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Should bisphosphonates be the treatment of choice for metastatic bone disease?

Bone metastases commonly occur in cancer patients, most frequently in patients with breast and prostate cancers, and are associated with considerable morbidity. Cancer cells secrete a number of paracrine factors that stimulate osteoclast function, resulting in osteolysis. Bisphosphonates are potent inhibitors of both normal and pathologic osteolysis, localizing preferentially to sites of active bone formation and resorption. Clinical studies have shown that long-term bisphosphonate treatment in patients with breast cancer and multiple myeloma decreases skeletal morbidity, skeletal-related events, pain, and improves quality of life. On the basis of the available clinical evidence, bisphosphonates should be part of the standard treatment for breast cancer and multiple myeloma. Currently, there is insufficient data to recommend their routine use for other types of tumors. Preliminary evidence indicates that bisphosphonates may prolong survival in cancer patients, but this needs to be confirmed in controlled clinical trials. Bisphosphonate treatment should start as soon as bone metastases have been identified and be continued for as long as they are a significant clinical problem. At present, the adjuvant role of bisphosphonates is unproven. The new third-generation agents in clinical development, ibandronate and zoledronate, should lead to improvements in therapy compared with current treatment regimens. Improvement in treatment could also be provided by better selection of patients for therapy.

Bone Neoplasms↗

Osteoid in bones of elderly patients without bone disease.

Bone samples were taken at post-mortem examination by Jamshidi needles from 88 elderly patients who were known to have normal bone biochemistry in life. The extent of osteoid in these samples is quantitatively described. In patients with normal creatinines the relative osteoid area ranges from 0 to 3.7% and trabecular osteoid surface percentage ranges from 0 to 23%, but higher values were seen in those with raised creatinines. Osteoid extent did not vary with age, sex or time of year. Descriptions of other series of control bone biopsies in the literature are reviewed and it is suggested that relative osteoid area greater than 3.5% or osteoid surfaces greater than 25% should be considered excess osteoid.

Aged↗

Measles virus RNA detected in Paget's disease bone tissue by in situ hybridization.

Morphological and immunocytological studies have demonstrated the presence of paramyxovirus antigens in Paget's bone disease tissue and in particular antigens related to measles virus and respiratory syncytial virus. To examine the relationship between measles virus and Paget's bone disease we used in situ hybridization and a cloned measles virus DNA probe specific for the nucleocapsid protein to detect and locate measles virus RNA sequences in Paget's bone tissue. In five patients with the disease, measles virus RNA sequences were detected not only in 80 to 90% of the multinucleated osteoclasts where there is morphological and immunocytological evidence of measles virus activity but also in 30 to 40% of mononucleated bone cells, mainly osteoblasts, osteocytes, fibroblasts and lympho-monocytes. In contrast, no hybridization was observed in bone tissue from three control patients without signs of Paget's bone disease. These results indicate that the host cell range for measles virus in Paget's disease is more widespread than has been supposed. They also demonstrate the usefulness of the in situ hybridization method to detect viral genetic information in cells where viral antigenic activity is not detectable. These observations further support the hypothesis that measles virus is involved in the pathogenesis of Paget's bone disease.

Bone and Bones↗

Low turnover bone disease is the more common form of bone disease in CAPD patients.

CAPD is considered a risk factor for low turnover bone disease. This was previously attributed to aluminum accumulation. We evaluated by biochemical and histomorphometric parameters (including double tetracycline labelling), 26 patients maintained on CAPD for 12-14 months. Three (11.5%) showed mild hyperparathyroidism, 5 (19.2%) osteitis fibrosa, 3 (11.5%) mixed forms, 4 (15%) osteomalacia and 11 (42.3%) adynamic bone disease. Only one patient with diabetes mellitus showed an aluminum stained bone surface > 10%. Intact PTH serum levels were lower in LTBD (133.2 +/- 128 vs 468.2 +/- 451 pg/ml; p < 0.05). We also evaluated prospectively 11 patients who underwent a bone biopsy at start of dialysis and after 12 months of CAPD treatment. Bone biopsies pre CAPD demonstrated normal-high bone turnover disease in 8/11 (72.7%) and low turnover bone disease in 3/11 (27%). In the follow-up biopsies, 2 patients showed osteitis fibrosa and other two mild forms. Low turnover bone disease was found in 7 patients (3 osteomalacia and 4 adynamic bone disease). We conclude that the predominant bone lesion in our CAPD patients is low turnover bone disease, predominantly adynamic forms, and aluminum does not seem to play a role on its genesis. Low intact PTH serum levels may be a predictor of low turnover bone disease.

Bone and Bones↗

Etiology of hyperparathyroidism and bone disease during chronic hemodialysis. I. Association of bone disease with potentially etiologic factors.

The present study was prompted by the observation that, in patients with chronic renal failure being followed at this center, renal osteodystrophy developed almost exclusively in those who were treated by chronic hemodialysis at home rather than in our center. A systematic comparison was made between the 10 patients with roentgenographic evidence of the bone disease and 18 patients without demonstrable bone disease. The two groups were similar in age, sex, nature of renal disease, and duration of dialysis. The mean duration of kidney disease was almost 2 yr longer in the patients without bone disease than in those with bone disease. Other significant differences related to where the hemodialysis was performed and to the calcium concentration in the dialysate (6.0-7.4 mg/100 ml in the hospital and 4.9-5.6 mg/100 ml at home). If the unknown factors related to where the dialysis was performed were of no consequence, the major factor contributing to the production of bone disease observed in these patients was the use of a dialysate with a calcium concentration less than 5.7 mg/100 ml.

Adult↗

Severe bone disease and low bone mineral density after juvenile renal failure.

BACKGROUND: Little is known about the late effects of juvenile end-stage renal disease (ESRD) on bone integrity. To establish clinical manifestations of metabolic bone disease and bone mineral density (BMD) in young adult patients with juvenile ESRD, we performed a long-term outcome study. METHODS: A cohort was formed of all Dutch patients with onset of ESRD between 1972 and 1992 at age 0 to 14 years, born before 1979. Data were collected by review of medical charts, current history, physical examination, and performing dual energy x-ray absorptiometry (DEXA) of the lumbar spine and the femoral neck. RESULTS: Clinical information was retrieved in 247 out of 249 patients. Of all of these patients, 61.4% had severe growth retardation (<-2 SD), 36.8% had clinical symptoms of bone disease, and 17.8% were disabled by bone disease. Growth retardation and clinical bone disease were associated with a long duration of dialysis. DEXA was performed in 140 out of 187 living patients. Mean BMD +/- SD corrected for gender and age (Z score) of the lumbar spine was -2.12 +/- 1.4 and of the femoral neck was -1.77 +/- 1.4. A low lean body mass was associated with a low lumbar spine and a low femoral neck BMD; male gender, physical inactivity and aseptic bone necrosis were associated with a low lumbar spine BMD. CONCLUSION: Bone disease is a major clinical problem in young adults with pediatric ESRD. Further follow-up is needed to establish the impact of the low bone mineral densities found in these patients.

Absorptiometry, Photon↗

Parathyroid hormone-independent osteoclastic resorptive bone disease: a new variant of adynamic bone disease in haemodialysis patients.

BACKGROUND: Osteitis fibrosa cystica (OFC) caused by secondary hyperparathyroidism is the pre-eminent form of uraemic osteodystrophy. In recent years, however, new bone abnormalities have been described. Among them adynamic bone disease (ABD) has become a focus of growing interest. Marked suppression of dynamic bone measurements with normal or near-normal static bone-forming parameters are the hallmarks of this disorder. Depressed parathyroid hormone (PTH) levels, frequently evident in this entity, have been linked causally with low bone turnover. METHODS: We reviewed bone biopsy specimens from 96 patients with end-stage renal disease undergoing chronic haemodialysis. RESULTS: We found OFC in 50% of our patients, 20% had mixed bone disease, 24% showed bone morphology of ABD and a minority (6%) had osteomalacia, mostly due to aluminium accumulation. In the patients that were affected by ABD there was a distinct subgroup with bone morphology featuring a striking increase in osteoclast number and osteoclast surface, whereas the osteoid volume, osteoid thickness, osteoblast surface, tetracycline uptake and bone formation rates were diminished as in ordinary ABD. Similarly the PTH levels in this subgroup were low or undetectable. CONCLUSION: We describe patients undergoing chronic haemodialysis with static and dynamic bone forming parameters, indistinguishable from that of ABD, but differing from the classic ABD by the presence of increased osteoclastic bone resorption. The suppressed PTH levels in this subgroup suggests that factors other than PTH activate osteoclasts in some patients on chronic haemodialysis. Uraemic cytokines and/or toxic metabolites, including beta-microglobulin, may be involved in this disorder. The precise nature of this bone abnormality remains to be defined by further studies.

Adolescent↗

RANK ligand and osteoprotegerin in myeloma bone disease.

Myeloma bone disease is due to interactions of myeloma cells with the bone marrow microenvironment, and is associated with pathologic fractures, neurologic symptoms and hypercalcemia. Adjacent to myeloma cells, the formation and activation of osteoclasts is increased, which results in enhanced bone resorption. The recent characterization of the essential cytokine of osteoclast cell biology, receptor activator of NF-kappa B ligand (RANKL) and its antagonist osteoprotegerin (OPG), have led to a detailed molecular and cellular understanding of myeloma bone disease. Myeloma cells induce RANKL expression in bone marrow stromal cells, and direct RANKL expression by myeloma cells may contribute to enhanced osteoclastogenesis in the bone microenvironment in myeloma bone disease. Furthermore, myeloma cells inhibit production and induce degradation of OPG. These effects result in an increased RANKL-to-OPG ratio that favors the formation and activation of osteoclasts. Patients with myeloma bone disease have inappropriately low serum and bone marrow levels of OPG. Specific blockade of RANKL prevented the skeletal complications in various animal models of myeloma, and suppressed bone resorption in a preliminary study of patients with myeloma bone disease.

Animals↗

Serum markers of type I collagen formation and degradation in metabolic bone disease: correlation with bone histomorphometry.

Type I collagen makes up more than 90% of bone matrix. Therefore, analysis of antigens related to collagen formation and degradation in bone should provide good and specific estimates of both bone resorption and bone formation rates. In this study we measured serum levels of the pyridinoline cross-linked telopeptide domain of type I collagen (ICTP) as a marker of bone resorption and serum carboxy-terminal propeptide of type I procollagen (PICP) as a marker of bone formation. Serum levels of the two antigens were correlated to histomorphometric indices of bone resorption and bone formation calculated from iliac crest bone biopsies in a group of 18 individuals with high- and low-turnover bone disease (myxedema, primary hyperparathyroidism, and thyrotoxicosis). After logarithmic transformation the regression of S-ICTP on volume-referent resorption rate (BRs/R/BV) was significant (r = 0.61, p < 0.01, SEM/Y = 56%). S-ICTP also showed a significant regression on the volume-referent cancellous bone balance (r = -0.45, p < 0.05, SEM/Y = 412%). S-PICP was significantly correlated to the mineral appositional rate (r = 0.53, p < 0.05) and volume-referent bone formation rate (r = 0.61, p < 0.01, SEM/Y = 48%). The correlation to bone turnover as expressed in the activation frequency was also highly significant (r = 0.61, p < 0.01, SEM/Y = 51%). No significant correlation with wall thickness or bone balance was demonstrable per remodeling cycle. Thus, assays employing antigens that reflect collagen formation and degradation are useful instruments for the evaluation of rates of bone remodeling in metabolic bone disease.

Adult↗

[Evaluation of cancer-induced bone diseases by bone metabolic marker].

Recently, several new bone metabolic markers have been developed and applied for diagnosis of bone metastasis. We have investigated the efficacy of several bone metabolic markers : serum carboxy-terminal telopeptide of type 1 collagen ( I CTP), C-terminal cross-linked telopeptide of type I collagen (CTX) and urinary free deoxypyridinoline (fDPD) as bone resorption markers, serum carboxy-terminal propeptide of type 1 collagen (P I CP), osteocalcin (OC), and bone alkaline phosphatase (BAP) as bone formation markers for diagnosis of bone metastasis. I CTP was most useful for diagnosis of bone metastasis in breast cancer patients because of no increase in postmenopausal osteoporosis. Combination of resorption and formation markers increased sensitivity. In follow-up, bone metabolic markers seemed more useful for predicting therapeutic response of bone metastasis than tumor markers. Bone metabolic markers were also useful for predicting survival or occurrence of skeletal-related events. These findings suggest that bone metabolic markers would be useful to detect, to monitor, and to predict prognosis of bone metastases.

Alkaline Phosphatase↗