and immunological aspects. Int J Infect Dis
39:20–24. https://doi.org/10.1016/j.ijid.
2015.08.006
112. Greenwood BM, Fidock DA, Kyle DE, Kappe
SH, Alonso PL, Collins FH, Duffy PE (2008)
Malaria: progress, perils, and prospects for
eradication. J Clin Invest 118(4):1266–1276
113. Ellis RD, Sagara I, Doumbo O, Wu Y (2010)
Blood stage vaccines for Plasmodium falciparum: current status and the way forward.
Hum Vaccin 6(8):627–634
114. Richards JS, Beeson JG (2009) The future for
blood-stage vaccines against malaria. Immunol Cell Biol 87(5):377–390
115. Depelsenaire ACI, Kendall MAF, Young PR,
Muller DA (2017) Introduction to vaccines
and vaccination. In: Skwarczynski M, Toth I
(eds) Micro and nanotechnology in vaccine
development. Elsevier, Amsterdam
116. Barrett AD (2015) 9 licensed vaccines for
humans. Vaccinology: an essential guide.
152–180
117. Pattison DI, Davies MJ (2001) Absolute rate
constants for the reaction of hypochlorous
acid with protein side chains and peptide
bonds. Chem Res Toxicol 14:1453–1464.
https://doi.org/10.1021/tx0155451
118. Hakim H, Alam MS, Sangsriratanakul N,
Nakajima K, Kitazawa M, Ota M,
Toyofuku C, Yamada M, Thammakarn C,
Shoham D, Takehara K (2016) Inactivation
of bacteria on surfaces by sprayed slightly
acidic hypochlorous acid water: in vitro
experiments.
J
Vet
Med
Sci
78
(7):1123–1128. https://doi.org/10.1292/
jvms.16-0075
119. Pattison DI, Hawkins CL, Davies MJ (2003)
Hypochlorous acid-mediated oxidation of
lipid components and antioxidants present in
low-density lipoproteins: absolute rate constants, product analysis, and computational
modeling. Chem Res Toxicol 16(4):439–449
120. Chiang CL, Kandalaft LE, Tanyi J, Hagemann AR, Motz GT, Svoronos N,
Montone
K,
Mantia-Smaldone
GM,
Smith L, Nisenbaum HL, Levine BL,
Kalos M, Czerniecki BJ, Torigian DA, Powell
DJ Jr, Mick R, Coukos G (2013) A dendritic
cell vaccine pulsed with autologous hypochlorous acid-oxidized ovarian cancer lysate
primes effective broad antitumor immunity:
from bench to bedside. Clin Cancer Res 19
(17):4801–4815
121. Seo HS (2015) Application of radiation technology in vaccines development. Clin Exp
Vaccine Res 4(2):145–158
122. da Silva Aquino KA (2012) Sterilization by
gamma irradiation. In Gamma radiation.
IntechOpen.
https://doi.org/10.5772/
34901
123. Babb R, Chen A, Hirst TR et al (2016) Intranasal vaccination with γ-irradiated Streptococcus pneumoniae whole-cell vaccine
provides serotype-independent protection
mediated by B-cells and innate IL-17
responses. Clin Sci 130(9):697–710
124. Parham P (2014) The immune system. Garland Science, New York
125. Holmgren J, Czerkinsky C (2005) Mucosal
immunity and vaccines. Nat Med 11(4s):S45
266
Punit Kumar et al.
39:20–24. https://doi.org/10.1016/j.ijid.
2015.08.006
112. Greenwood BM, Fidock DA, Kyle DE, Kappe
SH, Alonso PL, Collins FH, Duffy PE (2008)
Malaria: progress, perils, and prospects for
eradication. J Clin Invest 118(4):1266–1276
113. Ellis RD, Sagara I, Doumbo O, Wu Y (2010)
Blood stage vaccines for Plasmodium falciparum: current status and the way forward.
Hum Vaccin 6(8):627–634
114. Richards JS, Beeson JG (2009) The future for
blood-stage vaccines against malaria. Immunol Cell Biol 87(5):377–390
115. Depelsenaire ACI, Kendall MAF, Young PR,
Muller DA (2017) Introduction to vaccines
and vaccination. In: Skwarczynski M, Toth I
(eds) Micro and nanotechnology in vaccine
development. Elsevier, Amsterdam
116. Barrett AD (2015) 9 licensed vaccines for
humans. Vaccinology: an essential guide.
152–180
117. Pattison DI, Davies MJ (2001) Absolute rate
constants for the reaction of hypochlorous
acid with protein side chains and peptide
bonds. Chem Res Toxicol 14:1453–1464.
https://doi.org/10.1021/tx0155451
118. Hakim H, Alam MS, Sangsriratanakul N,
Nakajima K, Kitazawa M, Ota M,
Toyofuku C, Yamada M, Thammakarn C,
Shoham D, Takehara K (2016) Inactivation
of bacteria on surfaces by sprayed slightly
acidic hypochlorous acid water: in vitro
experiments.
J
Vet
Med
Sci
78
(7):1123–1128. https://doi.org/10.1292/
jvms.16-0075
119. Pattison DI, Hawkins CL, Davies MJ (2003)
Hypochlorous acid-mediated oxidation of
lipid components and antioxidants present in
low-density lipoproteins: absolute rate constants, product analysis, and computational
modeling. Chem Res Toxicol 16(4):439–449
120. Chiang CL, Kandalaft LE, Tanyi J, Hagemann AR, Motz GT, Svoronos N,
Montone
K,
Mantia-Smaldone
GM,
Smith L, Nisenbaum HL, Levine BL,
Kalos M, Czerniecki BJ, Torigian DA, Powell
DJ Jr, Mick R, Coukos G (2013) A dendritic
cell vaccine pulsed with autologous hypochlorous acid-oxidized ovarian cancer lysate
primes effective broad antitumor immunity:
from bench to bedside. Clin Cancer Res 19
(17):4801–4815
121. Seo HS (2015) Application of radiation technology in vaccines development. Clin Exp
Vaccine Res 4(2):145–158
122. da Silva Aquino KA (2012) Sterilization by
gamma irradiation. In Gamma radiation.
IntechOpen.
https://doi.org/10.5772/
34901
123. Babb R, Chen A, Hirst TR et al (2016) Intranasal vaccination with γ-irradiated Streptococcus pneumoniae whole-cell vaccine
provides serotype-independent protection
mediated by B-cells and innate IL-17
responses. Clin Sci 130(9):697–710
124. Parham P (2014) The immune system. Garland Science, New York
125. Holmgren J, Czerkinsky C (2005) Mucosal
immunity and vaccines. Nat Med 11(4s):S45
266
Punit Kumar et al.
