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B Corman

Publications and source records attributed to B Corman.

At least 55 records · Page 3Linked to original sources

Effect of chronic ANG I-converting enzyme inhibition on aging processes. III. Endothelial function of mesenteric arterial bed of rat.

Age-related changes in endothelial (E) function were studied in mesenteric arterial bed (MAB) preparations removed from male, normotensive, WAG/Rij rats. At the age of 6 mo, one-half of the animals was assigned to chronic treatment with a hypotensive dose of an angiotensin I (ANG I)-converting enzyme inhibitor (ACEI; perindopril, 1 mg.kg-1.day-1 po). Animals were killed at 6, 12, 24, or 30 mo of age; the MAB was perfused in vitro, perfusion pressure (PP) being taken as an index of arteriolar tone. Disruption of E function produced a fall in baseline PP in all groups except 30-mo-old rats, suggesting that 1) baseline tone is maintained by the release of E vasoconstrictor factor(s) and 2) this mechanism is impaired in 30-mo-old rats. The muscarinic agonist, carbachol, antagonized vasoconstriction produced by norepinephrine (NE) in the presence of E. This mechanism was impaired in 30-mo-old rats. NE vasoconstriction increased following disruption of E, suggesting that NE release of endothelium-derived relaxing factor attenuates vasoconstriction. This mechanism was impaired in 30-mo-old rats. Chronic ACEI postponed the age-related decrease in E function, possibly due to a direct effect, or an indirect effect via the prolonged hypotensive action of such treatment.

Aging↗

Effect of chronic ANG I-converting enzyme inhibition on aging processes. IV. Cerebral blood flow regulation.

Age-related changes in systemic arterial blood pressure, basal cerebral blood flow (CBF), and CBF regulatory capacity were investigated in awake 6-, 12-, 24-, and 30-mo-old male Wistar (WAG/Rij) rats, one-half of which received the angiotensin I-converting enzyme inhibitor (ACEI) perindopril from 6 mo onward. There was no age-dependent change in mean arterial blood pressure, basal CBF, or cerebrovascular reactivity to hypercapnia, but the lower limit of CBF autoregulation rose from 70 mmHg at 6 and 12 mo to 90 mmHg in 24- and 30-mo-old animals. ACEI lowered mean arterial blood pressure but had no effect on basal CBF or on cerebrovascular reactivity to hypercapnia. ACEI shifted the lower limit of CBF autoregulation to a 20-mmHg-lower level in 12- and 24-mo animals but not in rats treated for 2 yr, i.e., from the ages of 6 to 30 mo. In conclusion, the main age-related change in CBF regulation was an increase in the lower limit of CBF autoregulation to a higher blood pressure level. Treatment with ACEI partially restored the lower limit of CBF autoregulation.

Aging↗

Effect of chronic converting-enzyme inhibition on kidney function of senescent hypertensive rats.

The age-related changes in the structure and the function of the kidney and the effect of chronic inhibition of angiotensin-converting enzyme (ACE) activity on these alterations were assessed in senescent, genetically hypertensive rats. Mean blood pressure was unchanged between 6 and 21 months, being 136 +/- 10 and 135 +/- 21 mm Hg, respectively. Hypertrophy of the glomeruli with a high incidence of glomerulosclerosis was reported in the 21-month-old animals. Renal blood flow, glomerular filtration rate, and filtration fraction were reduced between 6 and 21 months, whereas albuminuria and cGMP excretion were markedly enhanced with aging. Chronic ACE inhibition by administration of 0.3 mg/kg/day trandolapril from 18-21 months increased the life expectancy of the animals without affecting their mean blood pressure. The incidence of glomerular lesions and the excretion of enzymes that reflected the integrity of tubular and glomerular cells were not altered by ACE inhibition. On the other hand, the filtration fraction was restored in the 21-month-old treated animals, and the age-related albuminuria and rise in cGMP excretion were prevented by ACE inhibition. These results indicated that ACE inhibitor administered at the end of the life of senescent hypertensive rats was able to prevent some of the age-related changes in kidney function when glomerulosclerosis was already present.

Aging↗

Age-related changes in endothelial permeability and distribution volume of albumin in rat aorta.

Age-related changes in macromolecular transport across the arterial wall were investigated in 10-, 20-, and 30-mo-old WAG/Rij rats. Animals were injected with 125I- and 131I-labeled albumin, 90 and 5 min before they were killed, respectively. The transmural distribution of relative concentration of tracers in the aortic wall was obtained using en face serial sectioning technique. The apparent endothelial permeability to albumin calculated from the distribution of 5-min 131I-labeled albumin concentrations was significantly enhanced in 20- and 30-mo-old rats compared with 10-mo-old rats. The apparent distribution volume of albumin within the media, estimated as the mean medial 125I-labeled albumin concentration, was not significantly changed in 20-mo-old rats but was significantly decreased in the 30-mo-old animals. These age-related changes in the macromolecular transport suggest that the entry of plasma macromolecules in the aged arterial wall might be enhanced, whereas the efflux through the media may be impeded, possibly contributing to their trapping in the subendothelium.

Aging↗

Renal and systemic adaptation to sodium restriction in aging rats.

The influence of age on the systemic and renal adaptation to dietary sodium restriction was assessed in 10-, 20-, and 30-mo-old female WAG/Rij rats. In control conditions, mean arterial pressure (MAP) was similar in all rats and plasma renin activity (PRA) was lower in 30- than in 10- and 20-mo-old rats (2.5 +/- 0.6, 5.1 +/- 0.4, and 3.9 +/- 1.0 ng ANG I.ml-1.h-1, respectively). Dietary sodium restriction was associated with a reduction in MAP in 30-mo-old rats, whereas no change occurred in 10- and 20-mo-old rats. Impairment in the early (days 1-6) renal adaptation to salt restriction was observed in 30- compared with 10- and 20-mo-old rats (6-day cumulative sodium excretion of 728 +/- 139, 437 +/- 53, and 478 +/- 37 mumol, respectively). During the 7- to 12-day period, MAP stabilized in the oldest rats and cumulative sodium excretion became similar to that of other age groups. The early increase in PRA and urinary aldosterone excretion observed in 10- and 20-mo-old rats was consistently blunted in 30-mo-old rats. These findings suggest that the delayed response of the renin-angiotensin-aldosterone system has a major role in the impaired renal and systemic adaptation to dietary sodium removal in senescent rats.

Aging↗

[Normal and pathological renal aging in animals].

Ageing of the kidneys has long been associated with a fall in the number of functioning nephrons resulting in a reduction of renal blood flow and glomerular filtration. This narrow concept of age-related changes in renal function has been developed chiefly during the last few years by Brenner et al. on the basis of experimental studies conducted on rodents. According to these authors, the size and frequency of segmental and focal lesions of glomerulosclerosis increase regularly with age, and in its final phase this pathology results in occlusion of glomerular capillaries. Renal ageing, therefore, can be assimilated to the nephron reduction models obtained by surgical ablation. The hypothesis that hypofiltration in certain nephrons is compensated by hyperfiltration in healthy glomerulis, leading to a vicious circle of self-destruction, was then applied to both ageing and experimental renal impairment: the smaller the number of nephrons, the greater the filtration achieved by the remaining nephrons, a process that accelerates the probability of their destruction. Conversely, any attempt to reduce intracapillary pressure or glomerular filtration slows down the progression of renal failure. This hypothesis is supported by experiments showing that reduction of protein intake or chronic inhibition of angiotensin I-converting enzyme activity are truly capable of limiting the progression of glomerulosclerosis induced in rats by partial renal mass ablation. Similarly, prolonged food restriction increases the life expectancy of rodents and almost totally prevents the occurrence of glomerulosclerosis. The experimental finding that degenerative renal lesions do not necessarily develop with age raises the problem of normal and pathological ageing. With an adequate choice of rats' food, strain and sanitary surroundings it is possible to obtain very old animals devoid of occluded glomerular capillaries and loss of nephron. What about the functional and structural changes due to ageing and not to pathology? This question has given rise to numerous studies which concluded, on the whole, that there exists a normal ageing of the kidneys without loss of nephron and that ageing is expressed by the fact that the kidneys have difficulties in adjusting themselves to disturbances in the inner environment. As regards renal functional reserve, response to the antidiuretic hormone in case of water restriction, or stimulation of the renin-angiotensin system in response to decrease of sodium intake, it is clear that the renal cells responsible for glomerular filtration, tubular transport or synthesis and release of peptidic hormones exhibit functional alterations that are age-related. The cellular and molecular mechanisms underlying these physiological changes are little known.(ABSTRACT TRUNCATED AT 400 WORDS)

Aging↗

Effect of atrial natriuretic factor on the water permeability of endothelial cells.

Atrial natriuretic factor increases the water permeability of the whole endothelium. This study investigates how it would affect the transcellular osmotic water permeability of bovine artery endothelial cells. The cyclic-GMP production by the isolated cells was maximal for 10(-6)M atrial natriuretic factor within 30 minutes at 37 degrees C. The cyclic-GMP protein kinase cell concentration was 1.87 +/- 0.15 ng/mg protein. The control apparent water permeability of the cells measured by light scattering was 195 +/- 11 microns/sec (n = 5). Membrane folding revealed by light and scanning electron microscopy indicated that their true water permeability values would be close to 20-40 microns/sec, similar to the values for lipid membranes. The energy activation calculated from the temperature dependence of water permeability between 15 degrees C and 37 degrees C was 9.3 kcal/mol. This value suggests water movement through the lipid bilayer and not through water channels. Atrial natriuretic factor 10(-6)M did not significantly increase the water permeability of the cells. Hence, atrial natriuretic factor-stimulated increase in water permeability of the endothelium is more related to changes in paracellular water pathways than in transcellular water flux.

Animals↗

Effects of blood sampling, anesthesia and surgery on plasma vasopressin concentration in rats.

The influence of blood sampling, anesthesia and surgery on plasma vasopressin concentration was assessed in rats. Mean plasma concentration in conscious, chronically catheterized rats was 1.4 +/- 0.1 pg/ml (n = 6). This value remained constant over repeated plasma samplings in the same animals. On the other hand, decapitation increased the plasma vasopressin concentration to 6.0 +/- 2.4 (in pg/ml) (n = 6), inactin anesthesia to 2.9 +/- 0.6 (n = 6), anesthesia and femoral cannulation to 13.3 +/- 5.8 (n = 6) and surgery for renal micropuncture to 81.3 +/- 35.0 (n = 6). It is concluded that the level of circulating plasma vasopressin is highly dependent on the sampling technique and is closely related to the extent of surgery.

Anesthesia↗

Plasma vasopressin and cortical nephron function in aging rats.

The role of vasopressin and Henle's loop transport in age-related polyuria and decrease in urine osmolality was investigated in female WAG/Rij rats free of kidney disease. In these animals, urine osmolality dropped from 2000 mosmol/kg H2O to 1000-1200 mosmol/kg H2O between 10 and 30 months, and urinary volume increased in proportion. Vasopressin concentration measured in plasma withdrawn from conscious, unrestrained, chronically catheterized rats was not significantly different in 10, 20 and 30-month-old animals (mean values 2.5 +/- 0.7, 2.2 +/- 0.2 and 2.0 +/- 0.3 pg/ml (n = 8), respectively). This suggests an impaired responsiveness of old kidney to antidiuretic hormone. The possible involvement of Henle's loop in this defect was studied by micropuncture. Paired collections of tubular fluid were done in the early distal and late proximal convolutions of the same cortical nephrons. Single nephron filtration rates did not significantly differ with age. Tubular fluid osmolalities in the early distal convolution were 165 +/- 13, 178 +/- 9 and 160 +/- 11 (n = 14) mosmol/kg H2O in 10-, 20- and 30-month-old rats, indicating similar diluting capacity of the cortical thick ascending limb. The amount of sodium transported from lumen to peritubular space by Henle's loop was also unchanged with age as were water, calcium, magnesium and potassium reabsorptions. These data indicate that the age-related decrease in urine osmolality is not related to either a significant reduced vasopressin plasma concentration or an increased single glomerular filtration rate or a reduced transport capacity of Henle's loop of the cortical nephron. Rather they suggest an impaired response to vasopressin of other segments of the nephron that is, the medullary thick ascending limb of Henle's loop and/or the collecting duct.

Aging↗

Relationship between vasopressin and renal concentrating ability in aging rats.

The relationship between arginine vasopressin (AVP) secretion and the age-related change in renal concentrating ability was studied in 10-, 20-, and 30-mo-old conscious rats. In control condition, urine osmolality (Uosmol) was 2,358 +/- 99, 1,919 +/- 87, and 1,135 +/- 173 mosmol/kgH2O (mean +/- SE) and the corresponding plasma AVP concentration 3.1 +/- 1.2, 2.8 +/- 0.7, and 3.3 +/- 0.7 pg/ml at 10, 20, and 30 mo. Urinary AVP excretion and AVP content in the hypothalamus were comparable in the 3 age groups, while the basal AVP pituitary content was significantly higher at 10 than at 20 or 30 mo. Three days of dehydration induced 1) a similar increase in plasma concentration and urinary excretion of AVP in the 3 groups, even though the maximal Uosmol reached by the oldest animals was significantly reduced (3,988 +/- 218, 3,652 +/- 273, and 2,826 +/- 197 mosmol/kgH2O at 10, 20, and 30 mo, respectively) and 2) a similar AVP depletion of the pituitary at 10, 20, and 30 mo and an increase of the AVP content in the hypothalamus at 10 mo but not at 20 and 30 mo. These results suggest that the decrease in renal concentrating ability reported in aging rats is not due to an inappropriate secretion of AVP along the hypothalamo-neurohypophysial axis but is rather related to an impaired responsiveness of the kidney to the antidiuretic hormone.

Aging↗

Spontaneous mineralization of the sciatic nerve of senescent rats.

A spontaneous mineralization of the sciatic nerve of senescent specific pathogen-free-bred rats (aged 42 months) is reported. Deposits were found in the endoneurium of different branches of the nerve at mid-thigh level. They appeared as small discrete deposits or as large tubular-shaped concretions, probably formed by the growth and merger of the smaller deposits. Some of the concretions were found in close proximity to blood vessels. Deposits consisted of dense aggregations of randomly entangled spicules spreading within bundles of collagen fibrils. Calcium was detected by histochemistry and X-ray dispersion microanalysis. Phosphorus was also found, possibly associated with calcium to form hydroxyapatite.

Animals↗

Vasopressin stimulation of NaCl transport in the medullary thick ascending limb of Henle's loop is decreased in aging mice.

The maximal urinary osmolality that can be reached by the kidney is reduced with age. This may be due to impaired NaCl transport by the medullary thick ascending limb of Henle's loop, which is part of the renal concentrating mechanism and is modulated by antidiuretic hormone (ADH). We therefore tested in vitro a possible age-related change in the transport capacity and in the response of this nephron segment to ADH in young (1-2 months) and old (20-24 months) mice. The transepithelial potential difference (Vte) was significantly higher in young mice (+8.5 +/- 0.4 mV, n = 13) than in old ones (+6.6 +/- 0.5 mV, n = 17). Addition of 0.1 nmol.1-1 ADH to the bath solution significantly increased Vte by 5.2 +/- 0.5 mV in the young and by 3.1 +/- 0.6 mV in the old animals. Application of dibutyryl-cAMP (0.1 mmol.1-1) did not further increase the hormonal response in both groups. The ADH-mediated increase in the corresponding equivalent short-circuit current (ISC = Vte/Rte) was twice as great in young mice as in old, indicating that the stimulation of NaCl transport by ADH across the medullary thick ascending limb is significantly reduced with age. These results suggest that the previously reported age-related defect in the urinary concentrating ability of the kidney is partly due to a decreased response of the medullary thick ascending limb to ADH.

Aging↗

Evidence for permanent water channels in the basolateral membrane of an ADH-sensitive epithelium.

The transepithelial water permeability in frog urinary bladder is believed to be essentially dependent on the ADH-regulated apical water permeability. To get a better understanding of the transmural water movement, the diffusional water permeability (Pd) of the basolateral membrane of urinary bladder was studied. Access to this post-luminal barrier was made possible by "perforating" the apical membrane with amphotericin B. The addition of this antibiotic increased Pd from 1.12 +/- 0.10 x 10(-4) cm/sec (n = 7) to 4.08 +/- 0.33 x 10(-4) cm/sec (n = 7). The effect of mercuric sulfhydryl reagents, which are commonly used to characterize water channels, was tested on amphotericin B-treated bladders. HgCl2 (10(-3) M) decreased Pd by 52% and parachloromercuribenzoic acid (pCMB) (1.4 x 10(-4) M) by 34%. The activation energy for the diffusional water transport was found to increase from 4.52 +/- 0.23 kcal/mol (n = 3), in the control situation, to 9.99 +/- 0.91 kcal/mol (n = 4) in the presence of 1.4 x 10(-4) M pCMB. Our second approach was to measure the kinetics of water efflux, by stop-flow light scattering, on isolated epithelial cells from urinary bladders. pCMB (0.5 or 1.4 x 10(-4) M) was found to inhibit water exit by 91 +/- 2%. These data strongly support the existence of proteins responsible for water transport across the basolateral membrane, which are permanently present.

Amphotericin B↗

Converting enzyme inhibition prevents postprandial hyperfiltration in rats with renal mass ablation.

Food restriction or chronic converting enzyme inhibition (CEI) both limit age-related glomerulosclerosis and the associated proteinuria which occurs spontaneously in rats with renal mass ablation. Since hyperfiltration consecutive to the decreased number of nephrons may be damaging to the kidney, we investigated how fasting and CEI compare in lowering glomerular filtration rate in partially nephrectomized rats. Male Wistar rats were subjected to 3/4 nephrectomy and chronically catheterized. A week after surgery, the animals were separated into two groups, one control and one treated with the converting enzyme inhibitor perindopril (1 mg/kg/24 h) for ten days. In the control untreated 3/4 nephrectomized rats, successive measurements of kidney function in the same animal showed that renal blood flow and glomerular filtration were 30 to 50% higher in fed than in fasted animals. In the group treated with perindopril, there was no longer any such difference in the renal blood flow and filtration rate. These results indicate that, by blunting postprandial hyperfiltration, chronic converting enzyme inhibition is as effective as food restriction in reducing the load delivered to the kidney.

Angiotensin-Converting Enzyme Inhibitors↗

Axial heterogeneity of apical water permeability along rabbit kidney proximal tubule.

In the rabbit nephron, the luminal membrane surface area of the proximal convoluted tubule (PCT) is more than twice that of the proximal straight tubule (PST). What seemed to be an increase in histological specialization in solute and water transport is curiously reflected by a lower transepithelial water permeability per unit of apical membrane area in PCT than in PST. To evaluate what change in luminal membrane water permeability corresponds to this morphological difference, the osmotic permeabilities (Pf) of brush-border membrane vesicles isolated from PCT and PST of rabbit kidney were compared. D-Glucose uptake rates indicated proper separation of two populations of vesicles. Vesicle size measured by quasi-elastic light scattering was 123 +/- 7 nm and 125 +/- 6 nm for vesicles isolated from PCT and PST, respectively. Pf obtained by stop-flow light scattering techniques was of 106 +/- 6 microns/s in PCT vesicles and 191 +/- 7 microns/s in PST vesicles (T = 26 degrees C). In the presence of the sulfhydryl reagent HgCl2, the water permeabilities of both types of membrane dropped to comparable values. These data, which show an 80% increase in apical water permeability along the length of the proximal tubule, suggest that the number of proteic water channels per unit of membrane area is greater in PST than in PCT.

Animals↗

Single-nephron filtration rate and proximal reabsorption in aging rats.

Age-related changes in the function of individual nephrons were investigated by micropuncture experiments measuring single-nephron filtration rates (SNGFR) and proximal reabsorptions in 10-, 20-, and 30-mo-old rats. The animals were female WAG/Rij rats with low incidence of chronic progressive nephropathy, no loss of nephrons, and renal hypertrophy of both kidneys in the oldest animals. Mean SNGFR values per gram kidney weight were 41.4 +/- 1.1, 37.1 +/- 1.5, and 32.2 +/- 1.1 nl.min-1.g kidney wt-1 (n = 41) in the 10-, 20-, and 30-mo-old animals, respectively. This age-related decrease in filtration was no longer apparent when SNGFR values were expressed per nephron (means 24.3 +/- 0.7, 23.7 +/- 0.9, and 24.4 +/- 0.9 nl/min. Individual filtered loads of sodium, potassium, calcium, and magnesium and their absolute reabsorption by the proximal tubule were not different in the three age groups; however, absolute and fractional reabsorptions of phosphate decreased significantly in the 30-mo-old rats. These results indicate that, with the exception of phosphate, individual filtrations and proximal reabsorptions are well maintained in aging rats free of disease. This may be related to the observed renal hypertrophy.

Absorption↗

[Role of vasopressin in the modifications of renal function during aging].

In the course of aging, the renal concentrating ability is markedly reduced. This defect may result from an inappropriate synthesis of antidiuretic hormone in the central nervous system or may be due to an impaired renal response to vasopressin. The two hypotheses have been studied in vivo in rats and in vitro in mice. The results of these studies indicated that: 1) dehydration induces a comparable release of vasopressin along the hypothalamo-hypophysial axis in 10, 20 and 30 month-old rats; 2) there is no change with age of the number of nephrons, single nephron filtration rate or transport capacity of Henle's loop of cortical nephrons which could account for an impaired renal response to vasopressin; 3) the reduced concentrating ability of the kidney appears to be linked to a decreased response of the medullary thick ascending limb of Henle's loop which in part is responsible for the cortico-papillary gradient of solutes within the kidney.

Age Factors↗

Longitudinal study of solute excretion and glomerular ultrastructure in an experimental model of aging rats free of kidney disease.

Because experimental studies of kidney aging are frequently complicated by the presence of renal disease, we set out to define a model minimizing renal pathology and thus revealing basic aging phenomena. Male and female Wistar/Lou rats were conceived, born, and bred to 42 months in a specific pathogen-free husbandry. They had free access to water and to a protein diet containing 2% fish and 15% vegetable proteins. The mean survival ages of this colony were 39 months for females and 35 months for males. Body weight, 24-hour food and water intake, urinary volume, and solute excretion were measured every 6 months in a group of 12 males and 12 females. Throughout the study, the mean body weight remained close to 180 gm in females and 320 gm in males. Despite this size difference, absolute daily food intake was similar in the two sexes and almost constant over the studied period. Age-related changes in proteinuria and phosphate excretion were greater in males than in females. Decreased urine osmolality and increased urinary volume, on the other hand, were more pronounced in old females than in males. Renal loss of calcium was noticed in both sexes and glucosuria remained discrete. Kidneys examined at 12, 24, and 36 months in both sexes and also at 42 months in females were free of major pathology such as pronounced glomerulosclerosis, tubular nephrosis, tubular cast, or hydronephrosis. In the oldest animals a few foci of interstitial inflammation occasionally were seen. The sole significant morphologic change was a regular but moderate thickening of the glomerular basement membrane, which roughly doubled its size from 12 to 36 months. Morphometric studies failed to demonstrate an increase in mesangial matrix or mesangial cellularity. No changes in foot processes, slit diaphragms, or endothelial fenestrae were seen with increasing age. These observations indicate that basic age-related changes in kidney structure and function of rats fed ad libitum can be reduced to a few parameters provided that adequate strains, diet, and husbandry conditions are selected for experimentation.

Aging↗