» Articles » PMID: 20479865

Chick Embryo Partial Ischemia Model: a New Approach to Study Ischemia Ex Vivo

Overview
Journal PLoS One
Date 2010 May 19
PMID 20479865
Citations 4
Authors
Affiliations
Soon will be listed here.
Abstract

Background: Ischemia is a pathophysiological condition due to blockade in blood supply to a specific tissue thus damaging the physiological activity of the tissue. Different in vivo models are presently available to study ischemia in heart and other tissues. However, no ex vivo ischemia model has been available to date for routine ischemia research and for faster screening of anti-ischemia drugs. In the present study, we took the opportunity to develop an ex vivo model of partial ischemia using the vascular bed of 4(th) day incubated chick embryo.

Methodology/principal Findings: Ischemia was created in chick embryo by ligating the right vitelline artery using sterile surgical suture. Hypoxia inducible factor- 1 alpha (HIF-1alpha), creatine phospho kinase-MB and reactive oxygen species in animal tissues and cells were measured to confirm ischemia in chick embryo. Additionally, ranolazine, N-acetyl cysteine and trimetazidine were administered as an anti-ischemic drug to validate the present model. Results from the present study depicted that blocking blood flow elevates HIF-1alpha, lipid peroxidation, peroxynitrite level in ischemic vessels while ranolazine administration partially attenuates ischemia driven HIF-1alpha expression. Endothelial cell incubated on ischemic blood vessels elucidated a higher level of HIF-1alpha expression with time while ranolazine treatment reduced HIF-1alpha in ischemic cells. Incubation of caprine heart strip on chick embryo ischemia model depicted an elevated creatine phospho kinase-MB activity under ischemic condition while histology of the treated heart sections evoked edema and disruption of myofibril structures.

Conclusions/significance: The present study concluded that chick embryo partial ischemia model can be used as a novel ex vivo model of ischemia. Therefore, the present model can be used parallel with the known in vivo ischemia models in understanding the mechanistic insight of ischemia development and in evaluating the activity of anti-ischemic drug.

Citing Articles

Flavonoids as therapeutics for myocardial ischemia-reperfusion injury: a comprehensive review on preclinical studies.

Verma V, Bhardwaj P, Prajapati V, Bhatia A, Purkait S, Arya D Lab Anim Res. 2024; 40(1):32.

PMID: 39237965 PMC: 11376054. DOI: 10.1186/s42826-024-00218-2.


Assessment of Endothelial Barrier Functions in Extra Embryonic Vasculature of Chick Embryo as an Alternative Model.

Siamwala J, Swaminathan A, Chatterjee S Methods Mol Biol. 2023; 2711:185-197.

PMID: 37776458 DOI: 10.1007/978-1-0716-3429-5_15.


Chick Embryo: A Preclinical Model for Understanding Ischemia-Reperfusion Mechanism.

Fauzia E, Barbhuyan T, Shrivastava A, Kumar M, Garg P, Khan M Front Pharmacol. 2018; 9:1034.

PMID: 30298003 PMC: 6160536. DOI: 10.3389/fphar.2018.01034.


Thalidomide remodels developing heart in chick embryo: discovery of a thalidomide mediated hematoma in heart muscle.

Kumar P, Kumar H, Sundaresan L, Ghosh A, Kathirvel P, Thilak A Naunyn Schmiedebergs Arch Pharmacol. 2018; 391(10):1093-1105.

PMID: 29982937 DOI: 10.1007/s00210-018-1532-2.

References
1.
Markovic J, Borras C, Ortega A, Sastre J, Vina J, Pallardo F . Glutathione is recruited into the nucleus in early phases of cell proliferation. J Biol Chem. 2007; 282(28):20416-24. DOI: 10.1074/jbc.M609582200. View

2.
Miller M . Preconditioning for cardioprotection against ischemia reperfusion injury: the roles of nitric oxide, reactive oxygen species, heat shock proteins, reactive hyperemia and antioxidants--a mini review. Can J Cardiol. 2001; 17(10):1075-82. View

3.
Zhai P, Eurell T, Cotthaus R, Jeffery E, Bahr J, Gross D . Effect of estrogen on global myocardial ischemia-reperfusion injury in female rats. Am J Physiol Heart Circ Physiol. 2000; 279(6):H2766-75. DOI: 10.1152/ajpheart.2000.279.6.H2766. View

4.
Bromont C, Marie C, Bralet J . Increased lipid peroxidation in vulnerable brain regions after transient forebrain ischemia in rats. Stroke. 1989; 20(7):918-24. DOI: 10.1161/01.str.20.7.918. View

5.
Yada T, Shimokawa H, Hiramatsu O, Haruna Y, Morita Y, Kashihara N . Cardioprotective role of endogenous hydrogen peroxide during ischemia-reperfusion injury in canine coronary microcirculation in vivo. Am J Physiol Heart Circ Physiol. 2006; 291(3):H1138-46. DOI: 10.1152/ajpheart.00187.2006. View