首页> 外文期刊>Journal of Microbiology, Biotechnology and Food Sciences >ISOLATION AND PAPAIN DIGESTION OF NOVEL ANTIFUNGAL PEPTIDES FROM RED RADISH (RAPHANUS RAPHANISTRUM SUBSP SATIVUS) AND ANALYSIS OF SELECTIVE CYTOTOXICITY FOR CANCER TREATMENT
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ISOLATION AND PAPAIN DIGESTION OF NOVEL ANTIFUNGAL PEPTIDES FROM RED RADISH (RAPHANUS RAPHANISTRUM SUBSP SATIVUS) AND ANALYSIS OF SELECTIVE CYTOTOXICITY FOR CANCER TREATMENT

机译:红萝卜(Raphanus raphanistrum subsp SATIVUS)新型抗真菌肽的分离,分离及消化的选择性细胞毒性分析

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Treating cancer with chemotherapy is accompanied with side effects and drug resistance by cancer cells which call for alternative anticancer agents such as cationic antimicrobial peptides. In specific, antifungal peptides were chosen for cytotoxicity analysis due to their deteriorating effects on fungi (eukaryotic cells). Novel peptides were isolated and analysed from red radish seeds. Water soaked seeds were ground with phosphate buffer (pH 7) and the antifungal assay was carried out and an inhibition zone of 0.5±0.2 mm was noticed for 50 μl of the extract at 1 mg/ml concentration. The study was extended further, by digestion with papain, trypsin and pepsin with appropriate buffer and pH of which papain digests of red radish seeds produced a zone of inhibition of 1.00±0.2 mm at 500 μg/ml concentration, approximately. This sample was processed with a 3 kDa cut off membrane and the filtrate was confirmed for its antifungal activity (MIC 32 μg/ml). Further, for size confirmation, the sample was subjected to MALDI- TOF-MS analysis, and a peak was obtained at 1680 Da (1.68 kDa). To check the anticancer activity of the antifungal peptides obtained, the sample was tested on HeLa cell lines by method of MTT Assay and significant cell death was obtained at MIC 12.5 μg/ml which increased with higher concentrations of the sample. Thus, it is confirmed that red radish seed extract digested with papain is effective in inhibiting the growth of both fungal and cancer cell lines making them a good therapeutic agent against cancer.
机译:用化学疗法治疗癌症伴随有癌细胞的副作用和耐药性,癌细胞需要替代的抗癌剂,例如阳离子抗微生物肽。具体而言,由于抗真菌肽对真菌(真核细胞)的恶化作用,因此选择了抗真菌肽进行细胞毒性分析。从红萝卜种子中分离并分析了新型肽。将水浸泡的种子用磷酸盐缓冲液(pH 7)研磨,然后进行抗真菌测定,对于浓度为1 mg / ml的50μl提取物,发现抑制区域为0.5±0.2 mm。通过用木瓜蛋白酶,胰蛋白酶和胃蛋白酶在适当的缓冲液中消化,pH值进一步扩大了研究范围,其中红萝卜种子的木瓜蛋白酶消化物在500μg/ ml浓度下产生约1.00±0.2 mm的抑制区。用3kDa的截止膜处理该样品,并确认滤液的抗真菌活性(MIC32μg/ ml)。此外,为了确定大小,对样品进行MALDI-TOF-MS分析,并在1680 Da(1.68 kDa)处获得一个峰。为了检查获得的抗真菌肽的抗癌活性,通过MTT测定法在HeLa细胞系上测试了样品,并在MIC 12.5μg/ ml下获得了显着的细胞死亡,其随着样品浓度的升高而增加。因此,证实了用木瓜蛋白酶消化的红萝卜种子提取物可有效抑制真菌和癌细胞系的生长,使其成为抗癌的良好治疗剂。

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