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Ascorbic acid and its pro-oxidant activity as a therapy for tumours of oral cavity – A systematic review

Abstract Background Ascorbic acid or Vitamin C is a potent dietary antioxidant with a double faced character, in that it exhibits a pro-oxidant activity arising from its routine antioxidant property that generates reactive free radicals, which induce cytotoxic effects at pharmacologic concentrations...

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Published in:Archives of oral biology 2013-06, Vol.58 (6), p.563-574
Main Authors: Putchala, Manisha Chandini, Ramani, Pratibha, Sherlin, Herald J, Premkumar, Priya, Natesan, Anuja
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creator Putchala, Manisha Chandini
Ramani, Pratibha
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Natesan, Anuja
description Abstract Background Ascorbic acid or Vitamin C is a potent dietary antioxidant with a double faced character, in that it exhibits a pro-oxidant activity arising from its routine antioxidant property that generates reactive free radicals, which induce cytotoxic effects at pharmacologic concentrations. A systematic review of this effect of ascorbic acid in the oral tumours and normal oral tissues would clearly elucidate the merits or demerits of employing vitamin C in treating the same. Objective The aim of our systematic review is to critically review the studies reported in literature that have studied the pro-oxidant activity of ascorbic acid as a therapeutic option for treatment of oral neoplasms and its effects on normal oral cells. Methods Articles were searched in PUBMED, MEDLINE using appropriate key words like “ascorbic acid”, “pro-oxidant activity”, “treatment”, “oral neoplasms”. Hand search of Journals was also performed. Articles were reviewed and analysed. Results The search strategy included 17 potentially relevant articles for review of which, 12 were in vitro studies; 3 were in vivo animal studies; 1 was in vivo human study and 1 was ex vivo human study. The optimum concentration of ascorbic acid used to produce potential pro-oxidant associated cytotoxic effects was found to be 3–5 mM in vitro, 0.88–5 mM in vivo animals, 0.5–2 mM ex vivo in humans, and the corresponding effects are induction of apoptosis (caspase activation), necrosis, free radical formation, H2 O2 generation, and DNA fragmentation. In contrast, the same pro-oxidant concentrations had no effect on the normal cells. Conclusion The results of our systematic review show that the pro-oxidant activity of pharmacologic ascorbic acid is a part of its dose-dependent bimodal activity and is a result of the proposed Fenton mechanism. In vitro, animal and ex vivo studies of pharmacologic ascorbic acid (AA) have yielded meritorious results proving vitamin C as an effective cytotoxic agent against oral neoplastic cells with potentially no harming effects on normal cells. However, a shortage of clinical trials and in vivo human studies pertaining to evaluation of anti-tumour activity of vitamin C in tumours of oral cavity remains a lacuna in concluding ascorbic acid as a beneficial therapeutic option in treatment of oral neoplasms.
doi_str_mv 10.1016/j.archoralbio.2013.01.016
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A systematic review of this effect of ascorbic acid in the oral tumours and normal oral tissues would clearly elucidate the merits or demerits of employing vitamin C in treating the same. Objective The aim of our systematic review is to critically review the studies reported in literature that have studied the pro-oxidant activity of ascorbic acid as a therapeutic option for treatment of oral neoplasms and its effects on normal oral cells. Methods Articles were searched in PUBMED, MEDLINE using appropriate key words like “ascorbic acid”, “pro-oxidant activity”, “treatment”, “oral neoplasms”. Hand search of Journals was also performed. Articles were reviewed and analysed. Results The search strategy included 17 potentially relevant articles for review of which, 12 were in vitro studies; 3 were in vivo animal studies; 1 was in vivo human study and 1 was ex vivo human study. The optimum concentration of ascorbic acid used to produce potential pro-oxidant associated cytotoxic effects was found to be 3–5 mM in vitro, 0.88–5 mM in vivo animals, 0.5–2 mM ex vivo in humans, and the corresponding effects are induction of apoptosis (caspase activation), necrosis, free radical formation, H2 O2 generation, and DNA fragmentation. In contrast, the same pro-oxidant concentrations had no effect on the normal cells. Conclusion The results of our systematic review show that the pro-oxidant activity of pharmacologic ascorbic acid is a part of its dose-dependent bimodal activity and is a result of the proposed Fenton mechanism. In vitro, animal and ex vivo studies of pharmacologic ascorbic acid (AA) have yielded meritorious results proving vitamin C as an effective cytotoxic agent against oral neoplastic cells with potentially no harming effects on normal cells. However, a shortage of clinical trials and in vivo human studies pertaining to evaluation of anti-tumour activity of vitamin C in tumours of oral cavity remains a lacuna in concluding ascorbic acid as a beneficial therapeutic option in treatment of oral neoplasms.</description><identifier>ISSN: 0003-9969</identifier><identifier>EISSN: 1879-1506</identifier><identifier>DOI: 10.1016/j.archoralbio.2013.01.016</identifier><identifier>PMID: 23477602</identifier><language>eng</language><publisher>England: Elsevier Ltd</publisher><subject>Advanced Basic Science ; Animals ; Antineoplastic Agents - therapeutic use ; Apoptosis - drug effects ; Ascorbic acid ; Ascorbic Acid - therapeutic use ; Dentistry ; DNA Fragmentation - drug effects ; Free Radicals - metabolism ; Humans ; Hydrogen Peroxide - metabolism ; Mouth Mucosa - drug effects ; Mouth Neoplasms - drug therapy ; Necrosis ; Oral neoplasms ; Oxidants - therapeutic use ; Pro-oxidant activity ; Treatment</subject><ispartof>Archives of oral biology, 2013-06, Vol.58 (6), p.563-574</ispartof><rights>Elsevier Ltd</rights><rights>2013 Elsevier Ltd</rights><rights>Copyright © 2013 Elsevier Ltd. 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A systematic review of this effect of ascorbic acid in the oral tumours and normal oral tissues would clearly elucidate the merits or demerits of employing vitamin C in treating the same. Objective The aim of our systematic review is to critically review the studies reported in literature that have studied the pro-oxidant activity of ascorbic acid as a therapeutic option for treatment of oral neoplasms and its effects on normal oral cells. Methods Articles were searched in PUBMED, MEDLINE using appropriate key words like “ascorbic acid”, “pro-oxidant activity”, “treatment”, “oral neoplasms”. Hand search of Journals was also performed. Articles were reviewed and analysed. Results The search strategy included 17 potentially relevant articles for review of which, 12 were in vitro studies; 3 were in vivo animal studies; 1 was in vivo human study and 1 was ex vivo human study. The optimum concentration of ascorbic acid used to produce potential pro-oxidant associated cytotoxic effects was found to be 3–5 mM in vitro, 0.88–5 mM in vivo animals, 0.5–2 mM ex vivo in humans, and the corresponding effects are induction of apoptosis (caspase activation), necrosis, free radical formation, H2 O2 generation, and DNA fragmentation. In contrast, the same pro-oxidant concentrations had no effect on the normal cells. Conclusion The results of our systematic review show that the pro-oxidant activity of pharmacologic ascorbic acid is a part of its dose-dependent bimodal activity and is a result of the proposed Fenton mechanism. In vitro, animal and ex vivo studies of pharmacologic ascorbic acid (AA) have yielded meritorious results proving vitamin C as an effective cytotoxic agent against oral neoplastic cells with potentially no harming effects on normal cells. 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A systematic review of this effect of ascorbic acid in the oral tumours and normal oral tissues would clearly elucidate the merits or demerits of employing vitamin C in treating the same. Objective The aim of our systematic review is to critically review the studies reported in literature that have studied the pro-oxidant activity of ascorbic acid as a therapeutic option for treatment of oral neoplasms and its effects on normal oral cells. Methods Articles were searched in PUBMED, MEDLINE using appropriate key words like “ascorbic acid”, “pro-oxidant activity”, “treatment”, “oral neoplasms”. Hand search of Journals was also performed. Articles were reviewed and analysed. Results The search strategy included 17 potentially relevant articles for review of which, 12 were in vitro studies; 3 were in vivo animal studies; 1 was in vivo human study and 1 was ex vivo human study. The optimum concentration of ascorbic acid used to produce potential pro-oxidant associated cytotoxic effects was found to be 3–5 mM in vitro, 0.88–5 mM in vivo animals, 0.5–2 mM ex vivo in humans, and the corresponding effects are induction of apoptosis (caspase activation), necrosis, free radical formation, H2 O2 generation, and DNA fragmentation. In contrast, the same pro-oxidant concentrations had no effect on the normal cells. Conclusion The results of our systematic review show that the pro-oxidant activity of pharmacologic ascorbic acid is a part of its dose-dependent bimodal activity and is a result of the proposed Fenton mechanism. In vitro, animal and ex vivo studies of pharmacologic ascorbic acid (AA) have yielded meritorious results proving vitamin C as an effective cytotoxic agent against oral neoplastic cells with potentially no harming effects on normal cells. 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subjects Advanced Basic Science
Animals
Antineoplastic Agents - therapeutic use
Apoptosis - drug effects
Ascorbic acid
Ascorbic Acid - therapeutic use
Dentistry
DNA Fragmentation - drug effects
Free Radicals - metabolism
Humans
Hydrogen Peroxide - metabolism
Mouth Mucosa - drug effects
Mouth Neoplasms - drug therapy
Necrosis
Oral neoplasms
Oxidants - therapeutic use
Pro-oxidant activity
Treatment
title Ascorbic acid and its pro-oxidant activity as a therapy for tumours of oral cavity – A systematic review
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