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J Cornish

Publications and source records attributed to J Cornish.

At least 55 records · Page 3Linked to original sources

Stimulation of osteoblast proliferation by C-terminal fragments of parathyroid hormone-related protein.

Parathyroid hormone (PTH)-related protein (107-139) (PTHrP(107-139)) and PTHrP(107-111) have been reported to be potent inhibitors of isolated osteoclast activity, and inhibition of bone resorption by PTHrP(107-139) occurs in vivo. However, the actions of C-terminal PTHrP on osteoblast activity has not been studied much. The present study addresses this issue by examining the effect of PTHrP(107-139), PTHrP(107-119), PTHrP(120-139), and PTHrP(107-111) on the proliferation of fetal rat osteoblasts. Treatment with PTHrP(107-139) for 24 h caused a dose-dependent increase in cell number, [3H]thymidine and [3H]phenylalanine incorporation in cultured osteoblasts. The effect was apparent at concentrations of 10-10 M and greater and was sustained over time. PTHrP(107-119) and PTHrP(107-111) had effects on cell number, DNA, and protein synthesis which were comparable to those of PTHrP(107-139), whereas PTHrP(120-139) was without effect. Retroverted PTHrP(107-111) also stimulated all three activities but was only one tenth as potent as PTHrP(107-139). PTHrP(107-139) had no effect on osteoblast apoptosis. It is concluded that PTHrP(107-139) is not only an inhibitor of osteoclastic bone resorption but that it also stimulates osteoblast growth. This activity resides within the pentapeptide fragment PTHrP(107-111). These findings support a possible role for C-terminal fragments of PTHrP in the normal regulation of bone cell function and, possibly, bone mass.

Animals↗

Comparison of the effects of calcitonin gene-related peptide and amylin on osteoblasts.

Calcitonin gene-related peptide (CGRP) and amylin are homologous 37-amino-acid peptides which have been demonstrated to have anabolic effects on bone. It is not clear whether these effects are mediated by a common receptor, nor is it known which ligand is the more potent. These questions are addressed in the present study using cultures of fetal rat osteoblasts. CGRP increased cell number when present in a concentration >/=10-9 M, but 10-8 M CGRP was required to stimulate thymidine and phenylalanine incorporation. Amylin was effective on these indices at 100-fold lower concentrations, and its maximal effects were about twice as great as those of CGRP. ED50's for the effects of amylin and CGRP on cell number were 10-12 M and 10-10 M, respectively. There was no additivity between maximal doses of the peptides on these indices. The effects of specific receptor blockers on the maximal stimulation of cell number by these peptides were also studied. The CGRP receptor-blocker, CGRP-(8-37), completely blocked the effect of CGRP at blocker concentrations >/=10-9 M. In contrast, the amylin receptor blocker, amylin-(8-37), completely blocked the effects of CGRP when the blocker was present in concentrations as low as 10-11 M. The KI of CGRP-(8-37) was 2 x 10-10 M and that of amylin-(8-37) was 7 x 10-12 M. In converse experiments studying the blockade of maximal doses of amylin, amylin-(8-37) 10-10 M was effective (KI 1 x 10-10 M), whereas a 100-fold greater concentration of CGRP-(8-37) was necessary to achieve the same effect (KI 6 x 10-9 M). It is concluded that amylin and CGRP probably act through a common receptor to stimulate osteoblast growth, and that this receptor has a higher affinity for amylin than for CGRP.

Amyloid↗

Spinal bone density in women using depot medroxyprogesterone contraception.

OBJECTIVE: To determine factors possibly associated with reduced bone density in women using the injectable contraceptive depot medroxyprogesterone acetate. METHODS: In a cross-sectional study, bone mineral density of the lumbar spine was measured by dual energy x-ray absorptiometry in 200 current users of depot medroxyprogesterone acetate who had used this method of contraception for 2-26 years and compared with 350 control subjects. Bone density results are expressed as standard deviation scores (z score). RESULTS: The bone density was significantly lower in depot medroxyprogesterone acetate users (mean z score: -0.65, 95% confidence intervals [CI] -0.80, -0.49, P < .001). Bone density was significantly reduced in nonsmokers and smokers, and there was no significant difference in mean z score between smokers and nonsmokers (mean -0.75 versus -0.58, P=.30). Women who had started depot medroxyprogesterone acetate after the age of 20 years and who had used it for 15 or fewer years had a significantly higher bone density than the remainder of the cohort (mean -0.45 [95% CI -0.62, -0.27] versus -1.02 [95% CI -1.32, -0.73], P < .005). Bone density in depot medroxyprogesterone acetate users was not related to current age, parity, body mass index, calcium intake, or exercise. CONCLUSION: Depot medroxyprogesterone acetate use is associated with a significant reduction in bone density, and although a high proportion of depot medroxyprogesterone users do smoke, the reduction in bone density cannot be explained by smoking. Women who use it for a long time and those who start it before peak bone mass is attained may be at highest risk.

Adolescent↗

Transplantation activities and treatment strategies in paediatric stem cell transplantation centres: a report from the EBMT Working Party on Paediatric Diseases. European Group for Blood and Marrow Transplantation.

To determine the current approach to stem cell transplantation (SCT) in centres which treat predominantly paediatric patients, a questionnaire was sent to 67 centres known by the EBMT registry to perform SCT mainly in children. Fifty-five centres from 19 countries responded. Forty centres (75%) started their transplantation activities between 1980 and 1992. Median number of transplants/centre was 95 (range 8-400). Median number of transplants/centre/year was 18 (range 5-85). On average, there was one physician responsible for seven SCT/year while one nurse was involved for a median of 1.7 SCT/year. Median four rooms/centre (range 1-17) were available for paediatric SCT. The most common isolation facilities were rooms with high efficiency particulate air filtration (HEPA). Eighty-two percent (45/55) of the centres performed allogeneic as well as autologous SCT, while 5% (three centres) offered exclusively allogeneic SCT and 13% (seven centres) used only autologous stem cell rescue. Stem cell source for allogeneic SCT was bone marrow in 87%, peripheral blood (PB) in 10% and umbilical cord blood in 3%. Donors were HLA matched related in 57%, mismatched related in 13%, and matched unrelated in 30% of allogeneic SCT. PB was the most commonly used stem cell source for autologous SCT (48%), followed by BM (41%) and the two together (11%). Data analysis revealed substantial differences in protective care, stem cell processing and transplantation procedures within the centres, irrespective of the country, centre size and transplant type.

Adolescent↗

Dissociation of the effects of amylin on osteoblast proliferation and bone resorption.

This study assesses the structure-activity relationships of the actions of amylin on bone. In fetal rat osteoblasts, only intact amylin and amylin-(1-8) stimulated cell proliferation (half-maximal concentrations 2.0 x 10(-11) and 2.4 x 10(-10) M, respectively). Amylin-(8-37), COOH terminally deamidated amylin, reduced amylin, and reduced amylin-(1-8) (reduction results in cleavage of the disulfide bond) were without agonist effect but acted as antagonists to the effects of both amylin and amylin-(1-8). Calcitonin gene-related peptide-(8-37) also antagonized the effects of amylin and amylin-(1-8) on osteoblasts but was substantially less potent in this regard than amylin-(8-37). In contrast, inhibition of bone resorption in neonatal mouse calvariae only occurred with the intact amylin molecule and was not antagonized by any of these peptides. The rate of catabolism of the peptides in calvarial cultures was not accelerated in comparison with that of intact amylin. This dissociation of the actions of amylin suggests that it acts through two separate receptors, one on the osteoclast (possibly the calcitonin receptor) and a second on the osteoblast.

Amyloid↗

Systemic administration of amylin increases bone mass, linear growth, and adiposity in adult male mice.

Amylin is a peptide hormone cosecreted with insulin from the pancreatic beta-cells that can act as an osteoblast mitogen and as an inhibitor of bone resorption. The effects on bone of its systemic administration are uncertain. The present study addresses this question in adult male mice that were given daily subcutaneous injections of amylin (10.5 microgram) or vehicle (n = 20 in each group) for 4 wk. Histomorphometric indices of bone formation increased 30-100% in the amylin-treated group, whereas resorption indices were reduced by approximately 70% (P < 0.005 for all indices). Total bone volume in the proximal tibia was 13.5 +/- 1.4% in control animals and 23.0 +/- 2.0% in those receiving amylin (P = 0.0005). Cortical width, tibial growth plate width, tibial length, body weight, and fat mass were all increased in the amylin-treated group. It is concluded that systemic administration of amylin increases skeletal mass and linear bone growth. This peptide has potential as a therapy for osteoporosis if its bone effects can be dissociated from those on soft tissue mass.

Adipose Tissue↗

A role for sensitization in craving and relapse in cocaine addiction.

Sensitization to cocaine refers to the behavioral model of cocaine addiction where the motor stimulant effect of cocaine is augmented for months after discontinuing a regimen of repeated cocaine injections. There has been speculation that the neuroadaptations mediating this sensitization phenomenon may, in part, underlie the behavioral changes produced by chronic cocaine abuse, including paranoia, craving and relapse. Criteria are proposed that may assist in determining which neuroadaptations are most relevant in this regard. Using these criteria, a model is presented that endeavors to incorporate neuroadaptations issuing directly from the pharmacological effects of cocaine and those arising from learned associations the organism makes with the cocaine injection procedure and pharmacological actions. It is proposed that the pharmacological neuroadaptations predominate in the manifestation of cocaine-induced paranoia, while the changes derived from learning may provide more critical underpinnings for cocaine craving and relapse.

Behavior↗

Differences in hip axis and femoral neck length in premenopausal women of Polynesian, Asian and European origin.

There are substantial inter-racial differences in hip fracture incidence. Studies in several different ethnic groups have suggested that differences in the length of the femoral neck may contribute to these. The present study assesses femoral neck and hip axis lengths in three ethnic groups in which it has not been documented previously (Chinese, Indians and Polynesians) and compares these values with those in Europeans. Lengths were measured from dual-energy X-ray absorptiometry scans of the proximal femur in normal premenopausal women (n = 225). The Polynesian (1.65 m) and European (1.64 m) women were significantly taller than the two Asian groups (mean height in each, 1.58 m). There were also differences in mean body weight, the Polynesians being the heaviest (76 kg) and the Chinese the lightest (53 kg). Femoral neck lengths were (mean +/- SD) Chinese 61.5 +/- 4.4 mm, Indian 61.5 +/- 5.1 mm, Polynesian 68.2 +/- 4.3 mm and Europeans 66.0 +/- 4.8 mm. Hip axis lengths were Chinese 98.0 +/- 5.6 mm, Indian 94.5 +/- 5.2 mm, Polynesian 106.4 +/- 5.3 mm and European 102.3 +/- 5.3 mm. Each of the other groups were significantly different from the Europeans for both variables and, in general, this remained so after height adjustment. These data suggest that shorter femoral necks are common to the major Asian racial groups. However, in contrast to all other ethnic groups studied, Polynesians have longer femoral necks than Europeans and their low incidence of hip fracture is not explicable, therefore, in terms of their femoral neck length. This suggests that either higher bone density or other more subtle differences in proximal femoral geometry must account for the low hip fracture incidence in Polynesians.

Absorptiometry, Photon↗

Leukemia inhibitory factor is mitogenic to osteoblasts.

Leukemia inhibitory factor (LIF) regulates cell growth and is produced by a variety of tissues, including bone. Previously we have shown that recombinant human LIF induced an increase in osteoclast number, bone formation, and DNA synthesis. In the present study, we have defined the cells in intact bone at which the proliferative effects of LIF occur, using simultaneous enzyme histochemistry and autoradiographic techniques. The area of alkaline phosphatase-positive staining was increased twofold (p = 0.0008) and the number of [3H]thymidine-positive cells was increased twofold (p = 0.0024) in LIF-treated bones. The radiolabeled cells either colocalized with alkaline phosphatase or were in the osteoprogenitor region. They were not found in the acid phosphatase-positive staining osteoclasts. These results indicate that cells which have a mitogenic response to LIF are bone-forming rather than bone-resorbing cells.

Acid Phosphatase↗

Adrenomedullin is a potent stimulator of osteoblastic activity in vitro and in vivo.

Adrenomedullin is a 52-amino acid vasodilator peptide produced in many tissues, including bone. It has 20% sequence identity with amylin, a regulator of osteoblast growth, and circulates in picomolar concentrations. The present study assesses whether adrenomedullin also acts on osteoblasts. At concentrations of 10(-12) M and greater, adrenomedullin produced a dose-dependent increase in cell number and [3H]thymidine incorporation in cultures of fetal rat osteoblasts. This effect was also seen with adrenomedullin-(15-52), -(22-52), and -(27-52), but adrenomedullin-(40-52) was inactive. These effects were lost in the presence of amylin blockers, suggesting they were mediated by the amylin receptor. Adrenomedullin also increased [3H]thymidine incorporation into cultured neonatal mouse calvaria but, unlike amylin, did not reduce bone resorption in this model. Adrenomedullin stimulated phenylalanine incorporation into both isolated osteoblasts and calvaria. When injected daily for 5 days over the calvariae of adult mice, it increased indexes of bone formation two- to threefold (P < 0.0001) and increased mineralized bone area by 14% (P = 0.004). It is concluded that adrenomedullin regulates osteoblast function and that it increases bone mass in vivo. The potential of this family of peptides in the therapy of osteoporosis should be further evaluated.

Adrenomedullin↗

Parathyroid hormone-related protein-(107-139) inhibits bone resorption in vivo.

PTH-related protein-(107-139) [PTHrP-(107-139)] has been reported previously to be a potent inhibitor of osteoclast activity. However, this finding has not been reproduced in other in vitro models. We have now examined the effects of this peptide in an in vivo model, employing intact adult mice. Four groups of eight male mice were given injections of either vehicle or one of three doses of PTHrP-(107-139) (4 x 10(-13), 4 x 10(-11), or 4 x 10(-9) mol) over the periosteum of the right hemicalvaria for 5 consecutive days. The animals were killed 1 week after the last injection. There were significant decreases in bone resorption indexes after all doses of PTHrP-(107-139), with a 70% decrease in osteoclast number (P < 0.001), a 70% decrease in osteoclast perimeter (P = 0.004) and a 50% decrease in eroded perimeter (P = 0.001). In addition, some indexes of bone formation were significantly decreased, with 40% decreases in both osteoblast number (P = 0.05) and osteoblast perimeter (P = 0.02), but no significant change in osteoid area. There was a dose-related upward trend in mineralized bone area, reaching 12% at the highest dose, but this was not statistically significant. It is concluded that PTHrP-(107-139) is a potent inhibitor of bone resorption in vivo. As this model is very dissimilar to that of isolated osteoclasts, in which this peptide is also active, the present findings suggest that osteoclast inhibition is an authentic action of the C-terminus of PTHrP, which may, therefore, play a role in the regulation of bone turnover in vivo.

Animals↗

Patterns of hematopoietic chimerism following bone marrow transplantation for childhood acute lymphoblastic leukemia from volunteer unrelated donors.

Hematopoietic chimerism was analyzed in serial bone marrow samples taken from 28 children following T-cell depleted unrelated donor bone marrow transplants (UD BMT) for acute lymphoblastic leukemia (ALL). Chimeric status was determined by polymerase chain reaction (PCR) of simple tandem repeat (STR) sequences (maximal sensitivity, 0.1%). At least two serial samples were examined in 23 patients. Of these, two had evidence of complete donor engraftment at all times and eight showed stable low level mixed chimerism (MC) (<1% recipient hematopoiesis). All 10 of these patients remain in remission with a minimum follow-up of 24 months. By contrast, 13 patients demonstrated a progressive return of recipient hematopoiesis. Five of these relapsed (4 to 9 months post BMT), one died of cytomegalovirus pneumonitis and seven remain in remission with a minimum follow-up of 24 months. Five children were excluded from serial analysis as two serial samples were not collected before either relapse (3) or graft rejection (2). We conclude that as with sibling transplants, ex vivo T depleted UD BMT in children with ALL is associated with a high incidence of MC. Stable donor engraftment and low level MC always correlated with continued remission. However, detection of a progressive return of recipient cells did not universally correlate with relapse, but highlighted those patients at greatest risk. Serial chimerism analysis by PCR of STRs provides a rapid and simple screening technique for the detection of relapse and the identification of patients with progressive MC who might benefit from detailed molecular analysis for minimal residual disease following matched volunteer UD BMT for childhood ALL.

Adolescent↗

Insulin increases histomorphometric indices of bone formation In vivo.

Recent clinical studies have established that bone density is related to both fat mass and circulating insulin levels. A direct action of insulin on the osteoblast may contribute to these relationships. Osteoblast-like cells have insulin receptors, and insulin has been shown to stimulate proliferation of these cells in vitro. However, it has not been possible to study the effects of insulin administration on bone in vivo because of the metabolic effects of insulin, particularly hypoglycemia. A model involving the local injection of insulin over one hemicalvaria of an adult mouse overcomes these difficulties and permits the histomorphometric study of insulin's action on bone. Insulin or vehicle was injected daily for 5 days over the right hemicalvariae of adult mice, and the animals were sacrificed 1 week later. All indices of bone formation were significantly increased in insulin-treated hemicalvariae compared with the noninjected hemicalvariae. There was a 2.73 +/- 0. 50-fold increase in osteoid area (P = 0.005), a 2.20 +/- 0.37-fold increase in osteoblast surface (P = 0.021) and a 2.04 +/- 0.29-fold increase in osteoblast number (P = 0.012). Indices of bone resorption tended to decline and mineralized bone area tended to increase in insulin-treated animals. The direct action of insulin on bone may contribute to the increased bone density seen in obesity and to the osteopenia of type I diabetes, conditions associated with insulin excess and deficiency, respectively.

Animals↗

Amantadine in the early treatment of cocaine dependence: a double-blind, placebo-controlled trial.

A 4-week, double-blind, placebo-controlled trial of amantadine was conducted in 61 cocaine dependent outpatients. Subjects received 100 mg of amantadine 3 times daily. A follow-up visit was conducted at week 8. There were no significant differences between groups in treatment retention, or in the number of benzoylecgonine positive urine samples. Self-reported drug and alcohol use declined in both groups. At week 8 follow-up, self-reported drug use was significantly lower in the placebo group. Amantadine was not effective, and discontinuation of it may have been associated with an increase in cocaine use.

Adult↗

Matched and mismatched unrelated donor bone marrow transplantation for juvenile chronic myeloid leukaemia.

Juvenile chronic myeloid leukaemia (JCML) is a rare haematological condition of childhood curable only by bone marrow transplantation (BMT). We report our experience using matched and mismatched unrelated donor BMT for JCML in five patients. Although the procedure is hazardous in terms of toxicity and relapse, two patients are alive and disease-free 28 and 49 months post BMT.

Bone Marrow Transplantation↗

Short-term effects of high dose oral medroxyprogesterone acetate on bone density in premenopausal women.

Despite the widespread use of the C21 progestin medroxyprogesterone acetate (MPA) in hormone replacement therapy and gynecological practice, its effects on bone density are uncertain, with contradictory reports in the literature. We have examined the short term changes in bone density at the lumbar spine (a predominantly trabecular site) and the femoral neck (a predominantly cortical site) in 13 premanopausal women prescribed high dose MPA (50 mg/day) for gynecological disorders and in 12 control subjects. Compared to basal values, lumbar spine bone mineral density (measured by dual energy x-ray absorptiometry) fell progressively by a mean 2.4% at 6 months and 4.1% at 12 months (both P < 0.01); in five subjects who continued the drug, it had fallen by a mean 5.9% at 20 months (P < 0.002). The spinal bone loss in the MPA users was significantly greater than that in controls (P < 0.005 at 6 months; P < 0.01 at 12 months) and occurred despite a significant gain in body weight in the women using MPA (median, 3.5 kg at 6 months; P < 0.01). In four subjects in whom bone density was measured 6 months after cessation of MPA, spinal bone density showed significant recovery (mean increment, 2.8%; P < 0.025). Femoral neck bone density measurements did not differ between the groups. MPA induced amenorrhea in all subjects who continued with it beyond 6 months, and the amenorrheic subjects were estrogen deficient (median plasma estradiol, 70 pmol/L). We conclude that, when given in doses sufficient to induce hypogonadism, MPA use is associated with significant early loss of trabecular bone, which is probably the consequence of estrogen deficiency.

Administration, Oral↗

Transplantation of peripheral blood progenitor cells from unrelated donors.

Six patients with high risk haematological malignancies received peripheral blood progenitor cells (PBPC) from unrelated donors. Four patients received PBPC as primary treatment and 2 following graft failure. Five donors were HLA-A, -B and -DR identical and one had a one antigen mismatch. PBPC were mobilised by treatment with G-CSF for 4-6 days. The patients received a range of 3.4 to 11.4 x 10(8) mononuclear cells/kg and 1.0 to 15.0 x 10(6) CD34 positive cells/kg. Four patients were given Campath 1G and 2 ATG prior to transplantation. The patient with one antigen mismatch received in vitro T-cell depleted PBPC using Campath 1M. All received cyclosporin and 5 in addition methotrexate. All recipients were given G-CSF and all engrafted. The patients developed no or mild acute GVHD. Two patients had limited chronic GVHD of the skin. The recipient of the mismatched graft died from extensive chronic GVHD. Three patients have had a relapse and two are alive and free of leukaemia.

Adolescent↗

Amylin stimulates osteoblast proliferation and increases mineralized bone volume in adult mice.

Amylin, a 37-amino-acid peptide co-secreted with insulin from the beta-cells of the pancreatic islets, has previously been demonstrated to inhibit bone resorption in vitro. However, its effects on bone formation and bone mass have not been assessed. We report that periphysiological concentrations of amylin stimulate proliferation of fetal rat osteoblasts in vitro. When amylin is injected daily for 5 days over the calvariae of adult mice in vivo, there are substantial increases in histomorphometric indices of bone formation, a reduction in bone resorption, and a significant increase in mineralized bone area. Equimolar doses of calcitonin in this in vivo model produced an inhibition of bone resorption but no significant effect on bone area. These findings support a role for amylin as a physiological regulator of bone and suggest that it should also be evaluated as a potential treatment for osteoporosis.

Amyloid↗