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Low bone mass and fast rate of bone loss at menopause: equal risk factors for future fracture: a 15-year follow-up study.

The aim of the study was to examine the role of peak bone mass and rate of postmenopausal bone loss for the subsequent risk of osteoporotic fracture. 182 women within 3 years of menopause were followed longitudinally for 15 years. Over the first 2 years, forearm bone mass (single photon absorptiometry) was measured nine times, the rate of bone loss was calculated, and the women were stratified into a group of "fast bone losers" (n = 49) and a group of "normal bone losers" (n = 133). Later, bone mass was also measured in the lumbar spine and hip with dual energy X-ray absorptiometry. At 15 years, the fast losers had significantly lower body weight (4.4 kG; p < 0.05) than the normal losers. Furthermore, the fast losers had significantly increased values of bone turnover (osteocalcin and C-terminal type I collagen breakdown products). In both the forearm, spine, and hip, the fast bone losers had at all sites significantly less bone mass than the normal bone losers (p < 0.001). 23 women had experienced a peripheral (Colles') fracture and 25 a spinal fracture. The fracture groups had generally significantly (p < 0.05) less bone mass than the group without fracture, both in the forearm, spine, and hip and they also had the highest rate of bone loss after menopause (p < 0.05). Baseline bone mass and rate of loss predisposed to the same extent to fractures with ODD's ratios of about 2. If both low bone mass and rate of loss were present, the ODD's ratio increased to about 3. We conclude that fast rate of bone loss and low bone mass are equally important for the risk of fracture. The identification of women at risk of osteoporosis should therefore consider both a measurement of bone mass status, and a determination of the postmenopausal rate of loss.

Bone Density↗

Long-term strontium ranelate administration in monkeys preserves characteristics of bone mineral crystals and degree of mineralization of bone.

UNLABELLED: In monkeys, long-term strontium ranelate administration results in a dose-dependent bone strontium uptake (mainly into newly formed bone) that preserves the degree of mineralization of bone and the bone mineral at the crystal level, showing its safety at bone mineral level. INTRODUCTION: Strontium ranelate simultaneously increases bone formation and decreases bone resorption, leading to prevention of bone loss and increase in bone mass and bone strength in normal and ovariectomized rats. This study investigated the interactions of stable strontium (Sr) with bone mineral in monkeys after long-term strontium ranelate treatment and after a period of treatment withdrawal. MATERIALS AND METHODS: Iliac bone was obtained from untreated monkeys, monkeys at the end of a 52-week strontium ranelate administration (200, 500, 1250 mg/kg/day orally), and in parallel groups 10 weeks after the end of strontium ranelate administration (same three doses; n = 3-7). Sr uptake and distribution in bone mineral were quantified by X-ray microanalysis, changes at the crystal level by X-ray diffraction, and the degree of mineralization of bone (DMB) by quantitative microradiography. RESULTS: After strontium ranelate administration, dose-dependent Sr uptake occurred into cortical and cancellous bone, with higher content (1.6 times) in new than in old bone. This Sr uptake decreased (50%) 10 weeks after treatment withdrawal; the decrease occurred almost exclusively in new bone. At the end of strontium ranelate treatment and after its withdrawal, a preservation of crystal characteristics was observed, suggesting that Sr was only faintly linked to crystals by ionic substitution and of DMB. CONCLUSIONS: These results show the absence of a deleterious effect of long-term strontium ranelate treatment on bone mineralization, confirming the histomorphometric observations made in postmenopausal osteoporotic women treated with strontium ranelate.

Animals↗

Comparison of markers of bone formation and resorption in prostate cancer patients to predict bone metastasis.

We investigated the usefulness of two biochemical markers of bone formation (PICP, the carboxy-terminal propeptide of type I procollagen, and bone ALP, bone-derived alkaline phosphatase) and a marker of bone resorption (ICTP, the carboxy-terminal telopeptide of type I collagen), to determine whether the presence of bone metastasis in prostate cancer could be evaluated and the extent of bone metastasis could be stratified by the serum levels of these markers, compared to total alkaline phosphatase (T-ALP) and prostate-specific antigen (PSA). The serum levels of PICP, bone ALP, ICTP, T-ALP and PSA were significantly higher in patients with both prostate cancer and bone metastasis (n=49) than in patients with benign prostatic hyperplasia (n=35) and patients with prostate cancer without bone metastasis (n=70). The superiority of a marker in the rate of detection of bone metastasis was evaluated with receiver operating characteristic curves. The serum marker levels were compared as a function of metastatic burden in bone (i.e., the extent of disease, EOD grade). We found that bone ALP is the most suitable marker for evaluating bone metastasis, especially for stratifying the degree of bone metastasis. Both PICP and ICTP were useful in this respect, but rather inferior to bone ALP. T-ALP had the lowest ability for detecting bone metastasis, but its correlation with the EOD grade was excellent, second to that of bone ALP. PSA showed limited reliability for stratifying the extent of bone metastasis.

Aged↗

Development of bone canaliculi during bone repair.

We recently found that silver impregnation staining with protargol (silver protein), that is, a modified Bodian method, is useful for histologically identifying the details of bone canaliculi structure, using thin sections of decalcified bone tissues. With this staining method, we conducted the present study to assess the development of bone canaliculi during the process of intramembranous ossification using a fracture-like stimulation model of the rat femur. After making a drill-hole in the cortex of the rat femur, decalcified thin sections were obtained after 3, 5, 7, and 14 days by the standard paraffin-embedding procedure. Silver staining for bone canaliculi was performed using our previously reported technique. The results showed that woven bone covered the fracture surface of the cortex after 5 days, then immature lamellar bone attached to the woven bone after 7 days, and finally the lamellar bone matured and became thick with appositional growth after 14 days. The osteocytes in the woven bone appeared at an early stage of bone repair and developed a few canaliculi that were short and irregularly distributed in the osteoid matrix, while the osteocytes in the lamellar bone at a late stage formed many bone canaliculi that were long and regularly distributed in mature bone matrix. Therefore, we concluded that woven bone osteocytes may be necessary for induction of the lamellar bone osteocytes followed by active appositional growth of the lamellar bone at the early stage of bone repair, and also that both bone tissues could be clearly distinguished from one another based on the pattern of development of bone canaliculi by the osteocytes, as seen with the use of our sensitive staining method.

Animals↗

Histologic study of the bone adjacent to titanium bone screws used for mandibular fracture treatment.

PURPOSE: Titanium miniplates have been widely used in mandibular fracture fixation because of their strength and excellent biocompatibility. However, the condition of the bone adjacent to titanium bone screws has not been clarified. This study histologically examined the bone-screw interface in patients treated for mandibular fractures. PATIENTS AND MATERIALS: Specimens were obtained from 14 patients, and the undecalcified sections were stained by the toluidine blue and Levai Laczko methods and examined with light microscopy. The mean ratio of direct contact between the bone and the titanium bone screw surface was also analyzed using a computer-aided image analyzer. RESULTS: The formation of new bone was observed around the titanium bone screws in all cases. In areas of cortical bone, partial interposition of soft tissues was rarely observed. However, in areas of cancellous bone, partial interposition of soft tissues was seen, and bone resorption between the bone and soft tissues was noted. The mean ratio of direct contact between all of the adjacent bone and the surface of the titanium bone screws was 64.4%. The mean ratio of direct contact between cortical bone and the titanium bone screws was 82.4%. Black particles were observed in the bone and soft tissues around the titanium bone screws, and multinuclear giant cells resembling macrophages were observed near these particles. CONCLUSION: Titanium bone screws used for mandibular fracture fixation develop almost complete contact with new bone. Some metalosis is present.

Adolescent↗

Markers of bone turnover for the management of patients with bone metastases from prostate cancer.

Although increased bone formation is a prominent feature of patients with osteosclerotic metastases from prostate cancer, there is also some evidence for increased bone resorption. The aim of this study was to compare the clinical utility of new bone resorption markers to that of bone formation in patients with bone metastases from prostate cancer before and after bisphosphonate treatment. Thirty-nine patients with prostate cancer and bone metastasis, nine patients with prostate cancer without bone metastases, nine patients with benign prostatic hyperplasia and 355 healthy age-matched men were included. Urinary non-isomerized (alpha CTX) and beta isomerized (beta CTX) type I collagen C-telopeptides (CTX) and a new assay for serum CTX were used to assess bone resorption. Bone formation was determined by serum osteocalcin, serum total (T-ALP) and bone (BAP) alkaline phosphatase and serum type I collagen C-terminal propeptide (PICP). Fourteen patients with bone metastases were also evaluated 15 days after a single injection of the bisphosphonate pamidronate (120 mg). Levels of all bone formation and bone resorption markers were significantly (P < 0.006-0.0001) higher in patients with prostate cancer and bone metastasis than in patients with benign prostatic hyperplasia, patients with prostate cancer without bone metastases and healthy controls. In patients with bone metastases the median was increased by 67% for serum osteocalcin, 128% for T-ALP, 138% for BAP, 79% for PICP, 220% for urinary alpha CTX, 149% for urinary beta CTX and 214% for serum CTX. After bisphosphonate treatment all three resorption markers significantly decreased by an average of 65% (P = 0.001), 71% (P = 0.0010) and 61% (P = 0.0015) for urinary alpha CTX, urinary beta CTX and serum CTX, respectively, whereas no significant change was observed for any bone formation markers. Patients with prostate cancer and bone metastases exhibit a marked increase in bone resorption, which decreases within a few days of treatment with pamidronate. These findings suggest that these new resorption markers may be useful for the management of these patients.

Aged↗

VEGF improves, whereas sFlt1 inhibits, BMP2-induced bone formation and bone healing through modulation of angiogenesis.

UNLABELLED: We studied the interaction between VEGF and BMP2 during bone formation and bone healing. Results indicate that VEGF antagonist inhibited BMP2-elicited bone formation, whereas the delivery of exogenous VEGF enhanced BMP2-induced bone formation and bone healing through modulation of angiogenesis. INTRODUCTION: Angiogenesis is closely associated with bone formation during normal bone development and is important for the bone formation elicited by BMP4. However, it remains unknown whether vascular endothelial growth factor (VEGF) also interacts with other BMPs, especially BMP2, in bone formation and bone healing. MATERIALS AND METHODS: For this study, mouse muscle-derived stem cells were transduced to express BMP2, VEGF, or VEGF antagonist (sFlt1). We studied the angiogenic process during endochondral bone formation elicited by BMP2, a prototypical osteogenic BMP. Using radiographic and histologic analyses, we also evaluated the interaction between VEGF and BMP2 during bone formation and bone healing. RESULTS: Our results indicate that BMP2-elicited bone formation comprises two phases of angiogenesis, with an early phase occurring before the appearance of hypertrophic cartilage, followed by a late phase coupled with the appearance of hypertrophic cartilage. Our finding that the administration of sFlt1, a specific antagonist of VEGF, significantly inhibited BMP2-induced bone formation and the associated angiogenesis indicates that endogenous VEGF activity is important for bone formation. Furthermore, we found that the delivery of exogenous VEGF enhanced BMP2-induced bone formation and bone healing by improving angiogenesis, which in turn led to accelerated cartilage resorption and enhanced mineralized bone formation. Our findings also indicate that the ratio between VEGF and BMP2 influences their synergistic interaction, with a higher proportion of VEGF leading to decreased synergism. Our study also revealed unique VEGF-BMP2 interactions that differ from the VEGF-BMP4 interactions that we have described previously. CONCLUSIONS: This study, along with previously published work, shows that VEGF interacts synergistically with both BMP4 and BMP2 but elicits substantially different effects with these two BMPs.

Animals↗

Effect of regional gene therapy with bone morphogenetic protein-2-producing bone marrow cells on spinal fusion in rats.

BACKGROUND: Bone morphogenetic proteins (BMPs) are now being used as bone-graft substitutes to enhance spinal fusion. However, the large doses of BMP required to induce a spinal fusion in humans suggests that the delivery of these proteins should be improved. We used ex vivo adenoviral gene transfer to create BMP-2-producing bone marrow cells, and these autologous cells were found to induce a posterolateral fusion of the spine in syngeneic rats. METHODS: Intertransverse spinal arthrodesis (L4 and L5) was attempted in ten groups of Lewis rats with 5 x 10 (6) BMP-2-producing rat bone marrow cells (Ad-BMP-2 cells), created through adenoviral gene transfer with guanidine hydrochloride-extracted demineralized bone matrix as a carrier (Group I); 5 x 10 (6) Ad-BMP-2 cells on a collagen sponge carrier (Group II); 10 micro g of recombinant BMP-2 (rhBMP-2) in a guanidine hydrochloride-extracted demineralized bone matrix carrier (Group III); 10 micro g of rhBMP-2 in a collagen sponge carrier (Group IV); autogenous iliac crest bone-grafting (Group V); 5 x 10 (6) beta-galactosidase-producing rat bone marrow cells, created through adenoviral gene transfer with guanidine hydrochloride-extracted demineralized bone matrix as a carrier (Group VI); decortication of the transverse processes alone (Group VII); 5 x 10 (6) uninfected rat bone marrow cells with a guanidine hydrochloride-extracted demineralized bone matrix carrier (Group VIII); guanidine hydrochloride-extracted demineralized bone matrix only (Group IX); or a collagen sponge alone (Group X). Each specimen underwent plain radiography, manual palpation, and histological analysis. RESULTS: All spines in Groups I and II (BMP-2-producing bone marrow cells) and all spines in Groups III and IV were fused at four weeks postoperatively. In contrast, none of the spines in the other groups had fused at a minimum of eight weeks after implantation. Histological analysis of the specimens revealed that the spines that had received BMP-2-producing bone marrow cells (Groups I and II) were filled with coarse trabecular bone postoperatively, whereas those that had received rhBMP-2 (Groups III and IV) were filled with thin, lace-like trabecular bone. All of the other spines, including those that had been treated with autogenous iliac crest bone-grafting (Group V), produced little or no new bone. CONCLUSION: BMP-2-producing bone marrow cells, created by adenoviral gene transfer, produce sufficient BMP to induce an intertransverse fusion in the rat spine model.

Animals↗

Studies on the bone marrow cells from an excised pipe bone.

Samples of rib bone were collected and preserved under various conditions. The effect of preserving a piece of bone on the yield of hematopoietic stem cells was analyzed. Bone marrow cells were collected by means of flushing the bone marrow cavity with medium. The initial number of nucleated bone marrow cells collected from the donor's excised rib ranged from 0.8 x 10(8) to 2.3 x 10(8) per 1 cm of rib with an average of 1.21 x 10(8) (n = 7). In addition, the initial number of mononuclear bone marrow cells ranged from 1.1 x 10(7) to 4.8 x 10(7) per 1 cm of rib with an average of 2.47 x 10(7) (n = 7). The percentage loss of mononuclear bone marrow cells from rib preserved in medium for 48 hours at 4 degrees C, was less than 30%. A colony-forming assay by the methylcellulose method, complemented with r-G-CSF, r-GM-CSF, r-IL3, r-IL6, and r-erythropoietin, was done serially using bone marrow buffy-coat cells. These cells were obtained from the pieces of rib that were stored under various conditions. The number of CFU-GM and BFU-E that proliferated in this culture was 41.1 +/- 5.5 and 15.2 +/- 2.7 per dish. If the bone was preserved at 4 degrees C for 48 hours following excision, the recovery of CFU-GM and BFU-E from the bone marrow cells was greater than 50%. The effect of cryopreserving bone marrow mononuclear cells on the yield of hematopoietic cells was also analyzed. The percentage loss of proliferated hematopoietic cells by cryopreservation was less than 30% for bone marrow cells. Bone marrow cells were collected from pieces of rib obtained from cadaveric donors by means of the same method. The average number of nucleated bone marrow cells and MNCs was 1.26 x 10(7) and 2.30 x 10(7) per 1 cm of rib, respectively. The average number of CFU-GM and BFU-E that was detected by the colony-forming assay was 33.4 +/- 5.35 and 11.7 +/- 1.75 per dish, respectively. The percentage loss of proliferated hematopoietic cells by cryopreservation was less than 40% for bone marrow cells from cadaveric donors. These data, which reveal that hematopoietic bone marrow stem cells could be collected from a piece of pipe bone that was without circulation, suggest that it is possible to use pipe bone from cadaveric donors as a source of hematopoietic stem cells for bone marrow transplants.(ABSTRACT TRUNCATED AT 400 WORDS)

Aged↗

PRP modulates expression of bone matrix proteins in vivo without long-term effects on bone formation.

This experimental study (domestic pig) examined the bone formation after filling defined defects of the frontal skull with autogenous bone or a deproteinized bovine bone matrix (DBBM) in combination with platelet-rich plasma (PRP). Six groups, both materials with and without PRP in two different concentrations (4.1x and 6.5x referring to untreated whole blood) were evaluated at 2, 4, 12, and 26 weeks by means of immunohistochemical staining for different bone matrix proteins, microradiography, light microscopy and polychromatic fluorescence labeling. The sequential expression of bone matrix proteins reflected the specific roles these proteins fulfil in the mineralization of hard tissue. Collagen I expression at 2 weeks was enhanced in all autogenous bone groups. No specific modification of the collagen I expression was found after use of DBBM with or without PRP. Osteopontin and especially osteonectin showed a remarkable enhancement at 4 weeks in nearly all autogenous bone and DBBM groups. These increased levels closely resembled the mineralization content evaluated by microradiography at that time. For the three autogenous bone groups, an expression peak for osteocalcin was demonstrated at 12 weeks, further reflecting the way of de novo bone formation. The microradiographic evaluation demonstrated a statistically significant enhancement in bone regeneration by PRP only after use of autogenous bone plus PRP at 2 weeks (P = 0.002). After 4 weeks, mineralization values after use of autogenous bone were significantly lower if PRP was added to the autogenous bone (P = 0.002). No long-term effects of the PRP administration were found in the mineralization process. In all DBBM groups, bone formation remained unchanged, confirming the lack of any osteoinductive capacity of PRP. PRP modulated the expression of bone matrix proteins in this experimental setting. However, an enhancement of bone formation was demonstrated only at 2 weeks after application of the higher PRP concentration in combination with autogenous bone. In conjunction with an anorganic bovine bone no effects of PRP on defect mineralization were discovered, demonstrating the lack of osteoinductive capacity in PRP as well as in DBBM.

Animals↗

Biochemical markers for non-invasive diagnosis of hyperparathyroid bone disease and adynamic bone in patients on haemodialysis.

UNLABELLED: The diagnostic and predictive value of serum intact parathyroid hormone (iPTH) and osteocalcin (bone Gla protein, BGP), alone or in combination, have been examined in only a small number of haemodialysis patients. METHODS: We studied prospectively 114 patients (46 women, 68 men; mean age 52 +/- 12 years) on regular haemodialysis for a mean of 55 (6-185) months. All patients underwent labelled transiliac bone biopsy, and serum levels of iPTH, BGP and alkaline phosphatase were determined. RESULTS: Seventy-one patients (62%) showed histological findings of hyperparathyroid bone disease, 24 (21%) mixed bone disease, six (5.5%) osteomalacia and 13 (11.5%) adynamic bone. Bone aluminium deposition over more than 25% of the trabecular bone interface was found in 66 patients (58%). Serum iPTH and BGP correlated with the majority of histomorphometric indices of bone formation, mineralization and resorption (r > 0.5, P < 0.01). iPTH levels > or = 200 pg/ml and BGP > or = 50 ng/ml were found to be indicative of hyperparathyroid bone disease, whilst iPTH levels < 65 pg/ml and BGP < 20 ng/ml were indicative of adynamic bone. However, the positive predictive value of these indices was limited (less than 80%), although their negative predictive value, especially when used in combination, was good (more than 90%) and the exclusion of hyperparathyroid bone disease and adynamic bone was possible. The diagnostic and predictive value of these bone markers were improved when patients with bone aluminium deposition were excluded. CONCLUSIONS: Diagnosis of hyperparathyroid bone disease and adynamic bone is difficult on the basis of iPTH and BGP, especially when bone aluminium deposition is prevalent. However, using these bone markers, preferably in combination, the exclusion of these lesions is feasible.

Adult↗

[Effect of calcitonin on regional blood flow in bones, serum levels of IGF-I and osteocalcin, density and weight of bone ash in oophorectomized rats].

It is known that in cases of increased bone remodelation rate, i.e. after castration, local bone blood flow is also increased. But in case of adequate hormonal substitution, bone blood flow, similarly as the remodelation rate, return to normal ranges. Until now, there is no knowledge, if other drug can influence enhanced bone blood flow in oophorectomized animals. In this study authors treated oophorectomized female rats with calcitonin and followed bone blood flow, together with biochemical parameters of bone remodelation activity (osteocalcine), IGF-I levels, weight of bone ash and bone density. The female rats were divided in four groups: controls, oophorectomized, with calcitonin and oophorectomized with calcitonin. The bone blood flow was determined by method of body dispersion of radioactive strontium labelled microspheres. The results of this study show, that, in comparison with controls, the bone remodelation rate (documented with increased osteocalcine levels) and radioactive strontium labelled microspheres capture in bone in increased after oophorectomy (p < 0.05). Ash weight and bone density were decreased (p < 0.05). Simultaneously, the blood IGF-I levels were increased (p < 0.05). After oophorectomized animals were treated with calcitonin, all parameters mentioned above headed towards normal ranges in comparison with group of oophorectomized female rats without calcitonin (p < 0.05). Changes of serum IGF-I levels follow changes of microspheres capture in each group of animals. Authors support the hypothesis, that blood levels of IGF-I could influence local bone blood flow. Calcitonin treatment of oophorectomized animals diminishes also decrement of ash weight and bone density. Results of this work show, that similarly as hormonal substitution therapy after oophorectomy, calcitonin also diminishes increased bone blood flow and bone remodelation parameters. The degree of bone blood flow is probably connected with activity of bone remodelling.

Animals↗

Climbing exercise increases bone mass and trabecular bone turnover through transient regulation of marrow osteogenic and osteoclastogenic potentials in mice.

UNLABELLED: To investigate the relationship between the effects of bone turnover and bone marrow cell development in bone cells, we developed a mouse voluntary climbing exercise model. Climbing exercise increased bone volume and transient osteogenic potential of bone marrow. This model would be suitable for investigating the mechanistic roles of mechanical loading. INTRODUCTION: The relationship between bone mass gain and local bone formation and resorption in mechanically loaded bone is not well understood. MATERIALS AND METHODS: Sixty-five C57BL/6J mice, 8 weeks of age, were assigned to five groups: a baseline control and two groups each of ground control and climbing exercise mice for 2 and 4 weeks. Mice were housed in a 100-cm tower and had to climb toward a bottle placed at the top to drink water. RESULTS: Compared with the ground control, bone mineral density of the left femur increased in the climbing mice at 4 weeks. At 2 and 4 weeks, bone formation rate (BFR/BS) of periosteal surface, the cross-sectional area, and moment of inertia were increased in the climbing mice, whereas BFR/BS and eroded surface (ES/BS) of endosteal surface did not differ. The trabecular bone volume (BV/TV) of the proximal tibia increased in climbing mice, and osteoclast surface (Oc.S/BS) and osteoclast number decreased at 2 weeks. At 4 weeks, there were increases in BV/TV and parameters of bone formation, including mineralized surface, mineral apposition rate, and bone formation rate. In marrow cell cultures from the tibia, the number of alkaline phosphatase+ colony forming units-fibroblastic and the area of mineralized nodule formation in climbing mice were increased, and the number of osteoclast-like TRACP+ multinucleated cells was lower at 2 weeks. At 4 weeks, these parameters recovered to the levels of the ground controls. CONCLUSION: Our results indicate that climbing increased trabecular bone volume and reduced bone resorption, with a subsequent increase in bone formation. Intermittent climbing downregulates marrow osteoclastogenic cells and upregulates osteogenic cells initially, but further exercise seemed to desensitize them. Cortical envelopes were enlarged earlier, but the response seems to differ from trabecular bone.

Animals↗

Comparing whole body 18F-2-deoxyglucose positron emission tomography and technetium-99m methylene diphosphate bone scan to detect bone metastases in patients with renal cell carcinomas - a preliminary report.

PURPOSE: Conventional technetium-99m methylene diphosphate whole body bone scan (bone scan) has a high sensitivity but a poor specificity to detect bone metastases. However, positron emission tomography with 18F-2-deoxyglucose (FDG-PET) can offer superior spatial resolution and improved specificity. We have attempted to evaluate the usefulness of FDG-PET for detecting bone metastases in renal cell carcinomas (RCC) and to compare FDG-PET results with bone scan findings. METHODS: Eighteen patients were selected for this study with biopsy-proven RCC. They were suspected of having bone metastases and were undergoing bone scan and FDG-PET to detect bone metastases. The final diagnoses of bone metastases were established by operative, histopathological findings or clinical follow-up longer than 1 year by additional radiographs or following FDG-PET/bone scan findings showing progressive and extensive widespread bone lesions. RESULTS: A total of 52 bone lesions including 40 metastatic and 12 benign bone lesions found on either FDG-PET or bone scan were evaluated. FDG-PET could accurately diagnose all 40 metastatic and 12 benign bone lesions. Bone scan could accurately diagnose only 31 metastatic bone lesions. Diagnostic sensitivity and accuracy of FDG-PET were 100% and 100%, respectively,and bone scan were 77.5% and 59.6%, respectively. CONCLUSIONS: Our data suggest that FDG-PET has a higher sensitivity and a better accuracy than that of bone scan to detect bone metastases in patients with RCC.

Aged↗

Estrogen regulates the rate of bone turnover but bone balance in ovariectomized rats is modulated by prevailing mechanical strain.

Estrogen deficiency induced bone loss is associated with increased bone turnover in rats and humans. The respective roles of increased bone turnover and altered balance between bone formation and bone resorption in mediating estrogen deficiency-induced cancellous bone loss was investigated in ovariectomized rats. Ovariectomy resulted in increased bone turnover in the distal femur. However, cancellous bone was preferentially lost in the metaphysis, a site that normally experiences low strain energy. No bone loss was observed in the epiphysis, a site experiencing higher strain energy. The role of mechanical strain in maintaining bone balance was investigated by altering the strain history. Mechanical strain was increased and decreased in long bones of ovariectomized rats by treadmill exercise and functional unloading, respectively. Functional unloading was achieved during orbital spaceflight and following unilateral sciatic neurotomy. Increasing mechanical loading reduced bone loss in the metaphysis. In contrast, decreasing loading accentuated bone loss in the metaphysis and resulted in bone loss in the epiphysis. Finally, administration of estrogen to ovariectomized rats reduced bone loss in the unloaded and prevented loss in the loaded limb following unilateral sciatic neurotomy in part by reducing indices of bone turnover. These results suggest that estrogen regulates the rate of bone turnover, but the overall balance between bone formation and bone resorption is influenced by prevailing levels of mechanical strain.

Animals↗

Prediction of bone strength in growing animals using noninvasive bone mass measurements.

This study aims to test the hypothesis that noninvasive bone mass measurements can be used to predict bone strength in a piglet model. Dual energy X-ray absorptiometry measurements of bone mineral content (BMC), bone mineral density (BMD), and bone area (BA) were obtained from four sets of bones (left and right humeri and femora) of 12 piglets (6-68 days and 2250-17660 g). Bone strength, defined by the energy to bone failure, fracture moment, and flexural rigidity, was determined from three point bending tests using an Instron material testing system. Results show that bone mass between left and right extremities was highly correlated (r = 0.96 to 0.99, P < or 0.001 all comparisons) and was similar for bone strength (r = 0.85 to 0.98, P < 0.01 all comparisons). However, based on the standard deviation of the difference between measurements from left and right extremities, the agreement sides was better for bone mass than for bone strength measurements (r = 0.68-0.99, P < = 0.05-< or = 0.001). The predictive ability of bone mass on bone strength varied (adjusted r2 = 0.41-0.97) depending on the bone tested and the measurement parameter used, although remained statistically significant in all instances (P < 0.05-< or = 0.001). We conclude that the developing organisms, noninvasive bone mass measurements are correlated with and predictive of bone strength, although bones from the same side and same anatomical site should be used for comparison purposes.

Absorptiometry, Photon↗

Bone mineral measurements of subchondral and trabecular bone in healthy and osteoporotic rabbits.

INTRODUCTION: Experimental models of osteoporosis in rabbits are useful to investigate anabolic agents because this animal has a fast bone turnover with predominant remodelling over the modelling processes. For that purpose, it is necessary to characterize the densitometric values of each type of bony tissue. OBJECTIVE: To determine areal bone mass measurement in the spine and in trabecular, cortical and subchondral bone of the knee in healthy and osteoporotic rabbits. DESIGN: Bone mineral content and bone mineral density were measured in lumbar spine, global knee, and subchondral and cortical bone of the knee with dual energy X-ray absorptiometry using a Hologic QDR-1000/W densitometer in 29 skeletally mature female healthy New Zealand rabbits. Ten rabbits underwent triplicate scans for evaluation of the effect of repositioning. Osteoporosis was experimentally induced in 15 rabbits by bilateral ovariectomy and postoperative corticosteroid treatment for 4 weeks. Identical dual energy X-ray absorptiometry (DXA) studies were performed thereafter. RESULTS: Mean values of bone mineral content at the lumbar spine, global knee, subchondral bone and cortical tibial metaphysis were: 1934+/-217 mg, 878+/-83 mg, 149+/-14 mg and 29+/-7.0 mg, respectively. The mean values of bone mineral density at the same regions were: 298+/-24 mg/cm(2), 455+/-32 mg/cm(2), 617+/-60 mg/cm(2) and 678+/-163 mg/cm(2), respectively. Bone mineral content and bone density of healthy rabbits followed a normal distribution at the four skeletal regions studied. Precision after triplicate repositioning yielded a coefficient of variation ranging from 2.6% to 3.8%. The least significant change ranged between 7.3% and 10.7%. Bone mineral density measured at the four different skeletal regions correlated significantly. Bone mineral density in osteoporotic rabbits was significantly lower in the four regions studied than that in controls, rendering a T-score of, respectively, -2.0+/-1.1 in the lumbar spine, -2.2+/-2.1 in the global knee, -1.9+/-0.6 in the subchondral bone, and -5.7+/-3.1 in the cortical tibia (P<0.05). CONCLUSIONS: DXA is a reliable and precise method to evaluate the bone mass in rabbits. Our results also suggest that subchondral bone is a bone of mixed densitometric characteristics with marked cortical bone predominance.

Absorptiometry, Photon↗

Effects of the placement of endosseous implants in vascularized bone grafts on bone union in beagle dogs.

Recently, reconstructive surgery with revascularized osteocutaneous flaps has been used to restore function in patients with bone defects caused by surgery for oral cancer. However, few basic studies have addressed problems such as the union of bone segments after osteotomy, the effects of dental implant placement on blood flow, and bone formation at the bone:implant interface in grafted bone. Nine adult beagle dogs were divided into three groups of three dogs each. Each group received osteotomized vascularized tibial grafts, osteotomized tibial grafts with implants (implants placed in contralateral limbs as control), or simple (non-vascularized) tibial grafts. The development of bone around the implants was studied by histological examination, contact micro-radiography (CMR), and fluorescent bone labeling. In the dogs receiving osteotomized vascularized tibial grafts, bone bridging was confirmed at both the medial and distal junctions of the bone segments after 4 weeks. Additional newly formed bone was observed after 8 weeks, and bone union at the surface of the segments was completed after 12 weeks. In contrast, bone formation was clearly delayed in dogs receiving simple (non-vascularized) tibial grafts. Histologically, no difference in bone union was evident between limbs with dental implants in tibial bone and control limbs without implants, suggesting that implant placement does not negatively affect revascularization. Fluorescent bone labeling technique confirmed high vascularity of the vascularized tibial bone grafts but not of the simple (non-vascularized) tibial bone grafts early after the procedure. Our results suggest that osseointegration occurred around dental implants placed at the same time as reconstruction with osteotomized vascularized bone grafts in this animal model.

Animals↗