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Biomedical subjects

M Chavez

Publications and source records attributed to M Chavez.

At least 37 records · Page 2Linked to original sources

Chromosomal sublocalization of the transcribed human telomere repeat binding factor 2 gene and comparative mapping in the mouse.

Telomere repeat binding factor 2 (TERF2) is one of two recently cloned mammalian telomere binding protein genes. TERF2 binds as a dimer with high affinity to the double-stranded TTAGGG telomeric repeat through an evolutionarily conserved myb-type DNA binding domain. TERF2 prevents telomere end-to-end fusion and may be important in maintaining genomic stability. We localized the transcribed TERF2 gene to human chromosome 16q22.1, tightly linked to the EST HUM000S343. The mouse Terf2 gene is situated by itself in a newly defined "bin" on chromosome 8 one crossover distal to Psm10 and Sntb2. Human TERF2 and mouse Terf2 are therefore part of a large evolutionarily conserved linkage group comprised of at least 25 known paralogous genes between human chromosome 16q and mouse chromosome 8.

Animals↗

Insulin in the arcuate nucleus of the hypothalamus reduces fat consumption in rats.

Data are accumulating that insulin acting in the central nervous system is a physiological regulator of food intake and body weight, presumably via its effect in the hypothalamus. The present study investigated whether infusion of a small dose of insulin into two major hypothalamic insulin-binding areas also has an effect on diet selection and behavior. At the beginning of the dark period, rats received local bilateral infusions of 4 microU of insulin or vehicle during 34 min into the arcuate (ARC) or paraventricular (PVN) nucleus of the hypothalamus. Consumption of carbohydrate (C)-, protein (P)-, and fat (F)-enriched food and time spent on certain behaviors (drinking, resting, grooming, rearing, exploring/sniffing) were assessed during the first nocturnal hour. In addition, 21-h diet selection was assessed. The percentage contribution of macronutrients (C/P/F) to total energy content of the C-, P-, and F-enriched diets was 71.9/17.2/10.9, 45.8/43.4/10.8, and 47.1/17.5/35.4, respectively. During the first hour, infusion of insulin into the PVN increased grooming behavior compared to infusion of the vehicle. Although infusion of insulin had no effect on diet selection during the first hour, insulin infused in the ARC caused a reduction in F-enriched food consumption and total intake of F (as a macronutrient) over the 21-h period without altering total food intake. Infusion of a higher dose of insulin (10 microU) into the third ventricle had no effect on any of the assessed parameters. The data are explained to indicate that insulin (being an indicator of a positive energy balance) adjusts body weight homeostasis by modulating the preference for fat, at least at the level of the ARC, but not at the PVN.

Animals↗

Organization and expression of human telomere repeat binding factor genes.

The ends of mammalian chromosomes terminate in structures called telomeres. Recently a human telomere repeat binding factor (TRF1) that binds the vertebrate TTAGGG telomeric repeat in situ was isolated by Chong et al. (1). TRF1 regulates telomere length (2), which is often altered in cancer cells. To understand their genetic organization, TRF1 genes were localized to human chromosomes 13cen, 21cen, and Xq13 by analysis of human monochromosomal hybrids, and by fluorescent in situ hybridization. We also confirmed the recent localization of a human TRF1 gene to chromosome 8, and provide evidence that this locus is alternatively spliced. In contrast to the TRF1 genes on chromosomes 8 and X, the chromosomes 13 and 21 TRF1 genes contained a 60 bp deletion in the coding region. The results suggest that two distinct forms of TRF1 are expressed and that the TRF1 gene family includes at least three pseudogenes whose dispersal in the human genome may have occurred via cDNA intermediates.

Alternative Splicing↗

Adrenalectomy increases sensitivity to central insulin.

When infused into the third ventricle of rats, insulin dose-dependently reduces food intake and body weight, with doses of 1 mU/day and lower being ineffective. Because corticosterone functionally antagonizes many of insulin's peripheral actions, and because corticosterone acts in the brain to enable hyperphagia under some conditions, a subthreshold dose of insulin (1 mU/day), or its saline vehicle, was infused into the third ventricle of adrenalectomized (ADX) and sham-ADX male Long-Evans rats. Sham-ADX rats that received insulin or saline had no significant change of food intake or body weight over a 2-week interval. Likewise, saline-infused ADX were unaffected. In contrast, ADX rats receiving insulin had a significant reduction of food intake and body weight. These results suggest that the absence of circulating glucocorticoids increases the brain's sensitivity to insulin, and that insulin in the brain acts to lower food intake and body weight via a glucocorticoid-sensitive mechanism.

Adrenalectomy↗

Electrical remodeling of the human atrium: similar effects in patients with chronic atrial fibrillation and atrial flutter.

OBJECTIVES: This study sought to determine whether chronic atrial fibrillation (AF) and atrial flutter in patients lead to electrical remodeling of the human atrial myocardium, manifested by an abnormal relation between atrial cycle length and action potential duration (APD). BACKGROUND: Experimental studies in goats and isolated human atrial tissue have shown that prolonged AF leads to persistent shortening of atrial refractoriness, a phenomenon referred to as electrical remodeling and which helps to explain why AF begets AF. Direct data on human in situ myocardium are still lacking. METHODS: Using monophasic action potential recordings at two right atrial sites simultaneously, we determined in 7 patients with chronic AF and 13 with chronic atrial flutter (3 weeks to 3 years in duration) the relation between paced cycle length and APD at 90% repolarization (APD90) 15 to 30 min after conversion to sinus rhythm. APD90 was measured during regularly paced cycle lengths (250 to 800 ms) to determine the steady state cycle length relation and during extrastimulus intervals (from 800 ms to refractoriness) at a basic cycle length of 600 ms to determine electrical restitution curves. The same pacing protocols and measurements were performed in nine control patients with sinus rhythm and no overt atrial disease. RESULTS: In control patients, steady state APD90 increased steadily with increases in cycle length from 250 to 800 ms, reaching a maximal value of 325 +/- 41 ms (mean +/- SD) at a cycle length of 800 ms. In patients with cardioversion from atrial flutter or AF, the steady state cycle length-APD90 relation was shifted downward and flattened at cycle lengths >400 ms, reaching only 219 +/- 44 and 245 +/- 39 ms, respectively, at the 800-ms cycle length (p < 0.005 vs. control). The early time course of electrical restitution (200- to 300-ms extrastimulus intervals) was similar between all three groups, but at extrastimulus intervals >350 ms, APD90 was shorter in both the AF and atrial flutter groups than in the control group (p < 0.05). There were no significant differences between patients with cardioversion from atrial flutter and those with cardioversion from AF. APD90 at a steady state cycle length of 600 ms showed no significant correlation with the duration of previous AF or atrial flutter. CONCLUSIONS: AF and atrial flutter lead to marked, quantitatively similar decreases in the right atrial APD during steady state pacing and extrastimulation a considerable time after cardioversion. These data confirm that both AF and atrial flutter lead to electrical remodeling in the human atrium, with a preponderance at longer cycle lengths. It may be prudent to abort both types of arrhythmias early to prevent electrical remodeling.

Action Potentials↗

Chemical lesion of visceral afferents causes transient overconsumption of unfamiliar high-fat diets in rats.

Because it is commonly assumed that the major role of visceral afferents in food intake control is to terminate meals by carrying negative-feedback signals to the brain, we hypothesized that overconsumption should occur in rats with chemically lesioned visceral afferents if they were presented with an unfamiliar diet. Adult male Sprague-Dawley (SD) rats were treated with multiple doses of capsaicin or vehicle as a control. Five weeks later, a series of 3-h feeding tests after 24-h deprivation was carried out, first with chow and then with either a solid (vegetable shortening) or liquid (Ensure) unfamiliar high-fat diet. Both groups consumed similar amounts of their powdered chow maintenance diet, but capsaicin-treated rats consumed at least 50% more of either high-fat diet than vehicle controls (P < 0.01) at the beginning of the first trial. During second and third trials with the now-familiar high-fat diet, intake was no longer significantly different between the two groups, suggesting rapid engagement of redundant control mechanisms. These results support a role of capsaicin-sensitive visceral afferents in providing negative feedback for early meal termination during the ingestion of unfamiliar diets.

Afferent Pathways↗

Liposome encapsulation attenuates hemoglobin-induced vasoconstriction in rabbit arterial segments.

Free hemoglobin (Hb) induces a potent vasoconstrictor response that may limit its therapeutic application as a red blood cell replacement. We have investigated whether encapsulation of stroma-free Hb (SFHb) or cross-linked Hb (alpha alpha-Hb) in liposomes modulates Hb vasoactivity in isolated blood vessels. Relaxation of rabbit thoracic vessels was measured before and after exposure to acellular SFHb, alpha alpha-Hb, and liposome-encapsulated SFHb or alpha alpha-Hb. SFHb and alpha alpha-Hb caused significant inhibition of carbachol-induced relaxation at 0.5 mg/dl, whereas encapsulation inhibited vessel relaxation at 30- to 60-fold higher Hb concentrations. The contractile response of rabbit ear arterial segments to electrical stimulation in the presence of acellular alpha alpha-Hb resulted in a 150% increase (EC150) in contractile amplitude at 0.23 mg/dl, whereas the EC150 for encapsulated alpha alpha-Hb was 13.7 mg/dl. Mechanistic studies of the vasoconstrictor activity of Hb demonstrated that acellular alpha alpha-Hb had no effect on norepinephrine release in the rabbit ear artery. In addition, neither acellular nor encapsulated alpha alpha-Hb preparations inhibited endothelial nitric oxide (NO) synthase activity isolated from bovine pulmonary artery. However, inhibition of vessel relaxation by acellular or encapsulated alpha alpha-Hb was reversed by the NO donor S-nitrosylpenacillamine, implicating Hb-NO binding as a possible mechanism for the vasoconstrictor response. In vitro stopped-flow kinetic studies of Hb-NO binding showed similar rates of reaction for conversion of oxyhemoglobin to methemoglobin (metHb; < 2 ms), followed by rapid conversion of metHb to NO-Hb (300 ms) for both acellular and encapsulated alpha alpha-Hb, demonstrating that liposome encapsulation does not retard NO-Hb binding. The attenuated vasoactivity of encapsulated Hb may, therefore, result from the limited access of encapsulated Hb to NO imposed by the physical size of the liposome and reduced penetration of Hb across the vascular endothelium.

Animals↗

Comparisons of noninvasive bone mineral measurements in assessing age-related loss, fracture discrimination, and diagnostic classification.

The purpose of this study was to examine the commonly available methods of noninvasively assessing bone mineral status across three defined female populations to examine their interrelationships, compare their respective abilities to reflect age- and menopause-related bone loss, discriminate osteoporotic fractures, and classify patients diagnostically. A total of 47 healthy premenopausal (age 33 +/- 7 years), 41 healthy postmenopausal (age 64 +/- 9 years), and 36 osteoporotic postmenopausal (age 70 +/- 6 years) women were examined with the following techniques: (1) quantitative computed tomography of the L1-L4 lumbar spine for trabecular (QCT TRAB BMD) and integral (QCT INTG BMD) bone mineral density (BMD); (2) dual X-ray absorptiometry of the L1-L4 posterior-anterior (DXA PA BMD) and L2-L4 lateral (DXA LAT BMD) lumbar spine, of the femoral neck (DXA NECK BMD) and trochanter (DXA TROC BMD), and of the ultradistal radius (DXA UD BMD) for integral BMD; (3) peripheral QCT of the distal radius for trabecular BMD (pQCT TRAB BMD) and cortical bone mineral content (BMC) (pQCT CORT BMC); (4) two radiographic absorptiometric techniques of the metacarpal (RA METC BMD) and phalanges (RA PHAL BMD) for integral BMD; and (5) two quantitative ultrasound devices (QUS) of the calcaneus for speed of sound (SOS CALC) and broadband ultrasound attenuation (BUA CALC). In general, correlations ranged from (r = 0.10-0.93) among different sites and techniques. We found that pQCT TRAB BMD correlated poorly (r < or = 0.46) with all other measurements except DXA UD BMD (r = 0.62,p < or = 0.0001) and RA PHAL BMD (r = 0.52, p < or = 0.0001). The strongest correlation across techniques was between QCT INT BMD and DXA LAT BMD (r = 0.87, p < or = 0.0001), and the weakest correlation within a technique was between pQCT TRAB BMD and pQCT CORT BMC (r = 0.25,p < or = 0.05). Techniques showing the highest correlations with age in the healthy groups also showed the greatest differences among groups. They also showed the best discrimination (as measured by the odds ratios) for the distinction between healthy postmenopausal and osteoporotic postmenopausal groups based on age-adjusted logistic regression analysis. For each anatomic site, the techniques providing the best results were: (1) spine, QCT TRAB BMD (annual loss, -1.2% [healthy premenopausal and healthy postmenopausal]); Student's t-value [not the T score], 5.4 [healthy postmenopausal vs. osteoporotic postmenopausal]; odds ratio, 43 [age-adjusted logistic regression for healthy postmenopausal vs. osteoporotic postmenopausal]); (2) hip, DXA TROC BMD (-0.46; 3.5; 2.2); (3) radius, DXA UD BMD (-0.44; 3.3; 1.9) and pQCT, CORT BMC (-0.72; 2.9; 1.7); (4) hand, RA PHAL (-0.51; 3.6; 2.0); and (5) calcaneus, SOS (-0.09; 3.4; 2.1) and BUA (-0.52; 2.6; 1.7). Despite these performance trends, the differences among sites and techniques were statistically insignificant (p > 0.05) using age-adjusted receiver operating characteristic (ROC) curve analysis. Nevertheless, kappa score analysis (using -2.0 T score as the cut-off value for osteopenia and -2.5 T score for osteoporosis) showed that in general the diagnostic agreement among these measurements in classifying women as osteopenic or osteoporotic was poor, with kappa scores averaging about 0.4 (exceptions were QCT TRAB/INTG BMD, DXA LAT BMD, and RA PHAL BMD, with kappa scores ranging from 0.63 to 0.89). Often different patients were estimated at risk by using different measurement sites or techniques.

Absorptiometry, Photon↗

Intraventricular neuropeptide Y does not stimulate food intake in the baboon.

In the present study, we examined the ability of the orexigenic peptide neuropeptide Y (NPY) to stimulate feeding when administered into the lateral ventricle of baboons. No increase of either meal size or total daily food intake was observed over the dose range tested (1-30 micrograms). These results suggest that, in the baboon, NPY may not be an orexigen as it is in other species.

Animals↗

The evaluation of insulin as a metabolic signal influencing behavior via the brain.

The intent of this paper is to evaluate decreases of food intake and body weight that occur when a peptide is administered to an animal. Using the pancreatic hormone insulin as an example, the case is made that endogenous insulin is normally secreted in response to circulating nutrients as well as in proportion to the degree of adiposity. Hence, its levels in the blood are a reliable indicator of adiposity. A further case is then made demonstrating that insulin is transported through the blood-brain barrier into the brain, where it gains access to neurons containing specific insulin receptors that are important in the control of feeding and metabolism. Finally, experimentally-induced changes of insulin in the brain cause predictable changes of food intake and body weight. Given these observations, the question is then asked: since endogenous insulin, acting within the brain, appears to decrease food intake, can a decrease of food intake caused by exogenous insulin administered into the same area of the brain be ascribed to the same, naturally-occurring response system, or should it be attributed to malaise or a non-specific depression of behavior? Arguments are presented supporting the former position that exogenous insulin, when administered in small quantities directly into the brain, taps into the natural caloric/metabolic system and hence influences food intake and body weight.

Animals↗

Central insulin and macronutrient intake in the rat.

When rats are maintained on a standard laboratory diet, the infusion of low doses of insulin into the cerebroventricular system causes a reduction of food intake and body weight. It was recently reported that, if rats are maintained on a high-fat diet (56% calories as fat), they are insensitive to this action of insulin. To investigate further the effect of dietary composition on responsiveness to central insulin, we carried out two experiments. In experiment 1, rats were maintained on one of four equicaloric diets (providing 7, 22, 39, or 54% of calories as fat) before and during a 6-day third-ventricular infusion (i3vt) of insulin (10 mU/day) or saline. Rats consuming 7 or 22% of calories as fat had a significant reduction of both food intake (-17.2 +/- 2.9 and -14.6 +/- 3.3 g, respectively) and body weight (-50 +/- 5 and -41 +/- 5 g, respectively) from baseline over the insulin-infusion infusion period. Rats consuming 39 or 54% calories as fat did not reliably alter food intake (-4.0 +/- 3.9 and -1.9 +/- 3.7 g, respectively) or body weight (-10 +/- 6 and -6 +/- 4 g, respectively) in response to i3vt of insulin. In experiment 2, rats were offered a choice of three macronutrients (carbohydrates, fats, and proteins) in separate jars in their home cages. After they had adapted to the diets, they were infused i3vt with insulin or saline. Insulin caused a significant reduction of body weight relative to saline-infused controls (body wt: -23.1 +/- 4 g) and a reduction in food intake that was selective for dietary fat. These data suggest that the effects of central insulin administration are highly dependent on the macronutrient content of the diet as well as the ability of rats to select their own diets.

Animals↗

Behavioral, endocrine, and hypothalamic responses to involuntary overfeeding.

The suppression of food intake after a period of forced overfeeding is potent and long lasting, yet little is known of the underlying mechanisms for this regulatory response. Rats were overfed via a surgically implanted gastrostomy tube. During overfeeding, plasma insulin and corticotropin-releasing hormone (CRH) mRNA in the paraventricular nucleus of the hypothalamus were elevated compared with controls and with overfed rats allowed 3 days to recover from the overfeeding regimen such that body weight returned to the level of controls. In contrast, rats that were not overfed but were pair-fed to the low spontaneous food intake of previously overfed rats lost weight and had significantly reduced plasma insulin and elevated mRNA for neuropeptide Y (NPY) in the arcuate nucleus of the hypothalamus. The results indicate that overfeeding produces an activation of hypothalamic CRH system that may contribute to the hypophagia that accompanies involuntary overfeeding. Furthermore, the hypothalamic NPY response to food restriction is not tied to low food intake per se, but rather to negative energy balance.

Animals↗

Central insulin enhances sensitivity to cholecystokinin.

Insulin acts in the brain to reduce food intake and body weight. Cholecystokinin (CCK) reduces meal size when administered peripherally. The purpose of these experiments was to examine their interaction. In Experiment 1, Long-Evans rats were infused with vehicle or insulin at doses from 0.5 to 2.0 mU/day into the third cerebral ventricles. Doses of 1.0 mU/day and higher caused reduced body weight. A dose of 0.5 mU/day was therefore taken to be subthreshold. In Experiment 2, rats receiving 0.5 mU/day of insulin intracerebroventricularly had greater suppression of 30-min meal size in response to intraperitoneal CCK-8 at doses from 0.25 to 8 mg/kg than did rats receiving intracerebroventricular saline. By itself, the insulin had no effect on body weight or meal size. However, a change of sensitivity to CCK by control rats over the course of the experiment clouded the interpretation. A third experiment was therefore conducted in which rats received an acute intracerebroventricular injection of insulin (0.1 mU) or saline 1 h prior to a 30-min meal, and IP CCK-8 (4 mg/kg) or saline immediately prior to the meal. As in Experiment 2, insulin, itself, had no effect on meal size but enhanced the anorexic effect of CCK. These results are consistent with the hypothesis that central insulin acts by altering sensitivity to satiety agents.

Animals↗

Follow up study of chromosome aberrations in lymphocytes in hospital workers occupationally exposed to low levels of ionizing radiation.

In the present study we analyzed and followed up on the cytogenetic effects of low levels of ionizing X-radiation on hospital workers at 72 h cultures. Samples of peripheral blood were collected from 10 hospital workers exposed to 1.84 mSv/year, and from 10 non exposed individuals, who were screened simultaneously and used as controls. The chromosomes were prepared using standard techniques. After 12 months, we undertook a second evaluation, this time with exposure to the same workers of 1.67 mSv/year. We observed 100 metaphases per subject, and there was a high percentage of altered metaphases (29.2% in the first sample and 26% in the second samples) The chromosome analysis in the second mitotic division, show aberrations such as gaps, breaks and acentric fragments, as well as other alterations such as dicentrics and rings, as well as chromosome variants (double minutes) in the exposed workers vs. the controls, and the difference was statistically highly significant (p < 0.001). There is no statistically significant difference between the first sample of exposed workers with the second one (p > 0.05). The findings in this study are interesting, because the workers were exposed to doses well below the accepted standards for exposure to radiations. Because of these unusual findings, our results could have potentially major consequences on our views on standards of exposure to radiation.

Adult↗

Intraventricular insulin and the level of maintained body weight in rats.

To determine whether central insulin administration lowers the level around which body weight is regulated, insulin (6 mU/day) or saline was infused into the third ventricles of four groups of rats. One insulin-infused and one saline-infused group were food-deprived for 3 days and were then returned to an ad lib feeding schedule. The other two groups were maintained on ad lib feeding throughout. Insulin-fused food-deprived rats. In ad lib fed rats, insulin caused a significant reduction of food intake and weight relative to saline-infused controls. When formerly food-deprived rats were returned to ad lib feeding, they gained weight, and this was significantly more pronounced in the saline-infused than the insulin-fused group. The body weights of the two insulin-infused groups converged on a value approximately 9% below the average of the two saline infused groups, with one group increasing its weight and the other decreasing its weight to achieve that weight. These findings suggest that the third-ventricular infusion of insulin does not incapacitate the rats and that they can alter their food intake either upward or downward to attain a new weight. The results are also consistent with the hypothesis that direct administration of insulin into the brain determines the level of weight maintained by the animal.

Animals↗