continue to shape the future of microbial biotechnology and its applications across sectors.

Publication

  • Title: An efficient biosurfactant-producing bacterium Pseudomonas aeruginosa MR01, isolated from oil excavation areas in south of Iran
    Authors: TB Lotfabad, M Shourian, R Roostaazad, AR Najafabadi, MR Adelzadeh, …
    Year: 2009

 

  • Title: Biosurfactant-producing bacterium, Pseudomonas aeruginosa MA01 isolated from spoiled apples: physicochemical and structural characteristics of isolated biosurfactant
    Authors: H Abbasi, MM Hamedi, TB Lotfabad, HS Zahiri, H Sharafi, F Masoomi, …
    Year: 2012

 

  • Title: Isolation and genetic characterization of metallo-β-lactamase and carbapenamase producing strains of Acinetobacter baumannii from patients at Tehran hospitals
    Authors: F Shahcheraghi, M Abbasalipour, MM Feizabadi, GH Ebrahimipour, …
    Year: 2011

 

  • Title: Structural characterization of a rhamnolipid-type biosurfactant produced by Pseudomonas aeruginosa MR01: enhancement of di-rhamnolipid proportion using gamma irradiation
    Authors: TB Lotfabad, H Abassi, R Ahmadkhaniha, R Roostaazad, F Masoomi, …
    Year: 2010

 

  • Title: Efficient phenol degradation by a newly characterized Pseudomonas sp. SA01 isolated from pharmaceutical wastewaters
    Authors: M Shourian, KA Noghabi, HS Zahiri, T Bagheri, R Karbalaei, M Mollaei, …
    Year: 2009

 

  • Title: Characterization of a chitinase with antifungal activity from a native Serratia marcescens B4A
    Authors: M Zarei, S Aminzadeh, H Zolgharnein, A Safahieh, M Daliri, KA Noghabi, …
    Year: 2011

 

  • Title: A bio-inspired strategy for the synthesis of zinc oxide nanoparticles (ZnO NPs) using the cell extract of cyanobacterium Nostoc sp. EA03: from biological function to toxicity
    Authors: M Ebadi, MR Zolfaghari, SS Aghaei, M Zargar, M Shafiei, HS Zahiri, …
    Year: 2019

 

  • Title: Halophiles and their vast potential in biofuel production
    Authors: MA Amoozegar, A Safarpour, KA Noghabi, T Bakhtiary, A Ventosa
    Year: 2019

 

✅ Conclusion

Dr. Kambiz Akbari Noghabi’s work stands at the intersection of innovation, environmental responsibility, and scientific excellence. Through his research and professional service, he has carved out a lasting legacy in microbial biotechnology. His commitment to advancing the frontiers of science while addressing environmental challenges ensures that his contributions will continue to resonate across generations of researchers and practitioners. Looking ahead, his career promises even greater strides in the pursuit of sustainable, microbe-driven solutions to global problems.

Paolo Grumati | Cell Biology | Best Researcher Award

Prof. Paolo Grumati | Cell Biology | Best Researcher Award

Prof. Paolo Grumati,  TIGEM, Italy.

Dr. Paolo Grumati is a prominent researcher and academic with a focus on molecular biology, particularly the study of autophagy and its role in diseases such as muscular dystrophies and neurodegenerative disorders. His academic journey, beginning with a Master’s and Ph.D. from the University of Padova, laid the foundation for his pioneering work in the molecular mechanisms underlying disease pathogenesis. Dr. Grumati’s professional endeavors have included roles at esteemed institutions like Johann Wolfgang Goethe University and the Telethon Institute of Genetics and Medicine (TIGEM), where he leads groundbreaking research in selective autophagy. His work, which integrates advanced techniques like CRISPR/Cas9, has earned him widespread recognition and numerous accolades, including positions as Associate Professor at the University of Naples. His research has had a significant impact on the scientific community, particularly in the areas of cellular maintenance and therapeutic development.

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Early Academic Pursuits 🎓


Paolo Grumati’s academic journey began at the University of Padova in Italy, where he pursued a Master’s Degree in Medical Biotechnologies, graduating in 2005. His deep curiosity in the molecular underpinnings of human biology led him to continue his studies with a Ph.D. in Genetic and Molecular Biology, completed between 2006 and 2009. During his Ph.D., he focused on the genetic mechanisms that contribute to various diseases, a pursuit that sparked his lasting interest in molecular biology and disease pathogenesis. His early academic training laid a strong foundation for his future research in the biochemistry of diseases, especially those that affect muscle function and cellular processes.

Professional Endeavors 💼


Dr. Grumati’s professional career has been marked by an impressive trajectory across prestigious institutions. After completing his postdoctoral work on the pathogenesis of muscular dystrophies at the University of Padova, he moved to Germany, where he took a position at the Institute of Biochemistry II at Johann Wolfgang Goethe University. There, between 2013 and 2018, he specialized in the biochemistry and molecular biology of autophagy, a crucial cellular process related to health and disease. His expertise in autophagy became a defining element of his career, and in 2019, he was appointed as the Assistant Investigator and Head of the Mass Spectrometry Core at the Telethon Institute of Genetics and Medicine (TIGEM), where he leads innovative research into the molecular mechanisms of selective autophagy. Throughout these roles, Dr. Grumati has built a reputation for integrating advanced techniques like CRISPR/Cas9 into his work, influencing the field of genetic research.

Contributions and Research Focus 🔬


Dr. Grumati’s research focus has consistently revolved around the intricate molecular processes that govern cellular maintenance and disease, particularly through the lens of autophagy. Since becoming a principal investigator in 2019, his work at TIGEM has concentrated on understanding the molecular mechanisms of selective autophagy, which plays a pivotal role in cellular health and disease. He has pioneered methods to study and manipulate these processes, contributing significantly to the understanding of diseases such as muscular dystrophies and neurodegenerative disorders. His research not only delves into the underlying biology of these conditions but also seeks to identify therapeutic targets that could help manage or even cure these diseases.

Accolades and Recognition 🏆


Dr. Grumati has received widespread recognition for his work in molecular biology and biochemistry. His contributions to the field of autophagy and muscle biology have been honored with leadership roles in prominent research teams, including his time as Team Leader of the Frankfurt CRISPR/Cas9 Screening Center. His excellence in research has earned him a faculty position as Assistant Professor at the University of Naples “Federico II” and an eventual promotion to Associate Professor in 2024. His expertise in mass spectrometry and molecular biology has also made him a sought-after figure in the scientific community, where he is frequently invited to collaborate on interdisciplinary research projects.

Impact and Influence 🌍


Dr. Grumati’s research has had a lasting impact on the scientific community, particularly in the fields of autophagy and muscular dystrophies. His work has influenced both theoretical and applied aspects of molecular biology, from basic research to potential therapeutic interventions. Through his leadership at TIGEM and his involvement in international collaborations, Dr. Grumati has helped to shape the direction of research into autophagy-related diseases. His studies have not only provided insights into the cellular mechanisms at play in these diseases but also paved the way for future therapeutic strategies. He is seen as a key figure in the advancement of precision medicine and molecular therapeutics.

Legacy and Future Contributions 🔮

As Dr. Grumati moves forward in his career, his contributions to the fields of genetics and molecular biology are expected to have a profound and lasting influence. His current work, focusing on selective autophagy, holds promise for the development of novel treatments for diseases that currently have limited therapeutic options. His legacy will likely include innovations in understanding cellular degradation processes and their application to genetic disorders and other diseases. The future of Dr. Grumati’s research will continue to explore the molecular intricacies of human health, offering the potential for breakthroughs in regenerative medicine and disease treatment.

Teaching and Mentorship 👨‍🏫


Beyond his research, Dr. Grumati has made a significant impact through his academic roles at the University of Naples. As an Associate Professor, he plays a key role in shaping the next generation of molecular biologists. His teaching focuses on imparting knowledge in genetics, biochemistry, and molecular biology, with an emphasis on practical research applications. His mentorship has helped guide many students and early-career researchers, who have gone on to make their own contributions to the field. Dr. Grumati’s ability to translate complex scientific concepts into accessible lessons ensures that his influence extends far beyond his own research.

Publication

  • Title: Cortico-striatal circuit mechanisms drive the effects of D1 dopamine agonists on memory capacity in mice through cAMP/PKA signalling
    Authors: M. de Risi, D. Cavezza, G. Torromino, P. Grumati, E. de Leonibus
    Year: 2025

 

  • Title: Two FAM134B isoforms differentially regulate ER dynamics during myogenesis
    Authors: V. Buonomo, K.O. Lohachova, A. Reggio, R.M. Bhaskara, P. Grumati
    Year: 2025

 

  • Title: Ezrin defines TSC complex activation at endosomal compartments through EGFR-AKT signaling
    Authors: G. Giamundo, D. Intartaglia, E. del Prete, R. De Cegli, I. Conte
    Year: 2025

 

  • Title: 3D Rotary Wet-Spinning (RoWS) Biofabrication Directly Affects Proteomic Signature and Myogenic Maturation in Muscle Pericyte–Derived Human Myo-Substitute
    Authors: A. Reggio, C. Fuoco, F. de Paolis, M. Costantini, C. Gargioli
    Year: 2025

 

  • Title: Cross-Linking Mass Spectrometry to Capture Protein Network Dynamics of Cell Membranome
    Authors: L. Santorelli, M. Costanzo, S. Petrosino, M. Ruoppolo, P. Grumati
    Year: 2025

 

  • Title: Mitochondrial mechanotransduction through MIEF1 coordinates the nuclear response to forces
    Authors: P. Romani, G. Benedetti, M. Cusan, G. Martello, S. Dupont
    Year: 2024

 

Conclusion


Dr. Paolo Grumati’s career exemplifies the integration of scientific inquiry with practical application, as his research continues to shed light on crucial molecular processes that affect human health. His contributions to the understanding of autophagy have opened new avenues for potential therapeutic strategies in treating genetic disorders and other diseases. As he continues to lead research at TIGEM and teach at the University of Naples, Dr. Grumati’s legacy is set to influence the fields of molecular biology, genetics, and medicine for years to come. His work remains pivotal in advancing both the theoretical understanding of disease mechanisms and the development of new therapeutic approaches, positioning him as a key figure in modern biomedical research.

Dinh Phong Son | CircRNA | Best Researcher Award

Dr. Dinh Phong Son | CircRNA | Best Researcher Award

Dr. DINH PHONG SON, DUYTAN UNIVERSITY, Vietnam.

Dr. Dinh Phong Son is a researcher specializing in laboratory medicine techniques with a Ph.D. in Molecular Medicine from Guangxi Medical University, China. His research focuses on modern molecular biology techniques, particularly the identification of potential biomarkers for early disease diagnosis and targeted therapy. His studies explore systemic diseases such as diabetes, cardiovascular diseases, and cancer, emphasizing gene editing technologies like CRISPR/Cas9. His recent publications contribute to the understanding of regulatory RNA networks and their implications in disease mechanisms, providing a foundation for future studies on molecular interactions and targeted drug development.

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🎓 Early Academic Pursuits

From the very beginning of my academic journey, I was deeply fascinated by the intricate mechanisms of life at a molecular level. My pursuit of knowledge led me to study Laboratory Medicine Technique at Hue University of Medicine and Pharmacy, Vietnam, where I honed my expertise in diagnostic methodologies and medical laboratory sciences. With an insatiable thirst for discovery, I furthered my education by earning a Doctorate (Ph.D.) in Molecular Medicine from Guangxi Medical University, China. This academic foundation set the stage for my dedication to the field of molecular biology, shaping my vision to explore genetic markers and innovative diagnostic tools.

👩‍🎓 Professional Endeavors

Currently, I serve at Duy Tan University, College of Medicine and Pharmacy, where I actively contribute to research, mentoring, and academic discourse. My work primarily revolves around molecular diagnostics, genetic analysis, and disease biomarker identification, aiming to bridge the gap between molecular biology and clinical applications. With advancements in next-generation sequencing (NGS) and bioinformatics databases, I continually seek new pathways to enhance the precision of disease detection and treatment strategies.

🧪 Contributions and Research Focus

My research is deeply rooted in molecular medicine, focusing on the identification of potential biomarkers for the early diagnosis of systemic diseases such as diabetes, cardiovascular diseases, stroke, and cancer. My investigations also extend to exploring gene targets for pharmacological studies, assisting in drug development through the modulation of gene expression using cutting-edge technologies like CRISPR/Cas9, gene overexpression, and silencing approaches. Furthermore, my work delves into the complex LncRNA/CircRNA/miRNA/gene/protein-drug interaction networks, paving the way for theoretical models that could revolutionize targeted therapy research.

 

💎 Impact and Influence

The impact of my research extends beyond academia, as it plays a crucial role in early disease screening, personalized medicine, and therapeutic advancements. By leveraging molecular networks, I aim to facilitate the development of precise diagnostic tools and gene-targeted interventions, significantly improving patient outcomes. My research findings have the potential to reshape biomedical applications and create avenues for innovative treatment strategies across various diseases.

🌟 Legacy and Future Contributions

Looking ahead, my aspirations remain steadfast in expanding molecular biology research, particularly in uncovering novel biomarkers and refining gene-editing techniques. As the field continues to evolve, I hope to contribute to the refinement of therapeutic gene modifications and biomarker-based diagnostics. With sustained efforts and collaborations, I envision a future where my research serves as a cornerstone for breakthroughs in precision medicine, targeted gene therapy, and advanced molecular diagnostics.

👨‍💼 Professional Collaborations and Memberships

As an active member of the scientific community, I engage in collaborations and professional affiliations to foster knowledge exchange and multidisciplinary research. My involvement in editorial appointments, consultancy projects, and industry partnerships enables me to extend my research impact, ensuring that molecular medicine continues to advance for the benefit of humanity.

 

Publication

  • Title: Identification and assessment of hub genes and miRNAs coregulatory associated with immune infiltrations and drug interactions in latent tuberculosis based on Microarray Data analysis, molecular docking, and dynamic simulation
    Authors: PhongSon Dinh, ChauMyThanh Tran, ThiPhuongHoai Dinh, Hai-Anh Ha, Aigul Utegenova, Awais Ali, Abdulaziz Alamri
    Year: 2025

 

  • Title: Hsa_circRNA_0000284 acts as a ceRNA to participate in coronary heart disease progression by sponging miRNA-338-3p via regulating the expression of ETS1
    Authors: PhongSon Dinh, ChauMyThanh Tran, ThiPhuongHoai Dinh, Awais Ali, ShangLing Pan
    Year: 2024

 

  • Title: Potential diagnostic value of serum microRNAs for 19 cancer types: a meta-analysis of bioinformatics data
    Authors: ChauMyThanh Tran, PhongSon Dinh
    Year: 2024

 

  • Title: Identification of hsa_circ_0001445 of a novel circRNA-miRNA-mRNA regulatory network as potential biomarker for coronary heart disease
    Authors: PhongSon Dinh, JunHua Peng, ThanhLoan Tran, DongFeng Wu, ChauMyThanh Tran, ThiPhuongHoai Dinh, ShangLing Pan
    Year: 2023

 

  • Title: Construction of miRNAs and gene expression profiles associated with ischemic cardiomyopathy: Bioinformatics analysis
    Authors: PhongSon Dinh, Jun-Hua Peng, ChauMyThanh Tran, ThanhLoan Tran, Shang-Ling Pan
    Year: 2022

 

Conclusion

Dr. Son’s research plays a crucial role in advancing molecular biology by identifying key biomarkers and regulatory networks for disease screening and treatment. His work in gene-targeted therapy and RNA interaction networks lays the groundwork for future innovations in precision medicine. Despite challenges in resources and time, his commitment to molecular research aims to drive further advancements in understanding and treating complex diseases.

Shilin Luo | Neurogenetics and Molecular Neuroscience | Best Researcher Award

Prof. Shilin Luo | Neurogenetics and Molecular Neuroscience | Best Researcher Award

Prof. Shilin Luo, Xiangya Hospital, Central South University, China.

Dr. Shilin Luo is a leading expert in neuropharmacology and medicinal chemistry, with a strong academic background in traditional Chinese medicine and modern pharmacology. His research focuses on the pathogenesis of neurodegenerative diseases and the development of innovative drug therapies. Through his work at Xiangya Hospital, Central South University, and previous research at Emory University, he has made significant contributions to understanding neurological disorders. His studies on animal models and risk genes have paved the way for novel treatment strategies, earning him international recognition.

Profile

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🎓 Early Academic Pursuits

Dr. Shilin Luo’s journey into the world of medical science began with a deep-rooted passion for understanding the complexities of neurological diseases. He earned his Bachelor’s degree in Chinese Materia Medica from Shenyang Pharmaceutical University, where he developed a strong foundation in traditional Chinese medicine and pharmacology. With an insatiable thirst for knowledge, he further pursued a Ph.D. in Medicinal Chemistry at China Pharmaceutical University, specializing in the research of active ingredients in natural products. Under the mentorship of Prof. Wencai Ye, a distinguished scholar, Dr. Luo honed his expertise in medicinal chemistry, paving the way for groundbreaking discoveries in neuropharmacology.

👨‍🎓 Professional Endeavors

To deepen his expertise, Dr. Luo embarked on postdoctoral research at Emory University’s School of Medicine in the Department of Pathology and Laboratory Medicine. Working under the esteemed Prof. Keqiang Ye, he focused on neurobiology and neuropharmacology, contributing significantly to the understanding of neurodegenerative diseases. His research provided novel insights into the molecular mechanisms underlying neurological disorders, positioning him as a leading figure in the field. He later took on a pivotal role as a professor in the Department of Neurology at Xiangya Hospital, Central South University, where he continues to mentor young scientists and advance medical research.

🧪 Contributions and Research Focus

Dr. Luo’s research is primarily dedicated to uncovering the pathogenesis of neurodegenerative diseases and developing therapeutic interventions. His work in animal models of pathogenic and risk genes for neurological disorders has been instrumental in identifying potential drug targets. By integrating traditional Chinese medicine with modern pharmacology, he has contributed to the development of innovative neuroprotective agents. His studies on the molecular mechanisms of neuronal degeneration have led to promising advancements in combating conditions such as Alzheimer’s and Parkinson’s disease.

🏆 Accolades and Recognition

Throughout his career, Dr. Luo has been widely recognized for his groundbreaking contributions to neuropharmacology. His research has been published in high-impact scientific journals, earning him international acclaim. His dedication to scientific excellence has garnered prestigious awards, and he is frequently invited to deliver keynote lectures at global conferences. His work continues to inspire fellow researchers, solidifying his reputation as a distinguished scientist in neurological drug development.

🏰 Impact and Influence

Dr. Luo’s impact extends beyond the laboratory, as he actively contributes to the medical community through mentorship and collaboration. His efforts in integrating traditional Chinese medicinal principles with cutting-edge pharmacological approaches have opened new avenues for drug discovery. His research findings have not only influenced academic discourse but have also laid the groundwork for potential clinical applications, bringing hope to patients suffering from neurodegenerative diseases.

⚛️ Legacy and Future Contributions

As a visionary scientist, Dr. Luo continues to push the boundaries of neurological research. His commitment to translational medicine aims to bridge the gap between laboratory discoveries and clinical applications. By fostering interdisciplinary collaborations and mentoring the next generation of researchers, he is shaping the future of neuropharmacology.

 

Publication

  • Disease-modifying therapies for Alzheimer’s disease: Clinical trial progress and opportunity
    Authors: Yujie Zhang, Jie Chen, Yanru Li, Bin Jiao, Shilin Luo
    Year: 2025

 

  • The role of the probiotic Akkermansia muciniphila in brain functions: insights underpinning therapeutic potential
    Authors: Ruiling Xu, Yuxuan Zhang, Shurui Chen, Yaohui Zeng, Xuan Fu, Ti Chen, Shilin Luo, Xiaojie Zhang
    Year: 2023

 

  • Nonviral delivery systems for antisense oligonucleotide therapeutics
    Authors: Si Huang, Xin-Yan Hao, Yong-Jiang Li, Jun‑Yong Wu, Da-Xiong Xiang, Shilin Luo
    Year: 2022

 

  • The Microglial membrane receptor TREM2 mediates exosome secretion to promote phagocytosis of amyloid‐β by microglia
    Authors: Si Huang, Xiaoli Liao, Junyong Wu, Xiaojie Zhang, Yamin Li, Daxiong Xiang, Shilin Luo
    Year: 2022

 

  • Correction: Microglial ERK-NRBP1-CREB-BDNF signaling in sustained antidepressant actions of (R)-ketamine
    Authors: Not explicitly listed
    Year: 2021

 

  • Polygonatum sibiricum Polysaccharides Protect against MPP‐Induced Neurotoxicity via the Akt/mTOR and Nrf2 Pathways
    Authors: Si Huang, Haiyan Yuan, Wenqun Li, Xinyi Liu, Xiaojie Zhang, Daxiong Xiang, Shilin Luo, Guodong Zhang
    Year: 2021

 

  • Bushen-Tiansui Formula Improves Cognitive Functions in an Aβ1–42 Fibril-Infused Rat Model of Alzheimer’s Disease
    Authors: Chenxia Sheng, Panpan Xu, Xinyi Liu, Weijun Peng, Daxiong Xiang, Shilin Luo
    Year: 2020

 

  • Osteogenesis activity of isocoumarin a through the activation of the PI3K-Akt/Erk cascade-activated BMP/RUNX2 signaling pathway
    Authors: Not explicitly listed
    Year: 2019

 

  • Akt Phosphorylates NQO1 and Triggers its Degradation, Abolishing Its Antioxidative Activities in Parkinson’s Disease
    Authors: Shilin Luo, Seong Su Kang, Zhi-Hao Wang, Xia Liu, Julia X Day, Zhiping Wu, Junmin Peng, Daxiong Xiang, Wolfdieter Springer, Keqiang Ye
    Year: 2019

 

  • Puerarin-loaded PEG-PE micelles with enhanced anti-apoptotic effect and better pharmacokinetic profile
    Authors: Not explicitly listed
    Year: 2018

 

Conclusion

Dr. Luo’s unwavering dedication to neurological research continues to shape the future of neuropharmacology. His innovative approach, combining traditional medicinal insights with modern scientific advancements, has the potential to revolutionize drug development for neurodegenerative diseases. As a mentor, researcher, and pioneer in his field, his contributions will leave a lasting impact on both academia and clinical medicine, offering hope for more effective treatments in the years to come.

 

Hamid khan | Molecular and Cellular Neuroscience | Young Scientist Award

Mr.Hamid khan | Molecular and Cellular Neuroscience | Young Scientist Award

Mr. Hamid khan Icahn School of Medicine at Mount Sinai, New York Pakistan

Hamid Khan is a dedicated researcher and educator who recently completed his PhD in Biotechnology, specializing in Human Molecular Genetics. His academic journey includes a strong foundation in biological sciences, evidenced by his educational background ranging from a BSc to a PhD, with a focus on genetic analysis of rare congenital disorders. His doctoral research has provided insights into the genetic basis of autism spectrum disorder (ASD) and oculocutaneous albinism, contributing significantly to the understanding of these conditions.

profile

scholar

🎓 Education

PhD in Biotechnology (Human Molecular Genetics)International Islamic University Islamabad, Pakistan & University of Toronto, Canada (2018-2024).MS/M.Phil in Biotechnology (Human Molecular Genetics)International Islamic University Islamabad, Pakistan (2016-2018).M.Sc in ZoologyHazara University Mansehra, KPK, Pakistan (2011-2013).B.Sc in Biological Science (Botany, Zoology, Chemistry)University of Peshawar, Pakistan (2008-2010).H.S.S.C Pre-Medical
Peshawar Board, Pakistan (2006-2008)S.S.C Science SubjectsPeshawar Board, Pakistan (2004-2006).B.Ed in Education
Sarhad University of Science & Information Technology (2014).CT Certified TeacherAllama Iqbal Open University (2016).

🔬 Research Experience

Researcher at Biomolecular Genetic Engineering Lab, International Islamic University Islamabad (4 years).Research Associate in Pak-US Science and Technology Cooperation Program (1 year).Researcher in MiND Laboratory, Campbell Family Mental Health Research Institute, Toronto, Canada (6 months)

💼 Work Experience

Visiting Lecturer at Department of Biological Sciences, IIUI (3 years).Lecturer at IQRA College of Technology, IIUI (2 years)

 

🛠️ Skills

Laboratory Skills: PCR, NGS data analysis, Microarray, Gene Cloning, Cell Culturing, etc.Computer Skills: Python, Sentieon, Verseq, Exomiser, Excel, PowerPoint, Word.

🏆 Awards

IRSIP Award from the Higher Education Commission (HEC) Pakistan.First position holder in PhD coursework.Selected as Research Associate in a Pak-US project.

🌍 Collaborations

Currently working with three international and several national collaborations.

📚 Publications

  1. Title: Biallelic variants identified in 36 Pakistani families and trios with autism spectrum disorder
    Authors: Hamid Khan, Ricardo Harripaul, Anna Mikhailov, Sumayah Herzi, …
    Year: 2024

 

  1. Title: Elucidating the clinical and genetic spectrum of inositol polyphosphate phosphatase INPP4A-related neurodevelopmental disorder
    Authors: Lettie E Rawlins, Reza Maroofian, Stuart J Cannon, Muhannad Daana, Mina Zamani, Shamsul Ghani, …
    Year: 2024

 

  1. Title: Nigella sativa extract abrogates traumatic brain injury-induced memory impairment in adult mice
    Authors: RU Khan, SM Jawad, MM Kiyani, SA Shah, S Bashir, Hamid Khan
    Year: 2024

 

  1. Title: Mutational spectrum associated with oculocutaneous albinism and Hermansky-Pudlak syndrome in nine Pakistani families
    Authors: J Khan, S Asif, S Ghani, Hamid Khan, MW Arshad, SA Khan, S Lin, EL Baple, …
    Year: 2024

 

  1. Title: An Update on Recent Advancement in Autism Spectrum Disorder Treatment Strategies
    Authors: Hamid Khan, M Uzair, H Riaz, B Khan, MI Shabbir
    Year: 2023

Conclusion

Hamid Khan’s profile illustrates a strong commitment to advancing the field of biotechnology through research and education. His focus on the genetic underpinnings of rare disorders positions him as a valuable contributor to both academic and clinical settings. With a proven track record of research publications and collaborative projects, he is poised to make significant impacts in the realm of human genetics and molecular biology. His dedication to teaching and nurturing student curiosity further underscores his potential as an educator and mentor. As he seeks new opportunities, his combination of technical expertise, research experience, and passion for education will undoubtedly enable him to excel and inspire in any dynamic academic or research environment.