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首页> 外文期刊>Chemical and Pharmaceutical Bulletin >Formulation design of ointment base suitable for healing of lesions in treatment of bedsores.
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Formulation design of ointment base suitable for healing of lesions in treatment of bedsores.

机译:软膏基质的配方设计,适用于褥疮的治疗。

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We intended to develop a desired ointment base suitable for treatment of bedsores including the proliferation of granulation and epidermis. The main bedsore bacteria detected in our hospital were S. aureus in gram-positive coccus and P. aeruginosa in gram-negative bacillus. As the macrogol ointment (MO) was found to have bactericidal effects on these bacteria, MO was adopted as the base for the objective ointment. To improve the properties of the ointment base such as regulating the humidity of the exudation and controlling the release of antibiotics formulated in the ointment, co-formulating effects of various additives to MO were evaluated. The sustained release function of the ointment base was obtained by adding hydrophilic petrolatum (HP) to MO. However, the resultant ointment was found to have a poor humidity regulating property. On the other hand, MO containing 5% of hydroxypropyl cellulose (HPC) showed both the humidity regulating and the controlled drug releasing properties. It was considered that HPC particles dispersed in the ointment could be swelled by absorbing water to form a gel network. The curd tension meter tests for the ointments prepared with the various polymers showed that the MO-HPC base, which showed the highest sustained drug releasing property, was found to have the highest hardness. This result means that HPC formulated into the base forms the most rigid gel structure to resist the erosion of the ointment and to control the drug release.
机译:我们打算开发一种理想的软膏基质,适用于治疗褥疮,包括肉芽和表皮的增殖。我院发现的主要褥疮细菌是革兰氏阳性球菌中的金黄色葡萄球菌和革兰氏阴性杆菌中的铜绿假单胞菌。由于发现聚乙二醇软膏(MO)对这些细菌具有杀菌作用,因此MO被用作目标软膏的基础。为了改善软膏基质的性能,例如调节渗出液的湿度和控制软膏中配制的抗生素的释放,评估了各种添加剂对MO的共同配制作用。通过向MO添加亲水性凡士林(HP)获得软膏基质的缓释功能。但是,发现所得软膏的湿度调节性能差。另一方面,含有5%羟丙基纤维素(HPC)的MO显示出湿度调节和受控的药物释放特性。认为分散在软膏中的HPC颗粒可以通过吸收水而溶胀以形成凝胶网络。用各种聚合物制备的软膏的凝乳张力计测试表明,显示出最高的持续药物释放性能的MO-HPC基料具有最高的硬度。该结果意味着配制到基质中的HPC形成最坚硬的凝胶结构,以抵抗药膏的侵蚀并控制药物的释放。

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