また肺がんについての SU.VI.MAXメタアナリシス検証では「抗酸化物質はすべての死因に対し関連性を持たない。」と述べられているし[219][220]、Southern California Evidence-Based Practice Center の報告では「(いくつかの癌で結果が得られたが)再検証が必要である。」と結論付けている[221]。
高用量の抗酸化物質を含む栄養補助食品の試験の一つ、"Supplémentation en Vitamines et Mineraux Antioxydants" (SU.VI.MAX) study は、いわゆる健康食に相当する栄養を補足し、その効果を調査する試験である[219]。この試験では、12,500人のフランス人の男女を対象に、低用量の抗酸化物質(アスコルビン酸:120 mg、ビタミンE:30 mg、β-カロテン:6 mg、セレン:100 μg、亜鉛:20mg)または偽薬を平均7.5年間摂取させた。結果、癌および心臓疾患に対し統計学的に見て抗酸化物質には大きな効果は認められなかった。事後分析では男性では31%の癌リスクの減少が見られたが、女性では見られなかった。これは、試験を開始した段階での血液検査の結果から試験開始当初の時点で女性被験者の方が男性被験者よりもビタミンE や β-カロテンの血中濃度が高かったことが判明しており、男性と女性で状態が初めから異なっていたためである[237]。
例えば、味噌には放射能防御能力があることが報告されている[263][264][265][信頼性要検証]。動物実験では、十分に熟成した味噌ほど放射線防御作用が高いと言われている[154][266]。また、レスベラトロールに放射線障害を防ぐ働きがあることが、ピッツバーグ大学の Joel Greenberger のマウスを使った研究で報告している[267][信頼性要検証]。
^Benzie, IF (2003). “Evolution of dietary antioxidants”. Comparative biochemistry and physiology. Part A, Molecular & integrative physiology136 (1): 113–26. doi:10.1016/S1095-6433(02)00368-9.
PMID14527634.
^Nakabeppu Y, Sakumi K, Sakamoto K, Tsuchimoto D, Tsuzuki T, Nakatsu Y (2006). “Mutagenesis and carcinogenesis caused by the oxidation of nucleic acids”. Biol Chem387 (4): 373–9. doi:10.1515/BC.2006.050.
PMID16606334.
^Valko M, Izakovic M, Mazur M, Rhodes C, Telser J (2004). “Role of oxygen radicals in DNA damage and cancer incidence”. Mol Cell Biochem266 (1–2): 37–56. doi:10.1023/B:MCBI.0000049134.69131.89.
PMID15646026.
^Lenaz G (2001). “The mitochondrial production of reactive oxygen species: mechanisms and implications in human pathology”. IUBMB Life52 (3–5): 159–64. doi:10.1080/15216540152845957.
PMID11798028.
^Finkel T, Holbrook NJ (2000). “Oxidants, oxidative stress and the biology of aging”. Nature408 (6809): 239–47. doi:10.1038/35041687.
PMID11089981.
^Hirst J, King MS, Pryde KR (October 2008). “The production of reactive oxygen species by complex I”. Biochem. Soc. Trans.36 (Pt 5): 976–80. doi:10.1042/BST0360976.
PMID18793173.
^ abcdEvelson P, Travacio M, Repetto M, Escobar J, Llesuy S, Lissi E (2001). “Evaluation of total reactive antioxidant potential (TRAP) of tissue homogenates and their cytosols”. Arch Biochem Biophys388 (2): 261 – 6. doi:10.1006/abbi.2001.2292.
PMID11368163.
^Teichert J, Preiss R (1992). “HPLC-methods for determination of lipoic acid and its reduced form in human plasma”. Int J Clin Pharmacol Ther Toxicol30 (11): 511 – 2.
PMID1490813.
^Akiba S, Matsugo S, Packer L, Konishi T (1998). “Assay of protein-bound lipoic acid in tissues by a new enzymatic method”. Anal Biochem258 (2): 299 – 304. doi:10.1006/abio.1998.2615.
PMID9570844.
^ abGlantzounis G, Tsimoyiannis E, Kappas A, Galaris D (2005). “Uric acid and oxidative stress”. Curr Pharm Des11 (32): 4145 – 51. doi:10.2174/138161205774913255.
PMID16375736.
^Normal Reference Range TableArchived 2011年12月25日, at the Wayback Machine. from The University of Texas Southwestern Medical Center at Dallas. Used in Interactive Case Study Companion to Pathologic basis of disease.
^El-Sohemy A, Baylin A, Kabagambe E, Ascherio A, Spiegelman D, Campos H (2002). “Individual carotenoid concentrations in adipose tissue and plasma as biomarkers of dietary intake”. Am J Clin Nutr76 (1): 172 – 9.
PMID12081831.
^Stahl W, Schwarz W, Sundquist A, Sies H (1992). “cis-trans isomers of lycopene and beta-carotene in human serum and tissues”. Arch Biochem Biophys294 (1): 173 – 7. doi:10.1016/0003-9861(92)90153-N.
PMID1550343.
^Zita C, Overvad K, Mortensen S, Sindberg C, Moesgaard S, Hunter D (2003). “Serum coenzyme Q10 concentrations in healthy men supplemented with 30 mg or 100 mg coenzyme Q10 for two months in a randomised controlled study”. Biofactors18 (1 – 4): 185 – 93. doi:10.1002/biof.5520180221.
PMID14695934.
^Zelko I, Mariani T, Folz R (2002). “Superoxide dismutase multigene family: a comparison of the CuZn-SOD (SOD1), Mn-SOD (SOD2), and EC-SOD (SOD3) gene structures, evolution, and expression”. Free Radic Biol Med33 (3): 337–49. doi:10.1016/S0891-5849(02)00905-X.
PMID12126755.
^ abBannister J, Bannister W, Rotilio G (1987). “Aspects of the structure, function, and applications of superoxide dismutase”. CRC Crit Rev Biochem22 (2): 111–80. doi:10.3109/10409238709083738.
PMID3315461.
^Johnson F, Giulivi C (2005). “Superoxide dismutases and their impact upon human health”. Mol Aspects Med26 (4–5): 340–52. doi:10.1016/j.mam.2005.07.006.
PMID16099495.
^Reaume A, Elliott J, Hoffman E, Kowall N, Ferrante R, Siwek D, Wilcox H, Flood D, Beal M, Brown R, Scott R, Snider W (1996). “Motor neurons in Cu/Zn superoxide dismutase-deficient mice develop normally but exhibit enhanced cell death after axonal injury”. Nat Genet13 (1): 43–7. doi:10.1038/ng0596-43.
PMID8673102.
^Van Camp W, Inzé D, Van Montagu M (1997). “The regulation and function of tobacco superoxide dismutases”. Free Radic Biol Med23 (3): 515–20. doi:10.1016/S0891-5849(97)00112-3.
PMID9214590.
^Chelikani P, Fita I, Loewen P (2004). “Diversity of structures and properties among catalases”. Cell Mol Life Sci61 (2): 192–208. doi:10.1007/s00018-003-3206-5.
PMID14745498.
^Zámocký M, Koller F (1999). “Understanding the structure and function of catalases: clues from molecular evolution and in vitro mutagenesis”. Prog Biophys Mol Biol72 (1): 19–66. doi:10.1016/S0079-6107(98)00058-3.
PMID10446501.
^del Río L, Sandalio L, Palma J, Bueno P, Corpas F (1992). “Metabolism of oxygen radicals in peroxisomes and cellular implications”. Free Radic Biol Med13 (5): 557–80. doi:10.1016/0891-5849(92)90150-F.
PMID1334030.
^Hiner A, Raven E, Thorneley R, García-Cánovas F, Rodríguez-López J (2002). “Mechanisms of compound I formation in heme peroxidases”. J Inorg Biochem91 (1): 27–34. doi:10.1016/S0162-0134(02)00390-2.
PMID12121759.
^Parsonage D, Youngblood D, Sarma G, Wood Z, Karplus P, Poole L (2005). “Analysis of the link between enzymatic activity and oligomeric state in AhpC, a bacterial peroxiredoxin”. Biochemistry44 (31): 10583–92. doi:10.1021/bi050448i.
PMID16060667.PDB 1YEX
^Rhee S, Chae H, Kim K (2005). “Peroxiredoxins: a historical overview and speculative preview of novel mechanisms and emerging concepts in cell signaling”. Free Radic Biol Med38 (12): 1543–52. doi:10.1016/j.freeradbiomed.2005.02.026.
PMID15917183.
^Wood Z, Schröder E, Robin Harris J, Poole L (2003). “Structure, mechanism and regulation of peroxiredoxins”. Trends Biochem Sci28 (1): 32–40. doi:10.1016/S0968-0004(02)00003-8.
PMID12517450.
^Claiborne A, Yeh J, Mallett T, Luba J, Crane E, Charrier V, Parsonage D (1999). “Protein-sulfenic acids: diverse roles for an unlikely player in enzyme catalysis and redox regulation”. Biochemistry38 (47): 15407–16. doi:10.1021/bi992025k.
PMID10569923.
^Neumann C, Krause D, Carman C, Das S, Dubey D, Abraham J, Bronson R, Fujiwara Y, Orkin S, Van Etten R (2003). “Essential role for the peroxiredoxin Prdx1 in erythrocyte antioxidant defence and tumour suppression”. Nature424 (6948): 561–5. doi:10.1038/nature01819.
PMID12891360.
^Dietz K, Jacob S, Oelze M, Laxa M, Tognetti V, de Miranda S, Baier M, Finkemeier I (2006). “The function of peroxiredoxins in plant organelle redox metabolism”. J Exp Bot57 (8): 1697–709. doi:10.1093/jxb/erj160.
PMID16606633.
^Nordberg J, Arner ES (2001). “Reactive oxygen species, antioxidants, and the mammalian thioredoxin system”. Free Radic Biol Med31 (11): 1287–312. doi:10.1016/S0891-5849(01)00724-9.
PMID11728801.
^Vieira Dos Santos C, Rey P (2006). “Plant thioredoxins are key actors in the oxidative stress response”. Trends Plant Sci11 (7): 329–34. doi:10.1016/j.tplants.2006.05.005.
PMID16782394.
^Sharma R, Yang Y, Sharma A, Awasthi S, Awasthi Y (2004). “Antioxidant role of glutathione S-transferases: protection against oxidant toxicity and regulation of stress-mediated apoptosis”. Antioxid Redox Signal6 (2): 289–300. doi:10.1089/152308604322899350.
PMID15025930.
^霊長類の進化による尿酸分解活性の消失 I ヒト上科祖先での尿酸オキシダーゼの消滅Friedman TB, Polanco GE, Appold JC, Mayle JE (1985). “On the loss of uricolytic activity during primate evolution--I. Silencing of urate oxidase in a hominoid ancestor”. Comp. Biochem. Physiol., B81 (3): 653?9.
PMID3928241.
^ abDimitroula HV, Hatzitolios AI, Karvounis HI (July 2008). “The role of uric acid in stroke: the issue remains unresolved”. Neurologist14 (4): 238–42. doi:10.1097/NRL.0b013e31815c666b.
PMID18617849.
^Tan DX, Manchester LC, Reiter RJ, Qi WB, Karbownik M, Calvo JR (2000). “Significance of melatonin in antioxidative defense system: reactions and products”. Biological signals and receptors9 (3–4): 137–59. doi:10.1159/000014635.
PMID10899700.
^NAKAMURA Takashi; SATO Katsuyuki; AKIBA Mitsuo; OHNISHI Masao (2006). “Urobilinogen, as a Bile Pigment Metabolite, Has an Antioxidant Function”. Journal of Oleo Science (日本油化学会) 55 (4): 191-197. doi:10.5650/jos.55.191.
NAID130000055572.
^Liu Y, Li P, Lu J, Xiong W, Oger J, Tetzlaff W, Cynader M. (2008). “Bilirubin possesses powerful immunomodulatory activity and suppresses experimental autoimmune encephalomyelitis”. J. Immunol.181 (3): 1887–97.
PMID18641326.
^ abHerrera E, Barbas C (2001). “Vitamin E: action, metabolism and perspectives”. J Physiol Biochem57 (2): 43 – 56. doi:10.1007/BF03179812.
PMID11579997.
^Seiler A, Schneider M, Förster H, Roth S, Wirth EK, Culmsee C, Plesnila N, Kremmer E, Rådmark O, Wurst W, Bornkamm GW, Schweizer U, Conrad M (September 2008). “Glutathione peroxidase 4 senses and translates oxidative stress into 12/15-lipoxygenase dependent- and AIF-mediated cell death”. Cell Metab.8 (3): 237–48. doi:10.1016/j.cmet.2008.07.005.
PMID18762024.
^Brigelius-Flohé R, Davies KJ (2007). “Is vitamin E an antioxidant, a regulator of signal transduction and gene expression, or a 'junk' food? Comments on the two accompanying papers: "Molecular mechanism of alpha-tocopherol action" by A. Azzi and "Vitamin E, antioxidant and nothing more" by M. Traber and J. Atkinson”. Free Radic. Biol. Med.43 (1): 2–3. doi:10.1016/j.freeradbiomed.2007.05.016.
PMID17561087.
^Nunomura A, Castellani R, Zhu X, Moreira P, Perry G, Smith M (2006). “Involvement of oxidative stress in Alzheimer disease”. J Neuropathol Exp Neurol65 (7): 631–41. doi:10.1097/01.jnen.0000228136.58062.bf.
PMID16825950.
^Wood-Kaczmar A, Gandhi S, Wood N (2006). “Understanding the molecular causes of Parkinson's disease”. Trends Mol Med12 (11): 521–8. doi:10.1016/j.molmed.2006.09.007.
PMID17027339.
^Davì G, Falco A, Patrono C (2005). “Lipid peroxidation in diabetes mellitus”. Antioxid Redox Signal7 (1–2): 256–68. doi:10.1089/ars.2005.7.256.
PMID15650413.
^Giugliano D, Ceriello A, Paolisso G (1996). “Oxidative stress and diabetic vascular complications”. Diabetes Care19 (3): 257–67. doi:10.2337/diacare.19.3.257.
PMID8742574.
^Van Gaal L, Mertens I, De Block C (2006). “Mechanisms linking obesity with cardiovascular disease”. Nature444 (7121): 875–80. doi:10.1038/nature05487.
PMID17167476.
^Aviram M (2000). “Review of human studies on oxidative damage and antioxidant protection related to cardiovascular diseases”. Free Radic Res33 Suppl: S85–97.
PMID11191279.
^Rimm EB, Stampfer MJ, Ascherio A, Giovannucci E, Colditz GA, Willett WC (1993). “Vitamin E consumption and the risk of coronary heart disease in men”. N Engl J Med328 (20): 1450–6. doi:10.1056/NEJM199305203282004.
PMID8479464.
^Vivekananthan DP, Penn MS, Sapp SK, Hsu A, Topol EJ (2003). “Use of antioxidant vitamins for the prevention of cardiovascular disease: meta-analysis of randomised trials”. Lancet361 (9374): 2017–23. doi:10.1016/S0140-6736(03)13637-9.
PMID12814711.
^Wilson J, Gelb A (2002). “Free radicals, antioxidants, and neurologic injury: possible relationship to cerebral protection by anesthetics”. J Neurosurg Anesthesiol14 (1): 66–79. doi:10.1097/00008506-200201000-00014.
PMID11773828.
^Lees K, Davalos A, Davis S, Diener H, Grotta J, Lyden P, Shuaib A, Ashwood T, Hardemark H, Wasiewski W, Emeribe U, Zivin J (2006). “Additional outcomes and subgroup analyses of NXY-059 for acute ischemic stroke in the SAINT I trial”. Stroke37 (12): 2970–8. doi:10.1161/01.STR.0000249410.91473.44.
PMID17068304.
^Lees K, Zivin J, Ashwood T, Davalos A, Davis S, Diener H, Grotta J, Lyden P, Shuaib A, Hårdemark H, Wasiewski W (2006). “NXY-059 for acute ischemic stroke”. N Engl J Med354 (6): 588–600. doi:10.1056/NEJMoa052980.
PMID16467546.
^Di Matteo V, Esposito E (2003). “Biochemical and therapeutic effects of antioxidants in the treatment of Alzheimer's disease, Parkinson's disease, and amyotrophic lateral sclerosis”. Curr Drug Targets CNS Neurol Disord2 (2): 95–107. doi:10.2174/1568007033482959.
PMID12769802.
^Rao A, Balachandran B (2002). “Role of oxidative stress and antioxidants in neurodegenerative diseases”. Nutr Neurosci5 (5): 291–309. doi:10.1080/1028415021000033767.
PMID12385592.
^Kopke RD, Jackson RL, Coleman JK, Liu J, Bielefeld EC, Balough BJ (2007). “NAC for noise: from the bench top to the clinic”. Hear. Res.226 (1-2): 114–25. doi:10.1016/j.heares.2006.10.008.
PMID17184943.
^Aggarwal BB, Shishodia S (2006). “Molecular targets of dietary agents for prevention and therapy of cancer”. Biochem. Pharmacol.71 (10): 1397–421. doi:10.1016/j.bcp.2006.02.009.
PMID16563357.
^Schulz TJ, Zarse K, Voigt A, Urban N, Birringer M, Ristow M (2007). “Glucose Restriction Extends Caenorhabditis elegans Life Span by Inducing Mitochondrial Respiration and Increasing Oxidative Stress”. Cell Metab.6 (4): 280–93. doi:10.1016/j.cmet.2007.08.011.
PMID17908557.
^Barros MH, Bandy B, Tahara EB, Kowaltowski AJ (2004). “Higher respiratory activity decreases mitochondrial reactive oxygen release and increases life span in Saccharomyces cerevisiae”. J. Biol. Chem.279 (48): 49883–8. doi:10.1074/jbc.M408918200.
PMID15383542.
^ abSohal R, Mockett R, Orr W (2002). “Mechanisms of aging: an appraisal of the oxidative stress hypothesis”. Free Radic Biol Med33 (5): 575–86. doi:10.1016/S0891-5849(02)00886-9.
PMID12208343.
^Green GA (December 2008). “Review: antioxidant supplements do not reduce all-cause mortality in primary or secondary prevention”. Evid Based Med13 (6): 177. doi:10.1136/ebm.13.6.177.
PMID19043035.
^Duarte TL, Lunec J (2005). “Review: When is an antioxidant not an antioxidant? A review of novel actions and reactions of vitamin C”. Free Radic. Res.39 (7): 671–86. doi:10.1080/10715760500104025.
PMID16036346.
^Gibson R, Perlas L, Hotz C (2006). “Improving the bioavailability of nutrients in plant foods at the household level”. Proc Nutr Soc65 (2): 160–8. doi:10.1079/PNS2006489.
PMID16672077.
^ abMosha T, Gaga H, Pace R, Laswai H, Mtebe K (1995). “Effect of blanching on the content of antinutritional factors in selected vegetables”. Plant Foods Hum Nutr47 (4): 361–7. doi:10.1007/BF01088275.
PMID8577655.
^Prashar A, Locke I, Evans C (2006). “Cytotoxicity of clove (Syzygium aromaticum) oil and its major components to human skin cells”. Cell Prolif39 (4): 241–8. doi:10.1111/j.1365-2184.2006.00384.x.
PMID16872360.
^Hornig D, Vuilleumier J, Hartmann D (1980). “Absorption of large, single, oral intakes of ascorbic acid”. Int J Vitam Nutr Res50 (3): 309–14.
PMID7429760.
^Omenn G, Goodman G, Thornquist M, Balmes J, Cullen M, Glass A, Keogh J, Meyskens F, Valanis B, Williams J, Barnhart S, Cherniack M, Brodkin C, Hammar S (1996). “Risk factors for lung cancer and for intervention effects in CARET, the Beta-Carotene and Retinol Efficacy Trial”. J Natl Cancer Inst88 (21): 1550–9. doi:10.1093/jnci/88.21.1550.
PMID8901853.
^Bjelakovic, G; Nikolova, D; Gluud, LL; Simonetti, RG; Gluud, C (2008). “Antioxidant supplements for prevention of mortality in healthy participants and patients with various diseases”. Cochrane Database of Systematic Reviews (2): CD007176. doi:10.1002/14651858.CD007176.
PMID18425980.
^Miller E, Pastor-Barriuso R, Dalal D, Riemersma R, Appel L, Guallar E (2005). “Meta-analysis: high-dosage vitamin E supplementation may increase all-cause mortality”. Ann Intern Med142 (1): 37–46.
PMID15537682.
^Bjelakovic G, Nagorni A, Nikolova D, Simonetti R, Bjelakovic M, Gluud C (2006). “Meta-analysis: antioxidant supplements for primary and secondary prevention of colorectal adenoma”. Aliment Pharmacol Ther24 (2): 281–91. doi:10.1111/j.1365-2036.2006.02970.x.
PMID16842454.
^ abHercberg S, Galan P, Preziosi P, Bertrais S, Mennen L, Malvy D, Roussel AM, Favier A, Briancon S (2004). “The SU.VI.MAX Study: a randomized, placebo-controlled trial of the health effects of antioxidant vitamins and minerals”. Arch Intern Med164 (21): 2335–42. doi:10.1001/archinte.164.21.2335.
PMID15557412.
^Caraballoso M, Sacristan M, Serra C, Bonfill X (2003). “Drugs for preventing lung cancer in healthy people”. Cochrane Database Syst Rev (2): CD002141. doi:10.1002/14651858.CD002141.
PMID12804424.
^ abcdStanner SA, Hughes J, Kelly CN, Buttriss J (2004). “A review of the epidemiological evidence for the 'antioxidant hypothesis'”. Public Health Nutr7 (3): 407–22. doi:10.1079/PHN2003543.
PMID15153272.
^Virgili F, Marino M (November 2008). “Regulation of cellular signals from nutritional molecules: a specific role for phytochemicals, beyond antioxidant activity”. Free Radical Biology & Medicine45 (9): 1205–16. doi:10.1016/j.freeradbiomed.2008.08.001.
PMID18762244.
^Halliwell, B (2008). “Are polyphenols antioxidants or pro-oxidants? What do we learn from cell culture and in vivo studies?”. Archives of Biochemistry and Biophysics476 (2): 107–112. doi:10.1016/j.abb.2008.01.028.
PMID18284912.
^Cherubini A, Vigna G, Zuliani G, Ruggiero C, Senin U, Fellin R (2005). “Role of antioxidants in atherosclerosis: epidemiological and clinical update”. Curr Pharm Des11 (16): 2017–32. doi:10.2174/1381612054065783.
PMID15974956.
^Lotito SB, Frei B (2006). “Consumption of flavonoid-rich foods and increased plasma antioxidant capacity in humans: cause, consequence, or epiphenomenon?”. Free Radic. Biol. Med.41 (12): 1727–46. doi:10.1016/j.freeradbiomed.2006.04.033.
PMID17157175.
^Dekkers J, van Doornen L, Kemper H (1996). “The role of antioxidant vitamins and enzymes in the prevention of exercise-induced muscle damage”. Sports Med21 (3): 213–38. doi:10.2165/00007256-199621030-00005.
PMID8776010.
^Takanami Y, Iwane H, Kawai Y, Shimomitsu T (2000). “Vitamin E supplementation and endurance exercise: are there benefits?”. Sports Med29 (2): 73–83. doi:10.2165/00007256-200029020-00001.
PMID10701711.
^Mastaloudis A, Traber M, Carstensen K, Widrick J (2006). “Antioxidants did not prevent muscle damage in response to an ultramarathon run”. Med Sci Sports Exerc38 (1): 72–80. doi:10.1249/01.mss.0000188579.36272.f6.
PMID16394956.
^Jakeman P, Maxwell S (1993). “Effect of antioxidant vitamin supplementation on muscle function after eccentric exercise”. Eur J Appl Physiol Occup Physiol67 (5): 426–30. doi:10.1007/BF00376459.
PMID8299614.
^Close G, Ashton T, Cable T, Doran D, Holloway C, McArdle F, MacLaren D (2006). “Ascorbic acid supplementation does not attenuate post-exercise muscle soreness following muscle-damaging exercise but may delay the recovery process”. Br J Nutr95 (5): 976–81. doi:10.1079/BJN20061732.
PMID16611389.
^Schumacker P (2006). “Reactive oxygen species in cancer cells: Live by the sword, die by the sword”. Cancer Cell10 (3): 175–6. doi:10.1016/j.ccr.2006.08.015.
PMID16959608.
^Lawenda BD, Kelly KM, Ladas EJ, Sagar SM, Vickers A, Blumberg JB (June 2008). “Should supplemental antioxidant administration be avoided during chemotherapy and radiation therapy?”. J. Natl. Cancer Inst.100 (11): 773–83. doi:10.1093/jnci/djn148.
PMID18505970.
^Block KI, Koch AC, Mead MN, Tothy PK, Newman RA, Gyllenhaal C (September 2008). “Impact of antioxidant supplementation on chemotherapeutic toxicity: a systematic review of the evidence from randomized controlled trials”. Int. J. Cancer123 (6): 1227–39. doi:10.1002/ijc.23754.
PMID18623084.
^Block KI, Koch AC, Mead MN, Tothy PK, Newman RA, Gyllenhaal C (August 2007). “Impact of antioxidant supplementation on chemotherapeutic efficacy: a systematic review of the evidence from randomized controlled trials”. Cancer Treat. Rev.33 (5): 407–18. doi:10.1016/j.ctrv.2007.01.005.
PMID17367938.
^ Der Petkau-Effekt und unsere strahlende Zukunft (『ペトカウ効果と我らの晴れやかなる未来』)、1985年、ドイツ語
^Ou B, Hampsch-Woodill M, Prior R (2001). “Development and validation of an improved oxygen radical absorbance capacity assay using fluorescein as the fluorescent probe”. J Agric Food Chem49 (10): 4619–26. doi:10.1021/jf010586o.
PMID11599998.
^Prior R, Wu X, Schaich K (2005). “Standardized methods for the determination of antioxidant capacity and phenolics in foods and dietary supplements”. J Agric Food Chem53 (10): 4290–302. doi:10.1021/jf0502698.
PMID15884874.
^Xianquan S, Shi J, Kakuda Y, Yueming J (2005). “Stability of lycopene during food processing and storage”. J Med Food8 (4): 413–22. doi:10.1089/jmf.2005.8.413.
PMID16379550.
^Rodriguez-Amaya D (2003). “Food carotenoids: analysis, composition and alterations during storage and processing of foods”. Forum Nutr56: 35–7.
PMID15806788.
^Maiani G, Periago Castón MJ, Catasta G (November 2008). “Carotenoids: Actual knowledge on food sources, intakes, stability and bioavailability and their protective role in humans”. Mol Nutr Food Res53: NA. doi:10.1002/mnfr.200800053.
PMID19035552.
^Witschi A, Reddy S, Stofer B, Lauterburg B (1992). “The systemic availability of oral glutathione”. Eur J Clin Pharmacol43 (6): 667–9. doi:10.1007/BF02284971.
PMID1362956.
^Flagg EW, Coates RJ, Eley JW (1994). “Dietary glutathione intake in humans and the relationship between intake and plasma total glutathione level”. Nutr Cancer21 (1): 33–46. doi:10.1080/01635589409514302.
PMID8183721.
^ abDodd S, Dean O, Copolov DL, Malhi GS, Berk M (December 2008). “N-acetylcysteine for antioxidant therapy: pharmacology and clinical utility”. Expert Opin Biol Ther8 (12): 1955–62. doi:10.1517/14728220802517901.
PMID18990082.
^van de Poll MC, Dejong CH, Soeters PB (June 2006). “Adequate range for sulfur-containing amino acids and biomarkers for their excess: lessons from enteral and parenteral nutrition”. J. Nutr.136 (6 Suppl): 1694S–1700S.
PMID16702341.
^Kader A, Zagory D, Kerbel E (1989). “Modified atmosphere packaging of fruits and vegetables”. Crit Rev Food Sci Nutr28 (1): 1–30. doi:10.1080/10408398909527490.
PMID2647417.
^Zallen E, Hitchcock M, Goertz G (1975). “Chilled food systems. Effects of chilled holding on quality of beef loaves”. J Am Diet Assoc67 (6): 552–7.
PMID1184900.
^Iverson F (1995). “Phenolic antioxidants: Health Protection Branch studies on butylated hydroxyanisole”. Cancer Lett93 (1): 49–54. doi:10.1016/0304-3835(95)03787-W.
PMID7600543.
^Robards K, Kerr A, Patsalides E (1988). “Rancidity and its measurement in edible oils and snack foods. A review”. Analyst113 (2): 213–24. doi:10.1039/an9881300213.
PMID3288002.
^Del Carlo M, Sacchetti G, Di Mattia C, Compagnone D, Mastrocola D, Liberatore L, Cichelli A (2004). “Contribution of the phenolic fraction to the antioxidant activity and oxidative stability of olive oil”. J Agric Food Chem52 (13): 4072–9. doi:10.1021/jf049806z.
PMID15212450.
^CE Boozer, GS Hammond, CE Hamilton (1955) "Air Oxidation of Hydrocarbons. The Stoichiometry and Fate of Inhibitors in Benzene and Chlorobenzene". Journal of the American Chemical Society, 3233–3235
ニック・レーン(英語版)Oxygen: The Molecule That Made the World (Oxford University Press, 2003)
ISBN0-19-860783-0
Barry Halliwell and John M.C. Gutteridge Free Radicals in Biology and Medicine(Oxford University Press, 2007)
ISBN0-19-856869-X
Jan Pokorny, Nelly Yanishlieva and Michael H. Gordon Antioxidants in Food: Practical Applications (CRC Press Inc, 2001)
ISBN0-8493-1222-1
Rapola, J. M. et al. (1997). "Randomised trial of alpha-tocopherol and beta-carotene supplements on incidence of major coronary events in men with previous myocardial infarction". Lancet 349 (9067): 1715–1720.
PMID9193380. :抗酸化ビタミンにおける疫学データ。この論文では、心筋梗塞を起こした患者に抗酸化ビタミンを投与しても再発を予防する効果はないという結論を出している。