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载布帕喹酮固体脂质纳米粒的形状介导脾靶向递药。

Shape mediated splenotropic delivery of buparvaquone loaded solid lipid nanoparticles.

机构信息

Department of Pharmaceutical Sciences & Technology, Institute of Chemical Technology, Elite status and Centre of Excellence, Deemed University, Nathalal Parekh Marg, Matunga, Mumbai, 400019, India.

Comparative Oncology Program and Small Animal Imaging Facility, Advanced Centre for Treatment, Education and Research in Cancer, Tata Memorial Centre, Kharghar, Navi Mumbai, 410210, India.

出版信息

Drug Deliv Transl Res. 2020 Feb;10(1):159-167. doi: 10.1007/s13346-019-00670-x.

Abstract

Buparvaquone (BPQ)-loaded asymmetric solid lipid nanoparticles (SLN) prepared by a modified nanoprecipitation method were evaluated for splenotropic drug delivery. BPQ SLN exhibited an average particle size of 650.28 ± 6.75 nm with polydispersity index ≤ 0.3, entrapment efficiency of 96.57 ± 0.190%, and drug loading of 24.63 ± 0.042%. Scanning electron microscopy (SEM) revealed elongated particles with flattened and rounded edges. Aspect ratio, an important determinant of asymmetricity of the BPQ SLN, measured as the ratio of average length (1143 ± 0.083 nm) to width (419 ± 0.031 nm) was found to be 2.727 ± 0.19. The hemolytic potential of 10.86 ± 0.04% and good serum stability suggested feasibility for intravenous administration. Tc-labeled BPQ SLN revealed high radiolabeling efficiency (> 95%) and good stability. Intravenous administration in mice revealed > 75% accumulation in the reticuloendothelial system organs. The percent radioactivity per gram of organ was in the order spleen > kidney > lungs > liver > lymph nodes, with high splenic accumulation and significantly lower concentration in the liver. An astoundingly high spleen/liver ratio with a maximum of 11.94 ± 1.37 at 3 h, which confirmed high splenic uptake is attributed to Kupffer cell bypass. Other factors contributing to splenotropy are the rigidity and the low molecular weight of the lipid in the BPQ SLN which enabled translocation of the particles into the splenic pulp. Our study proposes asymmetric BPQ SLN as a promising splenotropic delivery system for improved efficacy in theileriosis, a spleen resident infection.

摘要

采用改进的纳米沉淀法制备的布帕伐醌(BPQ)载不对称固体脂质纳米粒(SLN)用于脾靶向药物传递。BPQ SLN 的平均粒径为 650.28±6.75nm,多分散指数≤0.3,包封效率为 96.57±0.190%,载药量为 24.63±0.042%。扫描电子显微镜(SEM)显示出具有扁平且圆形边缘的细长颗粒。形态比,即 BPQ SLN 不对称性的重要决定因素,作为平均长度(1143±0.083nm)与宽度(419±0.031nm)的比值,被发现为 2.727±0.19。溶血率为 10.86±0.04%,且具有良好的血清稳定性,表明其可用于静脉给药。Tc 标记的 BPQ SLN 显示出高放射性标记效率(>95%)和良好的稳定性。在小鼠中的静脉给药显示>75%的网状内皮系统器官积聚。放射性活度与器官的克数的比例顺序为脾脏>肾脏>肺脏>肝脏>淋巴结,脾脏的放射性活度高,而肝脏的浓度明显较低。在 3 小时时,惊人的高脾脏/肝脏比值高达 11.94±1.37,这证实了高脾脏摄取归因于枯否细胞旁路。其他导致脾靶向的因素是 BPQ SLN 中的脂质的刚性和低分子量,这使得颗粒能够转移到脾脏髓质中。我们的研究提出了不对称的 BPQ SLN 作为一种有前途的脾靶向递药系统,用于提高泰勒虫病(一种脾脏驻留感染)的疗效。

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