a Department of Chemical Engineering , Indian Institute of Technology Gandhinagar , Gandhinagar , Gujarat , India.
Pharm Dev Technol. 2018 Jul;23(6):608-619. doi: 10.1080/10837450.2017.1315133. Epub 2017 Apr 24.
Developing drug formulations for poorly water-soluble drugs is a major challenge for pharmaceutical industries as the poor water solubility limits bioavailability of these drugs. Production of nanoparticles/microparticles of these drugs is one of the ways to improve dissolution rates by increasing interfacial area for dissolution. Curcumin, a compound obtained from the rhizome of curcuma longa (turmeric roots), is a pharmaceutically viable molecule. However, poor aqueous solubility limits its therapeutic use. In this work, we report studies conducted to continuously produce aqueous suspensions of curcumin nano/micro particles. Influence of process parameters such as ultrasound, additives, and solvent to antisolvent ratio on polymorphic outcome and morphology of precipitated particles has been investigated. Ultrasound was found to greatly influence the polymorphic form and the morphology of precipitated particles. Nucleation rates, mixing time, and solid-liquid interfacial energies were also estimated to understand the effect of various processing parameters on the precipitation process.
开发难溶性药物的药物制剂是制药行业面临的主要挑战,因为这些药物的低水溶性限制了其生物利用度。生产这些药物的纳米/微粒子是通过增加溶解的界面面积来提高溶解速率的方法之一。姜黄素是从姜黄(姜黄根)的根茎中提取的一种化合物,是一种具有药用价值的分子。然而,其较差的水溶性限制了其治疗用途。在这项工作中,我们报告了连续生产姜黄素纳米/微粒子水悬浮液的研究。研究了工艺参数如超声、添加剂和溶剂与反溶剂的比例对多晶型结果和沉淀颗粒形态的影响。发现超声对沉淀颗粒的多晶型形式和形态有很大的影响。还估计了成核速率、混合时间和固-液界面能,以了解各种工艺参数对沉淀过程的影响。