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首页> 外文期刊>Critical reviews in therapeutic drug carrier systems >Stimuli-Responsive Systems with Diverse Drug Delivery and Biomedical Applications: Recent Updates and Mechanistic Pathways
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Stimuli-Responsive Systems with Diverse Drug Delivery and Biomedical Applications: Recent Updates and Mechanistic Pathways

机译:具有多种药物递送和生物医学应用的刺激响应系统:最近的更新和机械途径

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摘要

With the advent of "intelligent" polymeric systems, the use of stimuli-responsive in situ gelling systems has been revolutionized. These interesting polymers exist as free-flowing aqueous solutions before administration and undergo a phase transition to form a viscoelastic gel in a physiological environ through various stimuli such as temperature, pH, solvent, biochemical, magnetic, electric, ultrasound, and photo-polymerization. These smart polymers are endowed with numerous merits such as ease of administration, sustained release, reduced frequent administration with improved patient compliance, and targeted and spatial delivery of a drug with reduced frequency of side effects. Concerted efforts are being made to modify these polymers synthetically because they hold immense potential in various fields such as polymer chemistry, materials science, pharmaceutics, bioengineering medicine, and chemical engineering. In addition to novel drug delivery, these smart polymeric systems have exhibited tremendous applications in tissue engineering, regenerative biomedicine, molecular imprinting, cancer therapy, gene delivery, theranostic and other applications. The current review mainly focuses on the fundamental principles involved during in situ gelling, use of various "smart" drug-delivery formulation systems through diverse routes for their administration, as well as their well-documented biomedical applications. The pertinent literature, marketed formulations, and recent advances on these stimuli-responsive sol-gel-transforming systems are also discussed.
机译:随着“智能”聚合物系统的出现,使用刺激反应的原位胶凝系统已经彻底改变。这些有趣的聚合物作为自由流动的水溶液作为自由流动的水性溶液在施用并经历相转变,通过各种刺激,例如温度,pH,溶剂,生物化学,磁,电,超声和光聚合在生理环境中形成粘弹性凝胶。这些智能聚合物具有许多优点,例如易于给药,持续释放,通过改善患者依从性减少频繁的施用,以及具有降低副作用频率的药物的靶向和空间递送。正在综合作用的协调努力,综合改变这些聚合物,因为它们在各种领域保持巨大的潜力,例如聚合物化学,材料科学,药物,生物工程和化学工程。除了新型药物递送外,这些智能聚合物系统还在组织工程,再生生物医学,分子印迹,癌症治疗,基因递送,治疗和其他应用中表现出巨大的应用。目前的审查主要侧重于原位胶凝期间所涉及的基本原则,通过各种途径使用各种“智能”药物交付制剂制度,以及他们记载良好的生物医学应用。还讨论了相关的文献,销售配方和这些刺激响应溶胶 - 凝胶变换系统的最新进展。

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