An injectable liposome-anchored teriparatide incorporated gallic acid-grafted gelatin hydrogel for osteoarthritis treatment

Abstract Intra-articular injection of therapeutics is an effective strategy for treating osteoarthritis (OA), but it is hindered by rapid drug diffusion, thereby necessitating high-frequency injections. Hence, the development of a biofunctional hydrogel for improved delivery is required. In this stu...

وصف كامل

التفاصيل البيبلوغرافية
المؤلفون الرئيسيون: Guoqing Li, Su Liu, Yixiao Chen, Jin Zhao, Huihui Xu, Jian Weng, Fei Yu, Ao Xiong, Anjaneyulu Udduttula, Deli Wang, Peng Liu, Yingqi Chen, Hui Zeng
التنسيق: مقال
اللغة:English
منشور في: Nature Portfolio 2023-05-01
سلاسل:Nature Communications
الوصول للمادة أونلاين:https://doi.org/10.1038/s41467-023-38597-0
الوصف
الملخص:Abstract Intra-articular injection of therapeutics is an effective strategy for treating osteoarthritis (OA), but it is hindered by rapid drug diffusion, thereby necessitating high-frequency injections. Hence, the development of a biofunctional hydrogel for improved delivery is required. In this study, we introduce a liposome-anchored teriparatide (PTH (1–34)) incorporated into a gallic acid-grafted gelatin injectable hydrogel (GLP hydrogel). We show that the GLP hydrogel can form in situ and without affecting knee motion after intra-articular injection in mice. We demonstrate controlled, sustained release of PTH (1–34) from the GLP hydrogel. We find that the GLP hydrogel promotes ATDC5 cell proliferation and protects the IL-1β-induced ATDC5 cells from further OA progression by regulating the PI3K/AKT signaling pathway. Further, we show that intra-articular injection of hydrogels into an OA-induced mouse model promotes glycosaminoglycans synthesis and protects the cartilage from degradation, supporting the potential of this biomaterial for OA treatment.
تدمد:2041-1723