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S M Moe

Publications and source records attributed to S M Moe.

At least 19 recordsLinked to original sources

The mechanisms of uremic serum-induced expression of bone matrix proteins in bovine vascular smooth muscle cells.

We have previously found that uremic human serum upregulates RUNX2 in vascular smooth muscle cells (VSMCs), and that RUNX2 is upregulated in areas of vascular calcification in vivo. To confirm the role of RUNX2, we transiently transfected a dominant-negative RUNX2 (DeltaRUNX2) construct in bovine vascular smooth muscle cells (BVSMCs). Blocking RUNX2 transcriptional activity significantly decreased uremic serum induced alkaline phosphatase (ALP) activity (268+/-34 vs 188+/-9.5 U/g protein, P<0.05) and osteocalcin expression (172+/-17 vs 125+/-9 ODU, P<0.05). To determine the mechanism by which uremic serum upregulates RUNX2, we examined cell signaling pathways. BVSMCs were incubated in the presence or absence of inhibitors and RUNX2 expression and ALP activity were determined. The results demonstrate that the cyclic AMP (cAMP)/protein kinase A (PKA), but not protein kinase C, signaling pathway is involved in uremic serum-induced RUNX2 expression and ALP activity in BVSMCs. To examine potential uremic 'toxins', we measured bone morphogenetic protein (BMP)-2 concentration and found that uremic serum contained increased BMP-2 (uremic serum=169+/-33 pg/ml, normal serum=117+/-15 pg/ml, P<0.05). The incubation of BVSMCs with noggin, an inhibitor of BMP, decreased RUNX2 expression. In addition, BMP-2 secretion progressively increased during calcification and uremic serum enhanced its secretion compared to normal serum. In conclusion, this study demonstrates that RUNX2 transcriptional activity is critical in uremic serum-induced bone matrix protein expression in BVSMCs and that the cAMP/PKA pathway is involved. BMP-2 is also increased in uremic serum and can upregulate RUNX2 and calcification in vitro in VSMCs.

Alkaline Phosphatase↗

Vascular calcification: Hardening of the evidence.

In the past several years, basic-science studies have shown that vascular calcification is an active, cell-mediated process. It is increased in the uremic milieu and with hyperphosphatemia and therefore should be preventable. Additional advances in imaging techniques have facilitated the diagnosis of arterial calcification, a critical initial step in the translation of this knowledge to patient care.

Calcinosis↗

Vascular calcification and renal osteodystrophy relationship in chronic kidney disease.

Cardiovascular disease and stroke account for 60-70% of all deaths in patients with end-stage renal disease (ESRD), at a risk that is 10-20-fold the age- and sex-matched general population. There is also increased coronary artery calcification and increased cardiovascular mortality in chronic kidney disease (CKD) and dialysis patients compared with the general population. Bone is similarly abnormal in CKD. There is an increased incidence of low bone mass and fractures in dialysis patients compared with the general population. Furthermore, a hip fracture in a dialysis patient is associated with a doubling of the mortality observed in nondialysis patients with a hip fracture. These two problems may be linked, as cross-sectional studies have demonstrated an inverse relationship between osteoporosis and coronary artery calcification in the general population and in ESRD patients. In vitro and ex vivo, there is clear evidence that vascular calcification is an active cell-mediated process, made worse by disorders of mineral metabolism. Many factors known to be associated with cardiovascular disease in CKD patients can directly increase calcification in vitro. In addition, in CKD, there are many mechanisms by which bone may adversely affect vascular calcification including disorders of bone remodelling, altered secretion of parathyroid hormone (PTH), hyperphosphatemia, hypercalcaemia, use of calcium based binders, and excessive vitamin D therapy. The coexistence of vascular risk factors and abnormal bone represent a double threat to the well being of patients with CKD.

Bone Remodeling↗

Distal calcific uremic arteriolopathy in a hemodialysis patient responds to lowering of Ca x P product and aggressive wound care.

Calcific uremic arteriolopathy (CUA; calciphylaxis), is reported in approximately 4% of patients receiving hemodialysis, and is characterized by skin lesions that may include firm plaques or subcutaneous nodules. The syndrome has been associated with the use of calcium-containing phosphate binders, high serum phosphorus levels, and elevated calcium x phosphorus (Ca x P) product. This report describes a 73-year-old white male with chronic renal failure due to diabetes mellitus and hypertension, who had been on home hemodialysis for 3 years. He developed CUA after an acute elevation in serum phosphorus (8.1 mg/dl) and Ca x P product (84.2), with painful skin lesions that rapidly progressed to become circumferentially located around the entire lower left extremity. The patient declined amputation, opting for a treatment approach that included aggressive management of phosphorus and calcium, more frequent dialysis, and rigorous wound care. All calcium-containing phosphate binders were discontinued. The patient was switched from calcitriol to paricalcitol, a less calcemic form ofvitamin D replacement therapy, from which he was slowly weaned. Dialysis dose and frequency was also increased to 4 hours, 6 times weekly. The patient was given sevelamer hydrochloride (Renagel)--a calcium-free phosphate binder--with meals at an initial dose of 6.4 g/day. After 5 months, the dose was increased to 8 g/day, with additional dietary counseling to restrict phosphorus intake. At this point, serum phosphorus decreased to 4.9 mg/dl and calcium levels had fallen to 8.5 mg/dl, compared to 9.5 - 10.4 mg/dl prior to diagnosis of CUA with an overall decline in the Ca x P product. Significant healing of the lesions was noted at 8 months following diagnosis, with near-total healing by 12 months. Our studies support that lowering of elevated serum phosphorus, calcium, and Ca x P product, together with aggressive wound care may contribute to the successful outcome of patients with CUA.

Aged↗

beta(2)-Microglobulin increases the expression of vascular cell adhesion molecule on human synovial fibroblasts.

BACKGROUND: beta(2)-Microglobulin (beta(2)m) amyloidosis is a destructive articular disease that affects patients on dialysis. The disease presentation is similar to other forms of arthritis in which adhesion molecules are felt to be pathogenic. Therefore, we hypothesized that beta(2)m directly increases the expression of vascular cell adhesion molecule-1 (VCAM-1) by synovial fibroblasts. We also examined the effect of alteration of beta(2)m by advanced glycation end products on this cellular response. METHODS: Human synovial fibroblasts were isolated and incubated with beta(2)m with and without alteration with advanced glycation end products. VCAM-1 expression was determined by immunohistochemistry, flow cytometry, and Western blot and Northern blot analyses. RESULTS: beta(2)m increased the protein expression of VCAM-1 by synovial fibroblasts in a dose-dependent manner. beta(2)m altered with advanced glycation end products had no effect. However, all forms of beta(2)m increased VCAM-1 mRNA. beta(2)m also increased the adhesion of peripheral blood mononuclear cells to synovial fibroblasts. CONCLUSION: beta2m directly increases the expression of VCAM-1 by synovial fibroblasts, indicating that synovial fibroblasts may play a key role in the pathogenesis of beta(2)m amyloidosis.

Amyloidosis↗

Calciphylaxis is associated with hyperphosphatemia and increased osteopontin expression by vascular smooth muscle cells.

Calciphylaxis or calcific uremic arteriolopathy (CUA) is a fatal disease in dialysis patients due to calcification of cutaneous blood vessels. The pathogenesis has been attributed to elevated parathyroid hormone (PTH). However, recent studies evaluating vascular calcification in nondialysis patients have found that the smooth muscle cells play an active role, including production of the bone matrix protein osteopontin. To examine the involvement of various clinical parameters and smooth muscle cells of CUA, we performed a case-control analysis comparing 10 CUA patients with our current dialysis patients. Available histologic sections were immunostained for osteopontin, markers of smooth muscle cells, endothelial cells, and macrophages. Compared with our current dialysis population, patients with CUA were more likely to be obese, white, and female (P < 0.02). Comparison of laboratory values found CUA patients with lower serum albumin, greater serum phosphorus, and greater calcium X phosphorus product (P < 0.01). In contrast, there was no difference in the concentration of PTH or calcium between the 2 groups. Immunostaining of calcified blood vessels showed that all calcified vessels stained positive for osteopontin, whereas all the noncalcifed vessels showed no osteopontin localization. Staining for smooth muscle alpha-actin decreased in the medial layer with calcification, with cells appearing to be sloughed off, leading to near occlusion of the vessel lumen. Our case-control study demonstrates that hyperphosphatemia and an elevated calcium X phosphorus product is associated with CUA. Histologic examination suggests that the calcification is associated with increased expression of osteopontin by smooth muscle cells.

Adult↗

A placebo-controlled trial to evaluate immunomodulatory effects of paricalcitol.

Calcitriol has shown a benefit in various small uncontrolled studies of ex vivo immune function. We hypothesized that paricalcitol, a new vitamin D derivative, will have a positive effect on the immune system with minimal adverse effects on calcium homeostasis. Thirty-one hemodialysis patients not administered vitamin D because of low intact parathyroid hormone (PTH) levels were randomized to placebo or 4 microg of paricalcitol intravenously with the hemodialysis session three times weekly for 12 weeks. Effects on in vivo and ex vivo assessments of immune function were evaluated. All patients achieved the target dose of paricalcitol. Twenty patients were anergic at the start of the study; 4 of 11 patients in the paricalcitol group and 0 of 9 patients in the placebo group converted to reactive (P = 0.09). The in vivo response to standard hepatitis B booster vaccine and in vitro proliferation and release of interleukin-2 (IL-2), IL-6, tumor necrosis factor-alpha, and interferon-gamma from stimulated lymphocytes were not different between the groups. In contrast to clinical immune effects, paricalcitol increased serum calcium levels and decreased PTH and bone alkaline phosphatase levels (all P < 0.05). However, hypercalcemia was infrequent. In vitro experiments showed that paricalcitol led to greater dose-dependent thymidine uptake than calcitriol in lymphocytes isolated from either dialysis patients or control subjects. Paricalcitol has a tendency toward improving delayed hypersensitivity reactions, but did not have other proimmune effects. However, as expected, paricalcitol had significant effects on calcium homeostasis compared with placebo. Thus, patients with low PTH levels are unlikely to experience the proimmune effects of vitamin D therapy without more profound and potentially adverse oversuppression of PTH.

Adult↗

Current issues in the management of secondary hyperparathyroidism and bone disease.

Recent research has demonstrated active bone-like remodelling of vascular tissue in dialysis and non dialysis patients. Cross-sectional studies indicate that the presence of vascular calcification is inversely related to bone mass. Theoretically, the relationship implies that maintaining normal bone turnover and mass may help to decrease vascular calcification. In addition, it is now apparent that phosphorus and the Ca x P product need to be kept as close to normal as possible. Thus, the present goal should be a serum phosphorus of 3.5-5.5 mg/dL, a Ca x P product of <55 mg/dL, and a PTH of around 150-200 pg/mL with the intact assay. Ten years ago, those goals would have been impossible. However, new pharmacologic agents will make their achievement much more realistic.

Bone Remodeling↗

beta2-microglobulin induces MMP-1 but not TIMP-1 expression in human synovial fibroblasts.

BACKGROUND: beta2-Microglobulin (beta2m) amyloidosis is a destructive articular disease that causes significant morbidity in patients undergoing hemodialysis. The amyloid deposits contain beta2m, some of which is altered with advanced glycation end products (AGE-beta2m). The deposits are located principally in joint structures, with adjacent degradation of cartilage and bone. We hypothesized that one of the mechanisms by which beta2m induces joint destruction is to induce the release of matrix metalloproteinase-1 (MMP-1), but not tissue inhibitor of metalloproteinase-1 (TIMP-1), from synovial fibroblasts. METHODS: To test this hypothesis and determine the role of AGE-beta2m, we incubated human osteoarthritic synovial fibroblasts in the presence and absence of beta2m and AGE-beta2m and measured the release of interstitial collagenase (MMP-1) and/or TIMP-1 by enzyme-linked immunosorbent assay and Northern blot analysis. RESULTS: beta2m and AGE-beta2m at 10 and 25 microg/mL induced the release of MMP-1 from human osteoarthritic synovial fibroblasts at 24 hours. In contrast, there was no increased release of TIMP-1, leading to an increase in the MMP-1/TIMP-1 ratio indicative of uncontrolled collagenolysis. A similar dose response was observed at 48 hours, except that AGE-beta2m had no effect over control cultures. MMP-1 mRNA expression by Northern blot analysis paralleled these findings. The source of the fibroblasts did not alter the results. Finally, we demonstrated that doxycycline, a treatment for arthritis, can inhibit the release of MMP-1 from synovial fibroblasts incubated with beta2m. CONCLUSION: beta2m, at physiologically relevant concentrations, induces the release of MMP-1 without concomitant release of TIMP-1 from human synovial fibroblasts, leading to uncontrolled collagenolysis. The alteration of beta2m with AGE did not alter this effect at 24 hours, but blocked the effect at 48 hours. These findings may account for the tissue destruction seen in beta2m amyloidosis.

Amyloidosis↗

Osteoporosis in end-state renal disease.

Maintaining the intricate bone mineral homeostasis in patients with chronic renal failure and renal osteodystrophy is a complex and challenging process. In addition to the well described high-turnover bone disease caused by secondary hyperparathyroidism and low-turnover disease in the form of osteomalacia (either from aluminum or a dynamic bone disease) osteopenia also is present in end-stage renal disease patients. In contrast to abnormalities in the ability of bone to remodel, osteopenia is a deficiency in bone mass or volume. The prevalence of fractures in dialysis patients, regardless of histomorphometry appears to exceed that observed in elderly women. This osteopenia that occurs in chronic renal failure patients secondary to multiple factors that include hypogonadism, medications (such as corticosteroids), immobilization, and the typical osteopenia associated with aging. All of these factors amplify the risk of fracture in dialysis patients.

Bone Density↗

Safety and efficacy of pulse and daily calcitriol in patients on CAPD: a randomized trial.

BACKGROUND: Calcitriol therapy is the mainstay of therapy for the treatment of secondary hyperparathyroidism. Oral administration of calcitriol is necessary in CAPD patients, but no studies have directly compared different routes of administration in this patient population. METHODS: To determine if the peak serum calcitriol level (pulse therapy) is more important than the total delivered dose, we randomized CAPD patients with mild to moderate secondary hyperparathyroidism to receive either pulse (3.0 microg twice a week, n = 10) or daily (0.75 microg a day, n = 8) oral calcitriol in comparable weekly doses. The main comparison was the rate of decline of serum intact parathyroid hormone (PTH) levels to reach the desired end-point of 100 pg/ml. The patients were dialysed with low-calcium dialysate and received only calcium-containing phosphate binders. RESULTS: Pharmacokinetic analysis after a single dose of 3.0 microg (pulse) vs 0.75 microg (daily) revealed 1,25(OH)2-vitamin D levels to be higher in the pulse group at 3 and 6 h, but equivalent by 12 h. The area under the curve for 1 week of daily and 1 week of pulse therapy was equal. The patients in the 2 arms had equivalent basal serum levels of PTH (pulse = 562 +/- 291 vs daily = 454 +/- 113 pg/ml), calcium (pulse = 2.32 +/- 0.20 vs daily = 2.32 +/- 0.12 mmol/l) and phosphorus (pulse = 1.32 +/- 0.52 vs daily = 1.35 +/- 0.26 mmol/l). The time required for the PTH to decrease to 100 pg/ml and the rate of decline in PTH were similar (time: pulse = 14.2 +/- 6.8 weeks, daily = 12.2 +/- 7 weeks; rate: pulse = 7.4 +/- 4.2 vs daily = 8.4 +/- 4.2% PTH/week; P = NS). The serum calcium increased similarly in both groups. Hypercalcaemia (> 2.9 mmol/l) was rare (pulse = 3, daily = 2 episodes). CONCLUSIONS: This study demonstrates that pulse and daily calcitriol are similarly effective and safe for the treatment of mild to moderate secondary hyperparathyroidism in CAPD patients despite higher peak levels of 1,25(OH)2-vitamin D with pulse therapy.

Adult↗

The treatment of steroid-induced bone loss in transplantation.

Osteopenia after transplantation is a significant cause of morbidity. Despite the lack of randomized, placebo-controlled trials in renal transplantation, there is literature supporting both the prevention and treatment of existing corticosteroid-induced osteoporosis with antiresorptive agents, such as calcitonin and bisphosphonates. The newer pharmacologic agents, nasal spray calcitonin and alendronate, have shown promising results in postmenopausal osteoporosis, and their ease of administration and low incidence of side effects make them ideal for renal transplant patients.

Bone Diseases, Metabolic↗

Calcitriol and the parathyroid hormone-ionized calcium curve: a comparison of methodologic approaches.

Investigations of the effects of calcitriol on the inverse sigmoidal relationship between parathyroid hormone (PTH) and ionized calcium (iCa) have yielded contradictory conclusions, possibly because of variations in experimental and analytical approaches. To clarify the existing literature, PTH-iCa curves were constructed by inducing hypo- and hypercalcemia through alterations in dialysate calcium concentration in eight hemodialysis patients with mild to moderate secondary hyperparathyroidism. The effects of low (metabolic acidosis) versus normal bicarbonate dialysis were compared before and after 4 wk of intravenous calcitriol, in a cross-over design. The PTH-iCa curves were primarily evaluated by using a four-parameter model. In addition, a variety of alternative published analytic approaches were examined and PTH-iCa curve slopes were further evaluated after normalization by (maximum - minimum PTH). The latter partially corrects for gland mass and cell-secretory capacity, and therefore yields a purer measure of the sensitivity of secretory activity to changes in iCa. The results of the study indicate that calcitriol decreased basal, maximal, and minimal PTH and non-normalized slope (all P < 0.05), but did not affect set point or normalized slope, independent of the specific analytic approach. Acute metabolic acidosis did not affect the PTH-iCa curve. Thus, intravenous calcitriol appears to decrease parathyroid gland functional mass, as reflected by decreases in maximal and minimal PTH levels, but does not affect the sensitivity of the parathyroid gland to changes in iCa, as set point and normalized slope were unaffected.

Adult↗

Role of IL-1 beta and prostaglandins in beta 2-microglobulin-induced bone mineral dissolution.

beta 2-microglobulin (beta 2m) induces an osteoclast-mediated net calcium efflux from neonatal mouse calvariae which occurs only after 48 hours of incubation, suggesting that beta 2m acts via other growth factors. To further test this hypothesis, calvariae were incubated with and without beta 2m in the presence of the prostaglandin inhibitor indomethacin, anti-interleukin-1 beta antibody (anti-IL-1 beta), or interleukin-1 beta receptor antagonist (IL-1 beta RA). The addition of beta 2m to the culture medium stimulated, whereas indomethacin inhibited basal calcium efflux following 48 hours. However, the difference (delta) between the calcium efflux induced in calvariae incubated with and without beta 2m in basal medium and that in calvariae incubated with and without beta 2m in indomethacin supplemented medium was similar, suggesting a prostaglandin independent mechanism. There was a time dependent increase in PGE2 in basal medium which was unaffected by beta 2m. In contrast, pre-incubating calvariae with either anti-IL-1 beta or IL-1 beta RA did not alter basal calcium efflux but completely blocked the beta 2m induced calcium efflux. Anti-IL-1 beta had no effect on the basal release of beta-glucuronidase but partially blocked the beta 2m induced release of beta-glucuronidase. Thus, the beta 2m-induced calcium efflux observed in neonatal mouse calvariae is dependent on interleukin-1 beta but not prostaglandins.

Animals↗

Uremic encephalopathy.

The neurologic manifestations of renal failure are variable, nonspecific and most likely result from multiple metabolic derangements. Commonly used neurodiagnostic tests may be abnormal but are generally nondiagnostic. The EEG, although nonspecific, correlates with clinical symptoms and may be of diagnostic value if serial studies are performed. The pathophysiology of uremic encephalopathy is not well understood and multiple potential "uremic toxins" have been evaluated. Of these, parathyroid hormone is the only substance to be clearly linked to clinical findings. It is likely that other, even unidentified toxins, may play a role in the complex pathogenesis of neurologic disease associated with renal failure.

Brain Diseases↗

Maintenance of bone mass in patients receiving dialytic therapy.

To determine what factors contribute to and change bone mineral density (BMD) in dialysis patients, serial lumbar spine dual x-ray absorptiometry studies were analyzed by stepwise regression analysis in 67 black dialysis patients. The patients were 50.5 +/- 2.0 years of age (mean +/- SE) and 49% were men; the patients had received dialytic therapy for 3.7 +/- 0.5 years. The mean initial BMD z-score was 0.147 +/- 0.182. By cross-sectional analysis, the BMD increased in the male and premenopausal female patients but decreased in the postmenopausal female patients by 2.5% g/cm2/decade of life, less than that observed in black patients with normal renal function. Univariate analysis and stepwise regression analysis demonstrated radiographic evidence of osteopenia (beta-coefficient = -0.180 +/- 0.050; P = 0.001) and prior parathyroidectomy (beta-coefficient = 0.133 +/- 0.070; P = 0.054) as the only variables significantly correlated to the BMD. The effects of biochemical variables and different treatments on the delta BMD, calculated as the difference between each patient's first and second BMDs divided by the interval in years, were evaluated by stepwise regression analysis in 41 patients. The mean interval between the two BMDs was 18.4 +/- 1.02 months (range, 5 to 34 months) and the delta BMD was 0.025 +/- 0.018 g/cm2/yr, increasing in 65% of the patients. By univariate and stepwise regression analysis, the mean monthly serum total alkaline phosphatase concentration was the only variable that correlated with the delta BMD (beta-coefficient = 0.0001; P = 0.030).(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Glomerular disease and urinary Sézary cells in cutaneous T-cell lymphomas.

We report three cases of biopsy-documented renal glomerular disease occurring in patients with cutaneous T-cell lymphomas. One patient had immunoglobulin A (IgA) nephropathy and another had membranous nephropathy. The remaining patient had an immune complex glomerulonephritis without immunofluorescent evidence of IgA, but with mesangial deposits and a clinical course notable for stable renal function, minimal proteinuria, and episodic gross hematuria of renal origin. These three cases, along with IgA nephropathy in two of the four previously reported cases, suggest a possible association between cutaneous T-cell lymphoma and this glomerular lesion. In addition, Sézary cells were observed in the urine of two patients, one without evidence of glomerular disease. The prognostic value of this new observation is unknown.

Adult↗

Safety and efficacy of long-term treatment of secondary hyperparathyroidism by low-dose intravenous calcitriol.

To assess the safety and efficacy of low-dose intravenous (IV) calcitriol therapy for the treatment of secondary hyperparathyroidism, 21 hemodialysis patients with amino-terminal parathyroid hormone (N-PTH) levels greater than 4 times normal were treated for 12 to 24 months in a prospective trial. The initial dose was 0.50 microgram, which was titrated every 3 months thereafter, as dictated by predialysis calcium, phosphorus, and N-PTH concentration. Dialysate calcium concentration was 1.5 mmol/L. Low-dose IV calcitriol decreased the N-PTH concentration to 48 +/- 6% and 29 +/- 5% of baseline following 12 and 24 months of therapy, respectively. The maximum dose of calcitriol was 0.92 +/- 0.11 microgram (0.50 to 2.25 micrograms). After 12 months of therapy, serum calcium increased from 2.22 +/- 0.04 to 2.41 +/- 0.03 mmol/L (8.9 +/- 0.2 to 9.7 +/- 0.1 mg/dL) without change thereafter. Baseline serum phosphorus was 1.44 +/- 0.09 mmol/L (4.5 +/- 0.3 mg/dL), and was unaltered by calcitriol therapy. Control of serum phosphorus was achieved with calcium-containing phosphate binders, except in three patients who were subsequently withdrawn from the study after 12 months because of persistent hyperphosphatemia due to noncompliance. We conclude that long-term, low-dose IV calcitriol is a safe and effective therapy for most hemodialysis patients with secondary hyperparathyroidism. In contrast to conventional dosing regimens, low-dose IV therapy does not necessitate the use of aluminum-containing phosphate binders and/or a low-calcium dialysate bath.

Calcitriol↗