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    Home > Active Ingredient News > Infection > Cell Dis: Nanjing University Li Liang / Zhang Chenyu team and so on in the gold and silver flower defense new crown research to take new results.

    Cell Dis: Nanjing University Li Liang / Zhang Chenyu team and so on in the gold and silver flower defense new crown research to take new results.

    • Last Update: 2020-10-02
    • Source: Internet
    • Author: User
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    On August 5, 2020, a team of Professor Zhang Chenyu of Nanjing University, Zhang Leiof Wuhan Virus Institute, and Yi Yongxiang of Nanjing Second Hospital published a paper in Cell Discovery magazine, confirming through clinical trials that gold and silver flowers MiRNA in soups can be effectively absorbed by the human body by drinking, and effectively inhibit the replication of new coronavirus in the body, accelerating the transition of new crown patients to yin, indicating that the treatment of gold and silver flower soup agents may greatly help cure new crown patients and prevent the COVID-19 pandemic.
    August 17, 2020, a team of professors from Nanjing University published a research paper entitled: SIDT1-dependent absorption in the stomach mediates host uptake of dietary and orally managemented microRNAs.
    study found that the SIDT1 protein in the mammalian stomach mediats the absorption of food miRNA, which in turn enables it to perform biological functions in animals.
    September 11, 2020, Nanjing University Li Liang, Zhang Chenyu team, and Wuhan Virus Institute Zhang Lei , Nanjing Second Hospital Yi Yongxiang, etc. published a paper entitled: Develop HD-MIR2911 absorption in human subjects with the SIDT1 polyphorism to SARS-COV-2 replication.
    study showed that SIDT1 polymorphism significantly reduced human absorption of MIR2911 in gold and silver soup agents.
    had a lower level of gold and silver flower MIR2911 in the exosomes isolated from volunteers who carried SIDT1 polymorphisms, and could not inhibit the replication of SARS-CoV-2.
    team has previously determined that SID1 transmeral family member 1 (SIDT1) is a key membrane protein for miRNA absorption in mediated foods, while SIDT1 knocks out exodus miRNAs in mice.
    study, they demonstrated that people carrying SIDT1 polymorphism (Val78Met) were more frequent (16 percent).
    , compared with wild SIDT1, in-body experiments show that this polymorphism destroys its intake of external miRNA under low pH conditions.
    addition, SIDT1poly volunteers had lower levels of serum exo-miRNA compared to the SIDT1wt group (? 10%)。
    absorption of MIR2911 also decreased significantly in the SIDT1poly group after taking oral gold and silver flower soup.
    findings suggest that SIDT1 plays a key role in the intake of miRNA in the human diet.
    , SIDT1poly volunteers had lower levels of MIR2911 in serum and serum exosomes.
    has no effect on the expression of the new coronavirus S protein and on virus replication.
    It is worth noting that previous clinical studies have also found that the only new corona patient with SIDT1 polymorphism who understayed SIDT1 had significantly longer nucleic acid transitions than other patients (17 days vs 3.8 days) after receiving treatment with gold and silver flowers.
    that although more human subjects are needed to strengthen their conclusions, it clearly shows that MIR2911 is essential for the antiviral effects of gold and silver broth.
    , the highlight of the study was that: 1. This study provides evidence that SIDT1 mediated miRNA intake in the human diet, further confirming its key role in the absorption of external miRNA.
    2, combined with previous findings, clearly shows that MIR2911 is necessary and sufficient for the antiviral effect of gold and silver broth on SARS-CoV-2. "We have demonstrated that MIR2911 absorbed in gold and silver frying agents fully and necessaryly inhibits SARS-CoV-2 replication in in-body and in humans, so we hope that people can abandon their bias against traditional medicine and conduct clinical follow-up to help control the new crown epidemic pandemic," said Li Liang,
    's author.
    "
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