对已发表的疫苗接种营养支持文献进行系统计算机分析

A. Chuchalin, I. Torshin, O. Gromova
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引用次数: 1

摘要

通过拓扑和计量分析的方法,对PubMed数据库中有关微量营养素供应与抗菌和抗病毒疫苗接种结果之间关系的6700份出版物进行了综述。这种方法允许根据其信息性选择特征(即关键词),建立最具信息量的特征,为“综合”特征和算法提供基础,或者根据与研究主题的相关性对审查的文本进行分类。基础研究结果表明,叶酸、维生素A、D和B12是T淋巴细胞和b淋巴细胞有丝分裂的调节因子,发挥获得性免疫的功能。锌、铁、硒、锰和omega-3多不饱和脂肪酸等微量元素支持T淋巴细胞和b淋巴细胞的功能(能量代谢、细胞内信号传递和转录)。临床研究表明,支持接种特定微量营养素不仅可以提高针对病毒和细菌病原体的抗体滴度,而且还可以预防疫苗接种的不利影响。在疫苗接种前后给予微量营养素将有助于降低死亡率和(在疾病情况下)病理发展的严重程度。系统分析使作者能够确定拟议措施的观点,以提高疫苗的有效性和安全性,包括COVID-19。额外的微量营养素供应有助于提高疫苗接种的有效性和安全性。在疫苗接种过程中应用专门的维生素和矿物质复合物在经济上是可行的,并降低了多低维生素血症患者的疫苗接种风险。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Systematic computer analysis of published literature on nutritional support for vaccination
A range of 6700 publications from the PubMed database on the association of micronutrient supply and results of antibacterial and antiviral vaccination was reviewed by the method of topologic and metric analysis. This method allows for a selection of features (i.e. key words) by their informativity, the establishment of the most informative that provide the basis for “synthetic” features and algorithms, or the classification of the reviewed text by the relevance to the subject of the study. The results of fundamental studies showed that folates, vitamins A, D, and B12 are the regulators of mitosis of T and B-lymphocytes that exert the functions of the acquired immunity. Such microelements as zinc, iron, selenium, manganese, and omega-3 polyunsaturated fatty acid support the functioning of T and B-lymphocytes (energy metabolism, intracellular signal transmission, and transcription). Clinical studies showed that the support of vaccination with the specified micronutrients not only increases the titre of the respective antibodies to viral and bacterial pathogens but can also prevent unfavorable effects from vaccination. The administration of micronutrients before and after vaccination will contribute to a decrease in the mortality rate and severity of the pathology development (in case of disease). A systematic analysis allowed the authors to determine the perspectives of the proposed measures for an increase in the effectiveness and safety of vaccines, including COVID-19. Additional micronutrient supply contributes to an increase in the effectiveness and safety of vaccination. The application of specialized vitamin and mineral complexes during vaccination is economically feasible and reduces the vaccination risks for patients with polyhypoavitaminoses.
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