高分子碱的物理力学指标的测定及在碱组合物中引入活性药物成分的最佳方法

A. Solomennyi, A. O. Drozdova, L. Davtyan
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引用次数: 0

摘要

伤口和伤口感染的治疗今天仍然是一个紧迫的医疗问题,特别是在持续敌对行动的情况下。水凝胶绷带是一种非常有效的局部伤口治疗手段,治疗效果复杂,在向军事人员提供医疗用品的过程中不需要频繁更换。考虑到本课题的相关性,我们的研究旨在开发一种含有盐酸利多卡因、头孢曲松和甲硝唑的水凝胶绷带。研究高分子碱的物理力学参数,确定在碱组合物中引入活性药物成分的最佳方法。材料和方法。研究材料为原料药(盐酸利多卡因、头孢曲松、甲硝唑)和辅料。这项工作采用了物理和机械的研究方法。结果和讨论。为了制定最佳的聚合物质量获取工艺和工艺指标的确定,对其物理力学性能指标进行了研究。断裂力和相对伸长率的指标取决于诸如均匀性、基材上的均匀性、无气泡等技术特性。结果表明,物理力学参数越高,所得到的聚合物质量越高。因此,在获得均匀质量后,需要在3000 rpm下离心(No. 1-5)使气泡脱氧5-10 min。在研究聚合物质量在聚对苯二甲酸乙二醇酯底物上的应用便利性时,发现干燥过程受层厚的影响。结果表明,1-5号样品具有均匀的粘接层,可用于进一步研究。主要工艺指标为层厚0.40 mm, 3000rpm离心时间5- 10min,均匀性(36rpm搅拌15min,锚定搅拌器)。实验发现,要获得0.40 mm的层厚,每1 cm2的衬底必须施加0.03 g的样品。实验证明,聚合物浓度为10%时的工艺指标最优。为了证实这一点,研究了成型溶液粘度与聚合物浓度比的关系。我们发现,均匀性和均匀性的技术指标直接影响到最终产品的质量。考虑到有可能将难溶性物质引入模型样品的组成,我们对它们在聚合物溶液中的沉积进行了实验。研究发现,引入聚合物溶液的原料药具有不同的沉降速率(时间)值,这可能与溶解度有关。此外,成型溶液中聚合物的浓度也会影响原料药的沉降速率。黏度越高,原料药颗粒沉降越慢。在研究过程中发现,满意的物理力学参数指标可以保证聚合物量产工艺的质量,是选择聚合物包衣以获得具有麻醉、抗菌、抗菌作用的水凝胶的基础。确定的主要技术指标为层厚(0.40 mm)、离心时间(3000转/分钟,5-10分钟)、均匀性(36转/分钟,搅拌15分钟)。所得结果将用于开发盐酸利多卡因、头孢曲松和甲硝唑的药物组合物及其制造工艺。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Determination of the physical and mechanical indicators of the polymer base and the optimal method of introducing active pharmaceutical ingredients into the base composition
Treatment of wounds and wound infection remains an urgent medical problem today, especially in conditions of constant hostilities. Hydrogel bandages are quite effective means for local treatment of wounds, which are able to have a complex therapeutic effect and do not require frequent replacement in the process of medical supply to military personnel. Taking into account the relevance of this topic, our research is aimed at developing a hydrogel bandage with lidocaine hydrochloride, ceftriaxone and metronidazole. Aim. To study the physical and mechanical parameters of the polymer base and determine the optimal method for introducing active pharmaceutical ingredients (APIs) into the base composition. Materials and methods. The study materials were APIs (lidocaine hydrochloride, ceftriaxone, metronidazole) and excipients. Physical and mechanical research methods were used in the work. Results and discussion. In order to develop the optimal technology for obtaining the polymer mass and determining technological indicators, we studied the indicators of physical and mechanical properties. Indicators of breaking force and relative elongation depend on such technological characteristics as homogeneity, uniformity of application on the substrate, the absence of air bubbles. It was found that the higher the physical and mechanical parameters, the higher the quality of the polymer mass applied to the substrate. Therefore, after obtaining a homogeneous mass it is necessary to deaerate air bubbles by centrifugation (No. 1-5) at 3000 rpm for 5-10 min. During the study of the ease of application of the polymer mass on the polyethylene terephthalate substrate, it was found that the drying process was affected by the thickness of the layer. It was proven that samples No. 1-5 had a uniform, adhesive layer and could be used for further research. The main technological indicators were the layer thickness of 0.40 mm, the centrifugation time of 5-10 min at 3000 rpm, homogeneity (mixing for 15 min at 36 rpm, an anchor stirrer). It was experimentally found that to obtain a layer thickness of 0.40 mm, it was necessary to apply 0.03 g of the sample per 1 cm2 of the substrate. We proved that polymers in the concentration of 10 % provided the optimal technological indicators. To confirm this, the dependence of the viscosity of the forming solution on the concentration / ratio of polymers was studied. We found that the technological indicators of homogeneity and uniformity directly affected the quality of the resulting product. Taking into account the fact that it was possible to introduce poorly soluble substances into the composition of model samples we conducted an experiment on their sedimentation in a polymer solution. It was found that APIs introduced into the polymer solution had different values of the sedimentation rate (time), which was probably related to the degree of solubility. In addition, the polymer concentration in the forming solutions also affected the sedimentation rate of API. The higher the viscosity, the slower the API particles settled. Conclusions. It has been found in the course of the study that satisfactory indicators of physical and mechanical parameters can ensure the quality of the polymer mass production technology as the base for choosing a polymer coating for obtaining a hydrogel with anesthetic, antibacterial, and antimicrobial effects. The main technological indicators determined are the layer thickness (0.40 mm), the centrifugation time (5-10 min at 3000 rpm), homogeneity (mixing for 15 min at 36 rpm, anchor stirrer). The results obtained will be used to develop the composition and the manufacturing technology for a pharmaceutical composition with lidocaine hydrochloride, ceftriaxone and metronidazole.
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