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首页> 外文期刊>Acta biomaterialia >Double-crosslinked nanocomposite hydrogels for temporal control of drug dosing in combination therapy
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Double-crosslinked nanocomposite hydrogels for temporal control of drug dosing in combination therapy

机译:双交联纳米复合水凝胶,用于组合治疗中药物剂量的时间控制

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Temporal control of drug dosing is indispensable for a successful combination therapy that utilizes cisplatin (CDDP) and irinotecan (IRN), with clinical evidence supporting a higher response rate when CDDP was administered prior to IRN. Herein, a peptide-based nanocomposite hydrogel (CDDP/Pept-AlgNP/IRN) was designed for differential release of CDDP and IRN to maximize synergism of two drugs. First, a double-crosslinking strategy was exploited for structural reinforcement of hydrogel, with integration of coordination interactions between CDDP and hydrogelator (Pept) as well as electrostatic interactions between Pept and alginate nanoparticles (AlgNP/IRN), that afforded nanocomposite hydrogel with 42-fold increase in storage modulus comparing to peptide gel alone. Next, the nanocomposite hydrogel with excellent injectability served as a depot for controlled release of dual drugs, and guaranteed a fast release of CDDP prior to a tunable release of IRN that is dependent on fraction ratios of AlgNP in the composite materials. Comparing to simple mixture of CDDP and IRN solution, CDDP/Pept-AlgNP/IRN hydrogel formulation demonstrated excelling synergism of CDDP and IRN in cell inhibition studies, with efficacious antitumor potency further proved in tumor regression studies in vivo. We believe that the strategy of utilizing co-assembly of multiple pairs of entities (Le. drug-gelator, nanoparticle-gelator) in composite materials provides a generalized method to design mechanically stable supramolecular hydrogels, and further promises an exact temporal control of drug dosing by packing individual drugs in co-assembled structures/domains to satisfy clinical demands from combination therapy.
机译:药物剂量的时间控制对于使用顺铂(CDDP)和伊替替康(IRN)的成功组合治疗是必不可少的,所述临床证据在IRN之前施用CDDP时支持更高的反应率。这里,设计了一种基于肽的纳米复合材料水凝胶(CDDP / PEPT-algnP / IRN),用于CDDP和IRN的差异释放,以最大化两种药物的协同作用。首先,利用双交联策略进行水凝胶的结构增强,通过CDDP和水凝胶器(Pept)之间的配位相互作用以及Pept和藻酸盐纳米颗粒(藻NP / IRN)之间的静电相互作用,得到纳米复合水凝胶,具有42-单独递减与肽凝胶的储存模量增加。接下来,具有优异可注射性的纳米复合水凝胶作为用于双药的控制释放的贮库,并在IRN的可调谐释放之前保证CDDP的快速释放,其取决于复合材料中的藻类的分数比。比较与CDDP和IRN溶液的简单混合物,CDDP / PEPT-algNP / IRN水凝胶制剂表现出CDDP和IRN在细胞抑制研究中表现出优异的协同作用,有效的抗肿瘤效力进一步证明了体内肿瘤回归研究。我们认为,在复合材料中利用多对实体(Le。药物 - 凝胶剂,纳米颗粒 - 胶凝胶剂)的共同组装的策略提供了设计机械稳定的超分子水凝胶的广义方法,并进一步承诺进行药物剂量的精确时间控制通过将各种药物包装在共组合的结构/结构域中,以满足组合治疗的临床需求。

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