Mark Owusu Adjei | Genetics and Molecular Biology | Research Excellence Award

Mark Owusu Adjei | Genetics and Molecular Biology | Research Excellence Award

Nanjing Forestry University | China

Dr. Mark Owusu Adjei is a plant molecular biologist with over five years of research experience specializing in functional genomics, plant–microbe interactions, and stress physiology. His work integrates advanced techniques such as CRISPR/Cas9 genome editing, transcriptomics, pan-genomic analysis, protoplast transformation systems, and bioinformatics to address challenges in plant physiology and sustainable agriculture. He has led multiple research projects from concept to publication, contributing to over 20 peer-reviewed articles. His research focuses on understanding plant defense mechanisms, chlorophyll metabolism, microbial biocontrol strategies, and stress response pathways, with the broader goal of enhancing crop resilience and promoting sustainable agricultural systems.

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Citations
106
Documents
6
h-index
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Dmitry Zorov | Genetics and Molecular Biology | Excellence in Citation Achievement Award

Dmitry Zorov | Genetics and Molecular Biology | Excellence in Citation Achievement Award

МГУ имени М.В.Ломоносова | Russia

Dmitry B. Zorov is a distinguished researcher affiliated with Lomonosov Moscow State University, whose work spans biochemistry, genetics, molecular biology, and medicine. His research primarily focuses on mitochondrial function and pathology, ATP synthase activity, metabolic regulation, adipose tissue biology, and the molecular mechanisms underlying acute kidney injury and systemic disorders. He has also contributed significantly to studies on microbiome–metabolome interactions, neuroprotection, and the physiological impacts of trauma and metabolic imbalance. Zorov has authored numerous influential publications in leading scientific journals such as International Journal of Molecular Sciences and Biochemistry (Moscow), often collaborating with prominent researchers including Egor Y. Plotnikov and Ljubava D. Zorova. In recognition of his contributions to science, he was elected a member of Academia Europaea.

Citation Metrics (Scopus)

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Citations
20,149
Documents
247
h-index
53

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Featured Publications


The Potential for Using the Mechanism of Hypoxic Adaptation in Lower Eukaryotes

– International Journal of Molecular Sciences, 2026

Redox Modulation in Therapy of Cancer: Some Pros and Cons

– Scopus, 2026

Mitochondrial Reticulum in Skeletal Muscles: Proven and Hypothetical Functions

– Biochemistry Moscow, 2025

Adaptive and Pathological Changes of the Cardiac Muscle in a Mouse Model of Renocardiac Syndrome: The Role of Nestin-Positive Cells

– International Journal of Molecular Sciences, 2025

Hemorrhagic Shock and Mitochondria: Pathophysiology and Therapeutic Approaches

– Biologicheskie Membrany, 2025

Georgia Braliou | Genetics and Molecular Biology | Research Excellence Award

Georgia Braliou | Genetics and Molecular Biology | Research Excellence Award

University of Thessaly | Greece

Dr Braliou is a scientist specializing in Molecular Biology, Biochemistry, and Genetic Epidemiology. She obtained her academic training in Chemistry and later completed her PhD in Molecular Biology and Biochemistry through research conducted at leading European institutions, including the European Molecular Biology Laboratory and Radboud University Nijmegen. Her research primarily focuses on gene regulation mechanisms, including transcriptional control by nuclear receptors, cis-regulatory DNA elements, and epigenetic modifications. She has also contributed to understanding the regulation of hepcidin by hypoxia-induced factors during her postdoctoral work at the University of Thessaly. Expanding into computational biology and bioinformatics, her work integrates genetic epidemiology approaches, particularly in analyzing SNPs, gene expression, and GWAS data using statistical and computational methods.

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Citations
637

Documents
28

h-index
12


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Featured Publications

Featured Publications


Antibody tests in detecting SARS-COV-2 infection: a meta-analysis
Diagnostics

– 2020 — Cited by 334

Transport of hypoxia-inducible factor HIF-1α into the nucleus involves importins 4 and 7
Biochemical and Biophysical Research Communications

– 2009 — Cited by 127

2-Oxoglutarate-dependent oxygenases control hepcidin gene expression

– Journal of Hepatology, 2008 — Cited by 98

Antioxidant Activity of Leaf Extracts from Stevia rebaudiana Bertoni: A Systematic Review and Meta-Analysis

–Nutrients, 2023 — Cited by 505

Leukemic transformation by the v-ErbA oncoprotein entails constitutive binding to and repression of an erythroid enhancer in vivo

– The EMBO Journal, 1998 — Cited by 41

Mahmuda Siddika Shefa | Genetics and Molecular Biology | Research Excellence Award

Mahmuda Siddika Shefa | Genetics and Molecular Biology | Research Excellence Award

Gyeongsang National University | South Korea

Mahmuda Siddika Shefa is a dedicated biochemistry laboratory professional with strong expertise in molecular processes and experimental techniques. Through hands-on laboratory experience, she has developed a solid foundation in understanding the chemical mechanisms underlying biological systems. She is deeply passionate about scientific research, particularly in medical sciences, and is committed to expanding her knowledge while contributing to interdisciplinary advancements in the field.

Metric All Time Since 2021
Citations 2 21
h-index 1 1
i10-index 0 0
Google Scholar Impact
21
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Featured Publications

William Agbozo | Biochemistry, Genetics and Molecular Biology | Best Research Article Award

William Agbozo | Biochemistry, Genetics and Molecular Biology | Best Research Article Award

William Agbozo, Morehouse School of Medicine, Atlanta, GA 30310, USA. United States

William Kwaku Agbozo is a passionate Ghanaian biomedical researcher specializing in molecular and cell biology, particularly in the context of hemolysis-related complications in sickle cell disease and cerebral malaria. With a strong academic foundation from the University of Ghana, he has cultivated expertise through interdisciplinary training in physiology, biochemistry, and molecular sciences. Currently serving as a Research Scholar at Morehouse School of Medicine, Atlanta, he brings his research to life by utilizing advanced genomics and proteomics tools in both animal and human studies. His work has yielded peer-reviewed publications and international presentations, reflecting a commitment to translational science aimed at uncovering therapeutic targets. William has also made significant contributions as a lecturer at Central University, Ghana, mentoring students and guiding research projects. His career is driven by a desire to bridge clinical gaps in infectious and genetic diseases, focusing on real-world biomedical challenges in Africa and beyond.

Publication Profile

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Education

William Agbozo’s academic journey began at the University of Ghana, where he earned his Bachelor of Science in Biochemistry (2008–2012). He continued at the same institution to pursue a Master of Philosophy in Physiology (2013–2015), equipping him with in-depth knowledge of human physiological mechanisms. Motivated by a growing interest in translational biomedical research, he embarked on a PhD in Molecular and Cell Biology (2018–2024, Viva pending), also at the University of Ghana. Throughout his academic path, William has maintained a strong interdisciplinary focus—integrating molecular biology, physiology, and cell biology with practical research on diseases like sickle cell and malaria. His PhD was conducted under the prestigious West African Centre for Cell Biology of Infectious Pathogens (WACCBIP), supported by multiple international grants, where he gained valuable skills in omics technologies and disease modeling. His academic training reflects both scientific rigor and a deep-rooted commitment to addressing health burdens in Africa.

Experience

William Agbozo has over six years of academic and research experience. From 2017 to 2023, he worked as a Lecturer at the School of Medicine and Health Sciences, Central University, Accra, where he taught undergraduate physiology and supervised research and academic writing. In 2023, he transitioned to the Morehouse School of Medicine in Atlanta, USA, as a Research Scholar in the Department of Microbiology, Biochemistry & Immunology. At Morehouse, he is engaged in conceptualizing research ideas, contributing to grant proposals, and conducting laboratory experiments in molecular and translational research. He also leads data analysis and presents at major scientific meetings. His work spans across both African and U.S.-based biomedical institutions, reinforcing a global collaborative perspective. His experience reflects a balance of education, research, mentorship, and scientific communication, aimed at producing actionable insights for health systems managing genetic and infectious diseases.

Awards and Honors

William Agbozo has received several prestigious awards in recognition of his academic excellence and impactful research. He was awarded a PhD Fellowship (2018–2024) from the West African Centre for Cell Biology of Infectious Pathogens (WACCBIP) under the World Bank African Centres of Excellence (ACE) initiative. Between 2019 and 2023, he secured research funding support from the Sickle Cell Disease Genomics Network of Africa (SickleGenAfrica), funded by the National Heart, Lung, & Blood Institute (U54HL141011). His scientific aptitude also earned him a place in the US Exchange Visitor Program as a research scholar at Morehouse School of Medicine (2023–2025), under the National Institute of Neurological Disorders and Stroke (R01NS125775). These honors reflect both his research potential and his growing international reputation in the fields of sickle cell disease and molecular medicine. They have empowered him to explore groundbreaking discoveries using both human samples and experimental models.

Research Focus

William Agbozo’s research centers on the molecular mechanisms of hemolysis-mediated injury in diseases such as sickle cell disease (SCD) and human cerebral malaria (HCM). His work investigates how excess free heme contributes to acute kidney injury (AKI) and brain damage, using humanized sickle cell mouse models and post-mortem human samples. He applies cutting-edge genomics and proteomics to map signaling pathways and identify biomarkers that may serve as protective or therapeutic targets. Through his research, William aims to bridge molecular biology with translational applications, developing insights that could lead to novel treatments or interventions. His work is especially impactful in regions heavily burdened by malaria and genetic blood disorders. By collaborating across institutions in Ghana and the United States, he brings an interdisciplinary and international lens to pressing biomedical problems affecting both African and global populations.

Publication Top Notes

📄 Hydroxyurea Mitigates Heme-Induced Inflammation and Kidney Injury in Humanized Sickle Cell Mice. (2025)
📄 Circulating biomarkers associated with pediatric sickle cell disease. (2024)
📄 Assessing knowledge of sickle cell disease and health beliefs on premarital genetic screening among healthcare trainees at a tertiary institution: A cross‐sectional study. (2023)
📄 Sociodemographic and medical characteristics of liver cirrhosis deaths in a Ghanaian tertiary hospital. (2022)
📄 Phosphomolybdenum Blue Detection – A Review of Characteristics, Achievements, Challenges and Future Prospects. (2020)
📄 Frequencies and ethnic distribution of ABO and RhD blood groups in the Volta region of Ghana, towards effective blood bank services. (2022)
📄 Frequency of ABO/Rhesus (D) blood groupings and ethnic distribution in the Greater‐Accra region of Ghana, towards effective blood bank inventory. (2019)
📄 Neuregulin-1 attenuates hemolysis-mediated kidney injury in humanized sickle cell mice. (Submitted)

Shuang Guo | Biochemistry, Genetics and Molecular Biology | Best Researcher Award

Shuang Guo | Biochemistry, Genetics and Molecular Biology | Best Researcher Award

Dr Shuang Guo, Tsinghua University Affiliated Beijing Tsinghua Changgung Hospital: Beijing Tsinghua Changgung Hospital, China

Dr. Shuang Guo is a dedicated postdoctoral researcher at Beijing Tsinghua Changgung Hospital, affiliated with the School of Clinical Medicine at Tsinghua University. With a Ph.D. in Clinical Medicine from the prestigious Huazhong University of Science and Technology, Dr. Guo has contributed significantly to the field of cardiovascular and genetic diseases. Her multidisciplinary research approach bridges clinical practice with cutting-edge molecular science, emphasizing hereditary arrhythmias, hypertension, and vascular disorders. Dr. Guo has published influential articles in international journals and is actively involved in innovation, holding several patents related to vascular health and gastrointestinal treatments. As a passionate investigator and co-developer of novel diagnostic and therapeutic strategies, she consistently pushes the boundaries of translational medicine. Dr. Guo’s dedication to scientific excellence and patient-centered research continues to enhance understanding and treatment of complex hereditary and vascular diseases in China and beyond.

Publication Profile

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Education 

Dr. Shuang Guo earned her Ph.D. in Clinical Medicine from the Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, one of China’s top institutions in medical education and biomedical research. During her doctoral training, she cultivated a solid foundation in cardiovascular pathology, molecular diagnostics, and translational medicine. Her academic journey was marked by hands-on clinical exposure combined with deep exploration of hereditary diseases, enabling her to integrate lab-based discoveries with bedside care. The program offered her robust mentorship and multidisciplinary collaboration opportunities that enhanced her clinical insight and research acumen. This rigorous educational experience provided the basis for her continued research excellence and led directly to her postdoctoral appointment at Tsinghua University. Her academic background also includes comprehensive training in medical genetics, vascular physiology, and clinical trial design, which continues to inform her postdoctoral investigations into novel treatments and personalized care for cardiovascular and hereditary disorders.

Experience

Currently serving as a postdoctoral researcher at Beijing Tsinghua Changgung Hospital, affiliated with the School of Clinical Medicine, Tsinghua University, Dr. Shuang Guo focuses on vascular biology, hereditary cardiovascular diseases, and precision medicine. Her postdoctoral work includes conducting high-impact research, co-authoring clinical trials, and filing patents on molecular therapies for gastrointestinal and vascular diseases. She collaborates with a multidisciplinary team of clinicians, biologists, and bioengineers to translate laboratory findings into therapeutic solutions. Before her postdoc, she gained extensive research experience at Huazhong University of Science and Technology, where she contributed to translational cardiovascular studies and clinical case analyses at Union Hospital. Dr. Guo is also actively engaged in manuscript writing, grant applications, and patent development, underscoring her commitment to innovation and collaboration. Her professional journey demonstrates a strong intersection of research excellence and clinical relevance, with a focus on improving diagnostic and therapeutic outcomes in genetically mediated and vascular-related conditions.

Awards and Honors

While specific named awards are not listed, Dr. Shuang Guo’s contributions to the medical and scientific community are demonstrated through her leadership as first author in multiple peer-reviewed journals, co-first authorship in a major JACC publication, and her involvement in five innovative patents related to gastrointestinal and vascular health. Her research has garnered recognition in respected publications such as Genes, Journal of Vascular Surgery, and JACC: Basic to Translational Science, reflecting high scholarly merit. These achievements speak to her excellence in both foundational research and applied clinical studies. Dr. Guo’s role in inventing novel uses of inulin, identifying mutation genes associated with hypercholesterolemia, and contributing to the development of therapeutic applications for short-chain fatty acids highlights her contribution to innovation. Her growing reputation in cardiovascular and hereditary disease research underscores her role as a rising scientific leader. Future recognition is likely as her contributions continue to impact global healthcare.

Research Focus

Dr. Shuang Guo’s research is rooted in clinical and molecular investigation of hereditary cardiovascular and gastrointestinal diseases. Her primary focus areas include genetic arrhythmias, monogenic hypertension, vascular inflammation, and abdominal aortic aneurysms. She is particularly interested in translational research—bridging the gap between genetic findings and clinical applications. Her work explores the therapeutic potential of dietary fibers like inulin and microbiota-derived short-chain fatty acids in modulating immune responses and vascular health. Dr. Guo’s ongoing studies involve identifying novel genetic mutations linked to hypercholesterolemia and other inherited conditions. She applies molecular biology, clinical diagnostics, and bioinformatics to uncover mechanisms underlying disease progression. Her research also emphasizes the role of immune modulation in disease treatment, especially via regulatory T-cell activity in vascular disorders. Through multidisciplinary collaboration, she aims to develop minimally invasive strategies and precision-based therapies to improve patient care, focusing on personalized medicine in complex, genetically-influenced disease models.

Publication Top Notes

  • 📘 Pathogenesis and Clinical Characteristics of Hereditary Arrhythmia DiseasesGenes, 2024.

  • 📗 Selective Minimally Invasive Strategy for Acute Superior Mesenteric Artery ObstructionJournal of Vascular Surgery, 2025.

  • 📙 Propionate Alleviates Abdominal Aortic Aneurysm by Modulating Colonic Regulatory T-Cell Expansion and RecirculationJACC: Basic to Translational Science, 2022.

  • 📕 Research Advances in Monogenic Inherited Hypertension中国医学前沿杂志(电子版), 2024