Liao Xun, Zhou Junxiu, Feng Liang, Wang Lian, Wu Hong, Jiang Li, Jia Yuanyuan, Wu Qingbin, Shen Shu
Tianfu Jincheng Laboratory, Chengdu, China.
Colorectal Cancer Center, Department of General Surgery, West China Hospital, Sichuan University, Chengdu, China.
Front Bioeng Biotechnol. 2025 Aug 20;13:1673134. doi: 10.3389/fbioe.2025.1673134. eCollection 2025.
Hepatocellular carcinoma (HCC) represents a major global health burden due to its high recurrence and mortality rates. For patients with advanced HCC and compromised liver function, Pharmacotherapy has become the primary approach due to the limited efficacy of conventional treatments (e.g., surgical resection/ablation). Nevertheless, traditional anti-tumor agents suffer from poor target selectivity, systemic toxicity, and the emergence of drug resistance. To overcome these challenges, stimuli-responsive biomaterials have been developed as innovative strategies to improve HCC management. These advanced materials enable precise spatiotemporal control of drug delivery and release, thereby enhancing therapeutic efficacy while reducing side effects. This review provides a systematic overview of stimuli-responsive biomaterials, classified based on their responses to endogenous cues (e.g., pH, enzymes, and redox conditions) and exogenous stimuli (e.g., light and magnetic fields). These materials show great potential in overcoming biological barriers in HCC therapy and enhancing drug delivery efficiency, thereby paving the way for future clinical applications. By analyzing recent advances, this review highlights the potential of stimuli-responsive biomaterials in advancing therapeutic strategies for HCC. Integrating these materials into HCC therapy may significantly enhance patient outcomes and revolutionize existing treatment paradigms.
肝细胞癌(HCC)因其高复发率和死亡率而成为全球主要的健康负担。对于晚期HCC且肝功能受损的患者,由于传统治疗方法(如手术切除/消融)疗效有限,药物治疗已成为主要治疗手段。然而,传统抗肿瘤药物存在靶向选择性差、全身毒性以及耐药性出现等问题。为克服这些挑战,已开发出刺激响应性生物材料作为改善HCC治疗的创新策略。这些先进材料能够实现药物递送和释放的精确时空控制,从而提高治疗效果并减少副作用。本综述系统概述了刺激响应性生物材料,根据它们对内源性信号(如pH值、酶和氧化还原条件)和外源性刺激(如光和磁场)的响应进行分类。这些材料在克服HCC治疗中的生物屏障和提高药物递送效率方面显示出巨大潜力,从而为未来的临床应用铺平道路。通过分析近期进展,本综述强调了刺激响应性生物材料在推进HCC治疗策略方面的潜力。将这些材料整合到HCC治疗中可能会显著改善患者预后并彻底改变现有治疗模式。