PubMed Health⌕ Search

Biomedical subjects

E Shane

Publications and source records attributed to E Shane.

At least 19 recordsLinked to original sources

Significance of unsuspected celiac disease detected at endoscopy.

BACKGROUND: Endoscopy provides an opportunity to diagnose unsuspected celiac disease. METHODS: We prospectively identified patients undergoing endoscopy for reasons other than the evaluation of diarrhea or suspected malabsorption, who had endoscopic signs in the duodenum suggestive of celiac disease and in whom villous atrophy was confirmed. Patients were assessed for nutritional deficiencies, reduced bone density, parameters of calcium metabolism, and malignancies. RESULTS: Nine patients (3 women and 6 men) were identified among 1749 patients undergoing endoscopy between January 1990 and May 1998, representing a rate of unsuspected celiac disease of 1 per 194 endoscopies. The duodenal abnormalities were as follows: reduced or absent folds in 6, scalloped folds in 5, mosaic appearance in 3, and mucosal fissures in 2. Assessment revealed iron deficiency in 5, folate deficiency in 1, osteopenia in 4, osteoporosis in 1, and hypocalciuria in 4. Three had malignancies associated with celiac disease, 2 esophageal squamous carcinomas, and 1 jejunal adenocarcinoma. CONCLUSIONS: Unsuspected celiac disease can be diagnosed at endoscopy by recognition of changes in the duodenum. When detected, patients have one or more manifestations of the disease. Celiac disease is more common in the United States than previously considered and endoscopy provides an opportunity to establish the diagnosis.

Adult↗

The contribution of testosterone to skeletal development and maintenance: lessons from the androgen insensitivity syndrome.

Although androgen status affects bone mass in women and men, an androgen requirement for skeletal normalcy has not been established. Women with androgen insensitivity syndrome (AIS) have 46,XY genotypes with androgen receptor abnormalities rendering them partially or completely refractory to androgen. Twenty-eight women with AIS (22 complete and 6 high grade partial), aged 11-65 yr, responded to questionnaires about health history, gonadal surgery, and exogenous estrogen use and underwent bone mineral density (BMD) assessment by dual energy x-ray absortiometry. BMD values at the lumbar spine and proximal femur were compared to age-specific female normative values and listed as z-scores. Average height for adults in this cohort, 174 cm (68.5 in.), was moderately increased compared with the average height of adult American women of 162.3 cm, with skewing toward higher values: 5 women exceeded 6 ft in height, and 30% of the 18 adult women with complete AIS exceeded 5 ft, 11 in. in height. The average lumbar spine and hip BMD z-scores of the 6 women with partial AIS did not differ from population norms. In contrast, the average lumbar spine BMD z-score of women with complete AIS was significantly reduced at -1.08 (P = 0.0003), whereas the average value for hip BMD did not differ from normal. When BMD was compared between women who reported good estrogen replacement therapy compliance and those who reported poor compliance, there was a significantly greater deficit at the spine for women with poor compliance (z = -2.15 +/- 0.15 vs. -0.75 +/- 0.28; P < .0001). Furthermore, hip BMD was also significantly reduced in the noncompliant group (z = -0.95 +/- .40). Comparison of BMD values to normative male standards gave z-score reductions (z = -1.81 +/- 0.36) greater than those observed with female standards. Because of the high prevalence of tall stature in this study sample, we calculated bone mineral apparent density, a variable that adjusts for differences in bone size. Even for the estrogen-compliant group, bone mineral apparent density z-scores were subnormal at both the spine (z = -1.3 +/- 0.43; P < 0.01) and the hip (z = -1.38 +/- 0.28; P = 0.017). Six women with complete AIS had sustained cortical bone fractures, of whom 3 reported multiple (>3) fractures. We conclude that even when compliance to exogenous estrogen use is excellent, women with complete AIS show moderate deficits in spine BMD, averaging close to 1 SD from normative means, and that with correction of BMD for bone size, skeletal deficits are magnified and include the proximal femur. The results suggest that severe osteopenia in some women with AIS probably reflects a component of inadequate estrogen replacement rather than androgen lack alone.

Adult↗

Mirror neurons, procedural learning, and the positive new experience: a developmental systems self psychology approach.

In summary, we are impressed with the existence of a mirror neuron system in the prefrontal cortex that serves as part of a complex neural network, including afferent and efferent connections to the limbic system, in particular the amygdala, in addition to the premotor and motor cortex. We think it is possible to arrive at an integration that postulates the mirror neuron system and its many types of associated multimodal neurons as contributing significantly to implicit procedural learning, a process that underlies a range of complex nonconscious, unconscious, preconscious and conscious cognitive activities, from playing musical instruments to character formation and traumatic configurations. This type of brain circuitry may establish an external coherence with developmental systems self psychology which implies that positive new experience is meliorative and that the intentional revival of old-old traumatic relational configurations might enhance maladaptive procedural patterns that would lead to the opposite of the intended beneficial change. When analysts revive traumatic transference patterns for the purpose of clarification and interpretation, they may fail to appreciate that such traumatic transference patterns make interpretation ineffective because, as we have stated above, the patient lacks self-reflection under such traumatic conditions. The continued plasticity and immediacy of the mirror neuron system can contribute to positive new experiences that promote the formation of new, adaptive, implicit-procedural patterns. Perhaps this broadened repertoire in the patient of ways of understanding interrelational events through the psychoanalytic process allows the less adaptive patterns ultimately to become vestigial and the newer, more adaptive patterns to emerge as dominant. Finally, as we have stated, we believe that the intentional transferential revival of trauma (i.e., the old-old relational configuration) may not contribute to therapeutic benefit. In contrast, the revival of trauma in the old-new configuration (i.e., in the presence of a helpful other who can reduce anxiety and foster eventual positive new experience) can be beneficial, as trauma research has demonstrated. This is the process that promotes new implicit-procedural learning, new-new relational configurations, and a richer understanding of the self narrative.

Brain↗

A 10-year prospective study of primary hyperparathyroidism with or without parathyroid surgery.

BACKGROUND AND METHODS: In the United States, most patients with primary hyperparathyroidism have few or no symptoms. The need for parathyroidectomy to treat all patients with this disorder has therefore been questioned. We studied the clinical course and development of complications for periods of up to 10 years in 121 patients with primary hyperparathyroidism, 101 (83 percent) of whom were asymptomatic. There were 30 men and 91 women (age range, 20 to 79 years). During the study, 61 patients (50 percent) underwent parathyroidectomy, and 60 patients were followed without surgery. RESULTS: Parathyroidectomy in patients with or without symptoms led to normalization of serum calcium concentrations and a mean (+/-SE) increase in lumbar-spine bone mineral density of 8+/-2 percent after 1 year (P=0.005) and 12+/-3 percent after 10 years (P=0.03). Bone mineral density of the femoral neck increased 6+/-1 percent after 1 year (P=0.002) and 14+/-4 percent after 10 years (P=0.002). Bone mineral density of the radius did not change significantly. The 52 asymptomatic patients who did not undergo surgery had no change in serum calcium concentration, urinary calcium excretion, or bone mineral density. However, 14 of these 52 patients (27 percent) had progression of disease, defined as the development of at least one new indication for parathyroidectomy. All 20 patients with symptoms had kidney stones. None of the 12 who underwent parathyroidectomy had recurrent kidney stones, whereas 6 of the 8 patients who did not undergo surgery did have a recurrence. CONCLUSIONS: In patients with primary hyperparathyroidism, parathyroidectomy results in the normalization of biochemical values and increased bone mineral density. Most asymptomatic patients who did not undergo surgery did not have progression of disease, but approximately one quarter of them did have some progression.

Adult↗

Bone loss and fracture after lung transplantation.

BACKGROUND: Osteoporosis is very common in patients with end-stage pulmonary disease. However, there are few prospective data on fracture incidence after lung transplantation. METHODS: We prospectively evaluated changes in bone mass, fracture incidence, and biochemical indices of bone and mineral metabolism in 30 patients who completed 1 year of observation after lung transplantation. All received calcium, vitamin D, and therapy with one or more agents that inhibit bone resorption, initiated shortly after transplantation. RESULTS: Before transplantation, only 20% of the patients had normal lumbar spine (LS) and femoral neck bone mineral density (BMD). After transplantation, 15 patients (50%) sustained significant bone loss at either the LS (-8.6+/-1.0%) or the femoral neck (-11.3+/-2.2%). Eleven (37%) patients (10 women) sustained a total of 54 atraumatic fractures. Pretransplantation LS BMD and T scores were significantly lower in those who sustained fractures (-2.809+/-0.32 versus -1.569+/-0.29; P<0.01). Fracture patients were more likely to have had pretransplantation glucocorticoid therapy (chi-square 5.687; P<0.02). The duration of pretransplantation glucocorticoid therapy was also longer in fracture patients (4.9+/-0.8 versus 1.3+/-0.4 years; P<0.001). Biochemical markers of bone resorption were significantly higher in patients who sustained bone loss and/or fractures. CONCLUSIONS: We conclude that fractures are a significant problem in the first year after lung transplantation, even in patients who receive therapy to prevent bone loss. Women with low pretransplantation BMD and a history of pretransplantation glucocorticoid therapy are at greatest risk.

Adult↗

The effects of vitamin D insufficiency in patients with primary hyperparathyroidism.

PURPOSE: Differences in the prevalence of vitamin D deficiency may explain why the frequency of symptoms in patients with primary hyperparathyroidism varies geographically. This study was performed to determine the prevalence in the United States of low 25-hydroxyvitamin D levels among patients with mild primary hyperparathyroidism, and the effect of 25-hydroxyvitamin D status on disease severity. METHODS: We studied 124 patients with mild primary hyperparathyroidism. Biochemical, bone mineral density, and bone histomorphometric indices were compared among patients whose serurm 25-hydroxyvitamin D levels were in the lowest and highest tertiles. RESULTS: Serum 25-hydroxyvitamin D levels (mean +/- SD) were in the low range of normal (21 +/- 11 ng/mL, normal 9 to 52 ng/mL). Levels were below normal in 9 (7%) patients, and below the level suggested for vitamin D "sufficiency" (20 ng/mL) in 66 (53%) patients. Those with lowest 25-hydroxyvitamin D levels had the highest parathyroid hormone levels (low tertile 158 + 66 pg/mL versus high tertile 103 +/- 2 pg/mL, P <0.0001). Other evidence of more active hyperparathyroidism in those with low 25-hydroxyvitamin D levels included higher serum alkaline phosphatase activity (114 +/- 48 U/L versus 91 +/-35 U/L, P <0.03), lower serum phosphorus levels (2.7 +/- 0.4 mg/dL, versus 3.0 +/- 0.4 mg/dL, P <0.01), and greater bone mineral density at the lumbar spine (0.94 +/- 0.03 g/cm2 versus 0.83 +/- 0.03 g/cm2, P <0.05) reflecting the protective effects of parathyroid hormone on cancellous bone. They also had enhanced bone turnover on bone biopsy. Despite the expected differences in vitamin D metabolism in African-Americans, results did not differ by race. CONCLUSION: Vitamin D insufficiency or deficiency is common among patients with mild primary hyperparathyroidism. In these patients, the effects of primary hyperparathyroidism on biochemical, densitometric, and histomorphometric indices are more pronounced.

Adult↗

Computerized bone densitometric analysis: operator-dependent errors.

PURPOSE: To determine the nature and relative frequency of operator-dependent data analysis errors in dual x-ray absorptiometry. MATERIALS AND METHODS: Over 40 months, 2,528 dual x-ray absorptiometric examinations of the forearm, femoral neck, and lumbar spine were performed by 11 technologists by using standard techniques and software. Each analysis was reviewed by a radiologist; errors were recorded and corrected. RESULTS: There were no forearm analysis errors. There were 24 (0.9%) femoral neck analysis errors, of which 23 resulted from misplacement of the analysis region. There were 33 (1.3%) spinal analysis errors, of which 24 resulted from misplacement of intervertebral disk space markers. Analysis errors of the femur and spine resulted in six misdiagnoses (0.2%). CONCLUSION: Misdiagnosis due to analysis errors is rare. Femoral neck analysis errors were easily detectable, but accurate spinal analyses depended on accurate identification of vertebral end plates and posterior elements. Nonetheless, these potentially serious errors can be detected and corrected if the analyses are reviewed and interpreted by a supervising physician who is familiar with the relevant anatomy, proper analysis techniques, and factors--such as artifacts--that adversely affect the accuracy of the analysis.

Absorptiometry, Photon↗

On the mechanism of cancellous bone preservation in postmenopausal women with mild primary hyperparathyroidism.

Several studies have demonstrated that cancellous bone mass and architecture are preserved in postmenopausal women with primary hyperparathyroidism (PHPT). To investigate the mechanism(s) that could account for this observation, we analyzed features of bone formation in 19 postmenopausal women with PHPT by bone histomorphometry. The results were compared with those from a comparable group of 34 healthy, postmenopausal women. Patients with PHPT were similar to control subjects in cancellous bone area as well as in trabecular width, separation, and number. However, in PHPT, elevations were observed in indexes of bone turnover, such as eroded surface, osteoid surface, mineralizing surface, bone formation rate at the tissue level, and activation frequency. At the level of the bone-remodeling unit, women with PHPT had significantly higher values for the wall width of trabecular bone packets (40.26 +/- 0.36 vs. 34.58 +/- 0.45 mm), the adjusted apposition rate (0.40 +/- 0.04 vs. 0.29 +/- 0.03 mm/day), and the active formation period (67.8 +/- 5.1 vs. 57.3 +/- 2.3 days). These findings are consistent with a stimulatory action of elevated PTH levels on the duration of the active bone formation phase in individual remodeling units and may account at least in part for the preservation of cancellous bone in postmenopausal women with mild PHPT.

Bone Density↗

Magnesium deficiency and bone loss after cardiac transplantation.

Magnesium depletion adversely affects many phases of skeletal metabolism and has been implicated as a risk factor in several forms of osteoporosis. Magnesium deficiency has also been reported after cardiac transplantation. To evaluate whether altered magnesium homeostasis could be related to the pathogenesis of early bone loss after cardiac transplantation, we prospectively measured serum and urinary magnesium and evaluated them with respect to biochemical indices of mineral metabolism and rates of bone loss. The study population included 60 patients (45 men, 15 women) aged 53 +/- 11 years (SD) with measurements of biochemistries and bone mineral density by dual-energy X-ray absorptiometry before and 3 months after transplantation. All received prednisone, cyclosporine A, and azathioprine, plus calcium (1000 mg) and vitamin D (400 IU). After transplantation, serum magnesium decreased by 16 +/- 15% (SD) from 2. 0 +/- 0.3 mg/dl to 1.6 +/- 0.2 mg/dl (normal 1.8-2.2 mg/dl; p < 0. 0001), accompanied by an increase in the fractional excretion of magnesium (7.1 +/- 3.9% to 13.3 +/- 5.6%; p < 0.0017). Forty-three patients with low 3-month serum magnesium levels (</= 1.7 mg/dl) sustained 41% less bone loss at the lumbar spine (4.0 +/- 4.6% vs. 6. 8 +/- 5.3%; p = 0.051) and 58% less bone loss at the femoral neck (3. 1 +/- 5.9% vs. 7.3 +/- 5.6%; p < 0.01), despite receiving similar doses of prednisone and cyclosporine A. Of the biochemical parameters measured (including renal function, serum calcium, phosphorus, vitamin D metabolites, osteocalcin, urinary calcium, and markers of bone resorption), only intact parathyroid hormone (PTH) levels, which were 40% lower in patients with low serum magnesium levels differed significantly (45 +/- 23 pg/ml vs. 74 +/- 60 pg/ml; p = 0.019). Patients with low serum magnesium levels also had evidence of lower bone turnover. In summary, a highly significant decline in serum magnesium concentrations, associated with continued urinary magnesium losses, occurs after cardiac transplantation. Patients with low serum magnesium levels had significantly lower rates of bone loss, lower serum PTH concentrations, and lower bone turnover. Although the precise mechanisms by which the reduction in serum magnesium tends to protect against bone loss in the early post-transplantation period remain to be elucidated, reduced serum PTH and lower rates of bone turnover are likely to be important factors.

Adult↗

Bone densitometry should be included in the evaluation of candidates for lung transplantation.

Bone loss and fractures are common complications of heart and liver transplantation, and are likely related to high-dose immunosuppressive therapy. We have previously demonstrated that many patients with end-stage lung disease already have osteoporosis and may be at even greater risk for fracture after lung transplantation. The purpose of this study is to determine the incidence of fracture in lung transplant recipients on osteoporosis prevention regimens, the relationship of fracture to pretransplant bone mineral density, and the impact of fracture on quality of life after lung transplantation. Twenty-one lung transplant candidates were prospectively evaluated with spine radiographs and bone mineral densitometry. Bone density was expressed as T scores, the number of standard deviations from the mean bone density of a young normal population of the same gender. Of 21 patients, 8 (38%) fractured during the first year. The mean pretransplant lumbar spine T score was significantly lower in the fracture patients (P = .03). Four of the 7 surviving fracture patients and 1 of the 10 patients who survived without fracture believed that chronic pain diminished their quality of life (X2 = 4.408; P = .04). These findings suggest that bone mineral density should be routinely included in the evaluation of lung transplant candidates. Patients with extremely low bone density or osteoporotic fracture should be counseled about the increased risk of fracture after transplantation.

Absorptiometry, Photon↗

Reversed-phase high-performance liquid chromatography of virus-like particles.

A quantitative reversed-phase high-performance liquid chromatography (RP-HPLC) method has been developed to detect the L1 subunit protein from virus-like particles (VLPs) of human papillomavirus (HPV). The method utilizes heat treatment with a buffer consisting of 50 mM Tris, pH 8.0 containing 8 M guanidine-HCl and 10% 2-mercaptoethanol to dissociate the VLPs into monomeric L1. Following dissociation, the sample is injected onto a C4 or C8 column. The L1 protein is eluted as a single, clearly resolved peak. Elution conditions have been optimized to enhance the separation of L1 from other contaminants. Based on spike recovery studies and sodium dodecyl sulfate-polyacrylamide gel electrophoretic analysis this method is suitable for quantitation of various partially purified in-process samples and can be used to facilitate purification process development.

Blotting, Western↗

Cloning of human PEX cDNA. Expression, subcellular localization, and endopeptidase activity.

Mutations in the PEX gene are responsible for X-linked hypophosphatemic rickets. To gain insight into the role of PEX in normal physiology we have cloned the human full-length cDNA and studied its tissue expression, subcellular localization, and peptidase activity. We show that the cDNA encodes a 749-amino acid protein structurally related to a family of neutral endopeptidases that include neprilysin as prototype. By Northern blot analysis, the size of the full-length PEX transcript is 6.5 kilobases. PEX expression, as determined by semi-quantitative polymerase chain reaction, is high in bone and in tumor tissue associated with the paraneoplastic syndrome of renal phosphate wasting. PEX is glycosylated in the presence of canine microsomal membranes and partitions exclusively in the detergent phase from Triton X-114 extractions of transiently transfected COS cells. Immunofluorescence studies in A293 cells expressing PEX tagged with a c-myc epitope show a predominant cell-surface location for the protein with its COOH-terminal domain in the extracellular compartment, substantiating the assumption that PEX, like other members of the neutral endopeptidase family, is a type II integral membrane glycoprotein. Cell membranes from cultured COS cells transiently expressing PEX efficiently degrade exogenously added parathyroid hormone-derived peptides, demonstrating for the first time that recombinant PEX can function as an endopeptidase. PEX peptidase activity may provide a convenient target for pharmacological intervention in states of altered phosphate homeostasis and in metabolic bone diseases.

Adult↗

Osteoporosis after organ transplantation.

Within the past 2 decades, organ transplantation has become established as effective therapy for endstage renal, hepatic, cardiac, and pulmonary disease. Regimens to prevent rejection after transplantation commonly include high-dose glucocorticoids and calcineurin-calmodulin phosphatase inhibitors (the cyclosporines and tacrolimus), which are detrimental to bone and mineral homeostasis, and are associated with rapid bone loss that is often superimposed upon an already compromised skeleton. The incidence of fracture ranges from 8% to 65% during the first year after transplantation. In general, fracture rates are lowest in renal transplant recipients and highest in patients who receive a liver transplant for primary biliary cirrhosis. Rates of bone loss and fracture are greatest during the first 6 to 12 months after transplantation. Postmenopausal women and hypogonadal men appear to be at increased risk. Although no pretransplant densitometric or biochemical parameter has yet been identified that adequately predicts fracture risk in the individual patient, low pretransplant bone mineral density does tend to increase the risk of fracture, particularly in women. However, patients may sustain fractures despite normal pretransplant bone mineral density. Although the pathogenesis of the rapid bone loss is multifactorial, prospective biochemical data suggest that uncoupling of bone formation from resorption may be in part responsible, at least during the first 3 to 6 months. Prevention of transplantation osteoporosis should begin well before transplantation. Patients awaiting transplantation should be evaluated with spine radiographs, bone densitometry, thyroid function tests, serum calcium, vitamin D, parathyroid hormone, and testosterone (in men). Therapy for osteoporosis, low bone mass, and potentially reversible biochemical causes of bone loss should be instituted during the waiting period before transplantation. In patients with normal pretransplant bone density, therapy to prevent early posttransplant bone loss should be instituted immediately following transplantation. Most pharmacologic agents available for therapy of osteoporosis have not been subject to prospective controlled studies in organ transplant recipients. However, antiresorptive drugs, such as biphosphonates, appear to hold therapeutic promise.

Bone Density↗

Bone mass and vitamin D deficiency in adults with advanced cystic fibrosis lung disease.

Osteoporosis and fractures are increasingly recognized in children and adults with cystic fibrosis. To investigate the prevalence and pathogenesis of osteoporosis and low bone mass in adults with advanced pulmonary disease due to cystic fibrosis, we examined the relationships between bone mineral density (BMD), anthropomorphic variables, pulmonary status, glucocorticoid therapy, and vitamin D concentrations. BMD of the lumbar spine, hip, and proximal radius was measured by dual energy X-ray absorptiometry in 30 white adults (16 women), age 30 +/- 2 yr (mean +/- SEM). Compared with a normal control population, the patients had significantly reduced BMD at the lumbar spine (17 +/- 3%), total hip and femoral neck (24 +/- 3% and 20 +/- 4%, respectively). The radius was significantly less demineralized (4 +/- 2%; p <= 0.003) than the other sites. Moreover, only 21% of patients with cystic fibrosis had normal BMD (T score > -1.0) at the lumbar spine, 23% at the hip sites, and 39% at the radius. Age, weight, and body mass index (BMI) were most strongly correlated with bone mass, whereas glucocorticoid therapy and pulmonary function were not predictive. Despite oral vitamin D (400 to 800 IU daily), the mean serum 25-hydroxyvitamin D (25-OHD) concentration was at the low end of the normal range (16 +/- 2 ng/ml; normal 10 to 52 ng/ml); 8 of 20 patients (40%) had frankly low (<= 10 ng/ml) levels. BMD was significantly lower in patients with low 25-OHD concentrations at the lumbar spine (0.774 +/- 0.02 versus 0.913 +/- 0.04 g/cm2; p = 0.01) and total hip (0.648 +/- 0.04 versus 0.811 +/- 0.04 g/cm2; p = 0.01). Vertebral fractures were present in 19% of subjects and 41% had a confirmed history of previous fracture. In summary, osteoporosis, low bone mass, and fractures are common in adults with advanced cystic fibrosis lung disease. Despite oral supplements, vitamin D deficiency is also common and is associated with more severe demineralization at the lumbar spine and hip. We conclude that the widespread practice of oral supplementation with 400 to 800 units of vitamin D is ineffective in maintaining normal vitamin D stores in many patients with cystic fibrosis. To ensure adequacy of vitamin D stores, measurement of serum 25-OHD should be included in the routine management of patients with cystic fibrosis.

Absorptiometry, Photon↗

Prevention of bone loss after heart transplantation with antiresorptive therapy: a pilot study.

BACKGROUND: Heart transplantation, with its attendant glucocorticoid and cyclosporine therapy, has deleterious effects on the skeleton. We have previously reported rapid bone loss and high fracture rates (36% of patients) during the first year after heart transplantation. The bone loss was accompanied by declines in serum 1,25-dihydroxyvitamin D and osteocalcin levels and increased urinary excretion of markers of bone resorption (hydroxyproline, pyridinoline, and deoxypyridinoline). We therefore investigated whether bone loss could be prevented by bisphosphonates, agents that inhibit bone resorption. METHODS: Serial measurements of bone mineral density (BMD) and biochemical indexes of mineral metabolism were compared in 18 group A patients who received a single intravenous infusion of pamidronate (60 mg) within 2 weeks of heart transplantation, followed by 4 cycles of oral etidronate (400 mg daily for 14 days every 3 months) and oral calcitriol 0.25 microg daily, to those of 52 patients who previously underwent transplantation (group B) who did not receive antiresorptive therapy. Both groups received elemental calcium 1000 mg and vitamin D 400 IU daily. RESULTS: At 12 months after transplantation, there was virtually no lumbar spine bone loss in group A patients, whereas lumbar spine BMD had declined significantly in group B patients (0.2% +/- 0.9% vs 6.8% +/- 1.0%, respectively; P < .0001). Similarly, femoral neck BMD fell by 10.6% +/- 1.1% in group B patients and by only 2.7% +/- 1.4% in group A patients (P < .0001). Three incident vertebral fractures occurred in two group A patients, whereas 17 group B patients sustained 30 incident vertebral fractures, one hip fracture and three episodes of rib fractures (P < .02; test of proportions). With respect to markers of bone resorption, urinary deoxypyridinoline fell by 51% +/- 9% in group A patients and increased by 65% +/- 22% in group B patients by 3 months after transplantation (P < .0001). CONCLUSION: In summary, heart transplant recipients treated with bisphosphonates and replacement doses of calcitriol sustained less bone loss and fewer fractures than those treated with calcium and vitamin D. We conclude that bisphosphonate therapy, in conjunction with calcitriol, shows promise for prevention of transplantation-related osteoporosis.

Absorptiometry, Photon↗

Bone mass, vitamin D deficiency, and hyperparathyroidism in congestive heart failure.

PURPOSE: In contrast to renal and hepatic failure, congestive heart failure (CHF) has not been associated with a defined metabolic bone disorder. However, low bone mass has been reported in patients with CHF who receive a cardiac transplant. Both the pathophysiology and therapy of CHF may influence bone and mineral homeostasis and evidence that calciotropic hormones may affect cardiovascular function is accumulating. Therefore, we evaluated patients with severe CHF to determine the prevalence of osteoporosis and to characterize relationships between mineral homeostasis, bone turnover, bone mass, and severity of CHF. PATIENTS AND METHODS: One hundred one patients (79 men and 22 women, aged 25 to 70 years) with severe CHF (New York Heart Association functional class III or IV) referred for consideration for cardiac transplantation were evaluated with measurements of serum 25-hydroxyvitamin D (25-OHD), 1,25 dihydroxyvitamin D [1,25(OH)2D], intact parathyroid hormone (PTH), markers of bone turnover (serum osteocalcin, urinary hydroxyproline, and pyridinium crosslinks); bone mineral density (BMD) by dual energy x-ray absorptiometry was measured in 91 patients. Left ventricular ejection fraction (LVEF) and resting cardiac output (CO) were determined in 88 and maximal treadmill exercise testing and peak oxygen consumption were performed in 45 patients. RESULTS: Osteoporosis (T score < or = -2.5) was present in 7% at the lumbar spine, 6% at the total hip, and 19% at the femoral neck. Osteopenia (T scores between -1.0 and -2.5) was present in 43% at the lumbar spine, 47% at the total hip, and 42% at the femoral neck. Women were more severely affected (P = 0.007). Frankly low serum 25-OHD (< or = 9 pg/mL) and 1,25(OH)2D (< or = 15 pg/mL) levels were found in 17% and 26% of the patients, respectively, and elevated serum PTH (> or = 65 pg/mL) in 30%. Both low serum 1,25(OH)2D and increased serum PTH were associated with prerenal azotemia. Low serum vitamin D metabolites were associated with biochemical evidence of increased bone turnover, but BMD did not differ by vitamin D or PTH status. Patients with more severe CHF had significantly lower vitamin D metabolites and higher bone turnover, whereas elevated PTH was associated with better LVEF (21 +/- 1 versus 18 +/- 1%; P = 0.05) and correlated positively with resting CO (R = 0.220; P = 0.04). CONCLUSIONS: Osteopenia or osteoporosis were observed in approximately half of these patients with severe CHF. Abnormal calciotropic hormone concentrations, also common, were associated with evidence of increased bone resorption but were not related to BMD in this cross-sectional study. Abnormal concentrations of calciotropic hormones were related to the severity of cardiovascular compromise. Because both low BMD and low serum concentrations of 25-OHD in patients with CHF are associated with higher rates of bone loss and fracture after cardiac transplantation, patients should be evaluated for and receive appropriate therapy for these disorders.

Absorptiometry, Photon↗

Bone loss and turnover after cardiac transplantation.

Cardiac transplantation is associated with increased prevalence and incidence of fracture, and rapid bone loss has been reported during the first posttransplant year. To define further the pattern and etiology of bone loss after cardiac transplantation, we enrolled 70 patients (52 men and 18 women) in a prospective 3-yr study. Bone densitometry (BMD) and biochemical indexes of mineral metabolism were performed before and at defined times after transplantation. Despite supplementation with elemental calcium (1000 mg/day) and vitamin D (400 IU/day), the mean rate of bone loss during the first year was 7.3 +/- 0.9% (+/- SEM) at the lumbar spine and 10.5 +/- 1.1% at the femoral neck. The rate of bone loss slowed (P < 0.001 compared to year 1) at both sites (0.9 +/- 0.9% and 0.1 +/- 1.0%, respectively) during the second year. During the third year, lumbar spine BMD increased at a rate of 2.4 +/- 0.8%/yr (P < 0.02 compared to year 2), but femoral neck BMD did not change. At the radius, the rate of decline in BMD was negligible during the first year (0.9 +/- 0.5%), but was significant during the second (2.1 +/- 0.6%; P < 0.01) and third (2.9 +/- 0.8%; P < 0.03) years. Evaluation of the pattern of bone loss during the first year demonstrated that mean lumbar spine BMD decreased rapidly during the first 6 months, after which there was no further decline. In contrast, femoral neck BMD continued to fall at an annualized rate of 8.2 +/- 1.3% during the second half of the year. The pattern and rates of bone loss were similar in men and women. Biochemistries revealed decreases in serum testosterone and osteocalcin and increases in all bone resorption markers 1 and 3 months after transplantation, with a return to baseline by 6 months. Higher rates of bone loss were associated with greater exposure to prednisone, lower serum concentrations of vitamin D metabolites, greater suppression of osteocalcin, higher levels of bone resorption markers, and, in men, lower serum testosterone concentrations. We conclude that rapid bone loss is primarily confined to the initial year after transplantation. During the first 6 months, bone loss is accompanied by alterations in markers of bone turnover consistent with biochemical uncoupling of bone formation and resorption. Greater exposure to glucocorticoids, lower serum concentrations of vitamin D metabolites and testosterone, and higher bone turnover were associated with more rapid bone loss.

Adult↗