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Original Articles

In vitro analysis of catalase and superoxide dismutase mimetic properties of blue tattoo ink

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Pages 343-357 | Received 23 Jan 2022, Accepted 13 Jul 2022, Published online: 26 Jul 2022

References

  • Pesapane F, Nazzaro G, Gianotti R, et al. A short history of tattoo. JAMA Dermatol. 2014;150(2):145.
  • Giulbudagian M, Schreiver I, Singh AV, et al. Safety of tattoos and permanent make-up: a regulatory view. Arch Toxicol. 2020;94(2):357–369.
  • Schreiver I, Hesse B, Seim C, et al. Distribution of nickel and chromium containing particles from tattoo needle wear in humans and its possible impact on allergic reactions. Part Fibre Toxicol. 2019;16(1):33.
  • Falconi M, Teti G, Zago M, et al. Influence of a commercial tattoo ink on protein production in human fibroblasts. Arch Dermatol Res. 2009;301(7):539–547.
  • Regensburger J, Lehner K, Maisch T, et al. Tattoo inks contain polycyclic aromatic hydrocarbons that additionally generate deleterious singlet oxygen. Exp Dermatol. 2010;19(8):e275-281–e281.
  • Arl M, Nogueira DJ, Schveitzer Köerich J, et al. Tattoo inks: characterization and in vivo and in vitro toxicological evaluation. J Hazard Mater. 2019;364:548–561.
  • Lerche CM, Heerfordt IM, Serup J, et al. Red tattoos, ultraviolet radiation and skin cancer in mice. Exp Dermatol. 2017;26(11):1091–1096.
  • Lerche CM, Sepehri M, Serup J, et al. Black tattoos protect against UVR-induced skin cancer in mice. Photodermatol. Photoimmunol. Photomed. 2015;31(5):261–268.
  • Homolak J. The effect of a color tattoo on the local skin redox regulatory network: an N-of-1 study. Free Radic Res. 2021;55(3):221–229.
  • Homolak J. Redox homeostasis in Alzheimer’s disease. Springer: Cham: Redox Signaling and Biomarkers in Ageing; 2021.
  • Rinnerthaler M, Bischof J, Streubel MK, et al. Oxidative stress in aging human skin. Biomolecules. 2015;5(2):545–589.
  • Wagener F, Carels CE, Lundvig DMS. Targeting the redox balance in inflammatory skin conditions. Int J Mol Sci. 2013;14(5):9126–9167.
  • Carotenuto R, Fogliano C, Rienzi M, et al. Comparative toxicological evaluation of tattoo inks on two model organisms. Biology. 2021;10(12):1308.
  • Høgsberg T, Jacobsen NR, Clausen PA, et al. Black tattoo inks induce reactive oxygen species production correlating with aggregation of pigment nanoparticles and product Brand but not with the polycyclic aromatic hydrocarbon content. Exp Dermatol. 2013;22(7):464–469.
  • Neale PA, Stalter D, Tang JYM, et al. Bioanalytical evidence that chemicals in tattoo ink can induce adaptive stress responses. J Hazard Mater. 2015;296:192–200.
  • Amaral GP, Puntel GO, Dalla Corte CL, et al. The antioxidant properties of different phthalocyanines. Toxicol In Vitro. 2012;26(1):125–132.
  • Qing F, Li L, Yongyan H, et al. Studies on metal phthalocyanine as a dual functional mimic enzyme. J Tongji Med Univ. 2001;21(1):13–16.
  • Hadwan MH. Simple spectrophotometric assay for measuring catalase activity in biological tissues. BMC Biochem. 2018;19(1):7.
  • Homolak J, Babic Perhoc A, Knezovic A, et al. The effect of acute oral galactose administration on the redox system of the rat small intestine. Antioxidants. 2021;11(1):37.
  • Homolak J, Perhoc AB, Joja MNon-alcoholic components of Pelinkovac, a Croatian wormwood-based strong liquor, counteract the inhibitory effect of high ethanol concentration on catalase in vitro. BioRxiv, et al. 2022. 2022.01.07.475357.
  • Li X. Improved pyrogallol autoxidation method: a reliable and cheap Superoxide-Scavenging assay suitable for all antioxidants. J Agric Food Chem. 2012;60(25):6418–6424.
  • Marklund S, Marklund G. Involvement of the superoxide anion radical in the autoxidation of pyrogallol and a convenient assay for superoxide dismutase. Eur J Biochem. 1974;47(3):469–474.
  • Graham ML, Prescott MJ. The multifactorial role of the 3Rs in shifting the harm-benefit analysis in animal models of disease. Eur J Pharmacol. 2015;759:19–29.
  • Parekh BS, Mehta HB, West MD, et al. Preparative elution of proteins from nitrocellulose membranes after separation by sodium dodecyl sulfate-polyacrylamide gel electrophoresis. Anal Biochem. 1985;148(1):87–92.
  • Caplins BW, Mullenbach TK, Holmes RJ, et al. Femtosecond to nanosecond excited state dynamics of vapor deposited copper phthalocyanine thin films. Phys Chem Chem Phys. 2016;18(16):11454–11459.
  • Farag AAM. Optical absorption studies of copper phthalocyanine thin films. Opt Laser Technol. 2007;39(4):728–732.
  • Monteiller C, Tran L, MacNee W, et al. The pro‐inflammatory effects of low‐toxicity low‐solubility particles, nanoparticles and fine particles, on epithelial cells in vitro: the role of surface area. Occup Environ Med. 2007;64(9):609–615.
  • Schwotzer D, Niehof M, Schaudien D, et al. Cerium oxide and barium sulfate nanoparticle inhalation affects gene expression in alveolar epithelial cells type II. J Nanobiotechnology. 2018;16(1):16.
  • Delaval M, Wohlleben W, Landsiedel R, et al. Assessment of the oxidative potential of nanoparticles by the cytochrome c assay: assay improvement and development of a high-throughput method to predict the toxicity of nanoparticles. Arch Toxicol. 2017;91(1):163–177.
  • Hirakawa K. Fundamentals of medicinal application of titanium dioxide nanoparticles. IntechOpen. 2015.
  • Li M, Yin J-J, Wamer WG, et al. Mechanistic characterization of titanium dioxide nanoparticle-induced toxicity using electron spin resonance. J Food Drug Anal. 2014;22(1):76–85.
  • Zhang H-M, Cao J, Tang B-P, et al. Effect of TiO2 nanoparticles on the structure and activity of catalase. Chem Biol Interact. 2014;219:168–174.
  • Song U, Jun H, Waldman B, et al. Functional analyses of nanoparticle toxicity: a comparative study of the effects of TiO2 and Ag on tomatoes (Lycopersicon esculentum). Ecotoxicol Environ Saf. 2013;93:60–67.
  • Bocca B, Sabbioni E, Mičetić I, et al. Size and metal composition characterization of nano- and microparticles in tattoo inks by a combination of analytical techniques. J Anal At Spectrom. 2017;32(3):616–628.
  • Høgsberg T, Loeschner K, Löf D, et al. Tattoo inks in general usage contain nanoparticles. Br J Dermatol. 2011;165(6):1210–1218.
  • Manke A, Wang L, Rojanasakul Y. Mechanisms of nanoparticle-induced oxidative stress and toxicity. Biomed Res Int. 2013;2013:942916.

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