Shouhong Wang | Regeneration | Best Researcher Award

Assoc. Prof. Dr. Shouhong Wang | Regeneration | Best Researcher Award

Assoc. Prof. Dr. Shouhong Wang, chengdu institute of biology, China

Assoc. Prof. Dr. Shouhong Wang is a researcher focused on organ/tissue regeneration, with expertise in the use of frog models (Xenopus) to study thyroid hormone (T3) signaling in developmental and regenerative processes. He earned a PhD in Zoology from the Chengdu Institute of Biology and completed a postdoc at the NICHD, NIH. His research aims to advance human regeneration and improve quality of life through understanding organ regeneration. Dr. Wang has published extensively and presented at numerous international conferences. He is a member of the American Thyroid Association, Chinese Society for Cell Biology, and more. 🐸🔬📚

 

 

Publication Profile

Scopus

Academic Qualifications

Assoc. Prof. Dr. Shouhong Wang’s academic journey includes a Postdoctoral Fellowship in Molecular Morphogenesis at NICHD, National Institutes of Health (2019), where he studied the role of thyroid hormone (T3) signaling in tail regeneration under the supervision of Yun-Bo Shi. He earned his PhD in Developmental Biology from Chengdu Institute of Biology, Chinese Academy of Sciences (2016-2018), researching embryo development and gene regulation in Microhyla fissipes. Dr. Wang also holds an MSc in Zoology (2013-2015) from the same institute, focusing on frog tail development and apoptosis. He completed his BSc in Animal Sciences at Sichuan Agricultural University (2009-2013).

Awards & Grants

Assoc. Prof. Dr. Shouhong Wang has been recognized for his academic excellence throughout his career. He received a scholarship three times during his studies at Sichuan Agricultural University (2009-2013) and was honored as an Outstanding Graduate in 2013. In 2015, he earned the Outstanding Student Academic Oral Report award from the Chinese Herpetological Society and was named a Merit Student by the Chinese Academy of Sciences (2015-2016). Additionally, Dr. Wang received the Excellence Award in Science Popularization from the Chinese Society for Cell Biology in 2015-2016, acknowledging his contributions to scientific communication.

 

 

Teaching Experience

Assoc. Prof. Dr. Shouhong Wang has a strong background in teaching and mentoring. He has tutored high school students, helping them develop a deeper understanding of biology and related subjects. Additionally, Dr. Wang has shared his expertise at various training organizations and welfare centers for children, contributing to their educational development. His dedication to teaching extends beyond the classroom, as he strives to inspire young minds and foster a passion for science, ensuring the next generation is equipped with the knowledge and skills to thrive.

 

 

Research Focus

Assoc. Prof. Dr. Shouhong Wang’s research is centered on the mechanisms of organ and tissue regeneration, with the aim of improving human regeneration processes and quality of life. By utilizing model animals, particularly the frog system, Xenopus, Dr. Wang explores the role of thyroid hormone (T3) signaling in developmental regulation of organ regeneration. His work is focused on understanding how thyroid hormone influences regeneration and utilizing knockout animals to investigate its effects. Ultimately, this research could contribute to advancements in repairing and replacing damaged human organs and tissues.

 

 

Publication Top Notes

  • “Dose-dependent toxic effects of triclosan on Rana omeimontis larvae: Insights into potential implications for neurodegenerative diseases” (Chen et al., 2025) 🧪
  • “Thyroid hormone receptor- and stage-dependent transcriptome changes affect the initial period of Xenopus tropicalis tail regeneration” (Wang et al., 2024) 🧬
  • “Protein arginine methyltransferase 1 regulates mouse enteroendocrine cell development and homeostasis” (Peng et al., 2024) 🧫
  • “Simplifying Genotyping of Mutants from Genome Editing with a Parallel qPCR-Based iGenotype Index” (Fu et al., 2024) 🔬
  • “Thyroid hormone receptor knockout prevents the loss of Xenopus tail regeneration capacity at metamorphic climax” (Wang et al., 2023) 🦎
  • “Liver development during Xenopus tropicalis metamorphosis is controlled by T3-activation of WNT signaling” (Tanizaki et al., 2023) 🐸
  • “Comparative Analysis of Transcriptome Profiles Reveals Distinct and Organ-Dependent Genomic and Nongenomic Actions of Thyroid Hormone in Xenopus tropicalis Tadpoles” (Wang et al., 2023) 🌱
  • “Essential and subtype-dependent function of thyroid hormone receptors during Xenopus metamorphosis” (Shi et al., 2023) 📚
  • “Osteological development of a small and fast metamorphic frog, Microhyla fissipes” (Zhang et al., 2021) 🦴

 

Zalike Keskin Erdogan | Tissue Engineering | Best Researcher Award

Dr. Zalike Keskin Erdogan | Tissue Engineering | Best Researcher Award

Dr. Zalike Keskin Erdogan, Imperial College London, United Kingdom

Dr. Zalike Keskin Erdogan, PhD, is a Postdoctoral Research Associate at Imperial College London, specializing in microfluidic encapsulation of biosensors and tissue engineering. With a background in biomedical engineering and extensive experience in cell culture and biomaterials, she has led projects, authored numerous publications, and presented at international conferences. Dr. Keskin Erdogan’s research focuses on developing innovative solutions for regenerative medicine, particularly in neural tissue engineering and wound healing. She is an active member of several professional societies and has received prestigious awards for her contributions. 🧪🔬📚

 

Publication Profile:

Google scholar

Education:

Dr. Zalike Keskin Erdogan’s academic journey reflects her dedication to advancing biomedical sciences. She earned her PhD in Medical Sciences from University College London, UK, specializing in neural tissue engineering with hydrogel-phosphate glass fiber constructs. During her doctoral studies, she published extensively, presented at international conferences, and received prestigious scholarships and travel funds. Her MSc in Biomaterials and Tissue Engineering from Ege University, Turkey, showcased her prowess in bioartificial skin development, while her BEng in Bioengineering laid the foundation for her mechanical characterization expertise. Dr. Keskin Erdogan’s academic achievements exemplify her commitment to pushing the boundaries of bioengineering. 🎓🔬📚

 

Professional Experience:

Dr. Zalike Keskin Erdogan, PhD, is currently a Postdoctoral Research Associate at the Department of Chemical Engineering, Imperial College London, UK. Her expertise lies in the innovative field of microfluidic encapsulation, where she leads a project focusing on whole cell biosensors for co-culturing with mammalian cells and utilizing flow cytometry. With prior roles as a Research Assistant at Izmir Economy University and a Graduate Assistant at Ege University, Turkey, Dr. Keskin Erdogan has honed her skills in biomedical and bioengineering research. She actively mentors students, contributes to academic publications, and explores novel applications of hydrogel-based biomaterials. 🧪🔬📝

 

Research Focus:

Dr. Zalike Keskin Erdogan’s research focus encompasses a wide range of areas within biomedical engineering and biomaterials science. Her work spans the development and characterization of novel biomaterials for various applications, including skin tissue engineering, drug delivery systems for glaucoma treatment, and scaffold design for bone defect treatment. Additionally, she investigates the utilization of bioprinted tissue constructs for neural injury repair and explores the implications of different substrates on cellular response, such as astrocytes. Dr. Keskin Erdogan’s multidisciplinary research endeavors aim to address critical challenges in regenerative medicine and tissue engineering, ultimately contributing to advancements in healthcare. 🧬🔬🩺

Publication Top Notes:

Novel keratin modified bacterial cellulose nanocomposite production and characterization for skin tissue engineering

Recent advances in drug delivery systems for glaucoma treatment

SIS/aligned fibre scaffold designed to meet layered oesophageal tissue complexity and properties

Crosslinking of poly (vinyl alcohol) nanofibres with polycarboxylic acids: Biocompatibility with human skin keratinocyte cells

A review of functionalised bacterial cellulose for targeted biomedical fields

Poly-ε-caprolactone/fibrin-alginate scaffold: a new pro-angiogenic composite biomaterial for the treatment of bone defects

Utilization of GelMA with phosphate glass fibers for glial cell alignment

Modular orthopaedic tissue engineering with implantable microcarriers and canine adipose-derived mesenchymal stromal cells

Therapeutic Application of an Ag-Nanoparticle-PNIPAAm-Modified Eggshell Membrane Construct for Dermal Regeneration and Reconstruction

Inclusion of calcium phosphate does not further improve in vitro and in vivo osteogenesis in a novel, highly biocompatible, mechanically stable and 3D printable polymer