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Radio-frequency plasma polymerized biodegradable carrier for in vivo release of cis-platinum

机译:用于体内释放顺铂的射频等离子体聚合的可生物降解载体

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摘要

A low pressure plasma process based on plasma deposition has been used to develop a drug delivery strategy. In this study, a drug delivery system based on different layers of plasma co-polymerized Poly ε-caprolactone-Polyethylene glycol (PCL-PEG) co-polymers was deposited on biocompatible substrates. Cis-platinum (118 μgm/cm2) was used as an anti-cancer drug and incorporated for local delivery of the chemotherapeutic agent. The co-polymer layers and their interaction with cancer cells were analyzed by scanning electron microscopy. Our study showed that the plasma-PCL-PEG coated cellophane membranes, in which the drug, was included did not modify the flexibility and appearance of the membranes. This system was actively investigated as an alternative method of controlling localized delivery of drug in vivo. The loading of the anti-cancer drug was investigated by UV-VIS spectroscopy and its release from plasma deposited implants against BALB/c mice liver tissues were analyzed through histological examination and apoptosis by TUNEL assay. The histological examination of liver tissues revealed that when the plasma-modified membranes encapsulated the cis-platinum, the Glisson's capsule and liver parenchyma were damaged. In all cases, inflammatory tissues and fibrosis cells were observed in contact zones between the implant and the liver parenchyma. In conclusion, low pressure plasma deposited uniform nano-layers of the co-polymers can be used for controlled release of the drug in vivo.
机译:基于等离子体沉积的低压等离子体工艺已被用于开发药物输送策略。在这项研究中,将基于血浆共聚聚ε-己内酯-聚乙二醇(PCL-PEG)共聚物不同层的药物输送系统沉积在生物相容性基质上。顺铂(118μgm/ cm 2 )被用作抗癌药物,并被掺入用于局部递送化学治疗剂。通过扫描电子显微镜分析共聚物层及其与癌细胞的相互作用。我们的研究表明,血浆-PCL-PEG包被的玻璃纸膜(其中包括该药物)不会改变膜的柔韧性和外观。积极研究了该系统,作为控制体内药物局部递送的替代方法。通过UV-VIS光谱法研究抗癌药的负载量,并通过组织学检查和TUNEL测定法分析其从血浆沉积的植入物中针对BALB / c小鼠肝脏组织的释放。肝组织的组织学检查显示,当血浆修饰的膜包封顺铂时,格里森氏囊和肝实质被破坏。在所有情况下,在植入物和肝实质之间的接触区均观察到炎性组织和纤维化细胞。总之,共聚物的低压等离子体沉积的均匀纳米层可用于体内药物的控制释放。

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