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Synergistically Enhanced Mucoadhesive and Penetrable Polypeptide Nanogel for Efficient Drug Delivery to Orthotopic Bladder Cancer

机译:协同增强的粘膜粘附和可渗透多肽纳米凝胶用于高效药物递送至原位膀胱癌

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摘要

Intravesical chemotherapy has been recommended after the gold standard of transurethral resection of the bladder tumor to prevent bladder cancer (BC) from local recurrence in the clinic. However, due to rapid urine excretion and barrier protection of the bladder wall, the clinical performances of chemotherapeutic drugs are severely compromised. In the present work, a smart positively charged disulfide-crosslinked nanogel of oligoarginine-poly(ethylene glycol)–poly(L-phenylalanine-co-L-cystine) (R9-PEG–P(LP-co-LC)) was prepared to prolong the retention period and enhance the penetration capability of chemotherapeutic agent toward the bladder wall. PEG significantly improved the aqueous dispersibility of the 10-hydroxycamptothecin (HCPT)-loaded R9-PEG–P(LP-co-LC) (i.e., R9NG/HCPT) and enhanced the mucoadhesive capability by the nonspecific interaction between PEG chain and the bladder mucosa accompanied with the electrostatic interaction between the cationic R9 and negatively charged bladder mucosa. Besides, R9, as a cell-penetrating peptide, efficiently penetrated through the cell membrane and delivered carried cargo. The disulfide bond endowed the selective release behavior of HCPT triggered by the intracellular reductive microenvironment. As an advanced chemotherapeutic nanoformulation, the smart R9NG/HCPT demonstrated superior cytotoxicity against human BC 5637 cells in vitro and remarkably enhanced tumor suppression activity toward orthotopic BC models of mouse and rat in vivo, indicating its great potential in the clinical intravesical BC chemotherapy.
机译:在膀胱肿瘤的经尿道切除的黄金标准之后推荐了膀胱内化疗,以防止膀胱癌(BC)从诊所的局部复发。然而,由于膀胱墙的快速排泄和屏障保护,化学治疗药物的临床表现严重受损。在本作工作中,制备少量带正电荷的二硫化氢二硫化物 - 聚(乙二醇)-poly(L-苯丙氨酸-Co-L-胱氨酸)(R9-PEG-P(LP-CO-LC))的智能带正电荷的二硫键纳米凝胶延长保留期并增强化学治疗剂朝向膀胱壁的渗透能力。 PEG显着改善了10-羟基胺(HCPT)的R9-PEG-P(LP-CO-LC)(即,R9NG / HCPT)的水分散性,并通过PEG链和膀胱之间的非特异性相互作用增强了粘膜粘附能力粘膜伴随着阳离子R9和带负电荷的膀胱粘膜之间的静电相互作用。此外,R9作为细胞穿透肽,有效地穿过细胞膜并递送携带的货物。二硫键赋予由细胞内还原微环境触发的HCPT的选择性释放行为。作为先进的化学治疗纳米型纳米型,智能R9NG / HCPT在体外,朝向脑外BC模型的原位BC模型的体外和显着增强的肿瘤抑制活性表现出优异的细胞毒性,表明其在临床膀胱内的BC化疗中的巨大潜力。

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