Tian, Xx., Wang, Bl., Cao, Yz. et al. Comparison of protective effects of safflor injection and extract of Ginkgo biloba on lung ischemia/reperfusion injury in rabbits., Chin. J. Integr. Med. 21, 229–233 (2015). https://doi.org/10.1007/s11655-013-1513-8
Xiao-xi Tian, Bo-liang Wang, Yi-zhan Cao, et al. Comparison of protective effects of safflor injection and extract of Ginkgo biloba on lung ischemia/reperfusion injury in rabbits[J]. Chinese Journal of Integrative Medicine, 2015,21(3):229-233.
Tian, Xx., Wang, Bl., Cao, Yz. et al. Comparison of protective effects of safflor injection and extract of Ginkgo biloba on lung ischemia/reperfusion injury in rabbits., Chin. J. Integr. Med. 21, 229–233 (2015). https://doi.org/10.1007/s11655-013-1513-8DOI:
Xiao-xi Tian, Bo-liang Wang, Yi-zhan Cao, et al. Comparison of protective effects of safflor injection and extract of Ginkgo biloba on lung ischemia/reperfusion injury in rabbits[J]. Chinese Journal of Integrative Medicine, 2015,21(3):229-233. DOI: 10.1007/s11655-013-1513-8.
Comparison of protective effects of safflor injection and extract of Ginkgo biloba on lung ischemia/reperfusion injury in rabbits
摘要
To observe the protective effects of safflor Injection (SI) and extract of Ginkgo biloba (EGB) on lung ischemia-reperfusion injury (LIRI) and investigate its mechanism. In vivo rabbit model of LIRI was reconstructed. Forty rabbits were randomly and equally divided into four groups: sham-operation group (sham group)
ischemia-reperfusion group (model group)
ischemia-reperfusion plus SI group (safflor group) and ischemia-reperfusion plus EGB injection group (EGB group). Malondialdehyde (MDA) content
superoxide dismutase (SOD) and xanthine oxidase (XO) activity in serum were measured. The wet/dry weight ratio (W/D) of the lung tissue and activity of myeloperoxidase (MPO) were also tested. Ultrastructure change of the lung tissue was observed by the electron microscope. The expression of intercellular adhesion molecule-1 (ICAM-1) was measured by immunohistochemistry (IHC). In the model group
MDA and XO increased and SOD decreased in serum compared with the sham group (P<0.01). The values of W/D
MPO and ICAM-1 of the model group were higher than those of the sham group (P<0.01)
but those of the safflor group and EGB group were significantly lower than those of the model group (P<0.01). The IHC demonstrated that ICAM-1 expression in lung tissue of the model group was significantly higher than those of the safflor group (P<0.01). Compared with safflor group
in the EGB group MDA
XO
MPO decreased
SOD and ICAM-1 expression increased (P<0.05)
but the change of W/D was not statistically significant (P>0.05). SI and EGB may attenuate LIRI through antioxidation
inhibition of neutrophil aggregation and down-regulation of ICAM-1 expression. But EGB had more effect on the antioxidation
while SI did better on regulating ICAM-1 expression.
Abstract
To observe the protective effects of safflor Injection (SI) and extract of Ginkgo biloba (EGB) on lung ischemia-reperfusion injury (LIRI) and investigate its mechanism. In vivo rabbit model of LIRI was reconstructed. Forty rabbits were randomly and equally divided into four groups: sham-operation group (sham group)
ischemia-reperfusion group (model group)
ischemia-reperfusion plus SI group (safflor group) and ischemia-reperfusion plus EGB injection group (EGB group). Malondialdehyde (MDA) content
superoxide dismutase (SOD) and xanthine oxidase (XO) activity in serum were measured. The wet/dry weight ratio (W/D) of the lung tissue and activity of myeloperoxidase (MPO) were also tested. Ultrastructure change of the lung tissue was observed by the electron microscope. The expression of intercellular adhesion molecule-1 (ICAM-1) was measured by immunohistochemistry (IHC). In the model group
MDA and XO increased and SOD decreased in serum compared with the sham group (P<0.01). The values of W/D
MPO and ICAM-1 of the model group were higher than those of the sham group (P<0.01)
but those of the safflor group and EGB group were significantly lower than those of the model group (P<0.01). The IHC demonstrated that ICAM-1 expression in lung tissue of the model group was significantly higher than those of the safflor group (P<0.01). Compared with safflor group
in the EGB group MDA
XO
MPO decreased
SOD and ICAM-1 expression increased (P<0.05)
but the change of W/D was not statistically significant (P>0.05). SI and EGB may attenuate LIRI through antioxidation
inhibition of neutrophil aggregation and down-regulation of ICAM-1 expression. But EGB had more effect on the antioxidation
while SI did better on regulating ICAM-1 expression.
Piao YZ, Ji M. Progress of studies on myocardial ischemia inhibition effect of Carthamus tinctorius. Chin Tradit Herb Drugs (Chin) 2001;32:473–475.
Jin M, Li JR, Cai YX, Liu J, Qin LP. Antioxidative effect of aqueous components of Flower Carthamus Tinctorius L. J Card Pulmy Dis (Chin) 1998;17:277.
Liu JG, Hui G, Geng Q, Zhang BG, Wu D, Xie YC. Protective effects of Ginkgo leaf extract against extracorporeal lung ischemia-reperfusion injury. Chin J Surg Integr Tradit West Med (Chin) 2006;12:257–259.
Sekido N, Mukaida N, Harada A, Nakanishi I, Watanabe Y, Matsushima K. Prevention of lung reperfusion injury in rabbits by a monoclonal antibody against interleukin-8. Nature 1993;365:654–657.
Mukaida N, Matsumoto T, Yokoi K, Harada A, Matsushima K. Inhibition of neutrophil-mediated acute inflammation injury by an antibody against interleukin-8 (IL-8). Inflamm Res 1998;47Suppl 3:S151–S157.
Han DE, Zhang XC, Tian SL, Ma LY, Yang CE, Liu CZ. Experimental study on the preventive effects of Ginkgo leaf extract agent against warm ischemic liver injury in the hepatic grafts from non heartbeating donors in pigs. Chin J Organ Trans (Chin) 2001;22:482–511.
Haines DD, Bak I, Ferdinandy P, Mahmoud FF, Al-Harbi SA, Blasig IE, et al. Cardioprotective effect of thecalcinurin inhibitor FKS06 and that PAF receptor antagonist and freeradical scavenge, Egb761, in isolate ischemic rat hearts. J Cardiovasc Pharmacol 2000;35:37–44.
Defeudis FV, Drieu K. Ginkgo biloba extract (Egb761) and CNS function: basic studies and clinical applications. Curr Drug Targets 2000;1:25–58.
Chu HY, Wang H, Wang JF, Zhang L, Ji J, Zhu XY, et al. Protective and treatment effects of Ginkgo biloba extract on ethanol-induced injury of skeletal muscles in rat. Prog Anat Sci (Chin) 2010;1:66–70.
He M, Zhang XM, Yuan HQ, Zhong X, Liu W, Hao SY, et al. Clinical study on treatment of pulmonary interstitial fibrosis with Ginkgo extract. Chin J Integ Trad West Med (Chin) 2005;3:222–224
Zhang M, Huang XY. Changes and significance of ICAM-1 and TNF-α in viral myocarditis in mice. J Tongji Univ (Med Sci, Chin) 2006;27:21–23.
Sawaya DE Jr, Zibari GB, Minardi A, Bilton B, Burney D, Granger DN, et al. P-selectin contributes to the initial recruitment of rolling and adherent leukocytes in hepatic venules after ischemia/reperfusion. Shock 1999;12:227–232.
Johns DG, Ao Z, Willette RN, Macphee CH, Douglas SA. Role of p38 MAP kinase in postcapillary venule leukocyte adhesion induced by ischemia/reperfusion injury. Pharmacol Res 2005;51:463–471.
Nakamura H, Yamamura T, Fukuta S, Matsumori A, Matsuzaki M. A pathogenic mechanism of chronic ongoing myocarditis. Jpn Circ J 1996;60:609–617.
Altunkaya A, Oz E, Sivrikoz MC, Halit V, Yener N, Erdogan D, et al. Role of the nitric oxide pathway in ischemiareperfusion injury in isolated perfused guinea pig lungs. Mol Cell Biochem 2006;290:9–16.
Xu HY, Chen SP, Jin T, Wen XH, An XX, Xu M. Protective effects of ginaton against ischemia-reperfusion injury on the autograft after lung autotransplantation: experiment with rabbits. Natl Med J China (Chin) 2006;45:3211–3214.
Steer ML. Relationship between pancreatitis and lung diseases. Respir Physiol 2001;128:13–16.
Kan SH, Huang F, Tang J, Gao Y, Yu CL. Role of intrapulmonary expression of inducible nitric oxide synthase gene and nuclear factor kappaB activation in severe pancreatitis-associated lung injury. Inflammation 2010;33:287–294.
Weinbroum AA. Mannitol prevents acute lung injury after pancreas ischemia-reperfusion: a dose-response, ex vivo study. Lung 2009;187:215–24.
Exploring molecular mechanism underlying Chinese medicine syndrome: A study on correlation between Chinese medicine syndrome and biomarkers for ischemic stroke
Effect of safflor yellow injection on inhibiting lipopolysaccharide-induced pulmonary inflammatory injury in mice
Extract of Paris polyphylla Simth protects cardiomyocytes from anoxia-reoxia injury through inhibition of calcium overload
Effect of Qingre Quyu Granule (清热祛瘀颗粒) on stabilizing plaques in the brachiocephalic artery of apolipoprotein E deficient mice
Effects of Propyl Gallate on adhesion of polymorphonuclear leukocytes to human endothelial cells induced by tumor necrosis factor alpha
相关作者
暂无数据
相关机构
Department of Neurology, Dongzhimen Hospital Affiliated to Beijing University of Chinese Medicine
Department of Pharmacology, Beijing Institute of Heart Lung and Blood Vessel Diseases, Beijing Anzhen Hospital, Capital Medical University
Key Laboratory of Bioactive Substances and Resources Utilization of Chinese Herbal Medicine (Ministry of Education), Institute of Materia Medica, Chinese Academy of Medical Sciences and Peking Union Medical College
The Laboratory Research Center of Xiyuan Hospital, China Academy of Chinese Medical Sciences