3 ms·
Far-UVC (~205-222 nm) light can’t penetrate cell walls and thus does not risk DNA damage. However, our skin heavily depends on friendly bacteria to do useful t
by modestmc 4y ago
Far-UVC (~205-222 nm) light can’t penetrate cell walls and thus does not risk DNA damage.
However, our skin heavily depends on friendly bacteria to do useful things. One concern that I have yet to see research testing is the impact of extended Far-UVC exposure on these microbial populations.
- thfuran 4y agoHuman cells don't have cell walls.
- modestmc 4y agoMy apologies, the membrane. I went and dug more into this to brush up on the exact specifics and the exact conclusion of the research was that less than 5% of the intensity of the light reached the nuclear envelope, thus avoiding DNA damage. This is the original study: https://ieeexplore.ieee.org/abstract/document/1341520/ https://ieeexplore.ieee.org/abstract/document/1341520/ However, while I was trying to find the specifics on the DNA damage, I found this: https://mdpi-res.com/d_attachment/ijms/ijms-23-09112/article_deploy/ijms-23-09112.pdf https://mdpi-res.com/d_attachment/ijms/ijms-23-09112/article... My only grief with this article is the conclusion they draw from the yH2AX staining. I can see several possible reasons for observing the higher proportion of cells with it. Other than that, the paper raises a boatload of serious points and definitely observes negatively impacted cellular function. I still think FarUVC has incredible potential but just like cellphone towers the exact specifics to interact with it safely need serious further study.