Micronutrients at Supplemental Levels, Tight Junctions and Epithelial Barrier Function: A Narrative Review

Int J Mol Sci. 2024 Mar 19;25(6):3452. doi: 10.3390/ijms25063452.

Abstract

Disease modifiers, whether from cancer, sepsis, systemic inflammation, or microbial pathogens, all appear to induce epithelial barrier leak, with induced changes of the Tight Junctional (TJ) complex being pivotal to the process. This leak-and the ensuant breakdown of compartmentation-plays a central role in disease morbidity on many levels. Accumulation of lung water in the luminal compartment of airways was a major driver of morbidity and mortality in COVID-19 and is an excellent example of the phenomenon. Increasing awareness of the ability of micronutrients to improve basal barrier function and reduce barrier compromise in pathophysiology may prove to be a low-cost, safe, and easily administered prophylactic and/or therapeutic option amenable to large populations. The growing appreciation of the clinical utility of supplemental doses of Vitamin D in COVID-19 is but one example. This narrative review is intended to propose a general theory on how and why micronutrients-at levels above normal dietary intake-successfully remodel TJs and improve barrier function. It discusses the key difference between dietary/Recommended Daily Allowance (RDA) levels of micronutrients versus supplemental levels, and why the latter are needed in disease situations. It advances a hypothesis for why signal transduction regulation of barrier function may require these higher supplemental doses to achieve the TJ remodeling and other barrier element changes that are clinically beneficial.

Keywords: Tumor Necrosis Factor; claudin; diet; evolution; inflammation; micronutrient; signal transduction; tight junction; vitamin D; zinc.

Publication types

  • Review

MeSH terms

  • COVID-19* / metabolism
  • Humans
  • Micronutrients* / metabolism
  • Tight Junctions / metabolism
  • Vitamin D / metabolism
  • Vitamins / metabolism

Substances

  • Micronutrients
  • Vitamins
  • Vitamin D

Grants and funding

The authors declare that financial support was received for the preparation of this article from the Sharpe Strumia Research Foundation (SSRF2024-12).