Faculty of Medicine, Department of Biochemistry, Ovidius University of Constanta, 900470 Constanta, Romania.
Department of Chemistry and Chemical Engineering, Ovidius University of Constanta, 900527 Constanta, Romania.
Int J Mol Sci. 2023 Nov 12;24(22):16234. doi: 10.3390/ijms242216234.
A new trend in the use of indole alkaloids from natural products is the preparation of topical pharmaceutical formulations with applications in the field of regenerative medicine. These formulations can be characterized through the ease of administration, the proven healing action of indole alkaloids, the protection of skin lesions, and the assurance of oxygen permeability. Based on the numerous benefits that indole compounds extracted from the plant show externally, the purpose of this study was to develop new semi-solid biocomposites for topical application obtained from hydroalcoholic macerates of 40%, 70%, and 96% concentrations from the stems and leaves of the L. plant from the Dobrogea area. A total of 12 pharmaceutical formulations (named P1-P12) were prepared for which the physicochemical properties, pH, thermal stability, spreading capacity, and rheological behavior were determined. The optimal formulas with antioxidant and antimicrobial capacity were evaluated and determined (P3, P4, P9, and P10). Antioxidant activity was elicited using the photochemiluminescence method. The microorganisms used for the evaluation of antimicrobial activity were Gram-positive (ATCC 25923), Gram-negative (ATCC 25922), and a fungal species, (ATCC 900288). The study of the rheological profile for the obtained composites revealed Newtonian, pseudoplastic, and thixotropic fluid behaviors. Following determinations using the photochemiluminescence method, the best antioxidant activity was obtained in the P3 and P9 preparations. The results of the antimicrobial analysis confirmed that both the leaves and the stems of the plant represent a valuable source of antibacterial substances, and the biocomposites analyzed may represent an alternative in the realization of new pharmaceutical preparations with topical applications based on hydroalcoholic macerates obtained from the plant.
天然产物吲哚生物碱的应用出现了一个新趋势,即将其制备成局部药物制剂,应用于再生医学领域。这些制剂的特点是给药方便、吲哚生物碱的愈合作用已被证实、能保护皮肤损伤、并确保氧气渗透性。鉴于从植物中提取的吲哚类化合物具有许多外部益处,本研究的目的是开发新型局部应用半固体生物复合材料,这些复合材料是从多布罗加地区的 植物的茎和叶的 40%、70%和 96%浓度的水醇提取物中获得的。共制备了 12 种药物制剂(命名为 P1-P12),并对其物理化学性质、pH 值、热稳定性、铺展能力和流变行为进行了测定。对具有抗氧化和抗菌能力的最佳配方进行了评估和确定(P3、P4、P9 和 P10)。抗氧化活性采用光致发光法测定。用于评估抗菌活性的微生物为革兰氏阳性菌(ATCC 25923)、革兰氏阴性菌(ATCC 25922)和真菌 (ATCC 900288)。对所得复合材料的流变特性研究表明,其具有牛顿型、假塑性和触变性流体行为。通过光致发光法测定后,P3 和 P9 制剂的抗氧化活性最佳。抗菌分析结果证实, 植物的叶和茎均为具有抗菌活性物质的有价值来源,分析的生物复合材料可能代表基于 植物水醇提取物的局部应用的新型药物制剂的替代方案。