Panpan Pan | Marine Science | Best Researcher Award

Assist. Prof. Dr. Panpan Pan | Marine Science | Best Researcher Award

Assist. Prof. Dr. Panpan Pan, Marine College, Shandong University, China.

Dr. Panpan Pan is an Assistant Professor at Marine College, Shandong University, China. She specializes in marine biomaterials, tissue regeneration, and high-value utilization of marine biological resources. With a Ph.D. in Inorganic Chemistry from Fudan University, she has received numerous accolades, including the Science and Technology Award of China Business Federation. Her high-impact Q1 publications focus on biomedical engineering, bone repair, and nanomaterials, making her a distinguished scholar in her field. ๐Ÿ†

Profile

SCOPUS ID

๐ŸŽ“ Early Academic Pursuits

Dr. Panpan Pan embarked on her academic journey with a strong foundation in Polymer Materials and Engineering at Liaocheng University, where she earned her B.Sc. in 2013. She further honed her expertise with an M.Sc. in Biomedical Engineering from Fuzhou University in 2016, followed by a Ph.D. in Inorganic Chemistry from Fudan University in 2021 under the guidance of Prof. Yonghui Deng. Her educational background reflects a multidisciplinary approach, integrating chemistry, materials science, and biomedical engineering.

๐Ÿ’ผ Professional Endeavors

Dr. Pan currently serves as an Assistant Professor at the Marine College, Shandong University, a role she has held since July 2021 under the leadership of Prof. Jingdi Chen. Prior to this, she gained hands-on research experience as a Research Assistant at Changhai Hospital of Shanghai in the Department of Trauma Orthopedics (2016-2018), where she contributed to groundbreaking advancements in orthopedic treatments.

๐Ÿ”ฌ Contributions and Research Focus

Dr. Pan’s research revolves around the high-value utilization of marine biological resources, focusing on tissue repair, regeneration, bone organs, and chronic wound healing. She has significantly contributed to:

  • Extraction of biologically active substances from marine shellfish
  • Bone and denture repair using abalone shells
  • Self-assembly of oyster polypeptides
  • Design of functional porous composites for drug delivery
  • Development of hydrogels for cartilage regeneration

โœจ Awards and Recognitions โœจ

Dr. Panโ€™s exceptional contributions have earned her numerous prestigious awards, including:

  • 2024 Science and Technology Award of China Business Federation (Third Prize)
  • 2024 National First Prize of National Student Life Science Competition (Instructor)
  • 2024 BMT Outstanding Young Scholar in Biomaterials and Medical Translation
  • 2023 China Nonmetallic Mining Science and Technology Award
  • 2023 China International Internet+ Student Innovation and Entrepreneurship Competition (National Gold Medal)
  • 2022 National Second Prize in the National Student Energy Conservation and Emission Reduction Competition
  • 2021 Outstanding Graduate, Shanghai

๐ŸŒ Impact and Influence

Her contributions have led to cutting-edge advancements in biomaterials for medical applications. She has co-authored several high-impact research publications, some of which have been recognized as ESI Highly Cited Papers. Her work in photothermal antibacterial materials, bioactive scaffolds for bone regeneration, and smart drug delivery systems has significantly influenced modern biomedical engineering.

๐Ÿ“š Academic Citations

Dr. Panโ€™s research is widely recognized, with publications in top-tier journals such as:

  • Chemical Engineering Journal (IF = 13.3)
  • Advanced Science (IF = 14.3)
  • Bioactive Materials (IF = 18.0)
  • Advanced Composites and Hybrid Materials (IF = 23.2)
  • Small (IF = 13.0)

Her work on magnetic mesoporous polymer microspheres, nanocellulose, and injectable hydrogels has been highly cited in the scientific community, further solidifying her reputation as a leading researcher in biomaterials.

๐Ÿ”ฎ Future Directions & Legacy

  • Expand research on marine-derived biomaterials for advanced medical applications
  • Enhance the biocompatibility and efficiency of engineered scaffolds for tissue regeneration
  • Develop more efficient, sustainable, and cost-effective biomedical solutions using marine resources
  • Continue mentoring the next generation of researchers and fostering scientific collaborations worldwide

Her dedication to multidisciplinary research and commitment to scientific excellence ensure that she will remain a pioneer in biomaterials and regenerative medicine for years to come

Publications Top Notes

Erratum
Retraction notice to โ€œConstruction of chitosan-based asymmetric antioxidant and anti-inflammatory repair film for acceleration of wound healingโ€
Journal: International Journal of Biological Macromolecules
Year: 2025

Article
Abalone shells bioenhanced carboxymethyl chitosan/collagen/PLGA bionic hybrid scaffolds achieving biomineralization and osteogenesis for bone regeneration
Journal: International Journal of Biological Macromolecules
Year: 2024
Citations: 1 ๐Ÿ“š

Review
Principles and Design of Bionic Hydrogel Adhesives for Skin Wound Treatment
Journal: Polymers
Year: 2024
Citations: 2 ๐Ÿ“˜

Article
Self-Healing Conductive Hydrogels with Dynamic Dual Network Structure Accelerate Infected Wound Healing via Photothermal Antimicrobial and Regulating Inflammatory Response
Journal: ACS Applied Materials and Interfaces
Year: 2024
Citations: 4 ๐Ÿ“–

Article
Nanoengineered hydrogels as 3D biomimetic extracellular matrix with injectable and sustained delivery capability for cartilage regeneration
Journal: Bioactive Materials
Year: 2023
Citations: (ESI Highly Cited Papers)
Citations: 57

Article
A Facile Construction of Bifunctional Core-Shell Magnetic Fe3O4@YVO4:Eu3+ Fluorescent Microspheres for Latent Fingerprint Detection
Journal: Journal of Colloid and Interface Science
Year: 2022
Citations: ๐Ÿ“– 30
Impact Factor: 9.4, Q1
Note: Cover Paper ๐Ÿ“ฐ

Article
Recent Advances in Multifunctional Microneedle Patches for Wound Healing and Health Monitoring
Journal: Advanced Nanobiomed Research
Year: 2022
Citations: ๐Ÿ“šย 6
Impact Factor: 4, Q2 ๐ŸŒŸ