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Application of Collagen-Model Triple-Helical Peptide-Amphiphiles for CD44-Targeted Drug Delivery Systems

机译:胶原蛋白模型的三螺旋肽-两亲物在靶向CD44的药物递送系统中的应用

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摘要

Cancer treatment by chemotherapy is typically accompanied by deleterious side effects, attributed to the toxic action of chemotherapeutics on proliferating cells from nontumor tissues. The cell surface proteoglycan CD44 has been recognized as a cancer stem cell marker. The present study has examined CD44 targeting as a way to selectively deliver therapeutic agents encapsulated inside colloidal delivery systems. CD44/chondroitin sulfate proteoglycan binds to a triple-helical sequence derived from type IV collagen, α1(IV)1263–1277. We have assembled a peptide-amphiphile (PA) in which α1(IV)1263–1277 was sandwiched between 4 repeats of Gly-Pro-4-hydroxyproline and conjugated to palmitic acid. The PA was incorporated into liposomes composed of DSPG, DSPC, cholesterol, and DSPE-PEG-2000 (1 : 4 : 5 : 0.5). Doxorubicin-(DOX-)loaded liposomes with and without 10% α1(IV)1263–1277 PA were found to exhibit similar stability profiles. Incubation of DOX-loaded targeted liposomes with metastatic melanoma M14#5 and M15#11 cells and BJ fibroblasts resulted in IC50 values of 9.8, 9.3, and >100 μM, respectively. Nontargeted liposomes were considerably less efficacious for M14#5 cells. In the CD44+ B16F10 mouse melanoma model, CD44-targeted liposomes reduced the tumor size to 60% of that of the untreated control, whereas nontargeted liposomes were ineffective. These results suggest that PA targeted liposomes may represent a new class of nanotechnology-based drug delivery systems.
机译:化学疗法对癌症的治疗通常伴随着有害的副作用,这归因于化学疗法对来自非肿瘤组织的增殖细胞的毒性作用。细胞表面蛋白聚糖CD44已被认为是癌症干细胞标记。本研究已经检查了CD44靶向作为选择性递送封装在胶体递送系统内的治疗剂的一种方法。 CD44 /硫酸软骨素蛋白聚糖与IV型胶原α1(IV)1263-1277的三螺旋序列结合。我们组装了一个肽-两亲物(PA),其中α1(IV)1263-1277被夹在4个重复的Gly-Pro-4-羟脯氨酸之间,并与棕榈酸缀合。将PA掺入由DSPG,DSPC,胆固醇和DSPE-PEG-2000组成的脂质体中(1:4:5:0.5)。发现含有和不含10%α1(IV)1263-1277 PA的阿霉素脂质体具有相似的稳定性。将带有DOX的靶向脂质体与转移性黑色素瘤M14#5和M15#11细胞以及BJ成纤维细胞一起孵育,IC50值分别为9.8、9.3和>100μm。非靶向脂质体对M14#5细胞的功效明显较低。在CD44 + B16F10小鼠黑色素瘤模型中,靶向CD44的脂质体可将肿瘤大小降低至未处理对照组的60%,而未靶向脂质体则无效。这些结果表明,PA靶向脂质体可能代表了一类新的基于纳米技术的药物递送系统。

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