Department of Pharmaceutical Sciences, University of Bologna, Bologna, Italy.
Phytomedicine. 2012 Jan 15;19(2):160-8. doi: 10.1016/j.phymed.2011.06.027. Epub 2011 Jul 30.
The aim of the work was to produce a delivery system for Silybum Marianum dry extract with enhanced oral bioavailability by combining two technologies (mechanochemical activation and spray congealing). Initially, the active was coground with sodium croscarmellose in a planetary mill in order to reach an activated state more prone to dissolution. DSC, XRD, FT-IR and LD analyses showed the formation of nanosized particles of dry extract, with reduced degree of crystallinity of the main crystalline flavolignans (silybine A and B). Then, microparticles containing the activated coground and, as comparison, the corresponding physical mixture of extract and polymer and the dry extract alone were produced by spray congealing technology using Gelucire(®) 50/13 as a hydrophilic low m.p. carrier. Microparticles containing the activated coground were produced spherical in shape, achieved satisfactory yield and high encapsulation efficiency. These microparticles, in addition to a favourable in vitro solubilisation kinetic, in a preliminary in vivo study in five rats demonstrated their ability to improve very significantly the oral bioavailability of the main flavolignans of Silybum Marianum dry extract (silybin A and B). These results suggested that the association of mechanochemical activation and spray congealing could be considered an innovative and very useful approach to the oral delivery of Silybum Marianum. Furthermore, for the first time the possibility of successfully applying the spray congealing technology for the preparation of a herbal drug delivery system was shown.
本工作旨在通过结合两种技术(机械化学活化和喷雾冷凝)来制备水飞蓟素干提取物的口服生物利用度增强型递药系统。最初,将活性成分与交联羧甲纤维素钠在行星式磨机中共研磨,以使处于更易于溶解的活化状态。DSC、XRD、FT-IR 和 LD 分析表明形成了水飞蓟素干提取物的纳米级颗粒,主要晶型黄酮木脂素(水飞蓟宾 A 和 B)的结晶度降低。然后,通过喷雾冷凝技术使用 Gelucire(®)50/13 作为亲水性低熔点载体来制备含有活化共研磨物的微丸(与对照相比,还制备了相应的提取物和聚合物的物理混合物以及单独的干提取物)。含有活化共研磨物的微丸呈球形,收率和包封效率均较高。这些微丸除了具有有利的体外溶解动力学特性外,在五只大鼠的初步体内研究中还证明了它们能够显著提高水飞蓟素干提取物中主要黄酮木脂素(水飞蓟宾 A 和 B)的口服生物利用度。这些结果表明,机械化学活化和喷雾冷凝的联合可以被认为是一种创新且非常有用的方法,可用于水飞蓟素的口服递药。此外,首次证明了成功应用喷雾冷凝技术制备草药药物递药系统的可能性。