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Original Article

Anthocyanin-rich extract from Hibiscus sabdariffa calyx counteracts UVC-caused impairments in rats

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Pages 1435-1441 | Received 26 Jul 2014, Accepted 13 Oct 2014, Published online: 18 Mar 2015

References

  • Ademiluyi AO, Oboh G, Agbebi OJ, Akinyemi AJ. (2013). Anthocyanin-rich red dye of Hibiscus sabdariffa calyx modulates cisplatin-induced nephrotoxicity and oxidative stress in rats. Int J Biomed Sci 9:243–8
  • Ajiboye TO, Salawu NA, Yakubu MT, et al. (2011). Antioxidant and drug detoxification potentials of Hibiscus sabdariffa anthocyanin extract. Drug Chem Toxicol 34:109–15
  • Aldrich JE. (2003). Clinical enzymology. In: Anderson SC, Cockayne S, eds. Clinical Chemistry: Concept and Applications. New York: McGraw-Hill, 261–84
  • Ali BH, Al Wabel N, Blunden G. (2005). Phytochemical, pharmacological and toxicological aspects of Hibiscus sabdariffa L.: A review. Phytother Res 19:369–75
  • Altinas A, Bilgili A, Essiz D, et al. (2007). Effects of artificial ultraviolet c radiation on several blood and urine parameters related to renal and hepatic functions in albino mice. Bull Vet Inst Pulawy 51:303–8
  • Aly EM, Ali MA. (2014). Effects of bilberry on deoxyribonucleic acid damage and oxidant–antioxidant balance in the lens, induced by ultraviolet radiation. Malays J Med Sci 21:11–18
  • Anwar MM, Moustafa MA. (2001). The effect of melatonin on eye lens of rats exposed to ultraviolet radiation. Comp Biochem Physiol C Toxicol Pharmacol 129:57–63
  • Bai H, Liu R, Chen HL, et al. (2014). Enhanced antioxidant effect of caffeic acid phenethyl ester and trolox in combination against radiation induced-oxidative stress. Chem Biol Interact 207:7–15
  • Barg M, Rezin GT, Leffa DD, et al. (2014). Evaluation of the protective effect of Ilex paraguariensis and Camellia sinensis extracts on the prevention of oxidative damage caused by ultraviolet radiation. Environ Toxicol Pharmacol 37:195–201
  • Basti D, Bricknell I, Bouchard D. (2009). Recovery from a near-lethal exposure to ultraviolet-C radiation in a scleractinian coral. J Invertebr Pathol 101:43–8
  • Biesalski HK, Obermueller-Jevic UC. (2001). UV light, β-carotene and human skin-beneficial and potentially harmful effects. Arch Biochem Biophys 389:1–6
  • Bilgili SG, Ozkol H, Takci Z, et al. (2013). Assessment of the serum paraoxonase activity and oxidant/antioxidant status in patients with recurrent aphthous stomatitis. Int J Dermatol 52:1259–64
  • Bowden GT. (2004). Prevention of non-melanoma skin cancer by targeting ultraviolet-B-light signaling. Nat Rev Cancer 4:23–35
  • Brainard GC, Podolin PL, Leivey SW, et al. (1986). Near ultraviolet radiation suppresses pineal melatonin content. Endocrinology 119:2201–5
  • Carvajal-Zarraba O, Barradas-Dermitz DM, Orta-Flores Z, et al. (2012). Hibiscus sabdariffa L., roselle calyx: From ethnobotany to pharmacology. J Expl Pharmacol 4:25–39
  • Darr D, Fridovich I. (1994). Free radicals in cutaneous biology. J Invest Dermatol 102:671–5
  • Droge W. (2002). Free radicals in the physiological control of cell function. Physiol Rev 82:47–95
  • Erel O. (2004). A novel automated direct measurement method for total antioxidant capacity using a new generationmore stable ABTS radical cation. Clin Biochem 37:277–85
  • Erel O. (2005). A new automated colorimetric method for measuring total oxidant status. Clin Biochem 38:1103–11
  • Essa MM, Subramanian P. (2007). Hibiscus sabdariffa affects ammonium chloride-induced hyperammonemic rats. Evid Based Complement Alternat Med 4:321–5
  • Giusti MM, Wrolstad RE. (2001). Unit F1.2. Anthocyanins. Characterization and measurement with UV-visible spectroscopy. In: Wrolstad RE, Schwartz SJ, eds. Current Protocols in Food Analytical Chemistry. New York: John Wiley & Sons, 1–13
  • Halliwell B. (1990). How to characterize a biological antioxidant. Free Radical Res Commun 9:1–32
  • Hegde KR, Henein MG, Varma SD. (2003). Establishment of mouse as an animal model for study of diabetic cataracts: Biochemical studies. Diabetes Obes Metab 5:113–19
  • Hirunpanich V, Utaipat A, Morales NP, et al. (2006). Hypocholesterolemic and antioxidant effects of aqueous extracts from the dried calyx of Hibiscus sabdariffa L. in hypercholesterolemic rats. J Ethnopharmacol 103:252–60
  • Ichihashi M, Ueda M, Budiyanto A, et al. (2003). UV-induced skin damage. Toxicology 189:21–39
  • Inal ME, Kahraman A. (2000). The protective effect of flavonol quercetin against ultraviolet A-induced oxidative stress in rats. Toxicology 154:21–9
  • Karthikeyan K, Bai BR, Devaraj SN. (2007). Cardioprotective effect of grape seed proanthocyanidins on isoproterenol-induced myocardial injury in rats. Int J Cardiol 115:326–33
  • Lee AY, Chung SS. (1999). Contributions of polyol pathway to oxidative stress in diabetic cataract. FASEB J 13:23–30
  • Levine RL, Garland D, Oliver CN, et al. (1990). Determination of carbonyl content in oxidatively modified proteins. Methods Enzymol 186:464–78
  • Lowry OH, Rosebrough NJ, Farr AL. (1951). Protein measurement with the Folin phenol reagent. J Biol Chem 193:265–75
  • Mishra AK, Mishra A, Verma A, Chattopadhyay P. (2012). Effects of Calendula essential oil-based cream on biochemical parameters of skin of albino rats against ultraviolet B radiation. Sci Pharm 80:669–83
  • Mohagheghi A, Maghsoud S. (2011). The effect of Hibiscus sabdariffa on lipid profile, creatinine and serum electrolytes: A randomized clinical trial. ISRN Gastroenterol. 2011:976019
  • Nishi J, Ogura R, Sugiyama M, et al. (1991). Involvement of active oxygen in lipid peroxide radical reaction of epidermal homogenate following ultraviolet light exposure. J Invest Dermatol 97:115–19
  • Ologundudu AO, Oluba OM, Omotuyi IO, Obi FO. (2010). Effect of Hibiscus sabdariffa anthocyanins on 2,4-dinitrophenylhydrazine-induced tissue damage in rabbits. J Toxicol Environ Health Sci 2:1–11
  • Onyenekwe PC, Ajani EO, Ameh DA, Gamammiel KS. (1999). Antihypertensive effect of roselle (Hibiscus sabdariffa) calyx infusion in spontaneously hypertensive rats and a comparison of its toxicity with that in Wistar rats. Cell Biochem Funct 17:199–206
  • Osman AGM, Koutb M, Sayed AEDH. (2010). Use of hematological parameters to assess the efficiency of quince (Cydonia oblonga Miller) leaf extract in alleviation of the effect of ultraviolet-A radiation on African catfish Clarias gariepinus (Burchell, 1822). J Photochem Photobiol B Biol 99:1–8
  • Özkol H, Tuluce Y, Koyuncu I. (2011). Attenuation of UVC-induced toxicity by Linum usitatissimum L. oil in rats: Monitoring of some hematological and biochemical constituents. Fresen Environ Bull 20:1955–9
  • Recknagel RO, Glende EA Jr, Dolak JA, Waller RL. (1989). Mechanisms of carbon tetrachloride toxicity. Pharmacol Ther 43:139–54
  • Rorsman H, Tegner E. (1988). Biochemical observations in UV-induced pigmentation. Photodermatology 5:30–8
  • Sander CS, Chang H, Salzmann S, et al. (2002). Photoaging is associated with protein oxidation in human skin in vivo. J Invest Dermatol 118:618–25
  • Sarkar B, Kumar D, Sasmal D, Mukhopadhyay K. (2014). Antioxidant and DNA damage protective properties of anthocyanin-rich extracts from Hibiscus and Ocimum: A comparative study. Nat Prod Res 14:1–6
  • Shindo Y, Witt E, Packer L. (1993). Antioxidant defense mechanisms in murine epidermis and dermis and their responses to ultraviolet light. J Invest Dermatol 100:260–5
  • Sierra AF, Ramírez ML, Campmany AC, et al. (2013). In vivo and in vitro evaluation of the use of a newly developed melatonin loaded emulsion combined with UV filters as a protective agent against skin irradiation. J Dermatol Sci 69:202–14
  • Svobodová A, Psotová J, Walterová D. (2003). Natural phenolics in the prevention of UV-induced skin damage. A review. Biomed Pap Med Fac Univ Palacky Olomouc Czech Repub 147:137–45
  • Tuluce Y, Ozkol H, Koyuncu I, Ine H. (2011). Increased occupational coal dust toxicity in blood of central heating system workers. Toxicol Ind Health 27:57–64
  • Tülüce Y, Ozkol H, Koyuncu I. (2012). Photoprotective effect of flax seed oil (Linum usitatissimum L.) against ultraviolet C-induced apoptosis and oxidative stress in rats. Toxicol Ind Health 28:99–107
  • Wahabi HA, Alansary LA, Al-Sabban AH, Glasziuo P. (2010). The effectiveness of Hibiscus sabdariffa in the treatment of hypertension: A systematic review. Phytomedicine 17:83–6
  • Wong PK, Yusof S, Ghazali HM, Che-Man YB. (2002). Physicochemical characteristics of roselle (Hibiscus sabdariffa L.). Nutr Food Sci 32:68–73
  • Yan H, Sun X, Sun S, et al. (2011). Anti-ultraviolet radiation effects of Coptis chinensis and Phellodendron amurense glycans by immunomodulating and inhibiting oxidative injury. Int J Biol Macromol 48:720–5
  • Yu X, Wang W, Yang M. (2007). Antioxidant activities of compounds isolated from Dalbergia odorifera T. Chen and their inhibition effects on the decrease of glutathione level of rat lens induced by UV irradiation. Food Chem 104:715–20
  • Zondervan KT, Ocke MC, Smit HA, Seidell J. (1996). Do dietary and supplementary intakes of antioxidants differ with smoking status? Int J Epidemiol 25:70–9

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