![]() 蔡平强博士
副教授/特聘研究员
电话:025-83592505邮箱:pqcai AT topylpt.com 地址:鼓楼校区化学楼1029B研究方向:
运动系统疾病诊疗技术 蔡平强,副教授/博士生导师,娱乐平台-十大博彩娱乐平台 /附属鼓楼医院/化学和生物医药创新研究院。获国家高层次青年项目(海外)资助,成立“转化力学医学实验室”(Translational Mechanomedicine Lab)。其研究基于“力材料”,开发体外共病模型和多模态传感等关键技术,构建多尺度生物力学界面和近身智能体系,实现肌骨、心脑血管、神经等疾病临床诊疗康复的数智化。研究课题涉及运动医学、力学生物学、膨胀显微技术、柔性电子学、柔性驱动器等前沿领域。更多信息参见TML主页:www.mechanomedicinelab.com。 2010年于吉林大学获学士学位,2012年赴德国海德堡大学交流访问,2016年于新加坡南洋理工大学获博士学位(师从Chen Xiaodong教授)。相关研究成果发表 SCI论文60+篇,H指数40。主持科技部重点研发计划课题、国自然面上、江苏省自然科学基金、南京市重大科技专项等项目,担任江苏省预防医学会骨骼疾病预防和控制专业委员会副主委、江苏省智能医学工程学会理事、南京市主动健康与可穿戴诊疗装备工程研究中心副主任,Inl. J. Bioprinting等期刊客座副主编,以及Nat. Commun., ACS Nano, Adv. Funct. Mater.等期刊审稿人。 课题组长期招聘博士后与科研助理,欢迎垂询! 中国生物医学工程学会柔性生物电子及可穿戴医疗分会委员; 中国生物材料学会脑机接口材料分会委员; 江苏省预防医学会骨骼疾病预防和控制专业委员会副主委; 江苏省智能医学工程学会理事; 南京市主动健康与可穿戴诊疗装备工程研究中心副主任; Intl. J. Bioprinting, Front. Chem.客座副主编; Nat. Commun., ACS Nano, Adv. Funct. Mater., npj Flex. Electron., Adv. Healthc. Mater., ACS Appl. Mater. Interface, Nanoscale等期刊评审; 1. A. Mensah#, Q. Bao#, Z Zhang#, Q. Jiang*, P. Cai*et al. Symbiopersonal intelligence towards symbiotic and personalized digital medicine. Fundam. Res. 2025 (in press) 2. N. Liu, P. Cai*, Q. Jiang*, B. Guo*et al. Osteocyte-derived extracellular vesicles mediate the bone-to-cartilage crosstalk and promote osteoarthritis progression. Nat. Commun. 2025, 16, 4746. 3. Y. Zhang#, W. Wu#, Q. Jiang*, X. Han*, P. Cai*et al. Subdiffraction Imaging of Cleared and Expanded Large-Scale Tissues. Chem. Biomed. Imaging 2024, 2, 542. 4. L. Zhang#, X. Chen#, P. Cai*, B. Guo*, Q. Jiang*et al. Reprogramming Mitochondrial Metabolism in Synovial Macrophages of Early Osteoarthritis by a Camouflaged Meta-Defensome. Adv. Mater. 2022, 34, 2202715. (ESI高被引) 5. P. Cai, H. Gao*, X. Chen*et al. Mechanomaterials: A Rational Deployment of Forces and Geometries in Programming Functional Materials. Adv. Mater. 2021, 33, 2007977. 6. J. Yu#, P. Cai#, X. Chen*et al. Spatiotemporal Oscillation in Confined Epithelial Motions Upon Fluid-to-solid Transition. ACS Nano 2021, 15, 7618. 7. P. Cai, X. Chen*et al. Locally coupled Electromechanical Interfaces Based on Cytoadhesion-inspired Hybrids to Identify Muscular Excitation-Contraction Signatures. Nat. Commun. 2020, 11, 2183. (ESI高被引) 8. C. Wan#, P. Cai#, X. Chen*et al. An Artificial Sensory Neuron with Visual-Haptic Fusion. Nat. Commun. 2020, 11, 4602. (ESI高被引) 9. P. Cai, S. Magadassi*, X. Chen*et al. Differential Homeostasis of Sessile and Pendant Epithelium Reconstituted in a 3D-Printed “GeminiChip”. Adv. Mater. 2019, 31, 1900514. 10. P. Cai, X. Chen*et al. Biomechano-Interactive Materials and Interfaces. Adv. Mater. 2018, 30, 1800572. 11. P. Cai, X. Chen*et al. Combinatorial Nano-Bio Interfaces. ACS Nano 2018, 12, 5078. 12. P. Cai, Y.-L. Wu*, X. Chen*et al. Programmable Nano-Bio Interfaces for Functional Biointegrated Devices. Adv. Mater. 2017, 29, 1605529. (ESI高被引) 13. P. Cai, S. Magadassi*, X. Chen*et al. Bio-Inspired Mechanotactic Hybrids for Orchestrating Traction-Mediated Epithelial Migration. Adv. Mater. 2016, 28, 3102. 14. C.Y. Tay#, P. Cai#, X. Chen*, D.T. Leong*et al. Nanoparticles Strengthen Intracellular Tension and Retard Cellular Migration. Nano Lett. 2014, 14, 83.
江苏省333团队(2022年); |