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膳食鞘脂及鞘脂代谢抑制剂在癌症和其他疾病中的作用。

Role of dietary sphingolipids and inhibitors of sphingolipid metabolism in cancer and other diseases.

作者信息

Merrill A H, Schmelz E M, Wang E, Schroeder J J, Dillehay D L, Riley R T

机构信息

Department of Biochemistry, Emory University School of Medicine, Atlanta, GA 30322-3050, USA.

出版信息

J Nutr. 1995 Jun;125(6 Suppl):1677S-1682S. doi: 10.1093/jn/125.suppl_6.1677S.

Abstract

Sphingolipids are found in all eukaryotic and some prokaryotic organisms and participate in the regulation of cell growth, differentiation, and diverse cell functions including cell-cell communication, cell-substratum interactions and intracellular signal transduction. Nonetheless, the field of nutrition has given scant attention to these compounds so that little is known about the following fundamental questions: What is the fate of sphingolipids that are consumed in food? Does consumption of dietary sphingolipids affect the behavior of cells in the gastrointestinal tract or other organs? How do other factors in the diet affect sphingolipid metabolism? Several recent findings underscore the importance of these questions, for examples: 1) Sphingolipids are digested throughout the GI tract to ceramide and sphingosine, which are highly bioactive compounds that affect cellular regulatory pathways; 2) addition of sphingomyelin to a standard AIN diet (which is essentially devoid of sphingolipids) reduces the appearance of aberrant colonic crypts, and perhaps the number of tumors, in mice treated with a colon carcinogen; and 3) an enzyme of sphingolipid metabolism has been discovered to be the target of a class of toxic and carcinogenic mycotoxins called fumonisins. Given these recent findings, it is possible that some of the confusion that has arisen regarding the relationships between dietary fat and disease might be due to the lack of consideration of the sphingolipids that are also present.

摘要

鞘脂存在于所有真核生物以及一些原核生物中,参与细胞生长、分化以及多种细胞功能的调节,包括细胞间通讯、细胞与基质的相互作用以及细胞内信号转导。然而,营养领域对这些化合物关注甚少,以至于对于以下基本问题知之甚少:食物中摄入的鞘脂会有怎样的归宿?膳食鞘脂的摄入是否会影响胃肠道或其他器官中细胞的行为?饮食中的其他因素如何影响鞘脂代谢?最近的一些发现凸显了这些问题的重要性,例如:1)鞘脂在整个胃肠道被消化为神经酰胺和鞘氨醇,它们是影响细胞调节途径的高生物活性化合物;2)在标准AIN饮食(基本不含鞘脂)中添加鞘磷脂,可减少用结肠癌致癌物处理的小鼠异常结肠隐窝的出现,甚至可能减少肿瘤数量;3)已发现一种鞘脂代谢酶是一类名为伏马菌素的有毒致癌霉菌毒素的作用靶点。鉴于这些最新发现,关于膳食脂肪与疾病之间关系所产生的一些困惑,可能是由于未考虑同时存在的鞘脂所致。

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