Assoc. Prof. Dr. Xincui Shi – Regenerative medical materials – Best Researcher Award 

Assoc. Prof. Dr. Xincui Shi - Regenerative medical materials - Best Researcher Award 

School of Chemistry and Environmental Engineering, Changchun University of Science and Technology - China 

Author Profile 

ORCID 

🎓 Early academic pursuits

Xincui Shi began her academic journey with a bachelor’s degree in organic chemistry from taishan university, shandong, china, in 2006. her strong foundational interest in polymer science led her to pursue a ph.d. in polymer chemistry and material science under the supervision of prof. yuesheng li at the state key laboratory of polymer physics and chemistry, changchun institute of applied chemistry, chinese academy of sciences. during her doctoral studies (2006–2011), she focused on organometallic synthesis and modification of polyolefins, gaining deep insights into stereospecific polymerization mechanisms. this solid academic base positioned her as a future leader in advanced materials and their applications in fields such as biomedical engineering and power electronics.

🧪 Professional endeavors

Xincui Shi has accumulated over a decade of research and teaching experience in prestigious chinese institutions. she currently serves as an associate professor at changchun university of science and technology, where she leads projects focused on recyclable elastomeric polyester materials and conductive biomaterials for wearable healthcare devices. her earlier career includes roles as an assistant research fellow and associate professor at the changchun institute of applied chemistry. under the guidance of renowned mentors like prof. peibiao zhang and prof. yanhou geng, she worked extensively on π-conjugated polymers, catalyst design, and living polymerization techniques, contributing to high-performance materials relevant to regenerative medicine and power electronics applications.

🔬 Contributions and research focus

Shi’s research is deeply rooted in polymer chemistry and material science, with particular emphasis on biodegradable and electroactive materials. her expertise lies in the design, synthesis, and functionalization of π-conjugated systems such as poly(3-hexylthiophene)s, block copolymers, and carbene-transition metal catalysts. notable contributions include her work on kumada Regenerative medical materials catalyst transfer polycondensation (kctp) for precision polymer synthesis and the development of conductive hydrogels for wearable sensors. her research addresses key challenges in nerve regeneration and tissue engineering, bridging the gap between polymer innovation and practical biomedical and power electronics applications.

🌍 Impact and influence

Xincui Shi's work holds substantial impact across interdisciplinary domains, especially in biomedical material design and environmentally friendly polymers. her contributions to the synthesis and modification of electroactive polyesters and scaffolds have advanced current approaches in neural repair. through her leadership in multiple research grants from the national natural Regenerative medical materials science foundation and educational commission of jilin province, she has nurtured scientific innovation and mentored the next generation of materials scientists. her interdisciplinary research, which merges chemical synthesis, materials engineering, and device application, is paving the way for new functional materials in emerging sectors like smart healthcare and power electronics.

📚 Academic cites

Shi has contributed to numerous peer-reviewed journals in polymer chemistry and materials science, with her publications frequently cited for their novelty and experimental precision. her work on controlled polymerization techniques, polyolefin copolymers, and conductive biomaterials is often referenced in studies related to sustainable material development and electrical Regenerative medical materials applications. her collaborations with experts from the chinese academy of sciences have yielded high-impact research that continues to influence both academic and industrial projects in polymers and power electronics.

🌱 Legacy and future contributions

With a career spanning over 15 years in research and academia, xincui shi is dedicated to fostering innovation in sustainable, functional polymer systems. her future work aims to deepen the understanding of structure–property relationships in biodegradable polyesters and their interface with biological systems. projects such as the construction of amphiphilic conductive fibrous scaffolds and non-conjugated conductive materials for neural injury repair signal a growing focus on translational science. by combining her knowledge of organic chemistry, polymer physics, and applied electronics, she is set to leave a lasting legacy in both academic research and real-world applications, especially in wearable biosensors and power electronics.

Notable Publications 

  • Title: A micropatterned conductive electrospun nanofiber mesh combined with electrical stimulation for synergistically enhancing differentiation of rat neural stem cells
    Author(s): Huanhuan Yan, Yu Wang, Linlong Li, Xiaosong Zhou, Xincui Shi, Yen Wei, Peibiao Zhang
    Journal: Journal of Materials Chemistry B

  • Title: Preparation of polycarbonate/gelatine microspheres using a high-voltage electrostatic technique for enhancing the adhesion and proliferation of mesenchymal stem cells
    Author(s): Chunxu Li, Linlong Li, Rui Ma, Zongliang Wang, Xincui Shi, Xiaoyu Yang, Yu Wang, Peibiao Zhang
    Journal: Journal of Materials Science

  • Title: Controlled synthesis of high molecular weight poly(3-hexylthiophene)s via Kumada catalyst transfer polycondensation with Ni(IPr)(acac)₂ as the catalyst
    Author(s): Xincui Shi
    Journal: (Journal name not provided—likely to be a chemistry or polymer science journal; please confirm source or DOI for precise citation)

  • Title: Kumada catalyst transfer polycondensation for controlled synthesis of polyfluorenes using 1,3-bis(diarylphosphino)propanes as ligands
    Author(s): Xincui Shi
    Journal: (Journal name not provided—please confirm source or DOI for accurate identification)

Assoc. Prof. Dr. Lijing Teng – supramolecular hydrogel – Best Researcher Award 

Assoc. Prof. Dr. Lijing Teng - supramolecular hydrogel - Best Researcher Award 

School of Biology and Engineering (School of Modern Industry for Health and Medicine) - Chile

Author Profile 

ORCID 

🎓 Early academic pursuits

Lijing Teng's journey into the world of biomedical engineering began with a deep curiosity for biomaterials and their applications in medicine. she pursued her ph.d. in biomedical engineering at south china university of technology, where she developed a strong foundation in material science, polymer chemistry, and bioengineering. her doctoral research was centered on designing innovative biomaterials with multifunctional properties, laying the groundwork for her future contributions in the field. her academic excellence and dedication positioned her as a promising scientist in biomedical materials research.

🚀 Professional endeavors

As an associate professor at guizhou medical university, lijing teng has dedicated her career to advancing biomaterial science and its applications in regenerative medicine. her research is at the intersection of materials science and biology, where she focuses on developing cutting-edge solutions for medical challenges. she has been instrumental in designing novel hydrogels, adhesives, and porous scaffolds that enhance tissue regeneration, wound healing, and drug delivery. through her innovative teaching methods and mentorship, she has inspired numerous students to explore the potential of biomaterials in medical science.

🧐 Contributions and research focus

Lijing Teng's research revolves around the development of supramolecular biomaterials, which exhibit advanced properties such as self-healing, bioadhesion, and controlled degradation. her work on hydrogels has led to breakthroughs in designing smart materials that mimic natural extracellular matrices, improving their biocompatibility and functionality in clinical applications. her adhesive biomaterials have been optimized for wound closure and surgical applications, providing alternatives to traditional sutures. her research on porous scaffolds has significantly supramolecular hydrogel contributed to tissue engineering by creating environments that promote cell growth and regeneration. her interdisciplinary approach integrates chemistry, physics, and biology to create biomaterials with unprecedented capabilities.

🏆 Accolades and recognition

Throughout her career, lijing teng has received recognition for her outstanding contributions to biomedical engineering. her research publications in high-impact journals have been widely supramolecular hydrogel cited, reflecting her influence in the field. she has presented her findings at international conferences, earning accolades for her pioneering work in biomaterials. her contributions to the design of multifunctional materials have been acknowledged by peers and industry leaders, positioning her as a key researcher in the advancement of supramolecular biomaterials.

👨‍💻 Impact and influence

Lijing Teng's work has significantly impacted the field of biomaterials, particularly in the development of advanced materials for medical applications. her innovative hydrogels and adhesives have the potential to transform wound care, surgical procedures, and tissue engineering. her research has influenced both academia and industry, leading to collaborations with medical supramolecular hydrogel institutions and material scientists to refine and commercialize biomaterial-based medical solutions. through her mentorship, she has cultivated a new generation of researchers dedicated to pushing the boundaries of biomedical engineering.

🌍 Legacy and future contributions

As a leader in biomaterials research, Lijing Teng continues to push the limits of material innovation. her future work aims to further enhance the properties of supramolecular biomaterials, making them more adaptive and responsive to biological environments. she is committed to bridging the gap between fundamental research and clinical applications, ensuring that her materials contribute to better healthcare solutions. her vision extends to fostering global collaborations and interdisciplinary research, solidifying her legacy as a pioneer in biomaterials science. her contributions will continue to shape the future of regenerative medicine, improving lives through cutting-edge biomedical engineering.

Notable Publications 

  • Title: Shape-Recoverable Macroporous Nanocomposite Hydrogels Created via Ice Templating Polymerization for Noncompressible Wound Hemorrhage
    Author(s): Lijing Teng, Kaide Xia, Tianbao Qian, Zuquan Hu, Liang Hong, Ying Liao, Guorui Peng, Zhongrun Yuan, Yunhua Chen, et al.
    Journal: ACS Biomaterials Science & Engineering

  • Title: Supramolecular and dynamic covalent hydrogel scaffolds: from gelation chemistry to enhanced cell retention and cartilage regeneration
    Author(s): Lijing Teng
    Journal: Journal of Materials Chemistry B

  • Title: Weak Hydrogen Bonds Lead to Self-Healable and Bioadhesive Hybrid Polymeric Hydrogels with Mineralization-Active Functions
    Author(s): Lijing Teng
    Journal: Biomacromolecules

  • Title: Synthesis and characterization of star-shaped poly(l-lactide)s with an erythritol core and evaluation of their rifampicin-loaded microspheres for controlled drug delivery
    Author(s): Lijing Teng
    Journal: Polymer Bulletin

  • Title: Synthesis and characterization of star-shaped PLLA with sorbitol as core and its microspheres application in controlled drug release
    Author(s): Lijing Teng
    Journal: Journal of Applied Polymer Science