School of Chemical Engineering, Sungkyunkwan University, Suwon 16419, Republic of Korea.
Biomater Sci. 2023 Mar 14;11(6):1948-1961. doi: 10.1039/d2bm01519f.
"Smart" biomaterials that are responsive to pathological abnormalities are an appealing class of therapeutic platforms for the development of personalized medications. The development of such therapeutic platforms requires novel techniques that could precisely deliver therapeutic agents to the diseased tissues, resulting in enhanced therapeutic effects without harming normal tissues. Among various therapeutic platforms, injectable pH-responsive biomaterials are promising biomaterials that respond to the change in environmental pH. Aqueous solutions of injectable pH-responsive biomaterials exhibit a phase transition from sol-to-gel in response to environmental pH changes. The injectable pH-responsive hydrogel depot can provide spatially and temporally controlled release of various bioactive agents including chemotherapeutic drugs, peptides, and proteins. Therapeutic agents are imbibed into hydrogels by simple mixing without the use of toxic solvents and used for long-term storage or injection using a syringe or catheter that could form a stable gel and acts as a controlled release depot in a minimally invasive manner. Tunable physicochemical properties of the hydrogels, such as biodegradability, ability to interact with drugs and mechanical properties, can control the release of the therapeutic agent. This review highlights the advances in the design and development of biodegradable and forming injectable pH-responsive biomaterials that respond to the physiological conditions. Special attention has been paid to the development of amphoteric pH-responsive biomaterials and their utilization in biomedical applications. We also highlight key challenges and future directions of pH-responsive biomaterials in clinical translation.
对病理异常有响应的“智能”生物材料是一类有吸引力的治疗平台,可用于开发个性化药物。此类治疗平台的开发需要新的技术,这些技术可以将治疗剂精确递送到病变组织,从而增强治疗效果而又不伤害正常组织。在各种治疗平台中,可注射的 pH 响应生物材料是一种很有前途的生物材料,它可以响应环境 pH 的变化。可注射的 pH 响应生物材料的水溶液会响应环境 pH 的变化而发生从溶胶到凝胶的相转变。可注射的 pH 响应水凝胶库可以提供各种生物活性剂(包括化疗药物、肽和蛋白质)的时空控制释放。治疗剂通过简单的混合被吸入水凝胶中,而无需使用有毒溶剂,并可长期储存或通过注射器或导管进行注射,这些注射器或导管可以形成稳定的凝胶,并以微创的方式作为控制释放库。水凝胶的可调物理化学性质,如生物降解性、与药物相互作用的能力和机械性能,可以控制治疗剂的释放。本文重点介绍了可生物降解和可形成的可注射 pH 响应生物材料的设计和开发方面的进展,这些生物材料可响应生理条件。特别关注了两性 pH 响应生物材料的开发及其在生物医学应用中的利用。我们还强调了 pH 响应生物材料在临床转化中的关键挑战和未来方向。