Miao Zhou | Precision Medicine | Best Researcher Award

Miao Zhou | Precision Medicine | Best Researcher Award

Prof. Miao Zhou at Guangdong Provincial People’s Hospital, China.

Dr. Miao Zhou is a distinguished oral and maxillofacial specialist, currently serving as Chief Physician and Associate Director at the Stomatology Department of Guangdong Provincial People’s Hospital. He is also a supervisor of postgraduate and postdoctoral researchers. An innovator in oral regenerative medicine, he founded the 3D Bioprinting and Regenerative Medicine Branch of the Guangdong Society of Biomedical Engineering. His pioneering research bridges clinical practice and cutting-edge biotechnology, advancing solutions for complex craniofacial conditions. With deep expertise in biomaterials, stem cells, and exosomes, Dr. Zhou continues to drive impactful research and medical education in the fields of maxillofacial rehabilitation and tissue engineering.

Publication Profile 

Scopus

Education

Dr. Miao Zhou earned his Ph.D. in 2009 from Peking University, one of China’s top-tier institutions, where he focused on maxillofacial rehabilitation using functional biomaterials and tissue engineering. His doctoral thesis explored clinical solutions for oral and maxillofacial defects through bio-integrative materials and scaffold systems. This strong academic foundation laid the groundwork for his later interdisciplinary innovations in regenerative medicine. In addition to his formal education, Dr. Zhou has participated in numerous continuing education programs and scientific collaborations, refining his expertise in 3D printing, stem cell therapy, and implantology, and training the next generation of specialists in advanced dental medicine.

Experience

With over 15 years of clinical and research experience, Dr. Miao Zhou is a Chief Physician and Associate Director at Guangdong Provincial People’s Hospital’s Stomatology Department. He supervises both postgraduates and postdocs, guiding translational research in tissue regeneration. He has served as Principal Investigator on numerous national and provincial-level projects, especially in the application of 3D-printed biomimetic scaffolds and exosomes. As a research leader, Dr. Zhou has pioneered innovations in craniomaxillofacial bone regeneration and soft tissue reconstruction. His clinical expertise, combined with academic leadership, positions him as a key influencer in oral regenerative therapy and personalized medical biomaterial development.

Awards 

Dr. Zhou has received numerous accolades, including the First Prize for Excellent Paper at the 6th China International & 9th China Academic Conference of Oral and Maxillofacial Surgery. His recognition reflects significant contributions to clinical and translational research. He has been honored by national bodies such as the National Natural Science Foundation of China and the Guangzhou Healthcare Innovation Program for his leadership in 3D bioprinting and regenerative medicine. As the founder of the 3D Bioprinting and Regenerative Medicine Branch under the Guangdong Society of Biomedical Engineering, his efforts have helped shape emerging medical frontiers and drive collaborative innovation.

Research Focus 

Dr. Zhou’s research centers on 3D-printed biomimetic scaffolds, stem cell therapy, and exosome-based interventions for oral and maxillofacial regeneration. His work explores how engineered tissues and cell-based therapies can reconstruct large jaw defects, restore bone function, and integrate with host tissues. His studies focus on osteoinduction, vascularization, and personalized medicine approaches using biocompatible materials. By leveraging cutting-edge printing technologies and biomolecular signaling pathways, Dr. Zhou aims to bridge gaps between laboratory research and clinical application—delivering impactful solutions for tissue repair and oral implantology. His interdisciplinary approach integrates biomaterials science, dentistry, and regenerative medicine to redefine patient care.

Publication Top Notes

  • An engineered M2 macrophage-derived exosomes-loaded electrospun biomimetic periosteum promotes cell recruitment, immunoregulation, and angiogenesis in bone regeneration
  • Osteogenically committed hUCMSCs-derived exosomes promote the recovery of critical-sized bone defects with enhanced osteogenic properties
  • 3WJ RNA Nanoparticles-Aptamer Functionalized Exosomes From M2 MacrophagesTarget BMSCs to Promote the Healing of Bone Fractures

Michael Harrison | Precision Medicine | Best Researcher Award

Michael Harrison | Precision Medicine | Best Researcher Award

Dr. Michael Harrison, UCSF, United States

Dr. Michael Harrison is a pioneering pediatric surgeon and fetal therapy expert. 🎓 He earned his B.A. from Yale (1965) and M.D. from Harvard Medical School (1969), followed by extensive surgical training at Massachusetts General Hospital and fellowships in pediatric surgery. 🏥 He joined UCSF in 1978, where he became a Full Professor and founded the Fetal Treatment Center. 👶 His groundbreaking work in fetal surgery has earned him numerous accolades, including the Golden Plate Award and presidency of the International Fetal Medicine and Surgery Society. 🌍 Now Professor Emeritus at UCSF, he continues to shape the field of pediatric surgery. ✨

Publication Profile

Scopus

Education

Dr. Michael Harrison 🎓 began his academic journey at Yale University (1961-1965), earning a B.A. before pursuing his M.D. in Medicine at Harvard Medical School (1965-1969) 🏥. He completed his surgical residency at Massachusetts General Hospital (1969-1971) and advanced his expertise as a Postdoctoral Fellow in Allergy & Immunology at the National Institute of Allergy and Infectious Disease (1971-1973) 🧬. Returning to Massachusetts General, he served as a Senior Resident (1973-1974) and Chief Resident (1974-1975) 🔬. Further specializing, he completed fellowships in Pediatric Surgery at Rikshospitalet (1975-1976) 🇳🇴 and Children’s Hospital of Los Angeles (1976-1978) 👶🩺.

Experience

Dr. Michael Harrison 🏥 has been a Founding Member of the International Fetal Medicine and Surgery Society (1981-present) 👶 and has served as its President at the Annual Meeting (1989, 2006) 🎤. He has contributed as a Committee Member for the Medical Advisory Committee of the American Association of Tissue Banks (1993-present) 🧬 and chaired the Committee on Fetal Therapy at APSA (1994-1996) 🏥. A Board Member of the International Society of the Fetus as Patient (1997-present) 🌍, he also consults for the MOMS study (2003-present) 🤰. Since 2010, he has been Vice President of the California Academy of Medicine 📚.

Awards

Dr. Michael Harrison 🏅 has received numerous prestigious honors, including the Golden Plate Award (1982, 1988) 🏆, the William E. Ladd Medal (2010) 🏅, and the Lifetime Achievement Award (2011) 🌟 from the International Fetal Medicine and Surgery Society. He was elected to the Institute of Medicine (2009) 📜 and honored with the Denis Browne Gold Medal (2013) 🏵️. As a celebrated lecturer, he has delivered keynote addresses worldwide 🌍, including at the Nobel Minisymposium on Fetal Medicine (1998) 🎤. His groundbreaking contributions in pediatric surgery have earned him global recognition and lasting influence in the field.

Research Focus

Dr. Michael R. Harrison is a pioneering surgeon and researcher in pediatric surgery and fetal therapy 🏥👶. His work focuses on maternal-fetal surgery, particularly for conditions like esophageal atresia and diaphragmatic hernia. He has contributed to the development of magnetic compression anastomosis 🧲 and other innovative minimally invasive surgical devices 🔬. His research advances the treatment of complex congenital disorders and improves outcomes for newborns. With numerous publications, he has significantly impacted pediatric device clinical trials 📊. Dr. Harrison’s groundbreaking contributions continue to shape the future of pediatric and fetal surgical care 🚼✨.

Publication Top Notes

Pediatric Device Clinical Trials Activity: 1999–2022

Lessons Learned From the First-In-Human Compassionate Use of Connect-EA™ in Ten Patients With Esophageal Atresia

Evaluation of a Magnetic Compression Anastomosis for Jejunoileal Partial Diversion in Rhesus Macaques

Sonographic Predictors of Survival in Fetal Diaphragmatic Hernia

Beyond the gut: spectrum of magnetic surgery devices

The Rearing of Maternal–Fetal Surgery: The Maturation of a Field from Conception to Adulthood

The novel application of an emerging device for salvage of primary repair in high-risk complex esophageal atresia

Esophageal Magnetic Compression Anastomosis in Esophageal Atresia Repair: A PRISMA-Compliant Systematic Review and Comparison with a Novel Approach

An experimental study on long term outcomes after magnetic esophageal compression anastomosis in piglets

Novel device for endoluminal esophageal atresia repair: First-in-human experience