CSIR-Central Drug Research Institute, Sitapur Road, Sector 10, Jankipuram Extension, Lucknow, Uttar Pradesh, 226031, India.
CSIR-Indian Institute of Toxicology Research, M.G. Marg, Lucknow, Uttar Pradesh, 226 001, India.
Drug Deliv Transl Res. 2021 Feb;11(1):118-130. doi: 10.1007/s13346-020-00712-9.
Amphotericin B (AmB) exhibits potential antileishmanial activity, with only a little rate of recurrence. However, low bioavailability and severe nephrotoxicity are among the major shortcomings of AmB-based therapy. Various AmB nanoformulations have been developed, which to an extent, have reduced its toxicity and increased the drug efficacy. To further reduce the nonspecific tissue distribution and the cost of the treatment, the current AmB-based formulations require additional improvements. Combination of natural bioenhancers with AmB is expected to further increase its bioavailability. Therefore, we developed a nanoformulation of AmB and piperine (Pip), a plant alkaloid, known to enhance the bioavailability of various drugs, by entrapping them in guar gum, a macrophage targeting polymer. Owing to the ease of oral delivery, these nanoparticles (NPs) were coated with eudragit to make them suitable for oral administration. The formulated eudragit-coated AmB and Pip-loaded NPs (Eu-HDGG-AmB-Pip-NPs) exhibited controlled release of the loaded therapeutic agents and protected the drug from acidic pH. These NPs exhibited effective suppression of growth of both promastigotes and amastigotes of Leishmania donovani parasite under in vitro. In vivo evaluation of these NPs for therapeutic efficacy in golden hamster-L. donovani model demonstrated enhanced drug bioavailability, non-nephrotoxic nature, and potential antileishmanial activity with up to 96% inhibition of the parasite. Graphical abstract.
两性霉素 B(AmB)具有潜在的抗利什曼原虫活性,复发率很低。然而,AmB 为基础的治疗方案存在生物利用度低和严重肾毒性等主要缺点。已经开发了各种 AmB 纳米制剂,在一定程度上降低了其毒性并提高了药物疗效。为了进一步减少非特异性组织分布和治疗成本,目前基于 AmB 的制剂需要进一步改进。天然生物增强剂与 AmB 的联合使用有望进一步提高其生物利用度。因此,我们通过将两性霉素 B 和胡椒碱(Pip)包埋在瓜尔胶中,开发了一种纳米制剂,瓜尔胶是一种已知能提高多种药物生物利用度的植物生物碱。由于易于口服给药,这些纳米颗粒(NPs)用尤特奇包衣,使其适合口服给药。所制备的尤特奇包衣两性霉素 B 和胡椒碱负载的 NPs(Eu-HDGG-AmB-Pip-NPs)表现出所载治疗剂的控制释放,并保护药物免受酸性 pH 值的影响。这些 NPs 在体外对利什曼原虫的前鞭毛体和无鞭毛体的生长均表现出有效抑制。在金黄仓鼠-利什曼原虫模型中对这些 NPs 的治疗功效进行体内评估表明,药物生物利用度提高,无肾毒性,具有潜在的抗利什曼原虫活性,寄生虫抑制率高达 96%。