Mohammed Saeed Alkaltham, Pandurangan Subash-Babu, Ahmad Mohammad Salamatullah, Ghalia Shamlan, Laila Al-Harbi, Ali A Alshatwi
{"title":"开心果种皮(PSCE)中的顺式疫苗酸、二丁基氰胺和9,12 -十八二烯酸诱导人结肠癌HT-115细胞的核损伤和细胞毒性","authors":"Mohammed Saeed Alkaltham, Pandurangan Subash-Babu, Ahmad Mohammad Salamatullah, Ghalia Shamlan, Laila Al-Harbi, Ali A Alshatwi","doi":"10.9755/ejfa.2023.3163","DOIUrl":null,"url":null,"abstract":"Current strategy for colorectal cancer (CRC) therapy like regular intake of non-steroidal anti-inflammatory drugs (NSAIDs) may reduce the risk of developing CRC but they induce the regression of adenomas. Even the CRC management technique include colectomy, have not yet been proven to reduce mortality. The present study aimed to reduce the susceptibility of CRC via controlling cellular oxidative stress, inflammation and caspase depended apoptosis in HT-115 human colorectal cancer cells using pistachio seed coat extract as nutritional therapy. Increasing concentrations of pistachio seed coat ethyl acetate extract (PSCE) were applied to HT-115 cells, which were incubated for 24 h and 48 h. The IC50 values were 14 mg/dl after 24 h, and and 7.5 mg/dl after 48 h. Acridine orange/ ethidium bromide staining confirmed the presence of 32% early apoptotic, 27% pre-apoptotic, 12% apoptotic, and 6% necrotic cells after 48 h. PSCE at 14 mg/dl significantly increased the antioxidant capacity via the expression of CYP1A and GSK3β, and decreased inflammatory agents via decreasing NF-κb, TNF-α, COX-2 and PGE-2 expression three-fold after 48 h. The expression of the tumor suppression related genes p53 and mdm2, and the apoptosis related genes Bax, Bcl-2, Caspase 3, p21, and PCNA levels increased one-fold, and levels of mdm2, Bcl-2 and PCNA decreased after PME treatment of 48 h. PSCE effectively controlled colon cancer cell proliferation via the caspase-dependent mitochondrial mediated apoptotic pathway. \nKeywords: Pistachia vera, cytotoxicity, human colon cancer, Cis-Vaccininc acid, apoptosis","PeriodicalId":11648,"journal":{"name":"Emirates Journal of Food and Agriculture","volume":"5 9 1","pages":"0"},"PeriodicalIF":0.7000,"publicationDate":"2023-09-28","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Cis-vaccinic acid, Dibutyl-Cyanamide and 9, 12-Octadecadienoic acid from pistachio (Pistachia vera) seed coat (PSCE) induced nuclear damage and cytotoxicity in human colon cancer HT-115 cells\",\"authors\":\"Mohammed Saeed Alkaltham, Pandurangan Subash-Babu, Ahmad Mohammad Salamatullah, Ghalia Shamlan, Laila Al-Harbi, Ali A Alshatwi\",\"doi\":\"10.9755/ejfa.2023.3163\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"Current strategy for colorectal cancer (CRC) therapy like regular intake of non-steroidal anti-inflammatory drugs (NSAIDs) may reduce the risk of developing CRC but they induce the regression of adenomas. Even the CRC management technique include colectomy, have not yet been proven to reduce mortality. The present study aimed to reduce the susceptibility of CRC via controlling cellular oxidative stress, inflammation and caspase depended apoptosis in HT-115 human colorectal cancer cells using pistachio seed coat extract as nutritional therapy. Increasing concentrations of pistachio seed coat ethyl acetate extract (PSCE) were applied to HT-115 cells, which were incubated for 24 h and 48 h. The IC50 values were 14 mg/dl after 24 h, and and 7.5 mg/dl after 48 h. Acridine orange/ ethidium bromide staining confirmed the presence of 32% early apoptotic, 27% pre-apoptotic, 12% apoptotic, and 6% necrotic cells after 48 h. PSCE at 14 mg/dl significantly increased the antioxidant capacity via the expression of CYP1A and GSK3β, and decreased inflammatory agents via decreasing NF-κb, TNF-α, COX-2 and PGE-2 expression three-fold after 48 h. The expression of the tumor suppression related genes p53 and mdm2, and the apoptosis related genes Bax, Bcl-2, Caspase 3, p21, and PCNA levels increased one-fold, and levels of mdm2, Bcl-2 and PCNA decreased after PME treatment of 48 h. 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Cis-vaccinic acid, Dibutyl-Cyanamide and 9, 12-Octadecadienoic acid from pistachio (Pistachia vera) seed coat (PSCE) induced nuclear damage and cytotoxicity in human colon cancer HT-115 cells
Current strategy for colorectal cancer (CRC) therapy like regular intake of non-steroidal anti-inflammatory drugs (NSAIDs) may reduce the risk of developing CRC but they induce the regression of adenomas. Even the CRC management technique include colectomy, have not yet been proven to reduce mortality. The present study aimed to reduce the susceptibility of CRC via controlling cellular oxidative stress, inflammation and caspase depended apoptosis in HT-115 human colorectal cancer cells using pistachio seed coat extract as nutritional therapy. Increasing concentrations of pistachio seed coat ethyl acetate extract (PSCE) were applied to HT-115 cells, which were incubated for 24 h and 48 h. The IC50 values were 14 mg/dl after 24 h, and and 7.5 mg/dl after 48 h. Acridine orange/ ethidium bromide staining confirmed the presence of 32% early apoptotic, 27% pre-apoptotic, 12% apoptotic, and 6% necrotic cells after 48 h. PSCE at 14 mg/dl significantly increased the antioxidant capacity via the expression of CYP1A and GSK3β, and decreased inflammatory agents via decreasing NF-κb, TNF-α, COX-2 and PGE-2 expression three-fold after 48 h. The expression of the tumor suppression related genes p53 and mdm2, and the apoptosis related genes Bax, Bcl-2, Caspase 3, p21, and PCNA levels increased one-fold, and levels of mdm2, Bcl-2 and PCNA decreased after PME treatment of 48 h. PSCE effectively controlled colon cancer cell proliferation via the caspase-dependent mitochondrial mediated apoptotic pathway.
Keywords: Pistachia vera, cytotoxicity, human colon cancer, Cis-Vaccininc acid, apoptosis
期刊介绍:
The "Emirates Journal of Food and Agriculture [EJFA]" is a unique, peer-reviewed Journal of Food and Agriculture publishing basic and applied research articles in the field of agricultural and food sciences by the College of Food and Agriculture, United Arab Emirates University, United Arab Emirates.