制备黏附性乳液微凝胶并评估其体外黏附特性的方案

IF 1 Q3 BIOLOGY Bio-protocol Pub Date : 2024-07-05 DOI:10.21769/BioProtoc.5027
Mariia S Saveleva, Mikhail E Lobanov, Oksana A Mayorova
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引用次数: 0

摘要

膀胱内灌注是一种高效的治疗技术,它将药物有针对性地直接注入病变部位,以治疗膀胱疾病。这是一种替代传统全身用药的方法。然而,这种技术需要反复操作,可能导致尿道更严重的炎症和感染。迄今为止,能够在膀胱腔内长时间保留药物的新型系统正在积极开发中。我们最近报道了一种靶向给药系统,该系统基于天然成分分离乳清蛋白组成的粘液粘附性乳液微凝胶。这种微米大小的载体具有高负载能力、延长药物释放时间以及对膀胱尿路黏膜的高效黏附特性。作为这项工作的延续,我们提出了一种用于合成粘液粘附性乳液微凝胶的方案。我们讨论了制备前体溶液的详细步骤,以及利用猪膀胱尿路黏膜模型研究微凝胶的物理化学参数(包括负载能力和药物释放率)和黏附特性。此外,还给出了每个实验阶段值得注意的预防措施和细微差别。主要特点 - 介绍了基于分离乳清蛋白的粘液粘附性乳液微凝胶的合成方案。讨论了乳液微凝胶合成的实验条件。- 介绍了研究黏附性乳液微凝胶的物理化学特性(乳液微凝胶颗粒大小、负载能力、释放动力学)的方法。- 使用猪膀胱组织体外模型演示了评估乳液微凝胶粘附特性的方法。
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A Protocol for Preparing Mucoadhesive Emulsion Microgels and Assessing Their Mucoadhesion Properties In Vitro.

Intravesical instillation is an efficient therapeutic technique based on targeted administration of a drug directly into the lesion for the treatment of bladder diseases. This is an alternative to traditional systemic administration of drugs. However, this technique requires repeated procedures, which can lead to even greater inflammation and infection of the urethra. To date, novel systems that allow prolonged drug retention in the bladder cavity are actively being developed. We recently reported a targeted drug delivery system based on the mucoadhesive emulsion microgels consisting of the natural component whey protein isolate. Such micron-sized carriers possess high loading capacity, a prolonged drug release profile, and efficient mucoadhesive properties to the bladder urothelium. As a continuation of this work, we present a protocol for the synthesis of mucoadhesive emulsion microgels. Detailed procedures for preparing precursor solutions as well as studying the physico-chemical parameters of microgels (including loading capacity and drug release rate) and the mucoadhesive properties using the model of porcine bladder urothelium are discussed. Precautionary measures and nuances that are worth paying attention to during each experimental stage are given as well. Key features • The protocol for the synthesis of mucoadhesive emulsion microgels based on whey protein isolate is presented. The experimental conditions of emulsion microgels synthesis are discussed. • Methods for studying the physico-chemical properties of mucoadhesive emulsion microgels (size of emulsion microgels particles, loading capacity, release kinetics) are described. • The method for assessing mucoadhesive properties of emulsion microgels is demonstrated using the porcine bladder tissue model ex vivo.

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