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使用热敏壳聚糖/果胶水凝胶治疗多种癌症的先进治疗策略。

Advanced therapeutic strategies using Thermo-sensitive chitosan/pectin hydrogel in the treatment of multiple cancers.

作者信息

Pandya Tosha, Joshi Disha, Presswala Zenab, Kulkarni Mangesh, Patel Riya, Patel Shivani, Bhattacharya Sankha, Prajapati Bhupendra G

机构信息

Department of Pharmaceutical Technology, L. J. Institute of Pharmacy, L J University, Ahmedabad, Gujarat 382210, India.

Department of Pharmaceutics, Gandhinagar Institute of Pharmacy, Gandhinagar University, Moti Bhoyan, Khatraj-Kalol Road, Gujarat 382721, India.

出版信息

Carbohydr Polym. 2025 Jun 1;357:123454. doi: 10.1016/j.carbpol.2025.123454. Epub 2025 Feb 27.

Abstract

Current cancer therapies including immunotherapy and chemotherapy produce adverse side effects that demand improved drug distribution methods. Research shows that thermosensitive chitosan/pectin-based hydrogels serve as an effective platform technology for drug delivery during cancer therapy because of their ability to control drug release at specific locations. The hydrogels perform temperature-triggered sol-gel phase shifts which enables prolonged drug delivery together with minimal toxic side effects. The biocompatible and biodegradable properties of these materials enable solutions against drug resistance and tumour heterogeneity challenges. Studies have demonstrated that these hydrogels enhance drug bioavailability, extend circulation time, and improve tumour targeting, leading to increased therapeutic efficacy and reduced systemic toxicity. Their ability to sustain drug release and penetrate tumour microenvironments makes them a promising strategy for overcoming drug resistance and tumour heterogeneity. Their ability to reproduce native tissue properties poses challenges that scientists must address through improved structural optimization approaches. The combination of latest nanotechnology innovations and interdisciplinary studies has sped up the creation of chitosan/pectin hydrogels for cancer treatment applications. This review highlights the significant advancements and demonstrated effectiveness of thermosensitive chitosan/pectin hydrogels in cancer treatment by exploring their design parameters alongside their drug release behaviour while discussing their potential medical applications.

摘要

当前的癌症治疗方法,包括免疫疗法和化疗,都会产生不良副作用,这就需要改进药物递送方法。研究表明,基于热敏壳聚糖/果胶的水凝胶因其能够在特定位置控制药物释放,故而在癌症治疗期间可作为一种有效的药物递送平台技术。这些水凝胶会发生温度触发的溶胶-凝胶相转变,从而实现延长药物递送并使毒副作用最小化。这些材料的生物相容性和可生物降解特性有助于应对耐药性和肿瘤异质性挑战。研究表明,这些水凝胶可提高药物生物利用度、延长循环时间并改善肿瘤靶向性,从而提高治疗效果并降低全身毒性。它们维持药物释放和穿透肿瘤微环境的能力使其成为克服耐药性和肿瘤异质性的一种有前景的策略。它们再现天然组织特性的能力带来了一些挑战,科学家们必须通过改进结构优化方法来应对这些挑战。最新纳米技术创新与跨学科研究的结合加速了用于癌症治疗应用的壳聚糖/果胶水凝胶的研发。本综述通过探讨热敏壳聚糖/果胶水凝胶的设计参数及其药物释放行为,并讨论其潜在的医学应用,突出了它们在癌症治疗方面取得的重大进展和已证实的有效性。

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