Sadanov Amankeldy, Berillo Dmitriy, Bagimbayeva Assya, Baimakhanova Gul, Ibragimova Liliya N, Kulmaganbetov Iliyas Raikhanovich, Nurmaganbetova Farida, Sarsenbaeva Gulbany, Orazymbet Saltanat, Baimakhanova Baiken, Lakh Olga, Tleubekova Diana, Dzhakibaeva Gulnara T, Mussaldinov Tulegen
Scientific Production Center for Microbiology and Virology LLP, Almaty 050010, Kazakhstan.
Department of Chemistry, M. Kozybayev North-Kazakhstan University, Zhumabaeva Str., 114, Petropavlovsk 150000, Kazakhstan.
Pharmaceutics. 2025 Mar 27;17(4):430. doi: 10.3390/pharmaceutics17040430.
pentane polyene antibiotic Roseofungin produced by actinomycetes possessing wide range of antimicrobial activity. The structure of novel polyene antibiotic Roseofungin was confirmed through FTIR, H nuclear magnetic resonance, and high-performance liquid chromatography analysis with a mass detector. The substance pharmaco-technological parameters were evaluated. Additionally, the in silico modelling of various physicochemical parameters and biological activities was performed using validated open-access software tools such as ProTox3, SwissADME, and ADMET SAR1. The evaluation of its toxicological profile was also investigated in vivo. The Roseofungin exhibits potential risks in certain categories, including immunotoxicity, respiratory toxicity, and nephrotoxicity, as predicted in silico. However, Roseofungin shows a relatively safe profile with regard to hepatotoxicity, neurotoxicity, and mutagenicity, along with lower risks of carcinogenicity and cytotoxicity in silico. The analysis of body weight dynamics after Roseofungin exposure in mice revealed no statistically significant differences among the experimental groups. Similarly, in the absolute or relative weights of internal organs across the experimental groups after Roseofungin treatment, no significant differences were observed in vivo. Roseofungin appears as a light-yellow hygroscopic powder with a specific odour, possessing the ability to settle and classified as a light powder. The particles are lamellar crystals ranging in size from 3 μm to 6 μm, and the molecules generate electrostatic tension between themselves. The pharmaco-technological parameters of Roseofungin were comprehensively studied. The experimental data obtained provide a foundation for further pharmaceutical development of new drugs containing the original Roseofungin.
由放线菌产生的戊烷多烯抗生素玫瑰真菌素具有广泛的抗菌活性。通过傅里叶变换红外光谱(FTIR)、氢核磁共振和带质量检测器的高效液相色谱分析确定了新型多烯抗生素玫瑰真菌素的结构。评估了该物质的药物技术参数。此外,使用经过验证的开放获取软件工具(如ProTox3、SwissADME和ADMET SAR1)对各种物理化学参数和生物活性进行了计算机模拟。还在体内研究了其毒理学概况评估。如计算机模拟预测的那样,玫瑰真菌素在某些类别中表现出潜在风险,包括免疫毒性、呼吸道毒性和肾毒性。然而,玫瑰真菌素在肝毒性、神经毒性和致突变性方面显示出相对安全的概况,同时在计算机模拟中致癌性和细胞毒性风险较低。玫瑰真菌素暴露后小鼠体重动态分析显示,各实验组之间无统计学显著差异。同样,在玫瑰真菌素处理后的各实验组中,内部器官的绝对或相对重量在体内未观察到显著差异。玫瑰真菌素呈浅黄色吸湿粉末,有特殊气味,具有沉降能力,归类为轻质粉末。颗粒为层状晶体,尺寸范围为3μm至6μm,分子之间产生静电张力。对玫瑰真菌素的药物技术参数进行了全面研究。获得的实验数据为进一步开发含有原始玫瑰真菌素的新药奠定了基础。