Department of Applied Physics, University of Eastern Finland, POB 1627, FI-70211 Kuopio, Finland.
Int J Pharm. 2013 Aug 30;453(1):181-97. doi: 10.1016/j.ijpharm.2012.09.008. Epub 2012 Sep 8.
Utilization of inorganic mesoporous materials in formulations of poorly water-soluble drugs to enhance their dissolution and permeation behavior is a rapidly growing area in pharmaceutical materials research. The benefits of mesoporous materials in drug delivery applications stem from their large surface area and pore volume. These properties enable the materials to accommodate large amounts of payload molecules, protect them from premature degradation, and promote controlled and fast release. As carriers with various morphologies and chemical surface properties can be produced, these materials may even promote adsorption from the gastrointestinal tract to the systemic circulation. The main concern regarding their clinical applications is still the safety aspect even though most of them have been reported to be safely excreted, and a rather extensive toxicity screening has already been conducted with the most frequently studied mesoporous materials. In addition, the production of the materials on a large scale and at a reasonable cost may be a challenge when considering the utilization of the materials in industrial processes. However, if mesoporous materials could be employed in the industrial crystallization processes to produce hybrid materials with poorly soluble compounds, and hence to enhance their oral bioavailability, this might open new avenues for the pharmaceutical industry to employ nanotechnology in their processes.
无机介孔材料在难溶性药物制剂中的应用,以提高其溶解和渗透行为,是药物材料研究中一个迅速发展的领域。介孔材料在药物传递应用中的优势源于其大的表面积和孔体积。这些特性使材料能够容纳大量的有效载荷分子,保护它们免受过早降解,并促进控制和快速释放。由于可以生产具有各种形态和化学表面性质的载体,这些材料甚至可以促进从胃肠道到全身循环的吸附。尽管大多数介孔材料已被报道可安全排泄,但它们的临床应用仍主要关注安全性问题,而且已经对最常研究的介孔材料进行了相当广泛的毒性筛选。此外,当考虑将这些材料用于工业过程时,大规模且合理成本地生产这些材料可能是一个挑战。然而,如果介孔材料可用于工业结晶过程,以生产与难溶性化合物的混合材料,从而提高其口服生物利用度,这可能为制药行业在其工艺中采用纳米技术开辟新途径。
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