1.Effects of high-fat diet on the numerical density and number of neuronal cells and the volume of the mouse hypothalamus: a stereological study.
Mohammad Reza NAMAVAR ; Samira RAMINFARD ; Zahra Vojdani JAHROMI ; Hassan AZARI
Anatomy & Cell Biology 2012;45(3):178-184
It has been demonstrated that the type of diet affects the brain structure and function. Consumption of fat-rich food is one of the most important factors that lead to increase in the prevalence of cardiovascular and neurological diseases. High-fat diet may change the volume and neuronal number or density in the hypothalamus, which is the center of energy control. Therefore, this study was designed to study the effect of high-fat diet on the density and number of neurons, and also the volume of hypothalamus in adult male mice. Forty male mice were divided into the control and experimental groups. The control group were fed with standard and the experimental groups, with high-fat diet for 4 (short-term) or 8 (long-term) weeks. The animals were perfused and brains were immediately removed, post-fixed and cut coronally and serially using cryostat at 30-microm thickness. Every 6th sections were stained by cresyl violet. The numerical density and number of neuron and the volume of hypothalamus were estimated by using unbiased stereological methods. Data analysis showed that both short and long time consumption of high-fat diet decreased the neuronal cell density of the hypothalamus. Interestingly, despite a decrease in the neuronal cell density, long time consumption of high-fat diet could significantly increase the volume of hypothalamus (P<0.05). High fat diet decreased the neuronal cell density and increased the volume of the hypothalamus, but it did not significantly change its total neurons. These changes might be due to an increase in the extracellular space through inflammation or gliosis in the hypothalamus.
Adult
;
Animals
;
Benzoxazines
;
Brain
;
Cell Count
;
Diet
;
Diet, High-Fat
;
Extracellular Space
;
Gliosis
;
Humans
;
Hypothalamus
;
Inflammation
;
Male
;
Mice
;
Neurons
;
Obesity
;
Prevalence
;
Statistics as Topic
;
Viola
2.Effects of Platelet-Rich Plasma on Kidney Regeneration in Gentamicin-Induced Nephrotoxicity.
Abbas MOGHADAM ; Tahereh Talaei KHOZANI ; Afsaneh MAFI ; Mohammad Reza NAMAVAR ; Farzaneh DEHGHANI
Journal of Korean Medical Science 2017;32(1):13-21
Platelet-rich plasma (PRP) as a source of growth factors may induce tissue repairing and improve fibrosis. This study aimed to assess the effects of PRP on kidney regeneration and fibrosis in gentamicin (GM)-induced nephrotoxicity rat model by stereological study. Thirty-two male rats were selected. Nephrotoxicity was induced in animals by administration of GM (80 mg/kg/daily, intraperitoneally [IP], 8 day) and animals were treated by PRP (100 µL, intra-cortical injection using surgical microscopy, single dose). Blood samples were collected for determine blood urea nitrogen (BUN) and creatinine (Cr) before and after PRP therapy. At the end of experiment, right kidneys were sectioned by Isotropic Uniform Random (IUR) method and stained with H & E and Masson's Trichrome. The stereological methods were used for estimating the changes in different structures of kidney. PRP increased the number of epithelial cells in convoluted tubules, and decreased the volume of connective tissue, renal corpuscles and glomeruli in GM-treated animals (P < 0.05). Our findings indicate that PRP had beneficial effects on proliferation of epithelial cells in convoluted tubules and ameliorated GM-induced fibrosis.
Animals
;
Blood Urea Nitrogen
;
Connective Tissue
;
Creatinine
;
Epithelial Cells
;
Fibrosis
;
Gentamicins
;
Humans
;
Intercellular Signaling Peptides and Proteins
;
Kidney*
;
Male
;
Methods
;
Microscopy
;
Models, Animal
;
Platelet-Rich Plasma*
;
Rats
;
Regeneration*