Department of Microbiology, Sri Ramakrishna College of Arts and Science for Women, Coimbatore, 641006, Tamil Nadu, India.
Department of Microbiology, Pondicherry University, Puducherry, 605014, India.
Appl Biochem Biotechnol. 2024 Jul;196(7):4700-4724. doi: 10.1007/s12010-023-04688-3. Epub 2023 Sep 26.
Globally, colorectal cancer is the most prevalent type of cancer. Even though multiple treatments such as surgery, radiation, chemotherapy, and immunotherapy are available, the adverse effects caused in patients seem remarkable. Therefore, the current work was deliberated to prepare the metabolites (cell-free supernatant-CFS) from Weissella cibaria RK-3-1 to conduct in-silico and in-vitro-based anticancer assays. First, the active biomolecules present in the CFS were screened using a GC-MS analyzer. In addition, in-silico-based pharmacokinetic and docking studies were performed to confirm the anticancer potential of metabolites. In-silico results suggested that the bioactive compounds such as filicinic acid, dibutyl phthalate, and 4H-pyran-4-one,2,3-dihydro-3,5-dihydroxy-6-methyl present in CFS possessed significant molecular docking interactions with anticancer hub proteins. Furthermore, in-vitro results displayed the inhibition of cell proliferation in HT-29 cells at an IC50 value of 22.5 ± 1.3 µg/ml with the least significant effect on HEK-293 cell lines. Moreover, bacterial metabolites-controlled cell proliferation during the cell cycle's synthesis phase (S). Furthermore, the gene expression results confirm the increased expression of Bad, Bax, Bcl2, caspase-3, and cytochrome-C genes involved in the intrinsic apoptotic pathway. Hence, our findings from the in-silico and the in-vitro study confirm the anticancer potential of cell free-supernatant synthesized by W. cibaria.
在全球范围内,结直肠癌是最常见的癌症类型。尽管有多种治疗方法,如手术、放疗、化疗和免疫疗法,但在患者中引起的不良反应似乎很明显。因此,目前的工作是从魏斯氏菌 RK-3-1 中制备代谢产物(无细胞上清液-CFS),以进行基于计算机模拟和体外的抗癌测定。首先,使用 GC-MS 分析仪筛选 CFS 中存在的活性生物分子。此外,还进行了基于计算机模拟的药代动力学和对接研究,以确认代谢产物的抗癌潜力。计算机模拟结果表明,CFS 中存在的生物活性化合物,如黄杉酸、邻苯二甲酸二丁酯和 4H-吡喃-4-酮、2,3-二氢-3,5-二羟基-6-甲基,与抗癌核心蛋白具有显著的分子对接相互作用。此外,体外结果显示在 HT-29 细胞中以 22.5±1.3µg/ml 的 IC50 值抑制细胞增殖,对 HEK-293 细胞系的影响最小。此外,细菌代谢物控制细胞增殖在细胞周期的合成期(S)。此外,基因表达结果证实,涉及内在凋亡途径的 Bad、Bax、Bcl2、caspase-3 和细胞色素 C 基因的表达增加。因此,我们从计算机模拟和体外研究中得到的发现证实了魏斯氏菌合成的无细胞上清液的抗癌潜力。