The Effect of Iron Oxide Nanoparticles and Magnetic Field on Angiogenesis and Deregulation of Vegfa Gene After Ischemia Reperfusion in Rat
Prolonged ischemia in organs with high metabolic rates such as brain and heart is associated with deleterious effects. Therefore, nutritive distribution through angiogenesis after ischemia is necessary for repairing damaged region of tissue. In this study, the effects of iron oxide nanoparticles and magnetic field on angiogenesis after ischemia reperfusion (IR) in rat model have been investigated.
In this experimental study, fifty male rats aged between 6 -7 weeks at the 220-250gr weight were purchased from Tehran University. Animals were categorized in 5 groups including sham (ischemia reperfusion model), control, iron oxide nanoparticles-treated, magnetic field-exposed, and combination therapy with iron oxide nanoparticles and magnetic field-exposed groups. Angiogenesis was evaluated in hippocampus of 5 groups after 4 days by H&E staining method. The expression of Vegfa gene was studied in 5 groups by Q-RT- PCR.
Findings: Iron oxide nanoparticles as well as the magnetic field induced angiogenesis during 4 days in animals after IR (p
It seems that iron oxide nanoparticles and magnetic field can separately be two effective methods for angiogenesis after ischemia reperfusion (IR).
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First Report of Variable Number of Tandem Repeat Alleles in Phenylalanine Hydroxylase Gene in Patients With Phenylketonuria From Guilan Province, Iran
Maryam Vakilpour, Zeinab Khazaei-Koohpar*
Internal Medicine Today, -
Detection of IVS4+1G>A mutation in phenylalanine hydroxylase gene in North of Iran using PCR-sequencing
Maryam Amini Chelak, *
Journal of Shahrekord University of Medical Sciences, Spring 2023