Evaluation of the Cytotoxicity of Secondary Bioactive Compounds Produced by Streptomyces in Soil against a Colon Cancer Cell Line.

IF 1.5 Q3 MEDICINE, RESEARCH & EXPERIMENTAL International Journal of Molecular and Cellular Medicine Pub Date : 2024-01-01 DOI:10.22088/IJMCM.BUMS.13.1.105
Mehri Hosseini, Abbas Akhavan Sepahi, Kumarss Amini, Maryam Bikhof Torbati, Mohsen Mousavi
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Abstract

Colorectal cancer is one of the most serious malignancies affecting humans. In this study, Streptomyces bioactive chemicals extracted from soil were analyzed for their anti-colorectal-cancer and antibacterial properties. A total of 100 soil samples were collected from Kerman-Iran, incubated in SCA media and the antimicrobial properties were tested using the cross-streak method. Three strains were cultured in ISP4 medium to obtain secondary bioactive compounds. After studying the effects of the bioactive compounds on the HT29 and human foreskin fibroblast (HFF) cell lines, the expression of the p53, p21, BAX, BCL2, Casp3 and Casp8 genes was analyzed by real-time PCR and flow cytometry to detect the presence of apoptosis.The isolates show high degree of identification with Streptomyces rochei, Streptomyces fungicidicus and Streptomyces maritimus due to 16SrDNA sequence homology. Compared to HT-29 cells, Streptomyces extracts had lower cytotoxicity against normal cells (SI=5.88), followed by HFF (SI=4.14). The cell lines demonstrated a dose-dependent significant increase in DNA fragmentation, an increase in the proportion of cells in sub-G1 phase and caused G2/M cell cycle arrest in HT-29 and HFF cells.The bacterial extracts obtained displayed strong antibacterial properties and inhibited the proliferation of HT-29 and HFF cell lines. The treated cells exhibited morphological changes caused by the activation of caspase and p53/p21 proteins. This confirms that Streptomyces-induced apoptosis is mediated by the activation of p21/p53. Anti-apoptotic Bcl-2 gene expression was downregulated by treatment with the extracts. Further studies are needed to understand the antimicrobial properties of Streptomyces.

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评估土壤中链霉菌产生的次生生物活性化合物对结肠癌细胞系的细胞毒性。
大肠癌是影响人类最严重的恶性肿瘤之一。本研究分析了从土壤中提取的链霉菌生物活性化学物质的抗结直肠癌和抗菌特性。共收集了 100 份来自伊朗克尔曼的土壤样本,在 SCA 培养基中进行培养,并使用交叉菌株法测试其抗菌特性。在 ISP4 培养基中培养了三株菌株,以获得次生生物活性化合物。在研究了生物活性化合物对 HT29 和人包皮成纤维细胞(HFF)的影响后,通过实时 PCR 和流式细胞术分析了 p53、p21、BAX、BCL2、Casp3 和 Casp8 基因的表达,以检测是否存在细胞凋亡。与 HT-29 细胞相比,链霉菌提取物对正常细胞的细胞毒性较低(SI=5.88),其次是 HFF(SI=4.14)。在 HT-29 和 HFF 细胞中,细胞系的 DNA 断裂显著增加,处于亚 G1 期的细胞比例增加,并导致 G2/M 细胞周期停滞。经处理的细胞因 caspase 和 p53/p21 蛋白活化而发生形态学变化。这证实链霉菌诱导的细胞凋亡是通过激活 p21/p53 介导的。经提取物处理后,抗凋亡的 Bcl-2 基因表达下调。要了解链霉菌的抗菌特性,还需要进一步的研究。
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CiteScore
3.60
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期刊介绍: The International Journal of Molecular and Cellular Medicine (IJMCM) is a peer-reviewed, quarterly publication of Cellular and Molecular Biology Research Center (CMBRC), Babol University of Medical Sciences, Babol, Iran. The journal covers all cellular & molecular biology and medicine disciplines such as the genetic basis of disease, biomarker discovery in diagnosis and treatment, genomics and proteomics, bioinformatics, computer applications in human biology, stem cells and tissue engineering, medical biotechnology, nanomedicine, cellular processes related to growth, death and survival, clinical biochemistry, molecular & cellular immunology, molecular and cellular aspects of infectious disease and cancer research. IJMCM is a free access journal. All open access articles published in IJMCM are distributed under the terms of the Creative Commons Attribution CC BY. The journal doesn''t have any submission and article processing charges (APCs).
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