For decades, germicidal UV lamps have been used inClass II Biological Safety Cabinetsto keep the biosafety cabinet's interior clean when not in use.Many researchers swear by the use of UV lamps and would never consider using an enclosure without one.Others believe UV lamps provide a false sense of security, or don't see the merit in a UV lamp (see NIH reference).Germicidal lamps utilize UVc radiation (typically 254 nm wavelength).This energy is very good at doing a specific task, but it's a poor broad spectrum decontaminant, and here is why.
UVc is a recommended accessory for yourBSC or laminar flow benchwhen working with cell cultures, PCR or other genetic materials because UVc radiation is efficient atbreaking up chemical bonds and denaturing DNA and RNA.Under prolonged exposure, these chemical changes lead to dysfunctional genetic material, and eventually, cell death.
Germicidal lamps use low energy radiation—so low that thewaves are incapable of penetratingbarriers or of reflecting from most surfaces.This simply means that for UV lamps to be effective, the target MUST be in direct line of sight with the light source.This is bad if you are using a germicidal lamp as the primary decontaminant in your lab's culture enclosure.However, for those folks populating the lab or standing outside of the enclosure with nothing but a sheet of glass between them and the blue tube of light, this is a good thing.It means that sheet of glass is more than sufficient to block you from becoming irradiated.
Use of a UV lamp for the purpose of primary decontamination is rampant, as is the frequency of cross contamination.True, cross contamination can be caused by a number of factors – but experience shows that labs utilizing UV lamps as theonlymeans of "cleaning" their BSC have a higher prevalence of such issues.