Liu Rurui – Computational Biophotonics Methods – Best Researcher Award

Liu Rurui - Computational Biophotonics Methods - Best Researcher Award

Research Institute of Highway Ministry of Transport - China

AUTHOR PROFILE

SCOPUS

EARLY ACADEMIC PURSUITS ✨

Liu Rurui embarked on his academic journey at Tsinghua University, where he pursued a dual degree in Civil Engineering and Business Administration. Excelling in his studies, he consistently ranked among the top students, earning multiple prestigious scholarships, including the National Scholarship. His early research focused on civil engineering structures, laying a strong foundation for his future contributions to the field.

PROFESSIONAL ENDEAVORS 🎓

Currently a doctoral researcher at Tsinghua University, Liu Rurui has immersed himself in advanced civil engineering projects. His research delves into Ultra-High Performance Concrete (UHPC) structures, seismic performance of large-span slab-wall systems, and sustainable construction materials. His professional journey includes collaborations with industry leaders and contributions to major national projects.

CONTRIBUTIONS AND RESEARCH FOCUS 🔬

Liu Rurui's research is centered on innovative structural materials and their applications in engineering. His work on hybrid fiber-reinforced composites has introduced groundbreaking solutions to crack resistance and structural durability. He has authored multiple peer-reviewed papers in high-impact journals, addressing the mechanical performance of UHPC and novel construction techniques, influencing the next generation of civil engineering advancements.

ACCOLADES AND RECOGNITION 🏆

Throughout his academic career, Liu Rurui has received numerous accolades, including the prestigious Mao Yisheng Science and Technology Award. Recognized for his excellence in research and leadership, he has been honored as an Outstanding Communist Party Member at Tsinghua University. His achievements in engineering education and student mentorship have further solidified his reputation in academia.

IMPACT AND INFLUENCE 💡

Liu Rurui's research has had a significant impact on the field of structural engineering. His contributions to the development of high-performance and sustainable building materials have influenced construction practices in China and beyond. By integrating theoretical advancements with practical applications, he has bridged the gap between academia and industry, inspiring fellow researchers and engineers.

LEGACY AND FUTURE CONTRIBUTIONS 🔄

Looking ahead, Liu Rurui aims to continue pushing the boundaries of structural engineering. His future research will focus on resilient and eco-friendly construction methods, contributing to the sustainable development of modern infrastructure. With a vision for innovation and a commitment to excellence, he is set to leave a lasting legacy in the engineering community.

NOTABLE PUBLICATION

Title: Experimental study on the mechanical properties of non-reinforced UHPC element under biaxial stress states
Authors: R. Liu, Rurui; R. Ding, Ran; X. Nie, Xin; J. Fan, Jiansheng
Journal: Construction and Building Materials, 2024

 

Petr Lebedev- Clinical Biophotonics Applications – Excellence in Research Award

Petr Lebedev- Clinical Biophotonics Applications - Excellence in Research Award

Samara State Medical University - Russia

AUTHOR PROFILE

SCOPUS

ORCID

🎓 EARLY ACADEMIC PURSUITS

Petr Alekseevich Lebedev’s academic journey began at Samara State Medical Institute, where he pursued his passion for cardiology. His dedication to internal medicine and cardiovascular research led him to complete his Ph.D., focusing on innovative diagnostic techniques for cardiovascular diseases. His early academic training set the foundation for his expertise in cardiology, therapy, and medical diagnostics.

🏥 PROFESSIONAL ENDEAVORS

As the Chief of the Therapy Chair at Samara State Medical University and a Supervisor Cardiologist at Samara Regional Hospital, Lebedev has played a pivotal role in advancing cardiovascular medicine. His leadership in professional education and research has contributed to the training of countless medical professionals while improving patient care through innovative diagnostic and therapeutic approaches.

🔬 CONTRIBUTIONS AND RESEARCH FOCUS

Lebedev’s research primarily focuses on cardiovascular diagnostics, arterial hypertension, and cardiometabolic diseases. His groundbreaking studies on endothelial dysfunction, heart remodeling, and non-invasive diagnostic tools have led to the development of innovative methodologies, including Raman spectroscopy and autofluorescence-based cardiovascular assessments. His work continues to shape modern cardiology and internal medicine.

🏆 ACCOLADES AND RECOGNITION

His contributions to medicine have been recognized through prestigious awards, including Certificates of Honor from the Ministry of Health of Russia and the Samara Region. He has received the "Excellent Health Care Worker" badge and numerous accolades from medical societies for his outstanding achievements in cardiovascular research and education.

🌍 IMPACT AND INFLUENCE

Lebedev has significantly influenced the fields of cardiology and internal medicine through his leadership in international clinical trials and research collaborations. His work has helped refine global treatment protocols for hypertension, heart failure, and metabolic disorders, improving patient outcomes worldwide. His involvement in major scientific committees and editorial boards further enhances his impact on medical research.

📚 LEGACY AND FUTURE CONTRIBUTIONS

As a pioneer in cardiology and internal medicine, Lebedev’s legacy is built on his commitment to medical education, research, and innovation. His future work aims to integrate AI and advanced imaging techniques into cardiovascular diagnostics, ensuring better risk stratification and personalized treatment approaches. His continued contributions will shape the next generation of cardiologists and medical researchers.

NOTABLE PUBLICATION

Title: Detection of Respiratory Disease Based on Surface-Enhanced Raman Scattering and Multivariate Analysis of Human Serum
Authors: Yulia Khristoforova, Lyudmila Bratchenko, Vitalii Kupaev, Dmitry Senyushkin, Maria Skuratova, Shuang Wang, Petr Lebedev, Ivan Bratchenko
Journal: Diagnostics (2025)

Title: Detection of Chronic Obstructive Pulmonary Disease Based on SERS and Multivariate Analysis of Human Serum
Authors: Yulia Khristoforova, Lyudmila Bratchenko, Vitalii Kupaev, Alexander Shagurov, Maria Skuratova, Shuang Wang, Petr Lebedev, Ivan Bratchenko
Journal: SSRN (2024)

Title: Human Blood Plasma SERS Analysis Using Silver Nanoparticles for Cardiovascular Diseases Detection
Authors: S.Z. Al-Sammarraie, L.A. Bratchenko, E.N. Tupikova, M.A. Skuratova, S. Wang, P.A. Lebedev, I.A. Bratchenko
Journal: Journal of Biomedical Photonics and Engineering (2024)

Title: Polypill as a Means of Population Pharmacological Prevention of Cardiovascular Diseases
Authors: P.A. Lebedev, I.K. Petrukhina, E.V. Paranina
Journal: Experimental and Clinical Gastroenterology (2024)

Title: Skin Autofluorescence as Part of the Comprehensive Assessment of Clinical and Metabolic Status of Patients with End-Stage Chronic Kidney Disease
Authors: Darya Yu. Konovalova, Petr A. Lebedev, Olga V. Ushakova, Elena E. Potyakina, Dmitriy V. Kornilin, Vladimir N. Grishanov, Marina V. Komarova
Journal: CardioSomatics (2024)

Effat Alizadeh – Cancer Biophotonics Studies – Best Researcher Award

Effat Alizadeh - Cancer Biophotonics Studies - Best Researcher Award

Tabriz University of Medical Sciences - Iran

AUTHOR PROFILE

SCOPUS

🎓 EARLY ACADEMIC PURSUITS

Effat Alizadeh’s academic journey began with a strong foundation in Cell and Molecular Biology, earning her B.Sc. and M.Sc. degrees from Alzahra University and Shahid Beheshti University, respectively. Her passion for medical biotechnology led her to pursue a Ph.D. at Tabriz University of Medical Sciences, where she specialized in stem cell biology and regenerative medicine. She further enhanced her expertise with a postdoctoral fellowship in cell and gene therapy at Karolinska Institute in Sweden.

🔬 PROFESSIONAL ENDEAVORS

As an Associate Professor and Head of the Department of Medical Biotechnology at Tabriz University of Medical Sciences, Alizadeh has been instrumental in advancing biomedical research and education. She teaches courses on genetic engineering, bioinformatics, and stem cell applications, mentoring future scientists in medical biotechnology and regenerative medicine. Her leadership has played a crucial role in shaping innovative research programs.

🧪 CONTRIBUTIONS AND RESEARCH FOCUS

Her research focuses on stem cell biology, tissue engineering, and epigenetics, particularly in the application of RNA interference and microRNA technology. She has contributed significantly to regenerative medicine, developing novel cell-based therapies for macular degeneration and liver diseases. Her work in mesenchymal stem cell differentiation has paved the way for advancements in personalized medicine.

🏆 ACCOLADES AND RECOGNITION

Alizadeh has received numerous prestigious awards, including the Top Young Researcher Award in Medical Universities (2023) and the Top Researcher Award at the Faculty of Advanced Medical Sciences (2017). She has also secured competitive research scholarships and ranked among the top students in national entrance exams, showcasing her academic excellence.

🌍 IMPACT AND INFLUENCE

Her groundbreaking research in stem cell therapy and gene editing has significantly influenced medical biotechnology. Through active participation in international conferences and scientific committees, she has contributed to global discussions on advanced medical sciences. Her collaborations with leading research institutions have helped bridge the gap between laboratory research and clinical applications.

📚 LEGACY AND FUTURE CONTRIBUTIONS

Alizadeh’s contributions extend beyond research, as she has authored influential books on cancer signaling, tissue engineering, and molecular biology. Her patents in stem cell differentiation and biomedical imaging technologies highlight her innovative spirit. She continues to explore new frontiers in regenerative medicine, aiming to revolutionize treatments for chronic diseases through advanced biotechnological solutions.

NOTABLE PUBLICATION

  • Autophagy-based therapy for hepatocellular carcinoma: from standard treatments to combination therapy, oncolytic virotherapy, and targeted nanomedicines

    • Authors: F. Rahdan, F. Abedi, H. Dianat-Moghadam, M. Taghizadeh, E. Alizadeh
    • Journal: Clinical and Experimental Medicine, 2025
  • Histidine-tagged dialdehyde cellulose nanoparticles to study the co-treatment effect of curcumin and 3-methyladenine on HepG2 cells

    • Authors: S. Sharifi, E. Alizadeh, S. Vaghefi Moghaddam, L. Alidoust, P. Keshavarz
    • Journal: Carbohydrate Polymer Technologies and Applications, 2025
  • Bactericidal Activity and Biofilm Eradication of Pseudomonas aeruginosa by Liposome-Encapsulated Piperacillin/Tazobactam

    • Authors: S.A. Fesendouz, H. Hamishehkar, E. Alizadeh, S. Yousefi, M. Milani
    • Journal: BioNanoScience, 2025
  • Innovative approaches to tissue engineering: Utilizing decellularized extracellular matrix hydrogels for mesenchymal stem cell transport

    • Authors: F. Soltanmohammadi, A. Mahmoudi Gharehbaba, E. Alizadeh, Y. Javadzadeh
    • Journal: International Journal of Biological Macromolecules, 2025
  • Isolation and Preliminary Characterization of a Novel scFv against SARS-CoV-2: an Experimental and Computational Analysis

    • Authors: S. Jahandar-Lashaki, S. Farajnia, E. Alizadeh, A. Tanoumand, M.K. Hosseini
    • Journal: Avicenna Journal of Medical Biotechnology, 2025

Jichuan Kong – Quantum Dots Applications – Best Researcher Award

Jichuan Kong - Quantum Dots Applications - Best Researcher Award

Henan Polytechnic University - China

AUTHOR PROFILE

SCOPUS

🎓 EARLY ACADEMIC PURSUITS

Jichuan Kong’s academic journey began with a Master’s degree from Henan Normal University in 2005, followed by a Ph.D. from Dalian University of Technology in 2014. His passion for medical sciences led him to a visiting scholar position at Peking University School of Medicine, where he gained extensive experience in nanomedicine and biological evaluation, shaping his expertise in advanced drug delivery systems.

🔬 PROFESSIONAL ENDEAVORS

As an Associate Professor at Henan Polytechnic University’s School of Medicine, Kong has been at the forefront of nanomedicine research. His work integrates nanotechnology with biomedical sciences, focusing on precision drug delivery. He collaborates with the First Affiliated Hospital of Zhengzhou University, applying his research to real-world medical challenges and advancing pharmaceutical sciences.

🧪 CONTRIBUTIONS AND RESEARCH FOCUS

Kong’s research primarily revolves around developing pH and magnetically responsive nanomedicine for targeted drug delivery. His work in humic acid-based nano-drug carriers has demonstrated lower toxicity and cost-effectiveness, making significant advancements in cancer treatment and therapeutic drug design. His expertise in biological evaluation strengthens the impact of his drug delivery innovations.

🏆 ACCOLADES AND RECOGNITION

Recognized for his pioneering research, Kong has published 15 SCI-indexed papers and secured four invention patents in pharmaceutical nanotechnology. His contributions to Henan Provincial Science and Technology Progress Award further solidify his standing as a leading researcher in nanomedicine and targeted therapy development.

🌍 IMPACT AND INFLUENCE

His work bridges academia and industry, influencing pharmaceutical research and medical technology. As a key member of professional committees, he actively contributes to pharmaceutical preparation advancements in China. His innovative drug delivery methods offer promising solutions for cancer therapy and disease management, improving healthcare outcomes.

🚀 LEGACY AND FUTURE CONTRIBUTIONS

Kong’s legacy lies in his dedication to advancing nanomedicine and drug delivery for precision medicine. His future research aims to enhance bio-responsive therapeutic carriers, integrating AI-driven drug formulations for more personalized treatments. His contributions continue to shape the future of nanomedicine and biomedical research.

NOTABLE PUBLICATION

Title: A novel nanodrug for the sensitization of photothermal chemotherapy for breast cancer in vitro
Authors: Jichuan Kong, Feng Zhou, Liting Shi, Yihui Wei, Chunhong Wu
Journal: RSC Advances, 2024

Haigang Ma – Optical Bioimaging Research – Best Researcher Award

Haigang Ma - Optical Bioimaging Research - Best Researcher Award

Nanjing University of Science and Technology - China

AUTHOR PROFILE

SCOPUS

🏆 EARLY ACADEMIC PURSUITS

Haigang Ma embarked on his academic journey at the MOE Key Laboratory of Laser Life Science, earning his Ph.D. from South China Normal University. His research was rooted in laser life sciences, setting the foundation for his pioneering contributions to biomedical imaging. His doctoral studies fueled his passion for innovative imaging techniques, paving the way for groundbreaking advancements in the field.

🔬 PROFESSIONAL ENDEAVORS

Currently serving as an Associate Professor of Optical Engineering at Nanjing University of Science and Technology, he has dedicated his career to developing next-generation biomedical imaging systems. His work extends across optical holography, photoacoustic microscopy, and ultrasound imaging, striving to enhance diagnostic accuracy and medical imaging applications.

📡 CONTRIBUTIONS AND RESEARCH FOCUS

His research primarily focuses on novel biomedical imaging techniques, particularly in multifunctional photoacoustic microscopy. Over the years, he has introduced innovative detection methods and advanced imaging systems, expanding the scope of clinical and experimental applications of photoacoustic technology. His contributions are shaping the future of non-invasive medical diagnostics.

📄 ACCOLADES AND RECOGNITION

Haigang Ma has authored more than 30 scientific papers in esteemed journals, demonstrating his expertise in photoacoustic imaging systems. His innovative work has led to 27 national invention patents in China, marking a significant impact in the field. His pioneering efforts also resulted in the development of China's first clinical photoacoustic microscopic imaging instrument for skin detection.

🚀 IMPACT AND INFLUENCE

Beyond academia, he has played a crucial role in translating research into practical medical applications. His contributions have directly influenced the medical imaging industry, improving clinical diagnostic tools and advancing non-invasive imaging methods for healthcare professionals. His research continues to bridge the gap between laboratory innovation and real-world medical applications.

🔍 LEGACY AND FUTURE CONTRIBUTIONS

As an innovator in biomedical imaging, he remains committed to refining and expanding the capabilities of photoacoustic imaging. His goal is to further enhance medical diagnostics, ensuring more accurate, efficient, and accessible imaging technologies. With ongoing research and continuous advancements, he is set to leave a lasting legacy in optical and biomedical engineering.

NOTABLE PUBLICATION

Title: Monitoring of microvascular calcification by time-resolved photoacoustic microscopy
Authors: H. Ma, Haigang; Y. Yu, Yinshi; Y. Zhu, Yahui; Q. Chen, Qian; C. Zuo, Chao
Journal: Photoacoustics

Title: Adaptively spatial PSF removal enables contrast enhancement for multi-layer image fusion in photoacoustic microscopy
Authors: T. Feng, Ting; H. Li, Hang; H. Ma, Haigang
Journal: Optics Letters

Shalini Vardhan – Biophotonics Systems Integration – Best Researcher Award

Shalini Vardhan - Biophotonics Systems Integration - Best Researcher Award

Netaji Subhas University of Technology - India

AUTHOR PROFILE

GOOGLE SCHOLAR

EARLY ACADEMIC PURSUITS 🎓

Shalini Vardhan developed a deep fascination for silicon photonics early in her academic journey. Her passion led her to pursue a Ph.D. at Netaji Subhas University of Technology, where she specialized in integrated photonic waveguides. With a strong foundation in optoelectronics and nonlinear optics, she set the stage for impactful research in high-performance photonic devices.

PROFESSIONAL ENDEAVORS 💼

As a Teaching Research Fellow at NSUT Delhi since 2021, Shalini has contributed to academia by mentoring B.Tech. and M.Tech. students in subjects like Optical Communication and Analog Electronics. Her expertise in optical networks and microwave photonics has made her a valuable asset in guiding students through complex technical concepts.

CONTRIBUTIONS AND RESEARCH FOCUS 🌍

Shalini's research revolves around developing high-performance, low-loss silicon photonic devices. She explores novel materials and fabrication techniques to enhance photonic device scalability. Her work also extends to integrating silicon photonics with quantum optics and biophotonics, leading to innovative solutions in optical computing and sensing applications.

ONGOING PROJECTS AND INNOVATIONS 🔬

Her current research projects include optimizing silicon-on-insulator-based photonic waveguides and investigating photonic micro-ring resonators for biosensing applications. She is also engaged in developing hybrid photonic interferometers for improved wavelength band performance. Her work is crucial in advancing next-generation photonic circuits.

ACCOLADES AND RECOGNITION 🏆

Shalini’s research contributions have been published in prestigious journals such as Photonics and Silicon. Her work on optical power splitters and integrated filters has been widely cited. Her excellence in research has established her as a promising name in the field of silicon photonics.

IMPACT AND INFLUENCE 🌐

Her groundbreaking research has contributed to advancements in photonic integrated circuits, optical interconnects, and quantum information processing. By mentoring students and collaborating on interdisciplinary projects, she continues to influence the next generation of photonics researchers and engineers.

LEGACY AND FUTURE CONTRIBUTIONS 🌟

Shalini envisions a future where silicon photonics plays a crucial role in quantum computing and biomedical applications. She aims to expand her research on photonic waveguides and optical sensors, ensuring that her contributions shape the future of optical science and integrated photonics for years to come.

NOTABLE PUBLICATION

Design, simulation and performance comparison of SoI rectangular waveguide and SMF for methane detection.
Authors: S. Vardhan, R.R. Singh
Journal: Integrated Photonics Platforms II

SoI based optical 1×2 wavelength independent 3-dB power splitter design using three rectangular cross-sectional cuboidal waveguides.
Authors: D. Srivastava, S. Vardhan, R.R. Singh
Journal: Silicon

Optimization and comparative analysis of rectangular and slot waveguide based symmetric ring and racetrack resonators for SoI photonic integrated filters.
Authors: S. Vardhan, R.R. Singh
Journal: Silicon

Poynting Vector Analysis of SoI based Hybrid Plasmonic Rectangular Waveguide.
Authors: S. Vardhan, R.R. Singh
Journal: JSAP-Optica Joint Symposia

A Low Profile Modified Y-shaped RDRA for Triple-band Wireless Applications
Authors: D.G. Patanvariya, A. Gaonkar, S. Vardhan
Journal: IEEE MTT-S International Microwave and RF Conference (IMARC)

Xiang Xu – Cancer Biophotonics – Best Innovation Award

Xiang Xu - Cancer Biophotonics - Best Innovation Award

Amy Medical University of China - China

AUTHOR PROFILE

SCOPUS
ORCID

EARLY ACADEMIC PURSUITS 🎓

Professor Xiang Xu's journey in medical sciences began in China, where he displayed an early passion for cellular therapies and regenerative medicine. He earned his doctoral degree from the prestigious Third Military Medical University in 2006. His academic excellence and dedication to advancing medical research led him to pursue postdoctoral studies at Pittsburgh University from 2007 to 2009, where he explored the role of HDAC2 in promoting eIF4E sumoylation and activating mRNA translation gene specifically. These formative years laid the groundwork for his future breakthroughs in cytotherapeutics.

PROFESSIONAL ENDEAVORS 🌍

After completing his postdoctoral research, Professor Xu returned to China and became a principal investigator in the field of stem cell and regenerative medicine. In 2010, he joined the first department at the State Key Laboratory of Trauma, Burn, and Combined Injury, where he carried out groundbreaking research on cytotherapeutics. His leadership and expertise in the field positioned him as a pioneering figure in regenerative medicine.

CONTRIBUTIONS AND RESEARCH FOCUS 💡

Professor Xu has been at the forefront of developing innovative therapies in regenerative medicine. His research primarily focuses on immunocyte-based and stem cell-based therapies. In 2018, he founded the Department of Stem Cell & Regenerative Medicine at Daping Hospital of Amy Medical University, where he led multiple clinical and translational research projects. One of his most notable contributions is the development of a novel treatment strategy: the combination of human umbilical cord mesenchymal stem (stromal) cell transplantation with IFN-gamma treatment to improve clinical outcomes for patients with rheumatoid arthritis.

ACCOLADES AND RECOGNITION 🏆

Professor Xu’s pioneering research and contributions to cytotherapeutics have earned him widespread recognition. His work has been acknowledged in the scientific community through numerous awards and honors. As a distinguished professor at Amy Medical University, his influence extends beyond research, inspiring the next generation of scientists in stem cell therapy and regenerative medicine.

IMPACT AND INFLUENCE 👨‍🎓

Professor Xu's research has significantly influenced the field of regenerative medicine, particularly in the treatment of autoimmune diseases. His innovative therapeutic strategies have provided new hope for patients suffering from conditions such as rheumatoid arthritis. Through his leadership in academic and medical institutions, he has mentored numerous researchers and clinicians, further advancing the field of cytotherapeutics.

LEGACY AND FUTURE CONTRIBUTIONS ⚛️

\With a strong foundation in regenerative medicine, Professor Xu continues to push the boundaries of stem cell research. His legacy is defined by his commitment to translational research and clinical applications of cytotherapeutics. His future endeavors aim to refine stem cell-based treatments, explore new regenerative strategies, and expand the possibilities of cellular therapy for various medical conditions.

VISION FOR SCIENTIFIC ADVANCEMENT 🛠️

Professor Xu envisions a future where regenerative medicine and cytotherapeutics revolutionize healthcare. His continued efforts in stem cell research and immunotherapy aim to improve treatment outcomes for patients worldwide. Through his dedication to scientific progress, he is shaping a future where cell-based therapies become a cornerstone of modern medicine.

NOTABLE PUBLICATION

  • Title: Lactate-mediated lactylation in human health and diseases: Progress and remaining challenges
    Authors: Xue-ting Hu, Xiao-feng Wu, Jin-yi Xu, Xiang Xu
    Journal: Journal of Advanced Research

  • Title: The dual role of mesenchymal stem cells in apoptosis regulation
    Authors: Zhuo Chen, Xuewei Xia, Mengwei Yao, Yi Yang, Xiang Ao, Zhaoqi Zhang, Li Guo, Xiang Xu
    Journal: Cell Death & Disease

  • Title: XELOX (capecitabine plus oxaliplatin) plus bevacizumab (anti-VEGF-A antibody) with or without adoptive cell immunotherapy in the treatment of patients with previously untreated metastatic colorectal cancer: a multicenter, open-label, randomized, controlled, phase 3 trial
    Authors: Qiu-Zhong Pan, Jing-Jing Zhao, Liang Liu, Dong-Sheng Zhang, Li-Ping Wang, Wen-Wei Hu, De-Sheng Weng, Xiang Xu, Yi-Zhuo Li, Yan Tang et al.
    Journal: Signal Transduction and Targeted Therapy

  • Title: Effect of GRK4 on renal gastrin receptor regulation in hypertension
    Authors: Xia, X.; Zeng, Y.; Li, Z.; Luo, H.; Wang, W.; He, Y.; Lu, B.; Guo, J.; Chen, K.; Xu, X.
    Journal: Clinical and Experimental Hypertension

  • Title: Fibulin2: a negative regulator of BMSC osteogenic differentiation in infected bone fracture healing
    Authors: Li, S.-D.; Xing, W.; Wang, S.-C.; Li, Y.-B.; Jiang, H.; Zheng, H.-X.; Li, X.-M.; Yang, J.; Guo, D.-B.; Xie, X.-Y. et al.
    Journal: Experimental and Molecular Medicine

  • Title: HGF Mediates Human Gingival Derived Mesenchymal Stem Cells Alleviated Airway Inflammation in Animal Models of Allergic Asthma
    Authors: Fang, Q.; Wu, W.; Xiao, Z.; Zeng, D.; Liang, R.; Wang, J.; Yuan, J.; Su, W.; Xu, X.; Zheng, Y. et al.
    Journal: SSRN