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Biomedical subjects

J Levy

Publications and source records attributed to J Levy.

At least 253 records · Page 14Linked to original sources

The relationship between endogenous oestradiol and vitamin D3 metabolites in serum and follicular fluid during ovarian stimulation for in-vitro fertilization and embryo transfer.

The present study was undertaken to examine the effect of circulating oestradiol on serum levels of 25-hydroxyvitamin D3 (25-OHD3), 24,25-dihydroxyvitamin D3[24,25-(OH)2D3], and 1,25-dihydroxyvitamin D3 [1,25-(OH)2D3] during gonadotrophin-induced ovarian stimulation in 10 healthy women undergoing in-vitro fertilization and embryo transfer (IVF). The presence of these metabolites in the follicular fluid was also investigated. Plasma oestradiol increased from 25 +/- 3.2 (mean +/- SE) pg/ml before initiation of treatment to 2563 +/- 328 pg/ml on the day of injection of human chorionic gonadotrophin (HCG) and 1641 +/- 299 pg/ml on the day of ovum retrieval (P < 0.01). Serum levels of 1,25-(OH)2D3 increased from 32.0 +/- 1.9 (mean +/- SE) pg/ml to 46.6 +/- 8.1 and 48.5 +/- 7.7 pg/ml (P < 0.05) on the day of HCG and ovum retrieval, respectively. No changes in blood levels of 25-OHD3 and 24,25-(OH)2D3 were found. The presence of vitamin D metabolites in follicular fluid is documented herein for the first time. All three metabolites were present in the follicular fluid but were significantly lower than in the concurrent serum (P < 0.01). A highly significant correlation was found between serum and follicular fluid levels: r = 0.787, P < 0.001 for 1,25-(OH)2D3; r = 0.738, P < 0.01 for 25-OHD3; and r = 0.751, P < 0.01 for 24,25-(OH)2D3. Our results suggest that raised levels of circulating oestradiol during gonadotrophin-induced ovarian stimulation are associated with a significant increase of serum 1,25-(OH)2D3.

24,25-Dihydroxyvitamin D 3↗

Cutaneous lesions as a clue to severe combined immunodeficiency.

A 2-month-old boy experienced cutaneous lesions that revealed an underlying severe, combined immunodeficiency (SCID). It is important to recognize cutaneous manifestations of primary immunodeficiency disorders, as they may provide the earliest clue to a defect in immune function.

Humans↗

Different effects of nasal and bronchial glucocorticosteroid administration on bronchial hyperresponsiveness in patients with allergic rhinitis.

Disorders of the upper respiratory tract, particularly allergic rhinitis, are commonly associated with bronchial hyperresponsiveness. The latter may be due to postnasal drip or to mediator or chemotactic factors into the lower airways that either directly alter airway reactivity or cause airway inflammation. The aim of this study was to compare the effect of an identical dose of nasal or bronchial corticosteroid administration on bronchial hyperresponsiveness in patients with allergic rhinitis. Eleven patients were studied. All of them were judged atopic on the basis of positive skin tests to common allergens. During control, spirometry, flow-volume curves, and specific airway conductance (SGaw) were measured. Bronchial challenges were then performed with increasing concentrations of carbachol, and dose-response curves were constructed. The concentration of carbachol that decreased SGaw by 35% from baseline (PD35) was determined by interpolating from the dose-response curve. Control measurements were repeated at 1-wk intervals to ensure that PD35 was stable in all the patients. Then the patients received for 2 wk, in a double-blind randomized crossover fashion, a topical administration of either an aerosol of 400 micrograms of beclamethasone dipropionate (B) into the nose (100 micrograms four times per day) or into the bronchi. During each trial period, identical sprays of placebo were used, the latter being administered into the nose when B was administered into the bronchi and vice versa. Measurements were then performed after 2 wk of intranasal administration and after 2 wk of intrabronchial administration.(ABSTRACT TRUNCATED AT 250 WORDS)

Administration, Inhalation↗

Evidence that estrogens modulate activity and increase the number of 1,25-dihydroxyvitamin D receptors in osteoblast-like cells (ROS 17/2.8).

A detailed understanding of the mechanism of action of estrogen on bones is still lacking. The present study was designed to examine possible modulation by 17 beta-estradiol (E2) on the effects of 1,25-dihydroxyvitamin D3 [1,25-(OH)2D3] and on vitamin D receptors (VDR) in the ROS 17/2.8 osteoblast-like cell line. Cells were grown in phenol-red free medium supplemented with charcoal-stripped fetal calf serum (FCS). Total cellular VDR were measured in cell homogenates after extraction with a KCl hypertonic buffer. VDR-binding capacity doubled in the presence of 10 nM E2 (16.2 +/- 2.3 vs. 7.0 +/- 1.3 fmol/mg protein, respectively; P less than 0.01), while the Kd for 1,25-(OH)2D3 did not change (approximately 0.1 nM). Tamoxifen alone had no effect on VDR, while it completely abolished the E2-induced increase in VDR, indicating that the effect was specific for E2 and estrogen receptor mediated. 1,25-(OH)2D3 inhibited cell proliferation, determined by [3H] thymidine incorporation to DNA, in a dose-dependent fashion between 0.01-100 nM. The inhibitory effect of 1,25-(OH)2D3 on cell proliferation was significantly augmented in the presence of E2 (10 nM). 1,25-(OH)2D3 increased osteocalcin secretion to the medium by the cells in a dose-dependent fashion between 0.01-100 nM. In the presence of E2 (10 nM), maximal osteocalcin secretion in response to 1,25-(OH)2D3 was 3.5-fold higher than that in response to 1,25-(OH)2D3 alone. These results indicate that E2 modulates 1,25-(OH)2D3 activity in osteoblast-like cells, and that this effect can be attributed to an increase in VDR.

Animals↗

Bone structure and calcium metabolism in obese Zucker rats.

Obesity is associated with altered bone mass. However, reports on bone status in obesity are inconsistent. Increased or normal bone mass was reported in obese adults but decreased bone mineral content was described in obese children. Therefore we evaluated the obese fa/fa rat as a possible model to assist in studies of bone metabolism in obesity. Obese and lean 14-week-old male rats underwent 24 h balance studies for calcium, magnesium and phosphate. Plasma calcium, magnesium, phosphate, immunoreactive parathyroid hormone, urinary cAMP (cyclic adenosine monophosphate) and femur bone histomorphometry were also analysed. Obese rats were heavier and had higher plasma insulin, cholesterol and triglycerides levels (P less than 0.05). A comparable positive balance for calcium, magnesium and phosphate was found in obese and lean rats. Total plasma calcium was higher in the obese, but albumin corrected calcium and plasma magnesium, phosphate and glucose were similar to the lean. In contrast to human obesity, obese rats were hypercalciuric, hypermagnisuric and hyperphosphaturic (P less than 0.05). iPTH and urinary cAMP were higher in the obese. Femora of fa/fa rats were shorter and lighter. Their bone osteoid surface and bone calcium content were similar to controls. Femora metaphysis in the obese had increased number of trabeculae, decreased trabecular width and higher erosion surface/bone surface ratio. Their diaphysis had increased cortical area/bone area and cortical width/bone width ratios and decreased medullary area. In summary, obese rats have higher iPTH, are hypercalciuric and have decreased bone mass. These last two observations differ from what is described in adult human obesity. Therefore, the obese fa/fa rat is of limited assistance in studies of bone status in adult human obesity. It might be of help in studies of bone metabolism in juvenile obesity.

Animals↗

[Myocardial reperfusion syndrome].

Myocardial reperfusion is associated with a number of clinical, electrocardiographic (arrhythmias, conduction defects, ST segment changes), haemodynamic and biological events. The commonest arrhythmias are ventricular extra-systoles, rapid ventricular tachycardias, and accelerated idio-ventricular rhythms. Reperfusion bradycardias are less common. When the arrhythmia is related to ischaemia it usually regresses when perfusion is restored. Reperfusion of the inferior wall of the left ventricle is often associated with sinus bradycardia and hypotension. The ST segment changes may evolve in two different ways: progressive regression or accentuation of ST elevation. When the responsible artery is recanalized, there is an immediate rise in plasma enzyme and myoglobin concentrations. The peak CPK concentration is usually observed after the 12th hours. The diagnostic value of the reperfusion syndrome lies in the interpretation of rapid ventricular tachycardias, accelerated idio-ventricular rhythms, ST segment changes and immediate rise in plasma CPK levels. The clinical risks of the reperfusion syndrome are low, practically never rhythmic and only exceptionally haemodynamic.

Arrhythmias, Cardiac↗

Bone maturation and resorption by peritoneal macrophages in noninsulin-dependent streptozocin-induced diabetes in the rat.

The existence of osteopenia in noninsulin-dependent diabetes mellitus (NIDDM) is controversial. In this regard rats with a diabetic condition that simulates NIDDM have normal bone mineral content. However, normal total mineral content in bones does not preclude abnormalities in more delicate functions in bones of rats with NIDDM (specifically, bone maturation and response of bone matrix to resorptive activity). To evaluate these functions, bone maturation was studied in tibias from 14-week old male and female rats with streptozocin-induced NIDDM and controls. The ability of macrophages to resorb bone was studied in bone particles that were obtained from femors of male rats with NIDDM and controls. The diabetic rats had the overt NIDDM condition for 8 weeks at the time of the study. We found that bone maturation/mineralization remained intact in the diabetic rats and that response of the bone particles that were obtained from their femors to the resorptive activity of macrophages was similar to that of the bone particles that were obtained from controls. These data suggest that in the rat, a diabetic condition that simulates NIDDM does not alter the physiologic functions of the bone matrix.

Analysis of Variance↗

Asymmetric action in the human newborn: sex differences in patterns of organization.

We developed a procedure and scale to quantify movement asymmetry in 36 full-term newborns from several normal newborn nurseries (Measure of Behavioral Laterality, MOBL). The majority of newborns had elicited reflexes and spontaneous movements that were stronger and more coordinated on the right than on the left side of the body; there was no asymmetry in the latency, threshold, or habituation of these behaviors. Although asymmetry of different movements was associated if they relied on the same motor pool, there was little association of movement asymmetries among different body regions, indicating that multiple subsystems, rather than a single asymmetric system, controls asymmetric action in the newborn. Finally, there was a sex difference in asymmetry of all 3 distal lower-body elicited reflexes: females were right biased, but the majority of males were left biased. These sex differences are discussed in terms of alternative mechanisms for the development of asymmetric action and the role of newborn reflexes in adult voluntary movement.

Female↗

Clonality in myeloproliferative disorders: analysis by means of the polymerase chain reaction.

The myeloproliferative syndromes are acquired disorders of hematopoiesis that provide insights into the transition from somatic cell mutation to neoplasia. The clonal origin of specific blood cells can be assessed in patients with X chromosome-linked polymorphisms, taking advantage of random inactivation of the X chromosome. We have adapted the PCR for determination of clonality on as few as 100 cells, including individual colonies grown in culture. Amplifying a polymorphic portion of the X chromosome-linked phosphoglycerate kinase (PGK) gene after selective digestion of the active X chromosome with a methylation-sensitive restriction enzyme gave results fully concordant with standard Southern blotting of DNA samples from normal (polyclonal) polymorphonuclear cells (PMN) as well as clonal PMN from patients with myelodysplastic syndrome and polycythemia vera (PCV). We have used this technique to demonstrate heterogeneity of lineage involvement in patients with PCV. The same clinical phenotype may arise from clonal proliferation of different hematopoietic progenitors.

Base Sequence↗

Receptor protein-tyrosine phosphatase gamma is a candidate tumor suppressor gene at human chromosome region 3p21.

PTPG, the gene for protein-tyrosine phosphatase gamma (PTP gamma), maps to a region of human chromosome 3, 3p21, that is frequently deleted in renal cell carcinoma and lung carcinoma. One of the functions of protein-tyrosine phosphatases is to reverse the effect of protein-tyrosine kinases, many of which are oncogenes, suggesting that some protein-tyrosine phosphatase genes may act as tumor suppressor genes. A hallmark of tumor suppressor genes is that they are deleted in tumors in which their inactivation contributes to the malignant phenotype. In this study, one PTP gamma allele was lost in 3 of 5 renal carcinoma cell lines and 5 of 10 lung carcinoma tumor samples tested. Importantly, one PTP gamma allele was lost in three lung tumors that had not lost flanking loci. PTP gamma mRNA was expressed in kidney cell lines and lung cell lines but not expressed in several hematopoietic cell lines tested. Thus, the PTP gamma gene has characteristics that suggest it as a candidate tumor suppressor gene at 3p21.

Animals↗

Impaired translocation of protein kinase C activity in human non-insulin-dependent diabetes mellitus.

Calcium- and phospholipid-dependent protein kinase (protein kinase C; PKC) may be an important mediator in transduction of some of the cellular actions of insulin. We studied PKC activity in freshly isolated circulating mononuclear cells obtained from healthy subjects and patients with non-insulin-dependent (type II) diabetes mellitus (NIDDM). The kinase activity was measured using a specific nonapeptide substrate, Ala-Ala-Ala-Ser-Phe-Lys-Ala-Lys-Lys-amide. There was negligible calcium- and phospholipid-independent kinase activity in cytosolic and particulate fractions of cells from both control and diabetic subjects. Total (cytosolic and particulate) PKC activity of mononuclear cells from poorly controlled diabetic patients was significantly reduced compared with controls; this reduction was mainly due to a decrease in the cytosolic kinase activity. Tumor-promoting phorbol ester (TPA, 0.1 mumol/L) induced translocation of PKC activity in control cells; in contrast, this subcellular redistribution was not observed in cells from a majority of poorly controlled diabetic subjects. Increased calcium influx into the cells caused by the calcium ionophore A23187-triggered translocation of PKC activity in control cells, while it was ineffective in cells from poorly controlled diabetic patients. Cells from well-controlled diabetic patients demonstrated TPA-induced translocation of the PKC activity approaching that of control cells. The total PKC activity in cells from patients with good glycemic control was normal. Impaired activation of PKC is thus associated with the insulin resistance found in patients with poorly controlled NIDDM.(ABSTRACT TRUNCATED AT 250 WORDS)

Blood Glucose↗

Effects of processing speed on cerebral asymmetry for left- and right-oriented faces.

A free-vision chimeric facial emotion judgment task and a tachistoscopic face-recognition reaction time task were administered to 20 male right-handed subjects. The tachistoscopic task involved judgments of whether a poser in the centrally presented full-face photograph was the same or different poser than in a profile photograph presented in the left or right visual field (LVF, RVF). The free-vision task was that used by J. Levy, W. Heller, M. Banich, and L. Burton (1983, Brain and Cognition, 2, 404-419) and involved judging which of two chimeric faces appeared happier, in which the two chimeras were mirror images of each other and each chimera consisted of a smiling half-face joined at the midline to a neutral half-face of the same poser. For the tachistoscopic task, subjects were divided into groups of Fast and Slow responders by a median split of the mean reaction times. For the Fast subjects, judgments were faster in the LVF than in the RVF, and there was a significant interaction between visual field and profile direction, such that responses were faster for medially oriented profiles; i.e., LVF responses were faster for right-facing than for left-facing profiles, with the reverse relationship in the RVF. The Slow responders did not show these effects. Only the Fast group showed the bias for choosing the chimera with the smile on the left as happier, and mean response speed and the LVF advantage on the tachistoscopic test correlated with the leftward bias on the free-vision task for all subjects combined. It was suggested that overall response speed on the face-matching task reflected the extent to which specialized and more efficient right hemisphere functions were activated.

Adult↗

Perceptual asymmetries for free viewing of several types of chimeric stimuli.

We examined perceptual biases of right-handers on six free-vision chimeric tasks; two involving a judgement of happiness of a facial expression in photographic and cartoon chimeras, two involving a judgement of femininity in male/female photographic and cartoon chimeras, and two involving a spatial judgement of nonface chimeric stimuli. All four of the face tasks and one of the nonface tasks elicited left spatial field biases of varying magnitudes, and perceptual asymmetries on all tasks were positively correlated. However, multiple correlational analyses revealed that these tests shared differing proportions of variance with each other. Results indicate that, in addition to a common factor or set of factors contributing to lateral biases that is independent of both the nature of the stimulus and whether the stimulus engages lateralized mechanisms, there are distinct lateralized mechanisms which yield different patterns of perceptual asymmetries for different stimuli.

Analysis of Variance↗

Diacylglycerols modulate insulin action in rat adipocytes.

Effect of 1,2-diacylglycerols on the insulin receptor function and insulin action in rat adipocytes was studied. 1,2-dioctanoylglycerol (100 micrograms/ml) did not alter insulin binding but it did stimulate phosphorylation of the beta-subunit of the insulin receptor as well as its tyrosine kinase activity. However, dioctanoylglycerol inhibited insulin-stimulated receptor autophosphorylation. This concentration of dioctanoylglycerol inhibited insulin-stimulated CO2 metabolism, lipogenesis and 3-O-methyl-glucose transport in a dose-dependent manner but did not alter any of these bioeffects in absence of insulin. While there was no direct link between diacylglycerol effect on tyrosine kinase activity of the insulin receptor and insulin action in rat adipocytes, the parallel inhibition of insulin-stimulated receptor autophosphorylation and insulin bioeffects by dioctanoylglycerol suggests its direct or indirect role in insulin signalling in rat fat cells.

3-O-Methylglucose↗