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首页> 外文期刊>Biomacromolecules >Self-Healing pH- and Enzyme Stimuli-Responsive Hydrogels for Targeted Delivery of Gemcitabine To Treat Pancreatic Cancer
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Self-Healing pH- and Enzyme Stimuli-Responsive Hydrogels for Targeted Delivery of Gemcitabine To Treat Pancreatic Cancer

机译:吉西他滨的靶向递送的自愈性pH-和酶刺激水凝胶治疗胰腺癌

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摘要

A novel, multifunctional hydrogel that exhibits a unique set of properties for the effective treatment of pancreatic cancer (PC) is presented. The material is composed of a pentablock terpolypeptide of the type PLys-b-(PHIS-co-PBLG)-PLys-b-(PHIS-co-PBLG)-b-PLys, which is a noncytotoxic polypeptide. It can be implanted via the least invasive route and selectively delivers gemcitabine to efficiently treat PC. Simply mixing the novel terpolypeptide with an aqueous solution of gemcitabine within a syringe results in the facile formation of a hydrogel that has the ability to become liquid under the shear rate of the plunger. Upon injection in the vicinity of cancer tissue, it immediately reforms into a hydrogel due to the unique combination of its macromolecular architecture and secondary structure. Because of its pH responsiveness, the hydrogel only melts close to PC; thus, the drug can be delivered directionally toward the cancerous rather than healthy tissues in a targeted, controlled, and sustained manner. The efficacy of the hydrogel was tested in vivo on human to mouse xenografts using the drug gemcitabine. It was found that the efficacy of the hydrogel loaded with only 40% of the drug delivered in one dose was equal to or slightly better than the peritumoral injection of 100% of the free drug delivered in two doses, the typical chemotherapy used in clinics so far. This result suggests that the hydrogel can direct the delivery of the encapsulated drug effectively in the tumor tissue. Enzymes lead to its biodegradation, avoiding removal by resection of the polypeptidic carrier after cargo delivery. The unique properties of the hydrogel formed can be predetermined through its molecular characteristics, rendering it a promising modular material for many biological applications.
机译:提出了一种新的多官能水凝胶,其表现出用于有效处理胰腺癌(PC)的独特性质。该材料由Plys-B-(Phis-Co-PBLG)-Blys-B-(Phis-Co-PBLG)-B层的Pentablock Terpolype肽组成,其是非胞毒性多肽。它可以通过最不侵入性的路线植入,并选择性地提供吉西他滨以有效地治疗PC。简单地将新的三萜肽与吉西他滨的水溶液混合在注射器内导致水凝胶的容量形成,其具有在柱塞的剪切速率下成为液体的能力。在注射癌组织附近时,它由于其大分子结构和二级结构的独特组合而立即改进水凝胶。由于其pH响应性,水凝胶仅熔融靠近PC;因此,药物可以以靶向,受控和持续的方式向癌症而不是健康组织方向递送。使用药物吉西他滨体内对人体内进行水凝胶的疗效在人对小鼠异种移植物中进行测试。结果发现,只有40%的剂量载有40%的药物的水凝胶的疗效等于或略好于Peritumoral注入100%以两种剂量输送的游离药物,所以临床中使用的典型化疗远的。该结果表明,水凝胶可以在肿瘤组织中有效地指导包封的药物的递送。酶导致其生物降解,避免在货物递送后切除多肽载体去除。形成的水凝胶的独特性质可以通过其分子特性预先确定,使其成为许多生物学应用的有希望的模块化材料。

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