维生素A:好到不可能有害?
Vitamin A: too good to be bad?
作者信息
Chen Guoxun, Weiskirchen Sabine, Weiskirchen Ralf
机构信息
College of Food Science and Technology, College of Biomedicine and Health, Huazhong Agricultural University, Wuhan, China.
Institute of Molecular Pathobiochemistry, Experimental Gene Therapy and Clinical Chemistry (IFMPEGKC), RWTH University Hospital Aachen, Aachen, Germany.
出版信息
Front Pharmacol. 2023 May 22;14:1186336. doi: 10.3389/fphar.2023.1186336. eCollection 2023.
Vitamin A is a micronutrient important for vision, cell growth, reproduction and immunity. Both deficiency and excess consuming of vitamin A cause severe health consequences. Although discovered as the first lipophilic vitamin already more than a century ago and the definition of precise biological roles of vitamin A in the setting of health and disease, there are still many unresolved issues related to that vitamin. Prototypically, the liver that plays a key role in the storage, metabolism and homeostasis of vitamin A critically responds to the vitamin A status. Acute and chronic excess vitamin A is associated with liver damage and fibrosis, while also hypovitaminosis A is associated with alterations in liver morphology and function. Hepatic stellate cells are the main storage site of vitamin A. These cells have multiple physiological roles from balancing retinol content of the body to mediating inflammatory responses in the liver. Strikingly, different animal disease models also respond to vitamin A statuses differently or even opposing. In this review, we discuss some of these controversial issues in understanding vitamin A biology. More studies of the interactions of vitamin A with animal genomes and epigenetic settings are anticipated in the future.
维生素A是一种对视力、细胞生长、繁殖和免疫至关重要的微量营养素。维生素A摄入不足和过量都会导致严重的健康后果。尽管早在一个多世纪前维生素A就作为第一种亲脂性维生素被发现,并且其在健康和疾病背景下的确切生物学作用也已明确,但关于该维生素仍有许多未解决的问题。典型的是,肝脏在维生素A的储存、代谢和体内平衡中起关键作用,会对维生素A的状态做出关键反应。急性和慢性维生素A过量与肝损伤和肝纤维化有关,而维生素A缺乏也与肝脏形态和功能的改变有关。肝星状细胞是维生素A的主要储存部位。这些细胞具有多种生理作用,从平衡体内视黄醇含量到介导肝脏中的炎症反应。令人惊讶的是,不同的动物疾病模型对维生素A状态的反应也不同,甚至相反。在本综述中,我们讨论了在理解维生素A生物学方面的一些有争议的问题。预计未来会有更多关于维生素A与动物基因组和表观遗传环境相互作用的研究。