蒋灵冬,深圳市海外高层次C类人才,2012年本科毕业于中南大学,硕士毕业于哈尔滨工业大学,师从国家杰青戴志飞教授,2018年获得瑞典隆德大学博士学位,师从分子印迹领域专家叶磊教授,博士毕业后于美国加州大学戴维斯分校(李源培教授课题组,分子自组装和药物递送)和深圳大学(何前军教授课题组,纳米气体药物递送)进行博士后研究,致力于多肽纳米药物和气体纳米药物的癌症精准诊疗研究。
Jiang, L.; Chen, D.; Jin, Z.; Xia, C.; Xu, Q.; Fan, M.; Dai, Y.; Liu, J.*; Li Y.*; He, Q.*. Light-triggered nitric oxide release and structure transformation of peptide for enhanced intratumoral retention and sensitized photodynamic therapy. Bioactive Materials, 2022, 12, 303–313.
Gong,W.; Jiang, L.; Zhu, Y.; Jiang, M.; Chen, D.; Jin, Z.; Qin, S.; Yu, Z.*; He, Q.*. An activity-based ratiometric fluorescent probe for in vivo real-time imaging of hydrogen molecules, Angewandte Chemie International Edition, 2022, 61, e202114594.
Guo, X.;Liu, J.;Jiang, L.;Gong, W.;Wu, H.*; He, Q.*. Sulourea-coordinated Pd nanocubes for NIR-responsive photothermal/H2S therapy of cancer. Journal of Nanobiotechnology, 2021, 19, 1–14.
Jiang, L.; Ye, L.*. Nanoparticle supported temperature responsive polymer brushes for affinity separation of histidine-tagged recombinant proteins. Acta Biomaterialia, 2019, 94, 447–458.
Jiang, L.; Lu, R.; Ye, L.*. Towards detection of glycoproteins using molecularly imprinted nanoparticles and boronic acid-modified fluorescent probe. Polymers, 2019, 11, 173.
Jiang, L.; Bonde, J.; Ye, L.*. Temperature and pH controlled self-assembly of a protein–polymer biohybrid. Macromolecular Chemistry and Physics, 2018, 1700597.
Jiang, L.; Messing, M. E.; Ye, L.*. Temperature and pH dual-responsive core-brush nanocomposite for enrichment of glycoproteins. ACS applied materials & interfaces, 2017, 9, 8985–8995.
Jiang, L.; Bagán, H.; Kamra, T.; Zhou, T.; Ye, L.*. Nanohybrid polymer brushes on silica for bioseparation. Journal of Materials Chemistry B, 2016, 4, 3247–3256.
Jiang, L.; Hu, L.; Lin, L.; Feng, S.; Li, X.*. The progress of high-intensity focused ultrasound controlled drug delivery. Progress in Modern Biomedicine, 2016, 16, 775–777.
Liang, X.; Gao, J.; Jiang, L.; Luo, J.; Jing, L.; Li, X.; Jin, Y.; Dai, Z.*. Nanohybrid liposomal cerasomes with good physiological stability and rapid temperature responsiveness for high intensity focused ultrasound triggered local chemotherapy of cancer. ACS Nano, 2015, 9, 1280–1293.
联系方式:
jianglingdong@sztu.edu.cn