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辅助用铝的命运——基于化学和生物化学基础的代谢故事。

The adjuvant aluminum fate - Metabolic tale based on the basics of chemistry and biochemistry.

机构信息

Faculty of Medicine, University of Belgrade, Dr Subotica 4/2, Belgrade, 11000, Serbia; Institute of Anatomy, Faculty of Medicine, University of Belgrade, Dr Subotica 4/2, Belgrade, 11000, Serbia.

Faculty of Medicine, University of Belgrade, Dr Subotica 4/2, Belgrade, 11000, Serbia; University Children's Hospital, Tirsova 10, Belgrade, Serbia.

出版信息

J Trace Elem Med Biol. 2021 Dec;68:126822. doi: 10.1016/j.jtemb.2021.126822. Epub 2021 Jul 16.

Abstract

Aluminum is inevitable component of many vaccines. The benefit of the vaccines is undeniable but effects of aluminum toxicity might be underestimated and neglected. In this review, we highlighted the mechanims of aluminum toxicity, which is still in debate. So far, all the papers that disscused the adverse aluminum effects pointed two mechanisms responsible for Al toxicity, direct Al toxicity and aluminum induced cell damage via the oxidative metabolism. According to our knowledge, which is based on basic principles of biochemistry and inorganic chemistry, we suggested that aluminum highly interferes with iron metabolism eventually resulting in iron-mediated cell damage. More importantly, in this paper, we offered easily feasible solutions, in order to avoid aluminum toxicity in the future. We suggest that as it once was, Calcium Phosphate again to be used as the adjuvant or better solution that the vaccine adjuvants should be based on zinc compounds or even better would be non-metal adjuvants, such as microcrystalline tyrosine and monosodium urate. Until an adequate adjuvant is provided, we suggest instant postponement of vaccination with vaccines which use aluminum as the adjuvant until the 12 months of age.

摘要

铝是许多疫苗中不可避免的成分。疫苗的益处是不可否认的,但铝毒性的影响可能被低估和忽视。在这篇综述中,我们强调了铝毒性的机制,这仍然存在争议。到目前为止,所有讨论铝的不良影响的论文都指出了两种导致铝毒性的机制,即直接的铝毒性和铝通过氧化代谢诱导的细胞损伤。根据我们的知识,这是基于生物化学和无机化学的基本原则,我们认为铝高度干扰铁代谢,最终导致铁介导的细胞损伤。更重要的是,在本文中,我们提供了一些简单可行的解决方案,以避免未来的铝毒性。我们建议再次使用磷酸钙作为佐剂,或者更好的解决方案是基于锌化合物的疫苗佐剂,甚至更好的是使用非金属佐剂,如微晶体酪氨酸和单钠尿酸盐。在提供足够的佐剂之前,我们建议立即推迟使用铝作为佐剂的疫苗接种,直到 12 个月大。

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