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High Temperature and High Humidity Reduce the Transmission of Covid-19

papers.ssrn.com

11–20 of 105 posts

Re: High Temperature and High Humidity Reduce the Transmission of Covid-19

#11
Here's a likely related paper from 2007:

https://jvi.asm.org/content/82/4/1899

In this study, a human immunodeficiency virus (HIV)-based pseudovirus system was employed to address these issues. Our results indicated that the SL-CoV S protein is unable to use ACE2 proteins of different species for cell entry and that SARS-CoV S protein also failed to bind the ACE2 molecule of the horseshoe bat, Rhinolophus pearsonii. However, when the RBD of SL-CoV S was replaced with that from the SARS-CoV S, the hybrid S protein was able to use the huACE2 for cell entry, implying that the SL-CoV S proteins are structurally and functionally very similar to the SARS-CoV S. These results suggest that although the SL-CoVs discovered in bats so far are unlikely to infect humans using ACE2 as a receptor, it remains to be seen whether they are able to use other surface molecules of certain human cell types to gain entry. It is also conceivable that these viruses may become infectious to humans if they undergo N-terminal sequence variation, for example, through recombination with other CoVs, which in turn might lead to a productive interaction with ACE2 or other surface proteins on human cells.

Look at the authors:

Zhengli Shi

https://en.wikipedia.org/wiki/Shi_Zhengli

She is a researcher at the Wuhan Institute of Virology (WIV), which is part of the Chinese Academy of Sciences (CAS). Shi and her colleague Cui Jie found that the SARS virus originated in bats.

Re: High Temperature and High Humidity Reduce the Transmission of Covid-19

#14
post #11

Here's a likely related paper from 2007: https://jvi.asm.org/content/82/4/1899 In this study, a human immunodeficiency virus (HIV)-based pseudovirus system was employed to address these issues. Our results indicated that the SL-CoV S protein is unable to use ACE2 proteins of different species for cell entry and that SARS-CoV S protein also failed to bind the ACE2 molecule of the horseshoe bat, Rhinolophus pearsonii.…

Posts like this tend to get flagged quickly on HN.

Meanwhile, you can freely conspiracy theorize all you like about the machinations of the CIA, NSA, etc., regardless of how little evidence you have. It's the same on other social media websites. Zero Hedge got deplatformed from Twitter for talking about this.

The CCP is exerting a frightening chilling effect on public discourse, even in America.

Re: High Temperature and High Humidity Reduce the Transmission of Covid-19

#16
post #14
post #11

Here's a likely related paper from 2007: https://jvi.asm.org/content/82/4/1899 In this study, a human immunodeficiency virus (HIV)-based pseudovirus system was employed to address these issues. Our results indicated that the SL-CoV S protein is unable to use ACE2 proteins of different species for cell entry and that SARS-CoV S protein also failed to bind the ACE2 molecule of the horseshoe bat, Rhinolophus pearsonii.…

Posts like this tend to get flagged quickly on HN. Meanwhile, you can freely conspiracy theorize all you like about the machinations of the CIA, NSA, etc., regardless of how little evidence you have. It's the same on other social media websites. Zero Hedge got deplatformed from Twitter for talking about this. The CCP is exerting a frightening chilling effect on public discourse, even in America.

It is extremely frightening, and it's important that we continue to fight for freedom of expression on all platforms.

Unfortunately so many have an innate bias against the US that any criticism of it is considered fair game regardless of how conspiratorial or absurd.

Re: High Temperature and High Humidity Reduce the Transmission of Covid-19

#19
post #6
post #4

Sure, but what about when it gets cold again? It may come back even worse

IF this is the case, we should be way more prepared including possibly having a vaccine available.

Still no vaccine for SARS 18 years later, what makes you think we'll have a vaccine for this?
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