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水凝胶与微凝胶协同实现生物因子的时空递送,以唤醒髓核来源干细胞进行椎间盘内源性修复

Hydrogel and Microgel Collaboration for Spatiotemporal Delivery of Biofactors to Awaken Nucleus Pulposus-Derived Stem Cells for Endogenous Repair of Disc.

作者信息

Wang Junwu, Huang Yilong, Luan Tian, Shi Pengzhi, Guo Lanhong, Zhang Qi, Shi Guang, Hao Zhuowen, Chen Tianhong, Zhang Liang, Li Jingfeng

机构信息

Department of Orthopedics, Zhongnan Hospital of Wuhan University, Wuhan, 430071, China.

Department of Orthopedics, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, 430022, China.

出版信息

Small. 2024 Dec;20(49):e2404732. doi: 10.1002/smll.202404732. Epub 2024 Sep 23.

Abstract

Depletion of nucleus pulposus-derived stem cells (NPSCs) is a major contributing factor to the attenuation of endogenous regenerative capacity in intervertebral disc degeneration (IVDD). Introducing a hydrogel drug delivery system is a potential strategy for counteracting endogenous cell depletion. The present study proposes a delivery platform for the spatiotemporal release of multiple drugs by combining sodium alginate hydrogels with gelatin microgels (SCGP hydrogels). The SCGP hydrogels facilitated the initial release of chondroitin sulfate (ChS) and the gradual release of an independently developed parathyroid hormone-related peptide (P2). The combined action of these two small molecule drugs "awakened" the reserve NPSCs, mitigated cell damage induced by HO, significantly enhanced their biological activity, and promoted their differentiation toward nucleus pulposus cells. The mechanical and viscoelastic properties of the hydrogel are enhanced by physical and chemical dual cross-linking to adapt to the loading environment of the degenerated disc. A rat IVDD model is used to validate that the SCGP hydrogel can significantly inhibit the progression of IVDD and stimulate the endogenous repair of IVDD. Therefore, the spatiotemporal differential drug delivery system of the SCGP hydrogel holds promise as a convenient and efficacious therapeutic strategy for minimally invasive IVDD treatment.

摘要

髓核来源干细胞(NPSCs)的耗竭是椎间盘退变(IVDD)中内源性再生能力减弱的主要促成因素。引入水凝胶药物递送系统是对抗内源性细胞耗竭的一种潜在策略。本研究提出了一种通过将海藻酸钠水凝胶与明胶微凝胶相结合(SCGP水凝胶)实现多种药物时空释放的递送平台。SCGP水凝胶促进了硫酸软骨素(ChS)的初始释放以及自主研发的甲状旁腺激素相关肽(P2)的逐步释放。这两种小分子药物的联合作用“唤醒”了储备的NPSCs,减轻了HO诱导的细胞损伤,显著增强了它们的生物学活性,并促进它们向髓核细胞分化。通过物理和化学双重交联增强了水凝胶的力学和粘弹性性能,以适应退变椎间盘的负载环境。使用大鼠IVDD模型验证SCGP水凝胶可显著抑制IVDD的进展并刺激IVDD的内源性修复。因此,SCGP水凝胶的时空差异药物递送系统有望成为一种方便有效的微创IVDD治疗策略。

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