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Peptide-targeted stimuli-responsive polymersomes for delivering a cancer stemness inhibitor to cancer stem cell microtumors

机译:以肽为靶标的刺激反应多聚体可将癌症干性抑制剂递送至癌症干细胞微肿瘤

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Often cancer relapses after an initial response to chemotherapy because of the tumor’s heterogeneity and the presence of progenitor stem cells, which can renew. To overcome drug resistance, metastasis, and relapse in cancer, a promising approach is the inhibition of cancer stemness. In this study, the expression of the neuropilin-1 receptor in both pancreatic and prostate cancer stem cells was identified and targeted with a stimuli-responsive, polymeric nanocarrier to deliver a stemness inhibitor (napabucasin) to cancer stem cells. Reduction-sensitive amphiphilic block copolymers PEG1900-S-S-PLA6000 and the N3-PEG1900-PLA6000 were synthesized. The tumor penetrating iRGD peptide-hexynoic acid conjugate was linked to the N3-PEG1900-PLA6000 polymer via a Cu2+ catalyzed “Click” reaction. Subsequently, this peptide-polymer conjugate was incorporated into polymersomes for tumor targeting and tissue penetration. We prepared polymersomes containing 85% PEG1900-S-S-PLA6000, 10% iRGD-polymer conjugate, and 5% DPPE-lissamine rhodamine dye. The iRGD targeted polymersomes encapsulating the cancer stemness inhibitor napabucasin were internalized in both prostate and pancreatic cancer stem cells. The napabucasin encapsulated polymersomes significantly (p < 0.05) reduced the viability of both prostate and pancreatic cancer stem cells and decreased the stemness protein expression notch-1 and nanog compared to the control and vesicles without any drug. The napabucasin encapsulated polymersome formulations have the potential to lead to a new direction in prostate and pancreatic cancer therapy by penetrating deeply into the tumors, releasing the encapsulated stemness inhibitor, and killing cancer stem cells.
机译:由于肿瘤的异质性和祖先干细胞的存在,癌症通常在对化疗产生最初反应后会复发。为了克服癌症中的耐药性,转移和复发,一种有前途的方法是抑制癌干。在这项研究中,鉴定了胰腺和前列腺癌干细胞中Neuropilin-1受体的表达,并以刺激反应性聚合物纳米载体为靶标,以将干性抑制剂(napabucasin)递送至癌症干细胞。合成了还原敏感性两亲嵌段共聚物PEG1900-S-S-PLA6000和N3-PEG1900-PLA6000。穿透肿瘤的iRGD肽-己酸共轭物通过Cu 2 + 催化的“点击”反应与N3-PEG1900-PLA6000聚合物连接。随后,将该肽-聚合物缀合物掺入聚合物囊泡中以靶向肿瘤和组织穿透。我们制备了含有85%PEG1900-S-S-PLA6000、10%iRGD-聚合物共轭物和5%DPPE-lissamine罗丹明染料的多聚体。包裹癌干抑制剂纳布布辛的iRGD靶向多聚体在前列腺和胰腺癌干细胞中均被内化。与不含任何药物的对照和囊泡相比,纳巴布沙因包封的聚合物囊泡显着降低了前列腺癌和胰腺癌干细胞的活力(p <0.05),并降低了干蛋白表达notch-1和nanog。纳帕布沙星包封的聚合物囊泡制剂有可能通过深入渗透肿瘤,释放包封的干性抑制剂并杀死癌症干细胞,从而在前列腺癌和胰腺癌治疗中引领新的方向。

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