Li Yunfei, Li Peiran, Jin Mingji, Jiang Changgao, Gao Zhonggao
State Key Laboratory of Bioactive Substance and Functions of Natural Medicines, Institute of Materia Medica, Chinese Academy of Medical Science & Peking Union Medical College, Beijing 100050, China.
Surgical Department, the Affiliated Hospital of Yanbian University, Yanji 133000, China.
Int J Mol Sci. 2014 Dec 17;15(12):23571-88. doi: 10.3390/ijms151223571.
Pancreatic ductal adenocarcinoma (PDAC) elicits a dense stromal response that blocks vascular access because of pericyte coverage of vascular fenestrations. In this way, the PDAC stroma contributes to chemotherapy resistance, and the small-sized nanocarrier loaded with platinum has been adopted to address this problem which is not suitable for loading docetaxel (DTX). In the present study, we used the poly(D,L-lactide)-b-polyethylene glycol-methoxy (mPEG-b-PDLLA) to encapsulate DTX and got a small-sized polymeric micelle (SPM); meanwhile we functionalized the SPM's surface with TAT peptide (TAT-PM) for a higher permeability. The diameters of both SPM and TAT-PM were in the range of 15-26 nm. In vitro experiments demonstrated that TAT-PM inhibited Capan-2 Luc PDAC cells growth more efficiently and induced more apoptosis compared to SPM and Duopafei. The in vivo therapeutic efficiencies of SPM and TAT-PM compared to free DTX was investigated on the orthotopic transplantation model of Capan-2 Luc. SPM exerted better therapeutic efficiency than free DTX, however, TAT-PM didn't outperformed SPM. Overall, these results disclosed that SPM could represent a new therapeutic approach against pancreatic cancer, but its permeability to PDAC was not the only decisive factor.
胰腺导管腺癌(PDAC)会引发密集的基质反应,由于血管窗孔被周细胞覆盖,从而阻碍了血管通路。通过这种方式,PDAC基质导致化疗耐药,而负载铂的小型纳米载体已被用于解决这个问题,但它不适用于负载多西他赛(DTX)。在本研究中,我们使用聚(D,L-丙交酯)-b-聚乙二醇甲醚(mPEG-b-PDLLA)包裹DTX,得到了一种小型聚合物胶束(SPM);同时,我们用TAT肽对SPM的表面进行功能化修饰(TAT-PM)以提高其通透性。SPM和TAT-PM的直径均在15 - 26nm范围内。体外实验表明,与SPM和多帕菲相比,TAT-PM能更有效地抑制Capan-2 Luc PDAC细胞的生长,并诱导更多细胞凋亡。在Capan-2 Luc原位移植模型上研究了SPM和TAT-PM与游离DTX相比的体内治疗效果。SPM的治疗效果优于游离DTX,然而,TAT-PM并未优于SPM。总体而言,这些结果表明,SPM可能代表一种针对胰腺癌的新治疗方法,但其对PDAC的通透性并非唯一的决定性因素。