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用于将 TGFβ 抑制剂靶向递送至肝癌细胞的杂化聚合物-蛋白纳米载体(HPPNC)。

Hybrid polymeric-protein nano-carriers (HPPNC) for targeted delivery of TGFβ inhibitors to hepatocellular carcinoma cells.

机构信息

CNR NANOTEC-Istituto di Nanotecnologia, Via Monteroni, Lecce, 73100, Italy.

Dipartmento di Matematica and Fisica "E. de Giorgi", University of Salento, Via Monteroni, Lecce, 73100, Italy.

出版信息

J Mater Sci Mater Med. 2017 Aug;28(8):120. doi: 10.1007/s10856-017-5930-7. Epub 2017 Jul 6.

Abstract

TGFβ1 pathway antagonists have been considered promising therapies to attenuate TGFβ downstream signals in cancer cells. Inhibiting peptides, as P-17 in this study, are bound to either TGFβ1 or its receptors, blocking signal transduction. However, for efficient use of these TGFβ1antagonist as target therapeutic tools, improvement in their delivery is required. Here, a plasmid carrying specific shDNA (SHT-DNA), small interfering RNA (siRNA), and the peptide (P-17) were loaded separately into folic acid (FA)-functionalized nano-carriers made of Bovine Serum Albumin (BSA). The two building blocks of the carrier, (BSA and FA) were used because of the high affinity of albumin for liver and for the overexpression of folate receptors on the membrane of hepatocellular carcinoma cells. The empty and the encapsulated carriers were thoroughly investigated to characterize their structure, to evaluate the colloidal stability and the surface functionalization. The entrapment of SHT-DNA, siRNA and P-17, respectively, was demonstrated by morphological and quantitative analysis. Finally, cellular studies were performed to assess the targeting efficiency of the hybrid carriers. These vectors were used because of the high affinity of albumin for liver and for the overexpression of folate receptors on the membrane hepatocellular carcinoma cells. The empty and the encapsulated carriers were thoroughly investigated to characterize their structure, to evaluate the colloidal stability and the surface functionalization. The entrapment of SHT-DNA, siRNA and P-17, respectively, was demonstrated by morphological and quantitative analysis. A novel fabrication of Hybrid Polymeric-Protein Nano-Carriers (HPPNC) for delivering TGF β1 inhibitors to HCC cells has been developed. SHT-DNA, siRNA and P-17 have been successfully encapsulated. TGF β1 inhibitors-loaded HPPNC were efficiently uptaken by HLF cells.

摘要

TGFβ1 途径拮抗剂被认为是一种有前途的治疗方法,可以减弱癌细胞中 TGFβ 的下游信号。在本研究中,像 P-17 这样的抑制肽与 TGFβ1 或其受体结合,阻断信号转导。然而,为了有效地将这些 TGFβ1 拮抗剂作为靶向治疗工具,需要改善它们的递送。在这里,一种携带特定 shDNA(SHT-DNA)、小干扰 RNA(siRNA)和肽(P-17)的质粒分别被装载到叶酸(FA)功能化的纳米载体中,该载体由牛血清白蛋白(BSA)制成。载体的两个构建块(BSA 和 FA)被用于白蛋白对肝脏的高亲和力和肝癌细胞膜上叶酸受体的过表达。空载体和包封载体都经过了彻底的研究,以表征它们的结构,评估胶体稳定性和表面功能化。通过形态和定量分析分别证明了 SHT-DNA、siRNA 和 P-17 的包封。最后,进行了细胞研究以评估杂交载体的靶向效率。这些载体被用于白蛋白对肝脏的高亲和力和肝癌细胞膜上叶酸受体的过表达。空载体和包封载体都经过了彻底的研究,以表征它们的结构,评估胶体稳定性和表面功能化。通过形态和定量分析分别证明了 SHT-DNA、siRNA 和 P-17 的包封。一种用于将 TGFβ1 抑制剂递送到 HCC 细胞的新型 Hybrid Polymeric-Protein Nano-Carriers(HPPNC)的制备方法已经开发出来。SHT-DNA、siRNA 和 P-17 已成功封装。TGFβ1 抑制剂负载的 HPPNC 被 HLF 细胞有效摄取。

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