Zhang Yanfang, Dong Jingyi, Chen Jingxian, Pan Xiaoming
School of Food Engineering Ludong University Yantai China.
Yantai Key Laboratory of Nanoscience and Technology for Prepared Food Yantai China.
Food Sci Nutr. 2023 Aug 6;11(10):6522-6531. doi: 10.1002/fsn3.3599. eCollection 2023 Oct.
Nucleic acids (NAs) were recently shown to be digested by pepsin in vitro; however, NAs digestion in human gastric juice in vivo is more complicated because of the complex gastric environment and ingestion of other food components. The purpose of this study was to investigate the digestibility of NAs in real human gastric juices after ingestion of other food components. As a result, DNA digestion was not affected when carbohydrates, proteins, and metal elements were ingested within the recommended dietary intake levels. Separately, protein exerted an inhibitory effect on DNA digestion when the mass ratio of protein:DNA was greater than 40:1. DNA exists in the nucleoprotein, which is closer to the state of DNA in real food, and was digested efficiently in human gastric juice. Meanwhile, DNA digestion was rarely affected even when the concentrations of monovalent ion (Na) and divalent ions (Mg) were as high as 500 and 100 mM, respectively, and high concentration of Mg ranged from 20 to 100 mM accelerated the digestion. In particular, short-stranded DNA (<100 nt) and miRNAs (19 ~ 25 nt) were not obviously degraded in human gastric juice. In conclusion, dietary NAs were digested efficiently and were not affected by other food components in human gastric juice, which may facilitate further digestion and utilization of DNA in the intestinal tract.
核酸(NAs)最近被证明在体外可被胃蛋白酶消化;然而,由于复杂的胃环境和其他食物成分的摄入,核酸在人体胃液中的体内消化更为复杂。本研究的目的是调查摄入其他食物成分后,核酸在真实人体胃液中的消化率。结果表明,当碳水化合物、蛋白质和金属元素的摄入量在推荐膳食摄入量水平内时,DNA消化不受影响。另外,当蛋白质与DNA的质量比大于40:1时,蛋白质对DNA消化有抑制作用。DNA存在于核蛋白中,这更接近真实食物中DNA的状态,并且在人体胃液中能被有效消化。同时,即使单价离子(Na)和二价离子(Mg)的浓度分别高达500和100 mM,DNA消化也很少受到影响,并且20至100 mM的高浓度Mg会加速消化。特别是,短链DNA(<100 nt)和微小RNA(19~25 nt)在人体胃液中没有明显降解。总之,膳食核酸在人体胃液中能被有效消化,且不受其他食物成分的影响,这可能有助于肠道中DNA的进一步消化和利用。