Figure 5a,b Superoxide Applied Microbiology The cold atmospheric pressure plasma-generated species superoxide, singlet oxygen and atomic oxygen activate the molecular chaperone Hsp33 xlsx
Figure 5c,d singlet oxygen Applied Microbiology The cold atmospheric pressure plasma-generated species superoxide, singlet oxygen and atomic oxygen activate the molecular chaperone Hsp33 xlsx
Figure 5e,f atomic oxygen Applied Microbiology The cold atmospheric pressure plasma-generated species superoxide, singlet oxygen and atomic oxygen activate the molecular chaperone Hsp33 xlsx
Figure 6 Hsp33 µAPPJ activation Applied Microbiology The cold atmospheric pressure plasma-generated species superoxide, singlet oxygen and atomic oxygen activate the molecular chaperone Hsp33 xlsx
Figure 3a Plasma-induced Hsp33 activation Applied Microbiology The cold atmospheric pressure plasma-generated species superoxide, singlet oxygen and atomic oxygen activate the molecular chaperone Hsp33 xlsx
Figure 2b Hsp33 Degradation Applied Microbiology The cold atmospheric pressure plasma-generated species superoxide, singlet oxygen and atomic oxygen activate the molecular chaperone Hsp33 xlsx
Figure 1b Survival longer treatment Applied Microbiology The cold atmospheric pressure plasma-generated species superoxide, singlet oxygen and atomic oxygen activate the molecular chaperone Hsp33 xlsx
Figure 4b Hsp33 Tryptophan fluorescence Applied Microbiology The cold atmospheric pressure plasma-generated species superoxide, singlet oxygen and atomic oxygen activate the molecular chaperone Hsp33 xlsx
Figure 2a Plasma stability Hsp33 Applied Microbiology The cold atmospheric pressure plasma-generated species superoxide, singlet oxygen and atomic oxygen activate the molecular chaperone Hsp33 xlsx
Figure 1a Survival Rates Applied Microbiology The cold atmospheric pressure plasma-generated species superoxide, singlet oxygen and atomic oxygen activate the molecular chaperone Hsp33 xlsx