Solares-Briones Mizraín, Coyote-Dotor Guadalupe, Páez-Franco José C, Zermeño-Ortega Miriam R, de la O Contreras Carmen Myriam, Canseco-González Daniel, Avila-Sorrosa Alcives, Morales-Morales David, Germán-Acacio Juan M
Red de Apoyo a la Investigación, Coordinación de la Investigación Científica-UNAM, Instituto Nacional de Ciencias Médicas y Nutrición SZ, Ciudad de México CP 14000, Mexico.
Facultad de Ciencias Químicas, Universidad Autónoma de Chihuahua, Circuito Universitario No. 1, Nuevo Campus Universitario, Apdo. Postal 1552, Chihuahua CP 31125, Mexico.
Pharmaceutics. 2021 May 25;13(6):790. doi: 10.3390/pharmaceutics13060790.
Mechanochemistry is considered an alternative attractive greener approach to prepare diverse molecular compounds and has become an important synthetic tool in different fields (e.g., physics, chemistry, and material science) since is considered an ecofriendly procedure that can be carried out under solvent free conditions or in the presence of minimal quantities of solvent (catalytic amounts). Being able to substitute, in many cases, classical solution reactions often requiring significant amounts of solvents. These sustainable methods have had an enormous impact on a great variety of chemistry fields, including catalysis, organic synthesis, metal complexes formation, preparation of multicomponent pharmaceutical solid forms, etc. In this sense, we are interested in highlighting the advantages of mechanochemical methods on the obtaining of pharmaceutical cocrystals. Hence, in this review, we describe and discuss the relevance of mechanochemical procedures in the formation of multicomponent solid forms focusing on pharmaceutical cocrystals. Additionally, at the end of this paper, we collect a chronological survey of the most representative scientific papers reporting the mechanochemical synthesis of cocrystals.
机械化学被认为是一种制备多种分子化合物的具有吸引力的绿色替代方法,并且由于其被视为一种可在无溶剂条件下或在少量溶剂(催化量)存在下进行的环保工艺,已成为不同领域(如物理、化学和材料科学)中的一种重要合成工具。在许多情况下,它能够替代通常需要大量溶剂的经典溶液反应。这些可持续方法对包括催化、有机合成、金属配合物形成、多组分药物固体形式制备等在内的众多化学领域产生了巨大影响。从这个意义上讲,我们有兴趣突出机械化学方法在获得药物共晶体方面的优势。因此,在本综述中,我们描述并讨论了机械化学程序在多组分固体形式形成中的相关性,重点是药物共晶体。此外,在本文结尾,我们收集了一份按时间顺序排列的最具代表性的报道共晶体机械化学合成的科学论文综述。