Showing results (31-40 of 53) with videos related to
Sort By:
Pageof 6
Nature Communications|June 5, 2020
Ultrasmall copper-based nanoparticles for reactive oxygen species scavenging and alleviation of inflammation related diseasesTengfei Liu, Bowen Xiao, Fei Xiang, et al.Stem Cells and Development|December 9, 2016
P311 Accelerates Skin Wound Reepithelialization by Promoting Epidermal Stem Cell Migration Through RhoA and Rac1 ActivationZhihui Yao, Haisheng Li, Weifeng He, et al.Scientific Reports|November 26, 2024
Efficient removal of estradiol using MnFe2O4 microsphere and potassium persulfate complex saltWeiwei Yu, Ting Ai, Weizhe Sun, et al.Tissue Engineering. Part C, Methods|March 18, 2015
Three-Dimensional Histological Structures of the Human DermisYuzhen Wang, Rui Xu, Weifeng He, et al.Journal of Cellular and Molecular Medicine|July 9, 2009
A novel recombinant immunotoxin with the smallest ribosome-inactivating protein Luffin P1: T-cell cytotoxicity and prolongation of allograft survivalRupeng Wang, Chenjun Gan, Wenda Gao, et al.Scientific Reports|July 30, 2016
Nitric oxide promotes epidermal stem cell migration via cGMP-Rho GTPase signallingRixing Zhan, Weifeng He, Fan Wang, et al.Zhonghua Shao Shang Za Zhi = Zhonghua Shaoshang Zazhi = Chinese Journal of Burns|September 1, 2015
[Role of dentritic epidermal T lymphocytes in immune rejection of skin allograft in mice and its mechanism]Hua Huang, Rongshuai Yan, Meisi Liu, et al.Journal of Nanobiotechnology|April 16, 2020
A multifunctional platform with single-NIR-laser-triggered photothermal and NO release for synergistic therapy against multidrug-resistant Gram-negative bacteria and their biofilmsBaohua Zhao, He Wang, Wenjing Dong, et al.Journal of Nanobiotechnology|September 26, 2020
Correction to: A multifunctional platform with single-NIR-laser-triggered photothermal and NO release for synergistic therapy against multidrug-resistant Gram-negative bacteria and their biofilmsBaohua Zhao, He Wang, Wenjing Dong, et al.Acta Biomaterialia|November 26, 2015
Biomimetic fibroblast-loaded artificial dermis with "sandwich" structure and designed gradient pore sizes promotes wound healing by favoring granulation tissue formation and wound re-epithelializationYuzhen Wang, Rui Xu, Gaoxing Luo, et al.Pageof 6