Krishnaveni R | Nanoparticles | Editorial Board Member

Dr. Krishnaveni R | Nanoparticles | Editorial Board Member

Assistant Professor | Sree Sevugan Annamalai College | India

Dr. Krishnaveni  is a distinguished researcher and Assistant Professor of Chemistry specializing in nanomaterials, sensors, water research, organic synthesis, and corrosion science, renowned for her scientific contributions in advanced material development and textile innovation. Her research focuses on the synthesis, characterization, and functional optimization of nano-engineered materials, with emerging interests in eco-friendly composites, smart sensing interfaces, and sustainable material technologies designed to support environmental and industrial applications. Dr. Krishnaveni’s work explores how nano-structured systems enhance antibacterial properties, thermal stability, catalytic efficiency, and protective coatings, offering transformative solutions for sectors such as textiles, water treatment, and environmental monitoring. Over her academic career, she has held key roles advancing chemical science education and research, most notably through her faculty position at Sree Sevugan Annamalai College under Alagappa University, where she leads multiple investigations on material modification and surface chemistry. Her contributions include pioneering studies on cotton fabric enhancement using biopolymer–nanoparticle composites, innovative cyanoethylation techniques for improved cellulose performance, and the synthesis of novel metal-oxide nanomaterials with enhanced structural and functional properties. She has also significantly advanced understanding of solvent effects, enzymatic pre-treatments, and hybrid material interactions that influence industrial processing and textile engineering outcomes. With several widely cited publications, Dr. Krishnaveni’s research outcomes have informed industrial finishing methodologies, improved antibacterial coating practices, and contributed to the development of high-performance polymer-based and nano-based materials. Her scientific impact extends through her active engagement in conferences, collaborative material science initiatives, and contributions to interdisciplinary research involving chemistry, engineering, and environmental technology. She envisions a research-driven future where sustainable nanomaterials, smart coatings, and advanced chemical modifications serve as foundations for industrial innovation, environmental protection, and societal well-being. Guided by this vision, Dr. Krishnaveni continues to advance novel material technologies, support academic development, and contribute to global scientific progress through rigorous research, impactful publications, and continuous knowledge dissemination.

Profiles: Scopus | Google Scholar

Featured Publications

1. Krishnaveni, R. (2013). Synthesis of iron oxide coated nickel oxide nanoparticles and its characterization. International Conference on Advanced Nanomaterials & Emerging Engineering Technologies, 4.

2. Krishnaveni, R., & Thambidurai, S. (2013). Industrial method of cotton fabric finishing with chitosan–ZnO composite for anti-bacterial and thermal stability. Industrial Crops and Products, 47, 160–167.

3. Krishnaveni, R., & Thambidurai, S. (2012). Modification of enzyme pretreated cotton fabric using acrylonitrile, acrylonitrile/solvent mixture and its characterization. Fibers and Polymers, 13(9), 1132–1138.

4. Krishnaveni, R., & Thambidurai, S. (2011). Effect of solvents on cyanoethylation of cotton cellulose and its properties. Journal of Applied Polymer Science, 122(3), 1622–1627.

Behnam Seyyedi | Advanced Nano Composite | Editorial Board Member

Assist. Prof. Dr. Behnam Seyyedi | Advanced Nano Composite | Editorial Board Member

Faculty member | Urmia University | Iran

Dr. Behnam Seyyedi, an accomplished researcher and Assistant Professor specializing in Materials Science and Nanotechnology, has established a strong scientific presence through his extensive contributions to nanomaterials, electrocatalysis, metal–organic frameworks (MOFs), and advanced catalytic systems. His research primarily focuses on designing porous crystalline materials, bio-inspired electrocatalysts, and functional nanocomposites for energy conversion, environmental remediation, and chemical transformation, with emerging interests in sustainable catalytic pathways and next-generation electrode materials. Over his academic career, he has served in impactful research and teaching roles, advancing innovations in nanomaterial synthesis, catalytic mechanism studies, and structure–property relationships in hybrid materials. Dr. Seyyedi is widely recognized for his influential work on highly porous polypyrazolyl-based frameworks, cubic octanuclear Ni(II) clusters, and MIL-53-derived catalysts, studies that have significantly enriched the understanding of Brønsted acidity, adsorption behavior, and catalytic efficiency in MOF. His work on mesoporous laterite soils for visible-light Fenton-like degradation and kappa-carrageenan adsorbents for dye removal has contributed important advancements to sustainable wastewater treatment technologies. He has also pioneered the synthesis of bio-inspired iron-, cobalt-, copper-, and zinc-based nanostructures that enhance the oxygen reduction reaction (ORR), introducing catalysts capable of selective multi-electron pathways, high durability, and improved electrochemical performance across alkaline media. His contributions further extend to the development of chitosan-modified metal catalysts, microwave-assisted functionalization of phthalocyanines, and carbon-supported hybrid electrocatalysts, all of which demonstrate his commitment to creating efficient, eco-friendly, and cost-effective catalytic systems for industrial and energy applications. With more than 379 citations, an h-index of 7, and multiple high-impact publications in journals such as the Journal of the American Chemical Society, ChemCatChem, Journal of Industrial and Engineering Chemistry, Pigment & Resin Technology, and the Journal of the Chinese Chemical Society, Dr. Seyyedi’s work continues to shape the fields of nanomaterials and catalytic engineering. His core scientific vision centers on advancing functional nanomaterials that can accelerate clean-energy transitions, support environmentally responsible chemical processes, and provide scalable solutions for global sustainability challenges. Through innovative research, collaborative scientific contributions, and a commitment to developing next-generation catalytic materials, he aims to drive transformative progress across energy, environmental, and industrial systems.

Profile: Google Scholar

Featured Publications 

1. Masciocchi, N., Galli, S., Colombo, V., Maspero, A., Palmisano, G., Seyyedi, B., … (2010). Cubic octanuclear Ni(II) clusters in highly porous polypyrazolyl-based materials. Journal of the American Chemical Society, 132(23), 7902–7904.

2. Ravon, U., Chaplais, G., Chizallet, C., Seyyedi, B., Bonino, F., Bordiga, S., … Bats, N. (2010). Investigation of acid centers in MIL-53 (Al, Ga) for Brønsted-type catalysis: In situ FTIR and ab initio molecular modeling. ChemCatChem, 2(10), 1235–1238.

3. Khataee, A., Salahpour, F., Fathinia, M., Seyyedi, B., & Vahid, B. (2015). Iron-rich laterite soil with mesoporous structure for heterogeneous Fenton-like degradation of an azo dye under visible light. Journal of Industrial and Engineering Chemistry, 26, 129–135.

4. Mahdavinia, G. R., Bazmizeynabad, F., & Seyyedi, B. (2015). Kappa-carrageenan beads as new adsorbent to remove crystal violet dye from water: Adsorption kinetics and isotherm. Desalination and Water Treatment, 53(9), 2529–2539.

5. Keshipour, S., Ahmadi, F., & Seyyedi, B. (2017). Chitosan-modified Pd(II)-d-penicillamine: Preparation, characterization, and catalyst application. Cellulose, 24(3), 1455–1462.

Anca Criveanu | Materials Science | Excellence in Research

Dr. Anca Criveanu | Materials Science | Excellence in Research

Nanomateriales at INFLPR, Romania

Anca-Daniela Criveanu is an accomplished scientific researcher specializing in nanomaterials, with expertise in synthesizing and functionalizing nanoparticles for biological and pharmacological applications. She holds a Ph.D. in Materials Engineering from Universitatea Politehnica București and has been working at INFLPR since 2010. Her research focuses on iron oxide, titanium, and carbon-based nanostructures, with applications in drug delivery, biomedicine, and advanced materials. She has contributed extensively to the field, authoring numerous ISI-indexed articles and conference papers on nanoparticle synthesis, characterization, and biomedical applications. With strong leadership, analytical, and teamwork skills, along with a solid background in engineering and research, she demonstrates a high level of expertise in her domain. Her work has significant implications for nanotechnology advancements in healthcare and materials science.

Professional Profile 

Education

Anca-Daniela Criveanu has a strong academic background in engineering and materials science. She earned her Ph.D. in Materials Engineering from Universitatea Politehnica București, Faculty of Science and Engineering of Materials, specializing in nanomaterials and their applications. Prior to that, she completed her undergraduate studies at the same university, obtaining a degree in Applied Sciences with a specialization in Medical Engineering. Her education provided her with expertise in biocompatible materials, nanotechnology, and advanced techniques for analyzing and controlling biomaterials. This strong foundation has enabled her to conduct high-level research in nanoparticle synthesis and functionalization for biomedical and pharmaceutical applications.

Professional Experience

Anca-Daniela Criveanu has extensive professional experience in scientific research, specializing in nanomaterials and their biomedical applications. Since October 2010, she has been working as a Scientific Researcher at INFLPR (National Institute for Laser, Plasma, and Radiation Physics), where she focuses on the synthesis, characterization, and functionalization of nanoparticles, including iron oxides, titanium, and carbon-based nanostructures. Her work involves developing advanced nanomaterials for applications in drug delivery, biomedicine, and pharmacology. Prior to this role, she served as a Research Assistant at the Carol Davila University of Medicine and Pharmacy, where she conducted studies on the electrical properties of artificial lipid membranes, cellular dielectrophoresis, and membrane fluidity. Her research contributions include numerous ISI-indexed articles and conference presentations, showcasing her expertise in nanotechnology and its applications in healthcare and materials science.

Research Interest

Anca-Daniela Criveanu’s research interests lie in the field of nanotechnology, with a focus on the synthesis, characterization, and application of nanomaterials for biomedical and pharmaceutical purposes. She is particularly interested in developing iron oxide, titanium-based, and carbon nanostructures with tailored properties for targeted drug delivery, cancer therapy, and regenerative medicine. Her work explores the functionalization of nanoparticles with polymers and bioactive molecules to enhance their biocompatibility and therapeutic efficacy. Additionally, she has a strong interest in investigating the electrical and morphological properties of nanomaterials, aiming to improve their performance in biomedical imaging, biosensing, and tissue engineering. Through her research, she seeks to bridge the gap between nanotechnology and healthcare, contributing to the development of innovative solutions for medical and pharmaceutical challenges.

Award and Honor

Anca-Daniela Criveanu has been recognized for her contributions to the field of nanotechnology and biomedical research through various awards and honors. Her work on the synthesis and functionalization of nanoparticles for medical applications has earned her accolades in both national and international scientific communities. She has actively participated in prestigious conferences, presenting her findings on nanomaterials and their biomedical applications. Additionally, her research publications in high-impact journals demonstrate her expertise and dedication to advancing nanotechnology in healthcare. Her contributions to interdisciplinary research and her commitment to scientific excellence position her as a strong candidate for awards recognizing outstanding researchers in the field.

Conclusion

Dr. Anca-Daniela Criveanu demonstrates outstanding research achievements in nanotechnology and biomedical applications. Her extensive publication record, international conference participation, and strong technical expertise make her a highly suitable candidate for the Best Researcher Award. Strengthening global collaborations, securing funding, and focusing on applied research commercialization would further enhance her profile.

Publications Top Noted

Title: The Influence of SnO₂ and Noble Metals on the Properties of TiO₂ for Environmental Sustainability
Authors: Evghenii Goncearenco, Iuliana P. Morjan, Claudiu Teodor Fleacă, Carmen Ioana Fort, Monica Scarisoreanu, and others
Year: 2024
Citations: 2

Morteza Alizadeh | Tissue Engineering | Best Researcher Award

Assist Prof Dr. Morteza Alizadeh | Tissue Engineering | Best Researcher Award

University Professor at Department of Tissue Engineering and Biomaterials, School of Advanced Medical Sciences and Technologies, Hamadan University of Medical Sciences, Hamadan, Iran

Morteza Alizadeh has significantly contributed to the field of tissue engineering and regenerative medicine with a series of impactful publications. His work includes innovative research on cell-loaded hydrogels with bioactive glass nanoparticles for skin substitutes, which demonstrates impressive antibacterial properties and immune responses (Bioengineering & Translational Medicine, 2022, 44 citations). Alizadeh has also explored advanced diagnostic and drug release systems using microneedle arrays for breast cancer therapy (Journal of Controlled Release, 2021, 44 citations). His research on 3D-printed PCL-based scaffolds for bone tissue engineering and the evaluation of vacuum washing methods for decellularized bovine pericardium highlights his expertise in developing novel materials and techniques for tissue repair (Frontiers in Bioengineering and Biotechnology, 2023, 35 citations; Heliyon, 2019, 41 citations). These contributions, among others, underscore Alizadeh’s role as a leading researcher in tissue engineering and regenerative medicine.

Professional Profiles:
Education Background

Morteza Alizadeh’s educational journey reflects a solid foundation in biomedical sciences. He earned his Ph.D. in Tissue Engineering from Shahrekord University of Medical Sciences, following an MSc in Histology and a BSc in Laboratory Sciences. His diverse academic background, including veterinary studies, underscores his comprehensive understanding of biological sciences and engineering.

Professional Experience

His roles as an Assistant Professor, Technical Supervisor, and Production Supervisor illustrate a diverse professional background that integrates academic, research, and industrial perspectives. This multifaceted experience is valuable for bridging theoretical knowledge with practical applications.

Research Interests and Experience

Alizadeh’s research interests are extensive, covering critical areas such as skin, bone, nerve, and vascular tissue engineering. His work on bio-materials, scaffold fabrication techniques, and 3D bioprinting aligns with cutting-edge advancements in regenerative medicine. His current and past research projects, like the development of polymer neural conduits and the investigation of chicken pericardium for tissue engineering, demonstrate a practical application of his knowledge.

Honors and Activities

Alizadeh’s achievements, such as ranking first in his Ph.D. entrance exam and receiving appreciation from the Cellular and Molecular Research Center, reflect his excellence and recognition in his field. His involvement in professional societies and development of research facilities further underscores his commitment to advancing tissue engineering.

Publications Top noted
  • Title: Cell loaded hydrogel containing Ag‐doped bioactive glass–ceramic nanoparticles as skin substitute: Antibacterial properties, immune response, and scarless cutaneous wound …
    Year: 2022
    Citations: 44
    Publication: Bioengineering & Translational Medicine
    Emoji: 🧬💧🦠
  • Title: Diagnostic and drug release systems based on microneedle arrays in breast cancer therapy
    Year: 2021
    Citations: 44
    Publication: Journal of Controlled Release
    Emoji: 🎯🩺💉
  • Title: Evaluation of vacuum washing in the removal of SDS from decellularized bovine pericardium: method and device description
    Year: 2019
    Citations: 41
    Publication: Heliyon
    Emoji: 🧪🔬🧼
  • Title: Recent advances on 3D-printed PCL-based composite scaffolds for bone tissue engineering
    Year: 2023
    Citations: 35
    Publication: Frontiers in Bioengineering and Biotechnology
    Emoji: 🦴🖨️🔧
  • Title: Criteria, challenges, and opportunities for acellularized allogeneic/xenogeneic bone grafts in bone repairing
    Year: 2022
    Citations: 35
    Publication: ACS Biomaterials Science & Engineering
    Emoji: 🦵🔍💡
  • Title: Exosomes and exosome-loaded scaffolds: characterization and application in modern regenerative medicine
    Year: 2023
    Citations: 26
    Publication: Tissue and Cell
    Emoji: 🧫🔬🌱
  • Title: A three dimensional in vivo model of breast cancer using a thermosensitive chitosan‐based hydrogel and 4 T1 cell line in Balb/c
    Year: 2021
    Citations: 25
    Publication: Journal of Biomedical Materials Research Part A
    Emoji: 🎗️🧬🔬
  • Title: Evaluating the effects of vacuum on the microstructure and biocompatibility of bovine decellularized pericardium
    Year: 2021
    Citations: 24
    Publication: Journal of Tissue Engineering and Regenerative Medicine
    Emoji: 🧬🧪🔬
  • Title: Fabrication and characterization of Nanofibrous poly (L-lactic acid)/chitosan-based scaffold by liquid–liquid phase separation technique for nerve tissue engineering
    Year: 2021
    Citations: 21
    Publication: Molecular Biotechnology
    Emoji: 🧠🧪🧩
  • Title: Preparation and characterization of poly (ethylene oxide)/zinc oxide nanofibrous scaffold for chronic wound healing applications
    Year: 2020
    Citations: 21
    Publication: Polymers in Medicine
    Emoji: 🩹🧩🔬
  • Title: Anti-inflammatory and antioxidant effects of astaxanthin following spinal cord injury in a rat animal model
    Year: 2021
    Citations: 20
    Publication: Brain Research Bulletin
    Emoji: 🧠🩹🌿
  • Title: Exosome-loaded scaffolds for regenerative medicine in hard tissues
    Year: 2023
    Citations: 19
    Publication: Tissue and Cell
    Emoji: 🧬🔬🦴

 

Mohammad Sherjeel Javed Khan | Material Science

🌟Mr. Mohammad Sherjeel Javed Khan, Congratulations on Winning the Young Scientist Award! 👏🌟🏆

  • Mr. Mohammad Sherjeel Javed Khan, Universiti Tenaga Nasional, Malaysia: Material Science

Dr. M. Sherjeel Javed Khan, to extend my heartfelt congratulations on your outstanding achievement in receiving the Young Scientist Award! 🎉🏆by ScienceFather Your dedication to advancing scientific knowledge and making significant contributions to the field of Chemistry is truly commendable.

This prestigious award is a testament to your hard work, passion, and innovative spirit in the realm of metal nanoparticles, polymer hydrogel, and catalysis. Your commitment to excellence has not only propelled your own career but has also made a lasting impact on the broader scientific community.

Your journey from pursuing advanced degrees at esteemed institutions to your current role as a postdoctoral researcher and assistant professor reflects a remarkable commitment to advancing the frontiers of knowledge. Your numerous publications in renowned journals further highlight the depth and significance of your research contributions.

Keep shining bright as you continue to inspire us all with your dedication to scientific exploration! 🌟 Your success is not only well-deserved but also serves as an inspiration to aspiring scientists worldwide. Once again, congratulations on this well-earned achievement, and may your future endeavors be as bright and promising as your remarkable journey thus far!

Professional Profiles:
Bio Summary:

Dr. M. Sherjeel Javed Khan is a seasoned chemist with a comprehensive background in various facets of Chemistry. With a strong academic journey encompassing degrees from prestigious institutions in Saudi Arabia, South Korea, and Pakistan, he has delved into research areas such as metal nanoparticles, polymer hydrogel, photocatalysis, and water purification. His professional journey includes roles as a postdoctoral researcher and assistant professor. Dr. Khan has received notable honors and awards, and his contributions to scientific literature are evidenced by publications in high-impact journals. His commitment to advancing research in chemistry is reflected in his varied research projects and active participation in international conferences.

Education:
  • PhD in Chemistry (2018-2021)
    • Faculty of Science, Chemistry Department
    • King Abdulaziz University, Jeddah, Kingdom of Saudi Arabia
  • MS in Chemistry (2013-2015)
    • Chemistry Department, Bioinorganic chem. lab # 210
    • Kyungpook National University, Daegu, South Korea
  • MSc in Chemistry (2009-2011)
    • Institute of Chemical Sciences, University of Peshawar, Peshawar, Pakistan
  • BSc (2006-2008)
    • Majors: Chemistry, Botany, and Statistics
    • Edwardes College Peshawar, Pakistan
Research Focus:
  • Metal Nanoparticles
  • Polymer Hydrogel
  • Photocatalysis
  • H2 Production
  • Water Purification from Toxic Pollutants
Professional Experience:

1. Postdoctoral Researcher – Universiti Tenaga Nasional (UNITEN), Malaysia

  • Duration: 03/2023 – Present
  • Position Held: Postdoc

2. Assistant Professor – Bacha Khan University Charsadda, Pakistan

  • Duration: 10/2022 – 04/2023
  • Position Held: Assistant Professor

3. Lecturer – Edwardes College Peshawar, Pakistan

  • Duration: 09/2011 – 02/2013
  • Position Held: Lecturer
Honors & Awards:
  • Kyungpook Honors Scholarship (KHS) – 03/2013
  • Brain Korea 21 plus (BK 21plus) – 03/2015
Research Timeline:
  • 2018-2021: Pursued PhD in Chemistry
  • 2013-2015: Completed MS in Chemistry
  • 2009-2011: Achieved MSc in Chemistry
  • 2006-2008: Obtained BSc with majors in Chemistry, Botany, and Statistics
Key Metrics:
  • Total Citations: 279
  • Total Documents: 11
  • h-index: 9
Publications & Contributions:
  • Several publications in reputable journals (e.g., International Journal of Biological Macromolecules, Polymer Testing, Journal of Materials Research and Technology, ChemSusChem, Applied Nanoscience, etc.)
  • Research contributions in areas such as chitosan-coated polyurethane sponge-supported metal nanoparticles, development of copper coordination polymers, catalytic applications of silver nanoparticles, and more.
  1. Chitosan hydrogel anchored phthalocyanine supported metal nanoparticles: Bifunctional catalysts for pollutants reduction and hydrogen production
    • Journal: Environmental Pollution (2023, Volume 327, Article 121524)
    • Authors: Akhtar, K., Khan, M.S.J., Bakhsh, E.M., Asiri, A.M., Khan, S.B.
    • Citations: 2
  2. Ni–Al-layered double-hydroxide photocatalyst for the visible light-assisted photodegradation of organic dye pollutants
    • Journal: Applied Nanoscience (Switzerland) (2022, Volume 12(11), Pages 3597–3606)
    • Authors: Ahmed, M.S., Khan, M.S.J., Khan, S.B., Asiri, A.M., Kamal, T.
    • Citations: 3
  3. Metallic nanoparticles decorated chitosan hydrogel wrapped pencil graphite: Effective catalyst for reduction of water pollutants and hydrogen production
    • Journal: Surfaces and Interfaces (2022, Volume 31, Article 102004)
    • Authors: Khan, S.B., Khan, M.S.J., Bakhsh, E.M., Akhtar, K., Asiri, A.M.
    • Citations: 9
  4. Chitosan hydrogel wrapped bimetallic nanoparticles based efficient catalysts for the catalytic removal of organic pollutants and hydrogen production
    • Journal: Applied Organometallic Chemistry (2022, Volume 36(7), Article e6741)
    • Authors: Bakhsh, E.M., Khan, M.S.J., Akhtar, K., Khan, S.B., Asiri, A.M.
    • Citations: 9
  5. Revisiting the Impact of Morphology and Oxidation State of Cu on CO2 Reduction Using Electrochemical Flow Cell
    • Journal: Journal of Physical Chemistry Letters (2022, Volume 13(1), Pages 345–351)
    • Authors: Asiri, A.M., Gao, J., Khan, S.B., Ren, D., Grätzel, M.
    • Citations: 11

Ruipeng Jia | Tissue Engineering

 🏆Prof. Ruipeng Jia, 🎉 Congratulations on Your Best Researcher Award! 🏆

  • Prof. Ruipeng Jia, Nanjing First Hospital, China- Leading Researcher in Tissue Engineering

Dr. Ruipeng Jia, 🎉 Heartiest Congratulations on being honored with the Best Researcher Award! 🏆 Your unwavering commitment to groundbreaking research in urology and tissue engineering has set a remarkable standard in our field. 🌟 Your dedication and contributions are truly inspiring, and this recognition is well-deserved.

May this achievement be a testament to your passion for advancing medical knowledge and improving patient outcomes. 🚀 Wishing you continued success on your journey of exploration and discovery. Keep shining and making a positive impact on the world of research! 👏👨‍🔬

Professional Profiles:
Education Background
  • M.D., Shandong University, P.R. China – July 1999
    • Major: Urology
Working Experiences
  • Director of Urology, Nanjing First Hospital – June 2011 to September 2013
  • Head of Urology, Nanjing First Hospital – September 2013 to Present
Projects
  1. Technology development and clinical transformation of real-time navigation imaging system in minimally invasive surgery for benign prostatic hyperplasia
    • Jiangsu Provincial Key Research and Development Program – 2024.1 to 2026.12
  2. Mechanism of action of flexible graphene microarray gels compounded with Ad-SVF to promote bladder aging-mediated repair of UAB forced urinary muscle (92049111)
    • Natural Science Foundation of China – 2020.01 to 2022.12
  3. Mechanism of action of ad-SVF/ECM gel complex in repairing renal ischemia-reperfusion injury (BE2017615)
    • Natural Science Foundation of China – 2018.08 to 2020.12
Social Services

Ruipeng Jia is actively involved in various medical associations, holding leadership positions and contributing to committees in urology, male science, prostate health management, rehabilitation, sexology, immunology, and more.

This profile showcases a well-rounded professional with a strong academic background, significant research contributions, and active engagement in the medical community.

Research Focus

Ruipeng Jia’s primary research focus lies in urology, with a particular emphasis on the following areas:

  • Bladder Tissue Engineering: Developing artificial scaffolds and utilizing adipose-derived mesenchymal stem cells for bladder tissue engineering.
  • Renal Cell Carcinoma: Molecular typing and prognosis assessment using MicrorNa-based approaches.
  • Prostate Cancer: Investigating the role of Prostate-specific membrane antigen in cancer progression and the synthesis of arginine and proline.
  • Stromal Vascular Fraction (SVF): Utilizing SVF in therapeutic applications for conditions like underactive bladder and testicular injury.
  • Extracellular Vesicles: Studying the therapeutic potential of extracellular vesicles derived from various sources.
Professional Journey

Ruipeng Jia has held key positions at Nanjing First Hospital, including Director and Head of the Urology Department. His career trajectory has seen a progression from clinical roles to leadership positions. Additionally, he has actively participated in multiple research projects, contributing significantly to the field of urology.

Honors & Awards
  • Jiangsu Province New Technology Introduction Award (2019):
    • For work on MicrorNa-based Molecular Typing and Prognosis Assessment of Renal Cell Carcinoma.
  • Jiangsu Province New Technology Introduction Award (2013):
    • Recognized for the Application of inducible Prostaglandin synthetase mPGES1/COX2 in Hormone Independent Prediction and Treatment of prostate cancer.
  • Jiangsu Province New Technology Introduction Award (2016):
    • Acknowledged for MicrorNa-based Molecular Typing and Prognosis Assessment of Renal Cell Carcinoma.
Publications & Contributions

Ruipeng Jia has made significant contributions to the scientific community through a series of impactful publications. Some notable contributions include:

  • Publications (Selected)
    1. Negatively charged bladder acellular matrix loaded with positively charged adipose-derived mesenchymal stem cell-derived small extracellular vesicles for bladder tissue engineering. – J Control Release. 2023 Nov 7.
    2. Construction of tissue-engineered bladders using an artificial acellular nanocomposite scaffold loaded with stromal vascular fraction secretome. – Acta Biomater. 2023 Sep 1.
    3. Exosomal AP000439.2 from clear cell renal cell carcinoma induces M2 macrophage polarization to promote tumor progression through activation of STAT3. – Cell Commun Signal. 2022 Sep 24.
    4. Sig1R activates extracellular matrix-induced bladder cancer cell proliferation and angiogenesis by combining β-integrin. – Aging (Albany NY). 2023 May 16.
    5. Therapeutic effect of adipose stromal vascular fraction spheroids for partial bladder outlet obstruction induced underactive bladder. – Stem Cell Res Ther. 2022 Feb 9.
Research Timeline
  1. 2024 – 2026:
    • Leading a project on the development and clinical transformation of a real-time navigation imaging system for minimally invasive surgery in benign prostatic hyperplasia.
  2. 2020 – 2022:
    • Investigating the mechanism of action of flexible graphene microarray gels for bladder aging-mediated repair.
    • Studying the mechanism of action of ad-SVF/ECM gel complex in repairing renal ischemia-reperfusion injury.
  3. 2019:
    • Awarded for the protective effects of uncultured adipose-derived stromal vascular fraction on testicular injury induced by torsion-detorsion in rats.
  4. 2018 – 2020:
    • Researching the mechanism of action of ad-SVF/ECM gel complex in repairing renal ischemia-reperfusion injury.
  5. 2016:
    • Recognized for MicrorNa-based Molecular Typing and Prognosis Assessment of Renal Cell Carcinoma.
  6. 2013:
    • Awarded for the application of inducible Prostaglandin synthetase mPGES1/COX2 in hormone-independent prediction and treatment of prostate cancer.
  7. 2011 – 2013:
    • Served as Director and subsequently Head of Urology at Nanjing First Hospital.

Ruipeng Jia’s research journey is characterized by a diverse range of projects, active involvement in clinical and leadership roles, and a consistent dedication to advancing knowledge in urology.