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Biomedical subjects

M Glatt

Publications and source records attributed to M Glatt.

At least 19 recordsLinked to original sources

Long-term zoledronic acid treatment increases bone structure and mechanical strength of long bones of ovariectomized adult rats.

Zoledronic acid (ZOL) is a highly potent heterocyclic bisphosphonate which has been shown to inhibit bone resorption in short-term experiments in young growing animals. In this investigation we have evaluated the effects of a 1-year administration to mature, ovariectomized (OVX) rats as a model for postmenopausal osteoporosis in order to elucidate (1) the temporal changes in urinary biochemical markers of bone turnover and femoral bone mineral density (BMD), (2) to measure changes of static and dynamic histomorphometric parameters and mechanical strength, and (3) to assess the preventive effects of chronic treatment with ZOL on these parameters. In urine, deoxypyridinoline increased after OVX and was significantly reduced by ZOL administration, indicative of a reduced bone collagen turnover. These changes were accompanied by alterations of tibial cancellous bone: trabecular bone volume and parameters of bone architecture were significantly augmented by ZOL and bone formation rates fell as a consequence of suppressed bone turnover, but were still measurable. No signs of "frozen bone" or osteomalacia could be detected. BMD of the whole femurs rose in sham-operated control animals (SHAM) during the entire experimental period, whereas in OVX animals, BMD plateaued after 32 weeks at a lower level. ZOL at a low dose (0.3 mg/kg/week s.c.) did not alter whole femur BMD, but at higher doses (1.5 and 7.5 mg/kg/week s.c.) BMD increased to the level of the SHAM group. A distinct pattern was noted for the distal quarter of the femur, a region rich in cancellous bone: BMD initially increased in all treatment groups except the OVX group, and at a later stage fell again at a comparable rate irrespective of treatment. Mechanical stability, as assessed by a 3-point bending test, was significantly increased by all doses of ZOL and exceeded OVX and sham-operated controls. The effects on mechanical properties were observed at a low dose which did not measurably increase femoral BMD after 1-year treatment. Multiregression analysis revealed a significant positive correlation between maximum load and BMD, and a significant negative correlation of maximum load with labeled perimeter, a marker of bone formation and turnover. No significant correlation was found with urinary deoxypyridinoline, a marker of bone resorption. The data show that mechanical testing detects improvements of functional bone quality following low dose bisphosphonate treatment which are not identified by standard DXA measurements of BMD.

Animals↗

A rat model of bone cancer pain.

This study describes the first known model of bone cancer pain in the rat. Sprague-Dawley rats receiving intra-tibial injections of syngeneic MRMT-1 rat mammary gland carcinoma cells developed behavioural signs indicative of pain, including: mechanical allodynia, difference of weight bearing between hind paws and mechanical hyperalgesia. The development of the bone tumour and structural damage to the bone was monitored by radiological analysis, quantitative measurement of mineral content and histology. Intra-tibial injections of 3 x 10(3) or 3 x 10(4) syngeneic MRMT-1 cells produced a rapidly expanding tumour within the boundaries of the tibia, causing severe remodelling of the bone. Radiographs showed extensive damage to the cortical bone and the trabeculae by day 10-14 after inoculation of 3 x 10(3) MRMT-1 cells, and by day 20, the damage was threatening the integrity of the tibial bone. While both mineral content and mineral density decreased significantly in the cancerous bone, osteoclast numbers in the peritumoural compact bone remained unchanged. However, tartarate-resistant acid phosphatase staining revealed a large number of polykariotic cells, resembling those of osteoclasts within the tumour. No tumour growth was observed after the injection of heat-killed MRMT-1 cells. Intra-tibial injections of 3 x 10(3) or 3 x 10(4) MRMT-1 cells, heat-killed cells or vehicle did not show changes in body weight and core temperature over 19-20 days. The general activity of animals after injection with live or heat-killed MRMT-1 cells was higher than that of the control group, however, the activity of the MRMT-1 treated group declined during the progress of the disease. Rats receiving intra-tibial injections of MRMT-1 cells displayed the gradual development of mechanical allodynia and mechanical hyperalgesia/reduced weight bearing on the affected limb, beginning on day 12-14 or 10-12 following injection of 3 x 10(3) or 3 x 10(4) cells, respectively. These symptoms were not observed in rats receiving heat-killed cells or vehicle. Behavioural data suggest a reasonable time window for evaluation of anti-nociceptive agents between day 14 and 20 after cancer cell inoculation in this model. Acute treatment with morphine (1-3mg/kg, subcutanously (s.c.)) produced a dose-dependent reduction in the response frequency of hind paw withdrawal to von Frey filament stimulation 17 or 19 days following intra-tibial injections of 3 x 10(3) MRMT-1 cells. A significant reduction in the difference in hind limb weight bearing was also observed. Acute treatment with celebrex (10-30 mg/kg, s.c.) did not affect mechanical allodynia or difference in weight bearing in rats 20 days following treatment with 3 x 10(3) MRMT-1 cells. Although the pathophysiology of cancer pain is largely unknown, significant enhancement of glial fibrillary acidic protein (GFAP) staining in the corresponding segments of the ipsilateral spinal cord highlights the possible involvement of astrocytes. In summary, the induction of bone cancer in the rat by the syngeneic MRMT-1 mammary tumour cell line provides a valid pre-clinical model for pain associated with bone metastases. Significant mechanical hyperalgesia and allodynia develops in association with the progression of the tumour in the bone marrow cavity, while the general condition of the animal remains satisfactory. While acute treatment with morphine has some analgesic effect on hind limb sparing the selective COX-2 inhibitor, celebrex, has no influence on the pain-related behavioural changes in this model.

Analgesics, Opioid↗

The bisphosphonate zoledronate prevents vertebral bone loss in mature estrogen-deficient rats as assessed by micro-computed tomography.

The effect of long-term treatment with the bisphosphonate zoledronate on vertebral bone architecture was investigated in estrogen-deficient mature rats. 4-month-old rats were ovariectomized and development of cancellous osteopenia was assessed after 1 year. The change of bone architectural parameters was determined with a microtomographic instrument of high resolution. After 1 year of estrogen-deficiency, animals lost 55% of vertebral trabecular bone in comparison to sham operated control animals. Trabecular number (Tb.N) and trabecular thickness (Tb.Th) were significantly reduced in ovariectomized animals, whereas trabecular separation (Tb.Sp), bone surface to volume fraction (BS/BV) and trabecular bone pattern factor (TBPf) were significantly increased, indicating a loss of architectural integrity throughout the vertebral body. 3 groups of animals were treated subcutaneously with zoledronate for 1 year with 0.3, 1.5 and 7.5 microgram/kg/week to inhibit osteoclastic bone degradation. Administration started immediately after ovariectomy and treatment dose-dependently prevented the architectural bone deterioration and completely suppressed the effects of estrogen deficiency at the higher doses. The results show that microtomographic determination of static morphometric parameters can be used to quantitate the effects of drugs on vertebral bone architecture in small laboratory animals and that zoledronate is highly effective in this rat model.

Journal Article↗

Tumor bone diseases: molecular mechanisms and opportunities for novel treatments.

A variety of cancers are associated with bone. Primary tumors can arise in bone, common cancers, such as those of breast and prostate origin, metastasize to bone, and multiple myeloma neoplastic disease affects bone profoundly. The cellular and molecular mechanisms underlying these pathological processes are increasingly being understood. The interaction of tumor cells with bone cells, osteoblasts and osteoclasts, and with the bone local environment is a new promising direction in research, which should help to develop new therapies. In this article we will relate the newest developments in the molecular research to the pathology of the tumor bone disease. Potential new targets for drugs, aimed specifically at tumor bone diseases, will be highlighted. Furthermore, we will describe the existing compounds that are either used in treatment or have a potential as therapeutic agents, such as bisphosphonates, Src inhibitors, and selective estrogen receptor modulators.

Animals↗

A novel inhibitor of the tyrosine kinase Src suppresses phosphorylation of its major cellular substrates and reduces bone resorption in vitro and in rodent models in vivo.

The tyrosine kinase Src has been implicated in the process of osteoclast-mediated bone resorption. Here, we describe a novel class of Src inhibitors, substituted 5,7-diphenyl-pyrrolo[2,3-d]pyrimidines, and characterize one of them, CGP77675, in vitro and in models of bone resorption in vivo. In vitro, CGP77675 inhibited phosphorylation of peptide substrates and autophosphorylation of purified Src (concentration producing half-maximal inhibition [IC50] values 5-20 and 40 nmol/L, respectively). The compound was selective toward other protein kinases: the Src IC50 value was lower than those for Cdc2 (>500-fold), epidermal growth factor (EGF) receptor (7.5-fold), and vascular endothelial growth factor receptor (>50-fold), and for v-Abl (15-fold) and focal adhesion kinase (Fak) (>25-fold). The Src kinase family members Lck and Yes were inhibited with IC50 values 20-fold higher than or equal to Src. To measure the inhibition of cellular Src activity, we identified the major tyrosine-phosphorylated proteins in an Src-overexpressing cell line IC8.1 as Src, Fak, and paxillin. CGP77675 potently inhibited tyrosine phosphorylation of the Src substrates Fak and paxillin, but had much less effect on Src (IC50 values 0.3, 0.5, and 5.7 micromol/L). The phosphorylation of Src in IC8.1 cells reflected phosphorylation of the negative regulatory tyrosine 527 (Y527); thus, the inhibitor was selective against the Y527 C-terminal Src kinase Csk. In osteoblastic MC3T3-E1 cells, CGP77675 inhibited signaling induced by PDGF at the receptor level, but not signaling by EGF, basic fibroblast growth factor, insulin-like growth factor-1, and phorbol 12-myristate 13-acetate. The effect of CGP77675 on bone resorption was evaluated in vitro and in vivo. The parathyroid hormone-induced bone resorption in rat fetal long bone cultures was inhibited with an IC50 of 0.8 micromol/L. CGP77675 dose-dependently reduced the hypercalcemia induced in mice by interleukin-1beta and partly prevented bone loss and microarchitectural changes in young ovariectomized rats, showing that the protective effect on bone was exerted via the inhibition of bone resorption. Thus, specific Src family kinase inhibitors may be useful for the treatment of diseases associated with elevated bone loss.

3T3 Cells↗

Mobilization of tumor cells and hematopoietic progenitor cells into peripheral blood of patients with solid tumors.

Peripheral blood progenitor cells (PBPCs) are increasingly used for autografting after high-dose chemotherapy. One advantage of PBPCs over the use of autologous bone marrow would be a reduced risk of tumor-cell contamination. However, the actual level of tumor cells contaminating PBPC harvests is poorly investigated. It is currently not known whether mobilization of PBPCs might also result in mobilization of tumor cells. We evaluated 358 peripheral blood samples from 46 patients with stage IV or high-risk stage II/III breast cancer, small cell (SCLC) or non-small cell (NSCLC) lung cancer, as well as other advanced malignancies for the detection of epithelial tumor cells. Monoclonal antibodies against acidic and basic cytokeratin components and epithelial antigens (HEA) were used in an alkaline phosphatase-anti-alkaline phosphatase assay with a sensitivity of 1 tumor cell within 4 x 10(5) total cells. Before initiation of PBPC mobilization, circulating tumor cells were detected in 2/7 (29%) patients with stage IV breast cancer and in 2/10 (20%) patients with extensive-disease SCLC, respectively. In these patients, an even higher number of circulating tumor cells was detected after chemotherapy with VP16, ifosfamide, and cisplatin (VIP) followed by granulocyte colony-stimulating factor (G-CSF). This approach has previously been shown to be highly effective in mobilizing PBPCs. In the 42 patients without circulating tumor cells during steady state, tumor cells were mobilized in 9/42 (21%) patients after VIP+G-CSF induced recruitment of PBPCs. The overall incidence of tumor cells varied between 4 and 5,600 per 1.6 x 10(6) mononuclear cells analyzed. All stage IV breast cancer patients and 50% of SCLC patients were found to concomitantly mobilize tumor cells and PBPCs. Kinetic analyses showed two patterns of tumor cell recruitment depending on the presence or absence of bone marrow disease: (1) early after chemotherapy (between days 1 and 7) in patients without marrow infiltration, and (2) between days 9 and 16 in patients with marrow infiltration, ie, within the optimal time period for the collection of PBPCs. We show that there is a high proportion of patients with circulating tumor cells under steady-state conditions, and in addition a substantial risk of concomitant tumor cell recruitment upon mobilization of PBPCs, particularly in stage IV breast cancer patients with bone marrow infiltration. The biologic and clinical significance of this finding is unknown at present.

Adult↗

CGP 47969A: effect on collagen induced arthritis in DBA/1 mice.

OBJECTIVE: CGP 47969A is a novel and potent inhibitor of cytokine biosynthesis in human and murine monocytic cells. The effect of CGP 47969A on collagen induced arthritis (CIA) in DBA/1 mice was investigated and compared to that of prednisolone. METHODS: CIA was induced by intradermal injection of type II collagen in CFA at Day 0. CGP 47969A was applied orally, 5 times/week, starting at Day 15 after immunization. Arthritic signs were recorded 3 times/week for clinical scoring and radiographic analysis was performed at the end of the experiment at Day 60. Serum amyloid P (SAP) and anticollagen antibody titers were determined by ELISA at Day 60. RESULTS: CGP 47969A dose dependently reduced the incidence of arthritis from 93% in the positive control group to 60, 40, 30 and 10% at doses of 1, 5, 25 and 60 mg/kg/day, respectively. At a dose of 120 mg/kg, CGP 47969A totally prevented the occurrence of arthritis (ED50 between 1 and 5 mg/kg). Prednisolone at 3 and 30 mg/kg reduced the arthritis incidence to 70 and 30%, respectively. CGP 47969A dose dependently inhibited the joint destruction, as measured by radiographic scoring and its potency was comparable to that of prednisolone. The elevated serum levels of the positive acute phase protein SAP in arthritic animals were completely normalized by CGP 47969A at a dose of 60 mg/kg, however, neither CGP 47969A nor prednisolone influenced the plasma levels of anticollagen antibodies (IgG). CONCLUSION: Our results demonstrate that CGP 47969A is highly effective in CIA with a potency comparable to that of prednisolone. These promising results justify the expectation that this novel antiarthritic compound now under development might also be effective in the treatment of rheumatoid arthritis in man.

Acute Disease↗

A sulphonamido-indanone derivative CGP 28237 (ZK 34228), a novel non-steroidal anti-inflammatory agent without gastro-intestinal ulcerogenicity in rats.

CGP 28237 (5-methylsulphonylamino-6-phenoxy-1-indanone) belongs to a series of structurally novel indanones. The compound is a weak acid (pK = 6.98), but it does not contain a carboxylic group. CGP 28237 exhibits potent anti-inflammatory activity in developing and established adjuvant arthritis in rats (ED40 approximately 0.5 mg/kg p.o.) and good activity in carrageenin oedema (ED40 approximately 3 mg/kg p.o.). It inhibits yeast-induced fever in rats with ED50 values of 1, 2 and 10 mg/kg p.o. at 1, 3 and 5 hours after drug administration. The antinociceptive activity in mice (phenyl-p-benzoquinone writhing) and rats (acetic-acid writhing) is weak. CGP 28237 has been shown to be non-ulcerogenic in rats under acute and chronic test conditions: it does not cause mucosal lesions in the stomach at 2 X 400 mg/kg p.o., it does not enhance gastro-intestinal blood loss during 10 days' oral treatment with 400 mg/kg p.o., and it did not induce gastro-intestinal lesions in a 4-week toxicity study up to 1000 mg/kg p.o. Although CGP 28237 is not a cyclooxygenase inhibitor in bovine seminal vesicle microsomes, it inhibits prostaglandin synthesis in zymosan-stimulated murine macrophages (IC50 approximately 3 X 10(-6) mol/l) and protects rabbits against arachidonic acid-induced lung embolism with 10 mg/kg p.o. CGP 28237 may represent a novel anti-inflammatory drug with excellent gastro-intestinal tolerability.

Animals↗

Arthritis in MRL/LPR mice and in collagen II sensitized DBA-1 mice and their use in pharmacology.

For assessment of anti-arthritic drugs, we used mice of the autoimmune MRL/lpr strain and DBA-1 mice sensitized with collagen type II. Our studies showed that in these two mouse arthritis models, unlike the classical rat adjuvant arthritis, the nonsteroidal antiinflammatory compounds tested were either ineffective or minimally affected a chosen number of humoral parameters and the incidence and severity of arthritis. Interestingly, both arthritis models showed a distinct pharmacological pattern in response to the slow-acting anti-rheumatic drugs, whereas steroids and cyclophosphamide inhibited both arthritic processes. Therefore, these two mouse models are useful for studying the immunopathological events operating in chronic inflammation and could potentially serve the characterization of new antirheumatic drugs.

Animals↗

On the role of type IX collagen in the extracellular matrix of cartilage: type IX collagen is localized to intersections of collagen fibrils.

The tissue distribution of type II and type IX collagen in 17-d-old chicken embryo was studied by immunofluorescence using polyclonal antibodies against type II collagen and a peptic fragment of type IX collagen (HMW), respectively. Both proteins were found only in cartilage where they were co-distributed. They occurred uniformly throughout the extracellular matrix, i.e., without distinction between pericellular, territorial, and interterritorial matrices. Tissues that undergo endochondral bone formation contained type IX collagen, whereas periosteal and membranous bones were negative. The thin collagenous fibrils in cartilage consisted of type II collagen as determined by immunoelectron microscopy. Type IX collagen was associated with the fibrils but essentially was restricted to intersections of the fibrils. These observations suggested that type IX collagen contributes to the stabilization of the network of thin fibers of the extracellular matrix of cartilage by interactions of its triple helical domains with several fibrils at or close to their intersections.

Animals↗

Delayed type hypersensitivity (DTH) to type II collagen (CII) in DBA-1 mice.

Sensitization of DBA-1 mice with Type II collagen (CII) in complete Freund's adjuvant can cause polyarthritis. A possible link between CII-induced arthritis and delayed type hypersensitivity (DTH) has been suggested, so we decided to investigate the susceptibility of DBA-1 mice to CII induced DTH reactions. The mice were primed with a dose of 10 micrograms CII i.p. 4 days before challenging with 40 micrograms CII in the ear. Swelling was measured 48 h later and was found to be reproducible. Responsiveness to CII could be transferred with whole spleen cell populations from primed animals or with enriched spleen T cells, thus confirming the cellular nature of the reaction. Lymph node cells from CII/CFA footpad immunized animals were restimulated with CII in vitro. These cells were able to passively transfer DTH sensitivity in vivo and exhibited specificity for this antigen in vitro in proliferation assays.

Animals↗

Leukotrienes reduce nociceptive responses to bradykinin.

The biotransformation of arachidonic acid leads to two important groups of inflammatory mediators, the leukotrienes and the prostaglandins. Hyperalgesic effects have been demonstrated for prostaglandins in a variety of animal models but the effects of leukotrienes on inflammatory pain are less well documented. Using the isolated rabbit ear model of algesia we have shown that perfusion of the ear with the leukotrienes B4, C4 and D4 (10(-8)-10(-7) M) causes a reversible, dose- and time-dependent reduction of the reflex fall in systemic blood pressure and the "head flick" response induced by injection of bradykinin (400 ng), without affecting similar responses induced by the neurotransmitter acetylcholine. The antagonistic effect of leukotrienes on the algesic action of bradykinin could be reversed by the leukotriene antagonist FPL55712 (2 micrograms/ml). This result implies that the leukotrienes may have a desensitizing effect on the nociceptor during an inflammatory response in contrast to the pain threshold-lowering action of the E- and I-type prostaglandins.

Acetylcholine↗

The influence off an acyl-amino-alcyl-benzoic acid (HB 699) on biosynthesis and secretion of insulin in isolated rat islets of Langerhans.

HB 699 belongs to a new class of hypoglycaemic agents, the acyl-amino-alcyl-benzoic acids. Its influence on bion-synthesis and secretion of insulin was studied in collagenase-isolated rat islets. During incubations for 3 hours together with 3H-leucine at 1 and 2 mg/ml glucose, HB 699 (10 micrograms/ml) reduced biosynthesis of proinsulin and insulin (3H-leucine incorporation), whereas insulin release was stimulated. During an incubation period of 2 hours in the absence of glucose, insulin release was enhanced both by HB 699 (50 micrograms/ml) and glibenclamide (10 micrograms/ml). At 1 mg/ml glucose, no additive or potentiating effect of HB 699 to that of glibenclamide was found regarding insulin release. When calcium ions were omitted insulin output in the presence of HB 699 and glucose was reduced. In conclusion, HB 699, although not belonging to the class of sulfonylureas, behaves very similar to these drugs concerning its influence on insulin biosynthesis and secretion in vitro. It acts as an initiator of insulin release, involving probably similar mechanisms as sulfonylureas do.

Animals↗

Effect of imidazole on prostaglandin and thromboxane accumulation in urate arthritis.

High concentrations of prostaglandins E2 and F2alpha and much lower concentrations of thromboxane B2 occurs in joint washes of chicken 1--3 h after intra-articular injection of urate crystals. Pretreatment with 200 mg/kg imidazole i.v. reduced the concentration of prostaglandins and of thromboxane B2 in the joint washes significantly. Simultaneously, leucocyte invasion was delayed and development of oedema was inhibited. The results suggest that in urate crystal arthritis the effect on prostaglandin and thromboxane accumulation at the site of inflammation contributes to the anti-inflammatory activity of imidazole.

Animals↗

The relation of cyclic AMP levels to phagocytosis and enzyme release in acute inflammation in vivo.

The effect of altering endogenous leucocyte cyclic AMP levels on phagocytosis and lysosomal enzyme release was studied in vivo. Acute pleural exudates were produced in rats using either calcium pyrophosphate dihydrate crystals or rat serum. Despite marked increases in leucocyte cyclic AMP concentration produced by injection of dibutyryl cyclic AMP and theophylline, there was no reduction in crystal phagocytosis or in enzyme discharge.

Acid Phosphatase↗

Prostaglandin release from macrophages: an assay system for anti-inflammatory drugs in vitro.

It is the intention of this communication to present a simple and reliable in vitro system for the evaluation of anti-inflammatory drugs. The system described appears to combine the advantages of two established procedures, i.e. measurement of the inhibition of prostaglandin (PG) synthesis in vitro using microsomal enzyme preparations and the measurement of the inhibitory effects of drugs on PG synthesis in vivo avoiding major limitations. We propose to measure the effect of drugs on the PG release from mouse peritoneal macrophages in vitro. The influence of culture conditions, phagocytosis and drugs on the PG release from these cells is described. We found that antibody-coated erythrocytes are especially suitable triggers of PG release, and that the release can be inhibited by steroidal and non-steroidal anti-inflammatory drugs in concentrations resembling their effective doses in vivo.

Animals↗