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纳米乳桉树提取物的药物 3D 打印及其抗菌活性。

Pharmaceutical 3D-printing of nanoemulsified eucalypt extracts and their antimicrobial activity.

机构信息

Institute of Pharmacy, Faculty of Medicine, University of Tartu, Nooruse 1, Tartu 50411, Estonia; The National University of Pharmacy, 53 Pushkinska st, Kharkiv 61002, Ukraine.

Institute of Pharmacy, Faculty of Medicine, University of Tartu, Nooruse 1, Tartu 50411, Estonia.

出版信息

Eur J Pharm Sci. 2023 Aug 1;187:106487. doi: 10.1016/j.ejps.2023.106487. Epub 2023 Jun 3.

Abstract

Overcoming the health threatening consequences of staphylococcal infections and their negative socio-economic effects have become a priority in the medical, pharmaceutical, food and many other sectors globally. Staphylococcal infections are a big challenge for a global health care, since they are difficult to be diagnosed and treated. Therefore, the development of new medicinal products of plant-origin is timely and important, because bacteria have a limited ability to develop resistance to such products. In the present study, a modified eucalypt (Eucalyptus viminalis L.) extract was prepared and further enhanced by using different excipients (surface active agents) to obtain a water-miscible 3D-printable extract (nanoemulsified aqueous eucalypt extract). Phytochemical and antibacterial studies of the eucalypt leaves extracts were conducted as a preliminary investigation for 3D-printing experiments of the extracts. The nanoemulsified aqueous eucalypt extract was mixed with polyethylene oxide (PEO) to form a gel applicable for semi-solid extrusion (SSE) 3D printing. The key process parameters in a 3D-printing process were identified and verified. The printing quality of the 3D-lattice type eucalypt extract preparations was very good, demonstrating the feasibility of using an aqueous gel in SSE 3D printing also exhibiting compatibility of the carrier polymer (PEO) with the plant extract. The SSE 3D-printed eucalypt extract preparations presented a rapid dissolution in water within 10-15 min, suggesting the applicability of these preparations e.g., in oral immediate-release applications.

摘要

克服葡萄球菌感染对健康的威胁以及其带来的负面社会经济影响已成为全球医疗、制药、食品和许多其他领域的首要任务。葡萄球菌感染对全球医疗保健构成了巨大挑战,因为它们难以诊断和治疗。因此,开发植物来源的新药是及时且重要的,因为细菌对这些产品产生耐药性的能力有限。在本研究中,制备了改良的桉树(Eucalyptus viminalis L.)提取物,并进一步通过使用不同的赋形剂(表面活性剂)来增强,以获得可水混溶的 3D 可打印提取物(纳米乳化水性桉树提取物)。对桉树叶提取物进行了植物化学和抗菌研究,作为提取物 3D 打印实验的初步研究。将纳米乳化水性桉树提取物与聚氧化乙烯(PEO)混合形成适用于半固体挤出(SSE)3D 打印的凝胶。确定并验证了 3D 打印过程中的关键工艺参数。3D 打印的格子型桉树提取物制剂的打印质量非常好,证明了在 SSE 3D 打印中使用水性凝胶的可行性,也证明了载体聚合物(PEO)与植物提取物的相容性。SSE 3D 打印的桉树提取物制剂在 10-15 分钟内迅速溶解在水中,表明这些制剂可用于口服即释应用等。

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