1778 Antiviral effects of honeysuckle decoction affected in SIDT1poly population

Antiviral effects of honeysuckle decoction affected in SIDT1poly population



Previously, Chen-Yu Zhang’s group have identified SID1 transmembrane family member 1 (SIDT1) as a critical membrane protein mediating dietary miRNAs absorption, which is abolished in SIDT1 deficient mice. In the present study, they demonstrate a significant frequency of human population (16%) that carry a SIDT1 polymorphism with amino acid replacement (Val78Met).

Functional analysis reveals that such polymorphism (SIDT1poly) undermines its low pH-dependent uptake of exogenous miRNAs in vitro compared to wildtype SIDT1 protein. Additionally, people with SIDT1poly have lower serum levels of exogenous miRNAs (~10%) compared to SIDT1wt group. Dynamic absorption of MIR2911 after oral administration of honeysuckle decoction also significantly declines in SIDT1poly population.

These findings suggest the critical role of SIDT1 in dietary miRNAs uptake in human. Furthermore, people with SIDT1poly have lower level of MIR2911 both in serum and isolated exosomes. The exosome from those polymorphic subjects show no effects on S-protein expression or virus replication. Notably, one out of six SARS-CoV-2 patients we observed who takes significantly longer time (17 days versus average 3.8 days) to become SARS-CoV-2 PCR-negative after MIR2911 antiviral therapy carries the exact polymorphism (SIDT1-Val78Met).

Although it needs larger number of human subjects to strengthen the conclusions, it clearly shows that MIR2911 is indispensable to the antiviral effect of honeysuckle decoction.

1.This study provides evidence that SIDT1 medias dietary miRNAs uptake in human, which further confirm its critical role in exogenous miRNAs absorption.

2.Combined with their previous finding, it is clearly showed that MIR2911 is both necessary and sufficient to the antiviral effects of honeysuckle decoction against SARS-CoV-2.

We have demonstrated that absorbed MIR2911 in honeysuckle decoction necessarily and sufficiently inhibits SARS-CoV-2 replication in vitro and in human subjects. Therefore, we wish that people could discard prejudice to traditional medicine and perform clinic trail to help controlling COVID-19 pandemic. Basically, you reject MIR2911 in honeysuckle decoction, you reject life”.

Liang Li, School of Life Sciences, Nanjing University

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