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智能药物输送系统,受特定生物分子激活。

Smart drug delivery system activated by specific biomolecules.

机构信息

Department of Natural Polymers, Bioactive and Biocompatible Materials, "Petru Poni" Institute of Macromolecular Chemistry, 700487 Iassy, Romania.

Interdepartmental Laboratory for Electron Microscopy, University Roma Tre, I-00146 Roma, Italy.

出版信息

Mater Sci Eng C Mater Biol Appl. 2020 Mar;108:110466. doi: 10.1016/j.msec.2019.110466. Epub 2019 Nov 20.

Abstract

Essentially, the human body can release in different disease conditions specific biomolecules such as histamines when the body encounters a toxic substance, antibodies which are part of the body's natural immune response or nitric oxide as a cardiovascular signalling molecule. Design and development of "intelligent" delivery systems able to release the therapeutic agent only in the presence of bioactive compounds was presented here. Poly(N-isopropylacrylamide-co-N-(3-aminopropyl)methacrylamide)) (poly(NIPAAm-co-APM)) was synthesized as an exciting pH/temperature sensitive copolymer. Under physiological conditions (pH = 7.4), the APM in copolymer is in the ionized state (pK = 8.7), highly hydrophilic and therefore the copolymer loses thermosensitive properties. Remarkably, after electrostatic interactions of APM with specific biomolecules, the copolymer restores the thermosensitive property. Thus, the microgels synthesized from this copolymer are in the "inactivated" state at normal physiological pH and temperature (pH = 7.4 and T = 36 °C). In the presence of specific biomolecules, microgels undergo "activation", shrink and expel mechanically a certain amount of drug. It must be mentioned that the pH-sensitive component plays the role of a biosensor, the biomolecule acts as a triggering agent, and the poly(NIPAAm) represents the delivery component (actuator). MTT tests showed that poly(NIPAAm-co-APM) microspheres are completely devoid of toxicity; moreover, the rabbit dermal fibroblasts vastly adhere to the surface of microspheres.

摘要

从本质上讲,当人体遇到有毒物质时,会释放出特定的生物分子,如组胺,这是身体的自然免疫反应的一部分的抗体,或作为心血管信号分子的一氧化氮。本文提出了设计和开发“智能”输送系统的方法,该系统能够仅在存在生物活性化合物的情况下释放治疗剂。聚(N-异丙基丙烯酰胺-co-N-(3-氨基丙基)甲基丙烯酰胺)(poly(NIPAAm-co-APM))被合成作为一种令人兴奋的 pH/温度敏感共聚物。在生理条件下(pH = 7.4),共聚物中的 APM 处于离子化状态(pK = 8.7),高度亲水,因此共聚物失去了热敏特性。值得注意的是,APM 与特定生物分子静电相互作用后,共聚物恢复了热敏特性。因此,由该共聚物合成的微凝胶在正常生理 pH 和温度(pH = 7.4 和 T = 36°C)下处于“失活”状态。在存在特定生物分子的情况下,微凝胶会“激活”,收缩并机械地排出一定量的药物。必须提到的是,pH 敏感组分起着生物传感器的作用,生物分子作为触发剂,而聚(NIPAAm)代表输送组件(执行器)。MTT 测试表明,poly(NIPAAm-co-APM)微球完全没有毒性;此外,兔真皮成纤维细胞大量附着在微球的表面。

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