Junfang Zheng | Molecular Biology Award | Best Researcher Award

Dr. Junfang Zheng | Molecular Biology Award | Best Researcher Award

Dr. Junfang Zheng, Capital medical university, China

Based on Dr. Junfang Zheng’s academic background, current and previous appointments, and honors and awards, he appears to be a strong candidate for the Research for Best Researcher Award. Here’s an evaluation of his qualifications:

Publication profile

Scopus

Education:

Dr. Zheng has a solid educational foundation with a B.M. in Traditional Chinese Medicine from Shanxi University of Chinese Medicine, followed by an M.Sc. in Diagnostics of Traditional Chinese Medicine from Beijing University of Chinese Medicine. His Ph.D. in Pathogenic Biology from Peking University further strengthens his expertise, indicating a robust background in both traditional and modern aspects of medical research.

Current Appointment:

Since 2006, Dr. Zheng has been a Professor in the Department of Biochemistry and Molecular Biology at Capital Medical University. This long-term position reflects his established career and significant contributions to his field.

Previous Appointments:

Dr. Zheng’s previous roles include a Visiting Fellow at the Medical University of Vienna and a Postdoctoral Fellow at Tsinghua University. These positions highlight his international experience and commitment to advancing his research in different academic environments.

Honors, Awards, and Grants:

Dr. Zheng has received multiple prestigious awards, including the Guanghua Fellowship from Peking University, the Eurasia Pacific Uninet Scholarship from Austria, and several funds and honors from Beijing and China. These recognitions underscore his high-impact research contributions and the esteem in which he is held within the academic community.

Publication Top Notes  

  • YTHDF3 phase separation regulates HSPA13-dependent clear cell renal cell carcinoma development and immune evasion 🧬 — Cancer Science, 2024, 0 citations
  • PDZK1 suppresses TNBC development and sensitizes TNBC cells to erlotinib via the EGFR pathway 🧪 — Cell Death and Disease, 2024, 0 citations
  • ARHGAP11A Is a Novel Prognostic and Predictive Biomarker Correlated with Immunosuppressive Microenvironment in Clear Cell Renal Cell Carcinoma 🔬 — International Journal of Molecular Sciences, 2023, 2 citations
  • GLUD1 suppresses renal tumorigenesis and development via inhibiting PI3K/Akt/mTOR pathway 🧫 — Frontiers in Oncology, 2022, 6 citations
  • Inhibitor tolerance and bioethanol fermentability of levoglucosan-utilizing Escherichia coli were enhanced by overexpression of stress-responsive gene ycfR 🔬 — Synthetic and Systems Biotechnology, 2021, 4 citations
  • Bioactive peptide apelin rescues acute kidney injury by protecting the function of renal tubular mitochondria 🧬 — Amino Acids, 2021, 11 citations
  • SDHB Suppresses the Tumorigenesis and Development of ccRCC by Inhibiting Glycolysis 🧪 — Frontiers in Oncology, 2021, 28 citations
  • iTRAQ-facilitated proteomic analysis of Bacillus cereus via degradation of malachite green 🔬 — Journal of Microbiology, 2021, 2 citations
  • Long noncoding RNA PENG upregulates PDZK1 expression by sponging miR-15b to suppress clear cell renal cell carcinoma cell proliferation 🧬 — Oncogene, 2020, 26 citations
  • ECHS1 suppresses renal cell carcinoma development through inhibiting mTOR signaling activation 🔬 — Biomedicine and Pharmacotherapy, 2020, 16 citations


Conclusion

Dr. Zheng’s extensive educational background, notable appointments, and numerous awards make him a highly suitable candidate for the Research for Best Researcher Award. His achievements and international experience align well with the criteria for such an award.

Aziza Aboulila | Biochemistry, Genetics and Molecular Biology | Best Researcher Award

Aziza Aboulila | Biochemistry, Genetics and Molecular Biology | Best Researcher Award

Prof Dr Aziza Aboulila, Genetics Department, Faculty of Agriculture, Kafrelsheikh University, Egypt, Egypt

Prof. Dr. Aziza Aboulila is a distinguished geneticist specializing in molecular genetics and biotechnology. She obtained her B.Sc. in Agricultural Sciences (Genetics) from Tanta University in 2004, followed by an M.Sc. in 2009 and a Ph.D. in 2012, both from Kafrelsheikh University, Egypt, where she is now a professor. Her research focuses on molecular genome analysis, gene expression, and the use of molecular markers for genome characterization. She has extensive expertise in DNA extraction, PCR, and electrophoresis. Prof. Aboulila’s contributions to genetic variation and phylogenetic studies are widely recognized. 🌾🔬📊👩‍🔬

Publication profile

google scholar

Education

Dr. Aziza Aboulila 🌱 pursued a B.Sc. in Agricultural Sciences (Genetics) from the Faculty of Agriculture, Tanta University, Kafr El-Sheikh, Egypt 🎓, graduating with an Excellent (Honour Degree) in June 2004. 🏆 Following this, Aziza Aboulila completed an M.Sc. in Genetics on February 23, 2009, at Kafrelsheikh University. 📚 The thesis focused on the Genetical Response for Gene Transfer and Somaclonal Variations of Some Plant Genera. 🌾 Later, on July 24, 2012, Aziza Aboulila earned a Ph.D. in Genetics from the same university, conducting Molecular Genetic Studies on Drought Tolerance in Rice (Oryza sativa L.) using SSR DNA Marker. 🌾🔬

Experience

Dr. Aziza Aboulila] is a highly experienced geneticist currently serving as a Professor in the Department of Genetics at the Faculty of Agriculture, Kafrelsheikh University, Egypt, with a career spanning over 18 years. 🌱🧬 He began as a Demonstrator in 2005 and advanced to Professor in 2022. His research interests lie in molecular genetics, biotechnology, and molecular genome analysis, using techniques such as PCR, electrophoresis, and DNA fingerprinting to characterize genomes. 🧫💻 He has extensive experience in gene expression analysis, genotoxicity studies, and the application of nanomaterials as alternative pesticides. 📊🌍 His work also involves the investigation of genetic variation in plant and animal populations and environmental pollution impacts. 🌿🔬

Research focus

Dr. AA Aboulila focuses on plant molecular genetics and pathology, with significant research on genetic diversity, disease resistance, and plant defense mechanisms. 🌿🔬 His work spans various crops, including wheat, barley, rice, sweet potato, and maize, investigating genetic variations and the molecular basis of resistance against pathogens like Puccinia striiformis and Magnaporthe oryzae. 🌾🦠 Dr. Aboulila employs molecular markers, such as SSR, RAPD, and SCoT, to study genetic polymorphisms and improve crop resilience. His research also explores innovative approaches to enhance plant immunity using growth regulators and other inducers. 🧬🛡️

Publication top notes

Variation in several pathogenesis-related (PR) protein genes in wheat (Triticum aestivum) involved in defense against Puccinia striiformis f. sp. tritici

Genetic Variability and Molecular Characterization of Some Local and Imported Mango Cultivars in Egypt

Efficiency of triple-SCoT primer in characterization of genetic diversity and genotype-specific markers against SSR fingerprint in some Egyptian barley genotypes

Genetic Diversity and Relationships among Some Barley Genotypes for Net Blotch Disease Resistance Using RAPD, SCoT and SSR Markers

Molecular Genetic Diversity and Efficient Plant Regeneration System Via Somatic Embryogenesis in Sweet Potato (Ipomoea batatas (L.) Lam.)

Role of silymarin induced rice immunity against blast pathogen Magnaporthe oryzae through regulation of resistance genes expression

BIOCHEMICAL AND MOLECULAR DIVERSITY AND THEIR RE-LATIONSHIP TO LATE WILT DISEASE RESISTANCE IN YEL-LOW MAIZE INBRED LINES

Evaluation of genetic polymorphism, genomic template stability, condition factor and hemato-biochemical parameters in response to slow reduction in water level during Nile 

Efficiency of plant growth regulators as inducers for improve systemic acquired resistance against stripe rust disease caused by Puccinia striiformis f. sp. tritici in wheat …

Degenotoxicity of pendimethalin contaminated clay soil by Pseudomonas resinovorans using anatomical, cytogenetic and biochemical analysis in Vicia faba plants