Srinivasan Asha R, Lakshmikuttyamma Ashakumary, Shoyele Sunday A
Department of Pharmaceutical Sciences, School of Pharmacy, Thomas Jefferson University, Philadelphia, Pennsylvania 19107, United States.
Mol Pharm. 2013 Sep 3;10(9):3275-84. doi: 10.1021/mp3005935. Epub 2013 Aug 19.
The inability to deliver MAbs to intracellular targets still remains a limitation to their application in cancer therapy and diagnosis. Selective targeting of MAbs to oncoproteins in cancer cells while avoiding their accumulation in normal cells may reduce some of the well-documented adverse effects accompanying antibody therapy. One of the remarkable characteristics of malignant cells is the alteration in the biological properties of the cellular plasma membrane. Taking advantage of this alteration, we hope to selectively deliver self-associated MAb nanoparticles to cancer cells while reducing their accumulation in normal cells. We hypothesized that self-associated MAb nanoparticles can be preferentially taken up by non-small lung cancer cells in comparison to normal cells due to the absence or dysfunction of tight junctions (TJ) in confluent cancer cells and increased permeability of the cancer cell membrane. Self-associated bevacizumab nanoparticles were prepared and characterized for particle size and biochemical stability. Fluorescence microscopy, TEM, and flow cytometry revealed that these bevacizumab nanoparticles were internalized by A549 cells three times more than MRC-5 cells. Macropinocytosis and energy-dependent pathways were elucidated to be involved in their uptake by A549 cells. Further, uptake was by nonspecific interaction with cell membrane. Results obtained from this study suggest that self-associated MAb nanoparticles can be selectively delivered to cancer cells.
无法将单克隆抗体递送至细胞内靶点仍然限制了它们在癌症治疗和诊断中的应用。使单克隆抗体选择性地靶向癌细胞中的癌蛋白,同时避免其在正常细胞中蓄积,可能会减少一些已被充分证明的伴随抗体治疗的不良反应。恶性细胞的一个显著特征是细胞质膜生物学特性的改变。利用这种改变,我们希望将自缔合单克隆抗体纳米颗粒选择性地递送至癌细胞,同时减少其在正常细胞中的蓄积。我们推测,由于汇合癌细胞中紧密连接(TJ)的缺失或功能障碍以及癌细胞膜通透性增加,自缔合单克隆抗体纳米颗粒与正常细胞相比可被非小肺癌细胞优先摄取。制备了自缔合贝伐单抗纳米颗粒,并对其粒径和生化稳定性进行了表征。荧光显微镜、透射电子显微镜和流式细胞术显示,这些贝伐单抗纳米颗粒被A549细胞内化的程度是MRC-5细胞的三倍。已阐明巨胞饮作用和能量依赖途径参与了A549细胞对它们的摄取。此外,摄取是通过与细胞膜的非特异性相互作用实现的。本研究获得的结果表明,自缔合单克隆抗体纳米颗粒可被选择性地递送至癌细胞。