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用于生物医学应用的混合水凝胶设计进展:妇科癌症药物递送与组织工程的创新

Advances in hybrid hydrogel design for biomedical applications: innovations in drug delivery and tissue engineering for gynecological cancers.

作者信息

Chang Hua, Wei Heng, Qi Yue, Ding Silu, Li Hui, Si Si

机构信息

Department Gynecology, The First Hospital of China Medical University, Shenyang, Liaoning, China.

Department of Obstetrics and Gynecology, Shengjing Hospital of China Medical University, Liaoning, China.

出版信息

Cell Biol Toxicol. 2025 Jul 12;41(1):115. doi: 10.1007/s10565-025-10064-0.

Abstract

Hybrid hydrogels have emerged as multifunctional biomaterials for targeted drug delivery and tissue engineering in gynecologic oncology. In this review, we summarize recent advances in the design of hybrid hydrogels that combine polymer networks with nanomaterials to achieve tunable stimuli-responsiveness, enhanced mechanical strength, and improved biocompatibility. For example, preclinical studies of folate-conjugated liposomal doxorubicin have demonstrated enhanced accumulation and antitumor efficacy in ovarian cancer models, while growth factor-loaded hydrogel scaffolds have supported endometrial repair in rodent models. We discuss strategies for optimizing drug loading, controlling spatiotemporal release profiles in response to tumor-specific cues (such as pH or enzyme activity), and customizing scaffold architecture for patient-specific regenerative needs. Implementation challenges-including efficient encapsulation of multiple cargos, precise control over degradation rates, and scale-up for clinical manufacturing-are critically examined. Finally, we outline future directions, including multifunctional platforms that integrate real-time monitoring with combined chemo-immunotherapy and approaches to address regulatory and translation hurdles. This evidence-based analysis highlights how hybrid hydrogels can advance precision therapy and regenerative medicine for gynecologic cancers while there is a need for further validation in clinical settings.

摘要

混合水凝胶已成为妇科肿瘤学中用于靶向给药和组织工程的多功能生物材料。在本综述中,我们总结了混合水凝胶设计的最新进展,这种水凝胶将聚合物网络与纳米材料相结合,以实现可调节的刺激响应性、增强的机械强度和改善的生物相容性。例如,叶酸偶联脂质体阿霉素的临床前研究表明,在卵巢癌模型中其积累和抗肿瘤疗效增强,而负载生长因子的水凝胶支架在啮齿动物模型中支持子宫内膜修复。我们讨论了优化药物负载、响应肿瘤特异性信号(如pH值或酶活性)控制时空释放曲线以及根据患者特定的再生需求定制支架结构的策略。对实施挑战进行了严格审查,包括多种货物的有效封装、对降解速率的精确控制以及临床生产的扩大规模。最后,我们概述了未来的方向,包括将实时监测与联合化学免疫疗法相结合的多功能平台以及解决监管和转化障碍的方法。这项基于证据的分析突出了混合水凝胶如何能够推动妇科癌症的精准治疗和再生医学发展,同时在临床环境中仍需要进一步验证。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b30/12254095/1ddd5c9b06d7/10565_2025_10064_Fig1_HTML.jpg

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