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Targeted Therapeutic Nanotubes Influence the Viscoelasticity of Cancer Cells to Overcome Drug Resistance

机译:靶向治疗纳米管影响癌细胞的粘弹性以克服耐药性

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Resistance to chemotherapy is the primary cause of treatment failure in over 90% of cancer patients in the clinic. Research in nanotechnology-based therapeutic alternatives has helped provide innovative and promising strategies to overcome multidrug resistance (MDR). By targeting CD44-overexpressing MDR cancer cells, we have developed in a single-step a self-assembled, self-targetable, therapeutic semiconducting single-walled carbon nanotube (sSWCNT) drug delivery system that can deliver chemotherapeutic agents to both drug-sensitive OVCAR8 and resistant OVCAR8/ADR cancer cells. The novel nanoformula with a cholanic acid-derivatized hyaluronic acid (CAHA) biopolymer wrapped around a sSWCNT and loaded with doxorubicin (DOX), CAHA-sSWCNT-DOX, is much more effective in killing drug-resistant cancer cells compared to the free DOX and phospholipid PEG (PLPEG)- modified sSWCNT formula, PEG-sSWCNT-DOX. The CAHA-sSWCNT-DOX affects the viscoelastic property more than free DOX and PL-PEG-sSWCNT-DOX, which in turn allows more drug molecules to be internalized. Intravenous injection of CAHA-sSWCNT-DOX (12 mg/kg DOX equivalent) followed by 808 nm laser irradiation (1 W/cm~2, 90 s) led to complete tumor eradication in a subcutaneous OVCAR8/ADR drug-resistant xenograft model, while free DOX alone failed to delay tumor growth. Our newly developed CAHA-sSWCNT-DOX nanoformula, which delivers therapeutics and acts as a sensitizer to influence drug uptake and induce apoptosis with minimal resistance factor, provides a novel effective means of counteracting the phenomenon of multidrug resistance.
机译:对化疗的耐药性是诊所90%以上癌症患者治疗失败的主要原因。基于纳米技术的治疗替代品的研究有助于提供创新且有希望的策略来克服多药耐药性(MDR)。通过靶向过表达CD44的MDR癌细胞,我们一步一步开发了一种自组装,可自我靶向的治疗性半导体单壁碳纳米管(sSWCNT)药物输送系统,该系统可以将化学治疗剂输送至两种药物敏感性OVCAR8和耐药的OVCAR8 / ADR癌细胞。与游离DOX相比,新颖的纳米配方具有胆碱酸衍生的透明质酸(CAHA)生物聚合物包裹在sSWCNT周围,并装有阿霉素(DOX),CAHA-sSWCNT-DOX,在杀死耐药性癌细胞方面更加有效。磷脂PEG(PLPEG)修饰的sSWCNT公式,PEG-sSWCNT-DOX。与游离的DOX和PL-PEG-sSWCNT-DOX相比,CAHA-sSWCNT-DOX对粘弹性的影响更大,从而使更多的药物分子被内化。静脉内注射CAHA-sSWCNT-DOX(相当于12 mg / kg DOX),然后进行808 nm激光照射(1 W / cm〜2,90 s),导致在皮下OVCAR8 / ADR耐药的异种移植模型中彻底根除肿瘤,而免费的DOX不能延缓肿瘤的生长。我们新开发的CAHA-sSWCNT-DOX纳米配方具有极强的抵抗力,可提供治疗方法并充当敏化剂,以影响药物吸收和诱导细胞凋亡的作用,为抵消多药耐药现象提供了一种新颖有效的手段。

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