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2012 | 15 | 4 |

Tytuł artykułu

Involvement of the different extracts from roots of Salvia miltiorrhiza Bunge on acute hypobaric hypoxia-induced cardiovascular effects in rats – preliminary report

Treść / Zawartość

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
The present study was carried out to investigate the protective effects of roots of Salvia miltiorrhiza Bunge on hypobaric hypoxia. Two extracts of S. miltiorrhiza (extract 1: ethanol : water - 50 : 50; extract 2: 96% ethanol) were used. The experiments were performed after 7 consecutive days of administration of the extracts (200 mg/kg b.w., intragastrically) to male Wistar rats. Next, after placing animals for 60 min in the controlled acute hypobaric hypoxia (500 mm Hg) the systolic arterial blood pressure (SAP) in conscious rats, bioelectric heart activity in unconscious rats and analysis of oxidative stress parameters in the blood of rats: malonyldialdehyde (MDA) and lipid peroxidase (LPO) concentration, activity of superoxide dismutase (SOD) or glutathione peroxidase (GPX) were assayed. It was found out that the extract 1 augmented the lowering of SAP shown in hypoxia affected control rats. On the contrary the extract 2 reversed SAP to values obtained in control animals. Moreover, both extracts led to the normalization of hypoxia-induced tachycardia and levels of MDA, LPO and SOD. It seems that the above-mentioned effects are coupled with different active compounds content in the extracts, however more studies are needed to confirm this hypothesis.

Słowa kluczowe

Wydawca

-

Rocznik

Tom

15

Numer

4

Opis fizyczny

p.693-701,ref.

Twórcy

autor
  • Team of Botany and Agriculture of Medicinal Plants, Department of Botany, Breeding and Agriculture, Institute of Natural Fibres and Medicinal Plants, Kolejowa 2, 62-064 Plewiska, Poland
  • Department of Pharmacology and Experimental Biology, Institute of Natural Fibres and Medicinal Plants, Libelta 27, 61-707 Poznań, Poland
  • Department of Pharmacology, Poznań University of Medical Sciences, Rokietnicka 5a, 60-806 Poznań, Poland
  • Department of Pharmacology and Experimental Biology, Institute of Natural Fibres and Medicinal Plants, Libelta 27, 61-707 Poznań, Poland
autor
  • Department of Biotechnology, Institute of Natural Fibres and Medicinal Plants, Wojska Polskiego 71b, 60-630 Poznań, Poland
  • Department of Quality Control of Medicinal Products and Dietary Supplements, Institute of Natural Fibres and Medicinal Plants, Libelta 27, 61-707 Poznań, Poland
autor
  • Department of Pharmacology, Poznań University of Medical Sciences, Rokietnicka 5a, 60-806 Poznań, Poland
autor
  • Department of Pharmacology, Poznań University of Medical Sciences, Rokietnicka 5a, 60-806 Poznań, Poland
  • Laboratory of Lipid Metabolism, Department of General Chemistry, Poznań University of Medical Sciences, Grunwaldzka 6, 60-780 Poznań, Poland
autor
  • Department of Quality Control of Medicinal Products and Dietary Supplements, Institute of Natural Fibres and Medicinal Plants, Libelta 27, 61-707 Poznań, Poland
autor
  • Institute of Natural Fibres and Medicinal Plants, Libelta 27, 61-707 Poznań, Poland
  • Department of General Pharmacology and Pharmacoeconomy, Pomeranian Medical University, Żołnierska 48, 70-204 Szczecin, Poland
  • Department of Quality Control of Medicinal Products and Dietary Supplements, Institute of Natural Fibres and Medicinal Plants, Libelta 27, 61-707 Poznań, Poland
  • Laboratory of Experimental Pharmacogenetics, Department of Clinical Pharmacy and Biopharmacy, Poznań University of Medical Sciences, Marii Magdaleny 14, 60-861 Poznań, Poland
  • Department of Pharmacology, Poznań University of Medical Sciences, Rokietnicka 5a, 60-806 Poznań, Poland

Bibliografia

  • Araneda OF, Garcia C, Lagos N, Quiroga G, Cajigal J, Salazar MP, Behn C (2005) Lung oxidative stress as related to exercise and altitude. Lipid peroxidation evidence in exhaled breath condensate: a possible predictor of acute mountain sickness. Eur J Appl Physiol 95: 383-390.
  • Askew EW (2002) Work at high altitude and oxidative stress: antioxidant nutrients. Toxicology 180: 107-119.
  • Behn C, Araneda OF, Llanos AJ, Celedon G, Gonzalez G (2007) Hypoxia-related lipid peroxidation: evidences, implications and approaches. Respir Physiol Neurobiol 158: 143-150.
  • Berg JT (2004) Ginkgo biloba extract prevents high altitude pulmonary edema in rats. High Alt Med Biol 5: 429-434.
  • Borowicz KK, Świąder M, Łuszczki J, Czuczwar SJ (2002) Effect of gabapentin on the anticonvulsant activity of antiepileptic drugs against electroconvulsions in mice: an isobolographic analysis. Epilepsia 43: 956-963.
  • Cantagrel S, Krier C, Ducrocq S, Bodard S, Payen V, Laugier J, Guilloteau D, Chalon S (2003) Hypoxic preconditioning reduces apoptosis in a rat model of immature brain hypoxia-ischaemia. Neurosci Lett 347: 106-110.
  • Chen CP, Yokozawa T, Chung HY (1999) Inhibitory effect of caffeic acid analogues isolated from Salviae Miltiorrhizae Radix against 1, 1-diphenyl-2-picrylhydrazyl radical. Exp Toxicol Pathol 51: 59-63.
  • Chen YC, Lin FC, Shiao GM, Chang SC (2008) Effect of rapid ascent to high altitude on autonomic cardiovascular modulation. Am J Med Sci 336: 248-253.
  • Chen X, Zhou C, Guo J, Sun K, Zhao N, Yang J, Sun Y, Liu X, Hibi T, Liu Z, Han J (2011) Effects of dihydroxylphenyl lactic acid on inflammatory responses in spinal cord injury. Brain Res 1372: 160-168.
  • Colombo G, Agabio R, Lobina C, Reali R, Morazzoni P, Bombardelli E, Gessa GL (1999) Salvia miltiorrhiza extract inhibits alcohol absorption, preference, and discrimination in sP rats. Alcohol 18: 65-70.
  • Coote JH (1995) Medicine and mechanisms in altitude sickness. Recommendations. Sports Med 20: 148-159.
  • Cymerman A, Muza SR, Beidleman BA, Ditzler DT, Fulco CS (2001) Postural instability and acute mountain sickness during exposure to 24 hours of simulated altitude (4300 m). High Alt Med Biol 2: 509-514.
  • Don MJ, Ko HC, Yang CW, Lin YL (2006) Detection of polyphenols and tanshinones in commercial Danshen by liquid chromatography with UV and mass spectrometry. J Food Drug Anal 14: 254-259.
  • Esteva S, Pedret R, Fort N, Torrella JR, Pages T, Viscor G (2010) Oxidative stress status in rats after intermittent exposure to hypobaric hypoxia. Wilderness Environ Med 21: 325-331.
  • European Pharmacopeia (2010) 7th ed., Council of Europe, Strasbourg.
  • Farmakopea Polska (2005) 7th ed., Urząd Rejestracji Produktów Leczniczych, Wyrobów Medycznych i Produktów Biobójczych, Warszawa.
  • Fu J, Huang H, Liu J, Pi R, Chen J, Liu P (2007) Tanshinone II A protects cardiac myocytes against oxidative stress-triggered damage and apoptosis. Eur J Pharmacol 568: 213-221.
  • Gao J, Yang G, Pi R, Li R, Wang P, Zhang H, Le K, Chen S, Liu P (2008) Tanshinone IIA protects neonatal rat cardiomyocytes from adriamycin-induced apoptosis. Transl Res 151: 79-87.
  • Gidday JM, Fitzgibbons JC, Shah AR, Park TS (1994) Neuroprotection from ischemic brain injury by hypoxic preconditioning in the neonatal rat. Neurosci Lett 168: 221-224.
  • Giordano FJ (2005) Oxygen, oxidative stress, hypoxia, and heart failure. J Clin Invest 115: 500-508.
  • Han JY, Fan JY, Horie Y, Miura S, Cui DH, Ishii H, Hibi T, Tsuneki H, Kimura I (2008) Ameliorating effects of compounds derived from Salvia miltiorrhiza root extract on microcirculatory disturbance and target organ injury by ischemia and reperfusion. Pharmacol Ther 117: 280-295.
  • Han B, Zhang X, Zhang Q, Zhao G, Wei J, Ma S, Zhu W, WeiM (2011) Protective effects of salvianolate on microvascular flow in a porcine model of myocardial ischaemia and reperfusion. Arch Cardiovasc Dis 104: 313-324.
  • Henley WN, Bellush LL (1989) Central catecholaminergic responses in hypoxic moderation of spontaneous hypertension. Brain Res Bull 22: 963-968.
  • Henley WN, Bellush LL, Tucker A (1989) Sympathetic and metabolic correlates of hypoxic moderation of spontaneous hypertension in the rat. Proc Soc Exp Biol Med 192: 114-120.
  • Kolář F, Ostadal B (2004) Molecular mechanisms of cardiac protection by adaptation to chronic hypoxia. Physiol Res 53: S3-S13.
  • Kozłowska T, Olejnik A, Chodera A, Sołoducho J, Kuczyński L (1987) Effect of a new derivative of pyrido-(2,3-D)-pyrimidine (LK 42/82) on blood pressure in normo- and hypertensive animals. Acta Pol Pharm 44: 572-576.
  • Krajewska-Patan A, Dreger M, Górska-Paukszta M, Mścisz A, Mielcarek S, Baraniak M, Buchwald W, Marecik R, Grajek W, Mrozikiewicz PM (2007) Salvia milthiorrhiza Bunge in vitro cultivation in callus cultures. Herba Pol 53: 88-96.
  • Li YG, Song L, Liu M, Hu ZB, TaoWang Z (2009) Advancement in analysis of Salviae miltiorrhizae radix et rhizoma (Danshen). J Chromatogr A 1216: 1941-1953.
  • Li YJ, Han D, Xu XS, Liu YY, Sun K, Fan JY, Qian RQ, Han JY (2012) Protective effects of 3,4-dihydroxyphenyl lactic acid on lipopolysaccharide-induced cerebral microcirculatory disturbance in mice. Clin Hemorheol Microcirc 50: 267-278.
  • Magalhaes J, Ascensao A, Viscor G, Soares J, Oliveira J, Marques F, Duarte J (2004) Oxidative stress in humans during and after 4 hours of hypoxia at a simulated altitude of 5500 m. Aviat Space Environ Med 75: 16-22.
  • Matkowski A, Zielińska S, Oszmiański J, Lamer-ZarawskaE (2009) Antioxidant activity of extracts from leaves and roots of Salvia miltiorrhiza Bunge, S. przewalski Maxim. and S. verticillata L. Bioresour Technol 99: 7892-7896.
  • McLennan JG, Ungersma J (1983) Mountaineering accidents in the Sierra Nevada. Am J Sports Med 11: 160-163.
  • Mikołajczak P, Okulicz-Kozaryn I, Kamińska E, Niedopad L, Polańska A, Gębka J (2002) Effects of acamprosate and some polyamine site ligands of NMDA receptor on short-term memory in rats. Eur J Pharmacol 444: 83-96.
  • Mohandas J, Marshall JJ, Duggin GG, Horvath JS, Tiller DJ (1984) Low activities of glutathione-related enzymes as factors in the genesis of urinary bladder cancer. Cancer Res 44: 5086-5091.
  • Row BW, Liu R, Xu W, Kheirandish L, Gozal D (2003) Intermittent hypoxia is associated with oxidative stress and spatial learning deficits in the rat. Am J Respir Crit Care Med 167: 1548-1553.
  • Saltz SB, Beller GA, Giamber SR, Alpert JS (1976) Circulatory response to acute hypobaric hypoxia in conscious dogs. Aviat Space Environ Med 47: 129-132.
  • Schirlo C, Bub A, Reize C, Buhrer A, Kohl J, Koller EA (1997) Volume changes in the forearm and lower limbs during 2 h of acute hypobaric hypoxia in nonacclimatized subjects. Eur J Appl Physiol Occup Physiol 75: 124-131.
  • Sharma NK, Sethy NK, Meena RN, Ilavazhagan G, Das M, Bhargava K (2011) Activity-dependent neuroprotective protein (ADNP)-derived peptide (NAP) ameliorates hypobaric hypoxia induced oxidative stress in rat brain. Peptides 32: 1217-1224.
  • Shukitt-Hale B, Kadar T, Marlowe BE, Stillman MJ, Galli RL, Levy A, Devine JA, Lieberman HR (1996) Morphological alterations in the hippocampus following hypobaric hypoxia. Hum Exp Toxicol 15: 312-319.
  • Shukla D, Saxena S, Jayamurthy P, Sairam M, Singh M, Jain SK, Bansal A, Ilavazaghan G (2009) Hypoxic preconditioning with cobalt attenuates hypobaric hypoxia-induced oxidative damage in rat lungs. High Alt Med Biol 10: 57-69.
  • Sun M, Zigman S (1978) An improved spectrophotometric assay for superoxide dismutase based on epinephrine autoxidation. Anal Biochem 90: 81-89.
  • Tanaka M, Anzai S, Takeno K, Nakagawa M (1994) Antioxidant action of thiopalmitic acid on microsomal lipid peroxidation. Biol Pharm Bull 17: 1151-1154.
  • Wang RG, You ZL, Liu XL (2005) Effect of ingredients of Astragalus-Salvia compound on vascular endothelial cell in placenta and vascular endothelial growth factor mRNA expression in trophocyte in pregnant rats with inhibited nitric oxide synthesis. Zhongguo Zhong Xi Yi Jie He Za Zhi 25: 516-519.
  • Wittner M, Říha P (2005) Transient hypobaric hypoxia improves spatial orientation in young rats. Physiol Res 54: 335-340.
  • Wu L, Qiao H, Li Y, Li L (2007) Protective roles of puerarin and danshensu on acute ischemic myocardial injury in rats. Phytomedicine 14: 652-658.
  • Xu W, Yang J, Wu LM (2009) Cardioprotective effects of tanshinone IIA on myocardial ischemia injury in rats. Pharmazie 64: 332-336.
  • Yang LJ, Jeng CJ, Kung HN, Chang CC, Wang AG, Chau GY, Don MJ, Chau YP (2005) Tanshinone IIA isolated from Salvia miltiorrhiza elicits the cell death of human endothelial cells. J Biomed Sci 12: 347-361.
  • You JS, Pan TL, Lee YS (2007) Protective effects of Danshen (Salvia miltiorrhiza) on adriamycin-induced cardiac and hepatic toxicity in rats. Phytother Res 21: 1146-1152.
  • Zhong JJ, Chen H, Chen F (2001) Production of rosmarinic acid, lithospermic acid B, and tanshinones by suspension cultures of Ti-transformed Salvia miltiorrhiza cells in bioreactors. Journal of Plant Biotechnology 3: 107-112

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