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Small (Weinheim an Der Bergstrasse, Germany)|February 1, 2020
Scar Tissue-Targeting Polymer Micelle for Spinal Cord Injury TreatmentJingkai Wang, Dongdong Li, Chengzhen Liang, et al.Bioactive Materials|April 12, 2021
Injectable kartogenin and apocynin loaded micelle enhances the alleviation of intervertebral disc degeneration by adipose-derived stem cellChao Yu, Dongdong Li, Chenggui Wang, et al.Bioactive Materials|April 7, 2022
A conductive supramolecular hydrogel creates ideal endogenous niches to promote spinal cord injury repairBiao Yang, Chengzhen Liang, Di Chen, et al.Biomaterials|March 19, 2022
Enhancement of nucleus pulposus repair by glycoengineered adipose-derived mesenchymal cellsLiwei Ying, Chengzhen Liang, Yujie Zhang, et al.Current Stem Cell Research & Therapy|April 23, 2020
Transplantation Strategies for Spinal Cord Injury Based on Microenvironment ModulationJiawei Shu, Feng Cheng, Zhe Gong, et al.Stem Cells International|February 23, 2023
Metabolic Glycoengineering: A Promising Strategy to Remodel Microenvironments for Regenerative TherapyYi Li, Yuang Zhang, Yiqin Tao, et al.ACS Nano|November 19, 2025
In Situ Supply and Anchoring of Glycosaminoglycan by Dual-Modified Hydrogel Loaded with Glycoengineered Stem Cells for Attenuating Disc DegenerationYi Li, Jian Cao, Chengzhen Liang, et al.Advanced Healthcare Materials|September 27, 2022
Collagen Niches Affect Direct Transcriptional Conversion toward Human Nucleus Pulposus Cells via Actomyosin ContractilityKesi Shi, Chengzhen Liang, Xianpeng Huang, et al.Bioengineering & Translational Medicine|September 11, 2023
Thermosensitive hydrogel-based GPR124 delivery strategy for rebuilding blood-spinal cord barrierJiawei Shu, Chenggui Wang, Yiqing Tao, et al.Molecular Therapy : the Journal of the American Society of Gene Therapy|June 16, 2024
Dedifferentiation-like reprogramming of degenerative nucleus pulposus cells into notochordal-like cells by defined factorsYuang Zhang, Chengzhen Liang, Haibin Xu, et al.Pageof 5