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Vascular microdissection, perfusion, and excision of the murine arterial tree for use in atherogenic disease investigations.

Historically, studies of atherosclerosis and vascular disease have been performed in larger animal species, other than small rodents. Published information on vascular dissection in mice, because of the technical challenges it presents, has been limited. However, with the advent of transgenic technology, such procedures are becoming more commonplace. In particular, mice in which genes such as LDL or apolipoprotein E have been 'knocked-out' have recently provided powerful small animal models for such work. The methodology presented provides a clear, accurate, and detailed description for removing the entire mouse aorta for further analysis in atherogenic investigations. Thus, our article likely will provide a useful guide to those new to this technique, and for researchers undertaking similar studies, and the technique could be adapted to other species easily.

Animals↗

Inhibitory effect of human atrial natriuretic peptide on cyclic AMP levels in microdissected human glomeruli.

We studied whether alpha-human atrial natriuretic peptide (alpha-hANP) had the capacity to regulate cyclic AMP (cAMP) levels in human glomeruli, since decreased cAMP in the glomerulus may increase the glomerular filtration rate (GFR) through increasing kf (glomerular capillary ultrafiltration coefficient). Human kidneys were obtained at surgery for carcinoma. Normal cortical tissues from these kidneys were used for the study. After incubating the renal cortical slices with 0.1% collagenase, glomeruli were dissected manually under the stereomicroscope. Two glomeruli were incubated (37 degrees C, 2 min) with parathyroid hormone (PTH) and/or alpha-hANP. cAMP was determined by radioimmunoassay. alpha-hANP at a concentration of 5 x 10(-6) M had no effect on glomerular cAMP accumulation in the basal condition. PTH stimulated cAMP formation in a dose-dependent manner. alpha-hANP inhibited significantly the increase in cAMP formation induced by PTH (p less than 0.01). This action of alpha-hANP was dose-dependent, with a maximum of 50% inhibition. PTH is one of the endogenous substances that are known to increase cAMP formation and decrease kf. Thus, it seems likely that alpha-hANP increased GFR through modulating the production of cAMP in human kidney.

Atrial Natriuretic Factor↗

Adenylate cyclase-cyclic AMP-phosphodiesterase system in microdissected brain areas of normotensive and spontaneously hypertensive rats.

The topographical distribution of the adenylate-cyclase-cyclic adenosine monophosphate-phosphodiesterase system was investigated in specific brain areas of rats, and compared with spontaneously hypertensive rats. In normotensive animals, brain cyclic adenosine monophosphate levels were quite uniform (between 7.14 and 13.04 pmol/mg protein) with highest concentrations in catecholamine-containing cell groups. In contrast, the distribution of basal adenylate cyclase and phosphodiesterase activity is not uniform. The unstimulated adenylate cyclase activity was very low in the striatum and catecholamine-containing cell groups in the medulla oblongata (A1C1-cell groups) and very high in the central gray matter and the cerebellum, where the lowest phosphodiesterase activities were measured. In spontaneously hypertensive rats, altered cyclic adenosine monophosphate levels were found in 17 of 36 brain areas investigated in comparison to those of normotensive rats. Increased concentrations were found in regions which are known to participate in the central regulation of blood pressure (nucleus of the solitary tract, A1C1 catecholaminergic cell groups in the ventrolateral medulla oblongata, locus coeruleus) and in the periaqueductal central gray matter, the hippocampus and the cingulate cortex. Lower levels were measured only in hypothalamic nuclei, especially in the paraventricular and dorsomedial nucleus. No significant differences in basal adenylate cyclase activity were found in spontaneously hypertensive rats compared with Wistar-Kyoto control rats, while phosphodiesterase activity was generally higher in spontaneously hypertensive rats, most significantly in the medulla oblongata. Present data show that characterization of the adenylate cyclase-cyclic adenosine monophosphate-phosphodiesterase system helps to localize structural and/or functional differences between the spontaneously hypertensive rat and its normotensive control rat and indicate that more than one functional system is affected in spontaneous hypertension.

3',5'-Cyclic-AMP Phosphodiesterases↗