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Biomedical subjects

D E Cole

Publications and source records attributed to D E Cole.

At least 19 recordsLinked to original sources

Comparison of breast magnetic resonance imaging, mammography, and ultrasound for surveillance of women at high risk for hereditary breast cancer.

PURPOSE: Recommended surveillance for BRCA1 and BRCA2 mutation carriers includes regular mammography and clinical breast examination, although the effectiveness of these screening techniques in mutation carriers has not been established. The purpose of the present study was to compare breast magnetic resonance imaging (MRI) with ultrasound, mammography, and physical examination in women at high risk for hereditary breast cancer. PATIENTS AND METHODS: A total of 196 women, aged 26 to 59 years, with proven BRCA1 or BRCA2 mutations or strong family histories of breast or ovarian cancer underwent mammography, ultrasound, MRI, and clinical breast examination on a single day. A biopsy was performed when any of the four investigations was judged to be suspicious for malignancy. RESULTS: Six invasive breast cancers and one noninvasive breast cancer were detected among the 196 high-risk women. Five of the invasive cancers occurred in mutation carriers, and the sixth occurred in a woman with a previous history of breast cancer. The prevalence of invasive or noninvasive breast cancer in the 96 mutation carriers was 6.2%. All six invasive cancers were detected by MRI, all were 1.0 cm or less in diameter, and all were node-negative. In contrast, only three invasive cancers were detected by ultrasound, two by mammography, and two by physical examination. The addition of MRI to the more commonly available triad of mammography, ultrasound, and breast examination identified two additional invasive breast cancers that would otherwise have been missed. CONCLUSION: Breast MRI may be superior to mammography and ultrasound for the screening of women at high risk for hereditary breast cancer.

Adult↗

Prevalence and penetrance of germline BRCA1 and BRCA2 mutations in a population series of 649 women with ovarian cancer.

A population-based series of 649 unselected incident cases of ovarian cancer diagnosed in Ontario, Canada, during 1995-96 was screened for germline mutations in BRCA1 and BRCA2. We specifically tested for 11 of the most commonly reported mutations in the two genes. Then, cases were assessed with the protein-truncation test (PTT) for exon 11 of BRCA1, with denaturing gradient gel electrophoresis for the remainder of BRCA1, and with PTT for exons 10 and 11 of BRCA2. No mutations were found in all 134 women with tumors of borderline histology. Among the 515 women with invasive cancers, we identified 60 mutations, 39 in BRCA1 and 21 in BRCA2. The total mutation frequency among women with invasive cancers, 11.7% (95% confidence interval [95%CI] 9.2%-14.8%), is higher than previous estimates. Hereditary ovarian cancers diagnosed at age <50 years were mostly (83%) due to BRCA1, whereas the majority (60%) of those diagnosed at age >60 years were due to BRCA2. Mutations were found in 19% of women reporting first-degree relatives with breast or ovarian cancer and in 6.5% of women with no affected first-degree relatives. Risks of ovarian, breast, and stomach cancers and leukemias/lymphomas were increased nine-, five-, six- and threefold, respectively, among first-degree relatives of cases carrying BRCA1 mutations, compared with relatives of noncarriers, and risk of colorectal cancer was increased threefold for relatives of cases carrying BRCA2 mutations. For carriers of BRCA1 mutations, the estimated penetrance by age 80 years was 36% for ovarian cancer and 68% for breast cancer. In breast-cancer risk for first-degree relatives, there was a strong trend according to mutation location along the coding sequence of BRCA1, with little evidence of increased risk for mutations in the 5' fifth, but 8.8-fold increased risk for mutations in the 3' fifth (95%CI 3.6-22.0), corresponding to a carrier penetrance of essentially 100%. Ovarian, colorectal, stomach, pancreatic, and prostate cancer occurred among first-degree relatives of carriers of BRCA2 mutations only when mutations were in the ovarian cancer-cluster region (OCCR) of exon 11, whereas an excess of breast cancer was seen when mutations were outside the OCCR. For cancers of all sites combined, the estimated penetrance of BRCA2 mutations was greater for males than for females, 53% versus 38%. Past studies may have underestimated the contribution of BRCA2 to ovarian cancer, because mutations in this gene cause predominantly late-onset cancer, and previous work has focused more on early-onset disease. If confirmed in future studies, the trend in breast-cancer penetrance, according to mutation location along the BRCA1 coding sequence, may have significant impact on treatment decisions for carriers of BRCA1-mutations. As well, BRCA2 mutations may prove to be a greater cause of cancer in male carriers than previously has been thought.

BRCA2 Protein↗

An acceptor splice site mutation in the calcium-sensing receptor (CASR) gene in familial hypocalciuric hypercalcemia and neonatal severe hyperparathyroidism.

We studied family members of a large kindred expressing both familial hypocalciuric hypercalcemia (FHH) and neonatal severe hyperparathyroidism (NSHPT) and found, by PCR amplification of the extracellular calcium-sensing receptor (CASR) gene exons and flanking intronic sequences, that FHH individuals were heterozygous for a g to t substitution in the last nucleotide of intron 2 (IVS2-1G>T). Defects in messenger RNA splicing were investigated by illegitimate transcription of the CASR gene in lymphoblastoid cells from an FHH affected individual, as well as by transfection of a CASR minigene harboring this mutation into HEK293 cells. The mutation resulted predominantly in exon III skipping causing a shift in exon IV reading frame and introduction of a premature stop codon leading to a predicted truncated protein of 153 amino acids. Interestingly, it was noted that exon III splicing is not 100% efficient in parathyroid, thyroid, and kidney; an exon III-deleted transcript is produced approximately 15% of the time. This is the first description of a splice site mutation in the CASR gene and provides an explanation of the clinical phenotype of the patients.

Alternative Splicing↗

Association between total serum calcium and the A986S polymorphism of the calcium-sensing receptor gene.

Serum calcium is under tight physiological control, but it is also a quantitative trait with substantial genetic regulation. Mutations of the CASR gene cause familial hypocalciuric hypercalcemia or autosomal dominant hypoparathyroidism, depending on whether they decrease or increase, respectively, ligand binding to the receptor protein. We described an association between ionized calcium and a common polymorphism (A986S) found in the cytoplasmic tail of this G protein-coupled receptor. We report here on an independent study of 387 healthy young women. Genotyping was performed by allele-specific amplification and serum chemistries were measured by automated clinical assay. Frequencies of SS, AS, and AA genotypes were 6, 107, and 274, respectively, yielding a 986S allele frequency of 15.4%. Mean total serum calcium (Ca(T)) was significantly higher in the SS (9.88 +/- 0.29 mg/dL, P = 0.015) and AS groups (9.45 +/- 0.05 mg/dL, P = 0.002), than in the AA group (9.23 +/- 0.04 mg/dL). In multiple regression modeling, the A986S genotype remained an independently significant predictor of Ca(T) (P < 0.0001) when serum albumin, globulin, inorganic phosphate, and creatinine covariates were included. These data are the first to show significant association between a common polymorphism and concentrations of a serum electrolyte. The A986S polymorphism is also a potential predisposing factor in disorders of bone and mineral metabolism.

Adolescent↗

Pyridoxine improves endothelial function in cardiac transplant recipients.

BACKGROUND: Endothelial dysfunction is common in cardiac transplant recipients and predicts the development of transplant coronary artery disease. Hyperhomocysteinemia is associated with endothelial dysfunction in the general population, is common in transplant recipients, and has been associated with transplant coronary artery disease. Thus therapy that decreases homocysteine concentrations might also improve endothelial function and decrease the risk of transplant coronary artery disease. Folate and pyridoxine are important cofactors in distinct aspects of homocysteine metabolism. The purpose of this study was to determine whether folate or pyridoxine supplementation improves endothelial function in cardiac transplant recipients. METHODS AND RESULTS: This was a double-blind, randomized, placebo-controlled trial. We assigned 31 transplant recipients to either pyridoxine (n = 11:100 mg/day), folate (n = 12:5 mg/day), or placebo (n = 8) for 10 weeks. Fasting and post-methionine-load (methionine 100 mg/kg orally) homocysteine concentrations were determined. Brachial artery flow-mediated dilatation was used as a measure of endothelial function. At follow-up, we noted no significant changes in homocysteine concentrations in any of the groups. However, pyridoxine supplementation was associated with a significant improvement in endothelial function (2.8 +/- 6.7 to 6.9 +/- 6.3, p = 0.05). No significant changes were seen in patients treated with folate or placebo. CONCLUSIONS: Pyridoxine, but not folate supplementation, significantly improves endothelial function in cardiac transplant recipients.

Double-Blind Method↗

Hyperhomocysteinemia and transplant coronary artery disease in cardiac transplant recipients.

BACKGROUND: In cardiac transplant recipients, long-term survival may be limited by transplant coronary artery disease (TxCAD). Hyperhomocysteinemia (Hhcy) has been associated with vascular disease and is common in transplant recipients. The objective of this study was to determine the relationship between fasting homocysteine (Hcy) concentrations and TxCAD in a cohort of cardiac transplant recipients. METHODS: Forty-eight patients more than 5 yr after transplant were recruited from a cohort of 72 consecutive patients with in-depth analysis of homocysteine levels from the Cardiac Transplant Clinic. Early morning fasting blood was obtained, and the plasma separated and frozen within 30 min. Hcy concentrations were determined by high-performance liquid chromatography (HPLC) with pulsed integrated amperometry. Coronary angiograms were reviewed in a blinded fashion. TxCAD was diagnosed, using the most recent angiogram, when a >25% lesion was present anywhere in the coronary tree. RESULTS: Forty-eight patients transplanted between 1985 and 1994 were studied. The mean Hcy concentration for the cohort was 23.5+/-5.0 micromol/L, all patients had homocysteine levels above the upper range of normal (5-15 micromol/L). Hcy concentrations were significantly higher in patients with angiographic evidence of TxCAD: 25.0+/-5.9 vs. 21.9+/-3.4 micromol/L, p=0.03. This effect persisted when covariates were taken into account using logistic regression analysis. CONCLUSIONS: Hhcy is associated with TxCAD. Prospective studies are required to confirm this association and to assess the efficacy of Hcy-lowering therapy in this patient population.

Adult↗

Wintertime vitamin D insufficiency is common in young Canadian women, and their vitamin D intake does not prevent it.

OBJECTIVE: We asked whether women self-reporting the recommended consumption of vitamin D from milk and multivitamins would be less likely to have low wintertime 25-hydroxyvitamin D (25(OH)D) levels. METHODS: This cross-sectional study enlisted at least 42 young women each month (age 18-35 y, 796 women total) through one year. We measured serum 25(OH)D and administered a lifestyle and diet questionnaire. RESULTS: Over the whole year, prevalence of low 25(OH)D (<40 nmol/l) was higher in non-white, non-black subjects (25.6% of 82 women) than in the white women (14.8% of 702 white women, P<0.05). Of the 435 women tested during the winter half of the year (November-April), prevalence of low 25(OH)D was not affected by vitamin D intake: low 25(OH)D occurred in 21% of the 146 consuming no vitamin D, in 26% of the 140 reporting some vitamin D intake, up to 5 microg/day (median, 2.5 microg/day), and in 20% of the 149 women reporting vitamin D consumption over 5 microg/day (median, 10 microg/day). INTERPRETATION: The self-reported vitamin D intake from milk and/or multivitamins does not relate to prevention of low vitamin D nutritional status of young women in winter. Recommended vitamin D intakes are too small to prevent insufficiency. Vitamin D nutrition can only be assessed by measuring serum 25(OH)D concentration.

Adolescent↗

Occult carcinoma in prophylactic oophorectomy specimens: prevalence and association with BRCA germline mutation status.

Prophylactic oophorectomy (PO) is an option for women at increased risk for ovarian carcinoma. In this study the value of intensive pathologic examination of PO specimens and accompanying resected tissues in the identification of occult carcinoma and any association of occult carcinoma with BRCA germline mutation status were ascertained. Specimens from 60 consecutive PO patients, who were not suspected of having any ovarian tumor at the time of surgery, were subjected to standardized, complete pathologic examination in a prospective study over an 8-year period. Extra-ovarian tissues were examined as well, but they were not subject to the same standardized protocol. Any occult carcinoma of the ovaries or fallopian tubes was noted. The BRCA status and follow-up of patients were obtained, if available. Fifty-five of the 60 PO specimens did not show any evidence of malignancy. Of the 32 patients in this group followed for >1 year, all are alive and well. The remaining five patients, all BRCA1 mutation positive, showed occult carcinoma of the ovaries and/or in situ or invasive carcinoma of a fallopian tube. One of these five patients has died of abdominal carcinomatosis; four continue to be well, but follow-up is <4 years in all cases. Occult carcinoma is present in a small proportion of BRCA-positive or unknown PO patients and may be of prognostic significance. The entire ovaries and tubes from PO patients should be submitted for histologic examination to identify malignancy.

Cystadenocarcinoma, Papillary↗

Magnesium transport in the renal distal convoluted tubule.

The distal tubule reabsorbs approximately 10% of the filtered Mg(2+), but this is 70-80% of that delivered from the loop of Henle. Because there is little Mg(2+) reabsorption beyond the distal tubule, this segment plays an important role in determining the final urinary excretion. The distal convoluted segment (DCT) is characterized by a negative luminal voltage and high intercellular resistance so that Mg(2+) reabsorption is transcellular and active. This review discusses recent evidence for selective and sensitive control of Mg(2+) transport in the DCT and emphasizes the importance of this control in normal and abnormal renal Mg(2+) conservation. Normally, Mg(2+) absorption is load dependent in the distal tubule, whether delivery is altered by increasing luminal Mg(2+) concentration or increasing the flow rate into the DCT. With the use of microfluorescent studies with an established mouse distal convoluted tubule (MDCT) cell line, it was shown that Mg(2+) uptake was concentration and voltage dependent. Peptide hormones such as parathyroid hormone, calcitonin, glucagon, and arginine vasopressin enhance Mg(2+) absorption in the distal tubule and stimulate Mg(2+) uptake into MDCT cells. Prostaglandin E(2) and isoproterenol increase Mg(2+) entry into MDCT cells. The current evidence indicates that cAMP-dependent protein kinase A, phospholipase C, and protein kinase C signaling pathways are involved in these responses. Steroid hormones have significant effects on distal Mg(2+) transport. Aldosterone does not alter basal Mg(2+) uptake but potentiates hormone-stimulated Mg(2+) entry in MDCT cells by increasing hormone-mediated cAMP formation. 1,25-Dihydroxyvitamin D(3), on the other hand, stimulates basal Mg(2+) uptake. Elevation of plasma Mg(2+) or Ca(2+) inhibits hormone-stimulated cAMP accumulation and Mg(2+) uptake in MDCT cells through activation of extracellular Ca(2+)/Mg(2+)-sensing mechanisms. Mg(2+) restriction selectively increases Mg(2+) uptake with no effect on Ca(2+) absorption. This intrinsic cellular adaptation provides the sensitive and selective control of distal Mg(2+) transport. The distally acting diuretics amiloride and chlorothiazide stimulate Mg(2+) uptake in MDCT cells acting through changes in membrane voltage. A number of familial and acquired disorders have been described that emphasize the diversity of cellular controls affecting renal Mg(2+) balance. Although it is clear that many influences affect Mg(2+) transport within the DCT, the transport processes have not been identified.

Acid-Base Equilibrium↗

Hyperhomocyst(e)inemia and the increased risk of venous thromboembolism: more evidence from a case-control study.

BACKGROUND: Elevation of plasma homocyst(e)ine level is an independent risk factor for arterial and venous thrombosis. We studied the degree to which hyperhomocyst(e)inemia contributes to the development of venous thromboembolism, using a retrospective case-control study design. METHODS: Cases were individuals with objectively confirmed venous thromboembolism and no history of atherosclerosis seen at the Toronto Hospital Thrombosis Clinic, Toronto, Ontario, between January 1, 1996, and July 31, 1998. Three controls were matched for every case according to sex and age within 5 years and were derived from a large community cohort. All subjects underwent assessment for fasting plasma homocyst(e)ine levels. Hyperhomocyst(e)inemia was defined as a fasting total homocyst(e)ine concentration above the 95th percentile control value. RESULTS: Seventy cases and 210 matched controls were included. Men and women were equally represented, and most were younger than 60 years. Among cases with venous thromboembolism, the mean (+/- SD) plasma homocyst(e)ine level was significantly higher than in controls (13.0 +/- 6.9 micromol/L vs 9.0 +/- 4.8 micromol/L, respectively; P<.001). Sixteen (23%) of 70 cases had hyperhomocyst(e)inemia compared with 10 (5%) of 210 controls (odds ratio, 5.9; 95% confidence interval [CI], 2.5-13.8). Among subjects aged 60 years or younger, the odds ratio was 4.9 (95% CI, 1.4-16.4), while for those aged 60 years or older, it was 7.3 (95% CI, 2.2-24.0). Even with the exclusion of cases showing abnormal renal function or low serum vitamin B12 or folate levels, the odds ratio remained significantly elevated at 3.3 (95% CI, 1.1-10.0). CONCLUSIONS: We found that fasting hyperhomocyst(e)inemia is a significant risk factor for venous thromboembolic disease in patients at a thrombosis clinic. Given the magnitude of effect and consistency across these studies, it is likely that homocyst(e)ine plays a causative role in the development of venous thrombosis, and it should be considered in the workup for venous thromboembolism.

Adult↗

Retrospective estimation of the birth prevalence for delayed onset disorders: application to cystic fibrosis in Nova Scotia.

Maximum likelihood methods are used to estimate the birth prevalence, the age-at-diagnosis distribution, and the number of infants born with CF in Nova Scotia over a 20 year period. The data were taken from a registry of CF cases, and, because of the delayed onset of symptoms, some CF affected individuals were not diagnosed by the end of the study period. A goodness-of-fit test for assessing whether the age-at-diagnosis distribution is stable over the 20 years is provided. These methods could be applied equally well to data on any genetic disorder with delayed onset.

Adolescent↗

Mutations of the calcium-sensing receptor (CASR) in familial hypocalciuric hypercalcemia, neonatal severe hyperparathyroidism, and autosomal dominant hypocalcemia.

The calcium-sensing receptor (CASR) is a plasma membrane G protein coupled receptor that is expressed in the parathyroid hormone (PTH) producing chief cells of the parathyroid gland and the cells lining the kidney tubule. By virtue of its ability to sense small changes in circulating calcium concentration ([Ca(2+)](o)) and to couple this information to intracellular signaling pathways that modify PTH secretion or renal cation handling, the CASR plays an essential role in maintaining mineral ion homeostasis. Inherited abnormalities of the CASR gene located on chromosome 3p13.3-21 can cause either hypercalcemia or hypocalcemia depending upon whether they are inactivating or activating, respectively. Heterozygous loss-of-function mutations give rise to familial (benign) hypocalciuric hypercalcemia (FHH) in which the lifelong hypercalcemia is asymptomatic. The homozygous condition manifests itself as neonatal severe hyperparathyroidism (NSHPT), a rare disorder characterized by extreme hypercalcemia and the bony changes of hyperparathyroidism which occur in infancy. The disorder autosomal dominant hypocalcemia (ADH) is due to gain-of-function mutations in the CASR gene. ADH may be asymptomatic or present with neonatal or childhood seizures. A common polymorphism in the intracellular tail of the CASR, Ala to Ser at position 986, has a modest effect on the serum calcium concentration in healthy individuals.

Calcium↗

Associations of the collagen type Ialpha1 Sp1 polymorphism with five-year rates of bone loss in older adults.

The collagen type Ialpha1 Sp1 (ColIA1) polymorphism has been associated with reduced bone mineral density (BMD) and increased prevalence of osteoporosis. This study examines associations of the ColIA1 genotype with BMD and 5-year rates of change in BMD in elderly men and women. The 243 subjects, aged 65 years and older, were participants in two consecutive studies lasting a total of 5-years. BMD of the total body, femoral neck, and lumbar spine were made by dual-energy X-ray absorptiometry (DXA). The distribution of the genotypes (155 in the SS genotype, 79 in Ss, and 9 in ss) was proportionately similar to those reported by others. Baseline BMD did not differ significantly at any skeletal site. Unadjusted 5-year percent changes in BMD differed significantly by genotype only at the total body (P = 0.009), where the change was -0.29+/-0.21 (SEM) in the SS genotype, -0.60+/-0.25 in the Ss genotype, and -3.01+/-0.72 in the ss genotype. This 9.4% increase in bone loss of the ss genotype relative to the SS genotype was reduced to an 8.9% increase after adjustment for sex, age, weight, and supplementation group. Results at the femoral neck were directionally similar, but not statistically significant. No effect of genotype on change in spine BMD was observed. In conclusion, bone loss from the total body was significantly greater in elderly men and women who were homozygous for the s allele compared with heterozygotes and SS homozygotes. This finding suggests a possible explanation for the association of the ColIA1 polymorphism with increased rates of osteoporotic fracture, but should be interpreted with caution because of the small number of subjects in the unfavorable ss genotype.

Absorptiometry, Photon↗

An Ontario-wide study of vitamin B12, serum folate, and red cell folate levels in relation to plasma homocysteine: is a preventable public health issue on the rise?.

BACKGROUND: Plasma homocysteine has been reported to be useful in the evaluation of patients with suspected vitamin B12 or folate deficiency. In November 1998, Canada began its mandatory fortification of all flour, and some corn and rice products, with folic acid. We evaluated the status of folate and vitamin B12 in Ontario since this fortification program began, and also studied the role of plasma homocysteine in the assessment of vitamin B12 deficiency since that time. METHODS: A retrospective cross-sectional study design was performed using a community database of all Ontario samples analyzed by MDS Laboratories, a major provider of diagnostic laboratory services in Canada. All consecutive single-patient fasting samples for plasma homocysteine collected between January 1 and September 30, 1999 were included, as well as corresponding red cell folate and serum B12 concentrations. Data for serum folate were included when available. Descriptive statistics included the arithmetic and geometric means for each measure, as well as the lower and upper centile values. After excluding cases with a concomitant serum creatinine > 120 micromol/L or red cell folate < 215 nmol/L, we established the test properties of a plasma homocyteine level of 15 micromol/L or greater for the diagnosis of "low" (< 120 pmol/L) or "indeterminate" (i.e., between 120 and 150 pmol/L) serum vitamin B12 concentrations. RESULTS: The mean age of all subjects was 58.4 years (95% CI 57.4 to 59.4). Plasma homocysteine samples were obtained from 403 males (56.7%) and 308 females. The geometric mean homocysteine concentration for the entire population was 8.3 micromol/L, and was significantly higher among males (9.3 micromol/L) than females (8.3 micromol/L) (unpaired t-test: 2-p < 0.0001). The geometric mean serum folate concentration was significantly higher in females (35.8 nmol/L) than males (33.6 nmol/L) (2-p < 0.0001), as were the mean red cell folate levels (females 966.8 nmol/L, males 949.3 nmol/L; 2-p < 0.0001). Serum vitamin B12 concentrations were available for 692 subjects, with a geometric mean of 322.0 pmol/L. Again, mean vitamin B12 was higher in females (332.5 pmol/L) than males (314.3 pmol/L) (2-p < 0.0001). The fifth centile for vitamin B12 was 134.6 pmol/L. A plasma homocysteine concentration > 15 micromol/L did not discriminate between cobalamin concentrations below versus above 120 pmol/L (positive and negative predictive values 7.4% and 97.2%, respectively), nor did it discriminate "indeterminate" B12 levels between 120 and 150 pmol/L (positive and negative predictive values 6.3% and 94.0%, respectively). CONCLUSION: In a large select group of Ontarians, serum and red cell folate concentrations appear to be higher than expected, possibly due to a recent national folate fortification programme; cobalamin levels are no higher than expected. Given our inability to detect mild B12 deficiency using such indicators as plasma homocysteine, and considering the substantial growth in the elderly segment of the Canadian population, occult cobalamin deficiency could become a common disorder. Accordingly, we recommend either consideration of the addition of vitamin B12 to the current folate fortification programme, and/or the development of better methods for the detection of cobalamin deficiency.

Age Factors↗

Vitamin D-receptor genotypes as independent genetic predictors of decreased bone mineral density in primary biliary cirrhosis.

BACKGROUND & AIMS: Hepatic osteodystrophy is a complication of primary biliary cirrhosis (PBC). Allelic polymorphisms of the vitamin D receptor (VDR) gene are related to bone mineral density (BMD) in normal cohorts and those with primary osteoporosis. We sought to establish the prevalence of reduced bone mass in PBC, correlate BMD with VDR gene polymorphisms, and identify risk factors for the development of hepatic osteodystrophy. METHODS: Seventy-two female patients with PBC were evaluated prospectively. Clinical information, BMD assessment, disease severity, and osteoporosis risk factors were documented, and multivariate regression modeling was performed. RESULTS: Twenty-four percent of the patients were osteoporotic at the lumbar spine and 32% at the femur. Severe bone loss (z score <-2.0) occurs 4 times more frequently in patients with PBC compared with controls. Body weight (P = 0.003) and postmenopausal status (P = 0.012) correlated independently with BMD. VDR genotype (P = 0.01) correlated with lower BMD at the spine only. CONCLUSIONS: Osteoporosis is a common complication of PBC. VDR genotype predicts lower BMD in patients with PBC. Studies are warranted to investigate the mechanism(s) by which VDR as well as other candidate genes may contribute to the development of hepatic osteodystrophy in PBC.

Adult↗

Low glucocorticoid receptor alpha/beta ratio in T-cell lymphoblastic leukemia.

Glucocorticoid therapy is pivotal in the treatment of acute lymphoblastic leukemia (ALL); it reduces cell proliferation, promotes cell cycle arrest, and induces cell death by apoptosis. The sensitivity of leukemic cells to glucocorticoids was previously related to the cell concentration of 3[H]dexamethasone-binding sites. The latter represents the classic glucocorticoid receptor (GR) isoform alpha that binds ligand and modulates the transcription rates of glucocorticoid-responsive genes. In ALL, lymphoblasts of T-lineage are less sensitive to glucocorticoids than cells of the B-lineage. The alternatively spliced GR isoform (GRP), which exerts a dominant negative effect on GRalpha-mediated transcriptional activity, has been proposed as a possible mediator of glucocorticoid resistance. In this study, we determined the amount of GRalpha and GRbeta in mononuclear cells from 13 newly diagnosed and untreated children with ALL and 9 controls by quantitative Western analysis. Generally, leukemic patients expressed 6 times less GRalpha (ALL= 0.54 +/- 1.1; controls = 3.1 +/- 0.9; p < 0.01) than controls, but the same amount of GRbeta (ALL=3.62 +/- 3.3; controls = 3.6 +/- 3.4). ALL patients with T-cell disease had a much lower GRalpha (0.09 +/- 0.1; p < 0.01) but a similar or slightly higher GRbeta (5.98 +/- 3.9; p = 0.1) expression than controls, with a GRalpha/GRbeta ratio 15 times smaller than controls. Mononuclear leukocytes of T-cell lineage expressed significantly lower GRalpha (p = 0.04) and higher GRbeta (p < 0.01) than cells of the pre-B immunophenotype, with a 10 times smaller ratio. We conclude that the combination of low GRalpha and normal-to-high GRbeta expression in leukemic lymphoblasts might represent one of the mechanisms responsible for their reduced glucocorticoid sensitivity; this is more pronounced in T-lineage cells.

Adolescent↗

The clinical chemistry of inorganic sulfate.

Although inorganic sulfate is an essential and ubiquitous anion in human biology, it is infrequently assayed in clinical chemistry today. Serum sulfate is difficult to measure accurately without resorting to physicochemical methods, such as ion chromatography, although many other techniques have been described. It is strongly influenced by a variety of physiological factors, including age, diet, pregnancy, and drug ingestion. Urinary excretion is the principal mechanism of disposal for the excess sulfate produced by sulfur amino acid oxidation, and the kidney is the primary site of regulation. In renal failure, sulfoesters accumulate and hypersulfatemia contributes directly to the unmeasured anion gap characteristic of the condition. In contrast, sulfate in urine is readily assayed by a number of means, particularly nephelometry after precipitation as a barium salt. Sulfate is most commonly assayed today as part of the clinical workup for nephrolithiasis, because sulfate is a major contributor to the ionic strength of urine and alters the equilibrium constants governing saturation and precipitation of calcium salts. Total sulfate deficiency has hitherto not been described, although genetic defects in sulfate transporters have been associated recently with congenital osteochondrodystrophies that may be lethal. New insights into sulfate transport and its hormonal regulation may lead to new clinical applications of sulfate analysis in the future.

Bodily Secretions↗