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Biomedical subjects

R G Russell

Publications and source records attributed to R G Russell.

At least 19 recordsLinked to original sources

Metabolism of halogenated bisphosphonates by the cellular slime mould Dictyostelium discoideum.

Methylenebisphosphonate and its monofluoro-, difluoro- and dichloro- derivatives inhibited growth of amoebae of Dictyostelium discoideum. Dichloromethylenebisphosphonate was the most potent inhibitor of amoebal growth whereas difluoromethylenebisphosphonate was the least potent inhibitor. Each of the bisphosphonates was taken up by the amoebae and incorporated into the corresponding beta, gamma-methylene analogue of adenosine triphosphate. Two of the bisphosphonates were also incorporated into the corresponding analogues of diadenosyl tetraphosphate. No correlation was found between the ability of the bisphosphonates to inhibit amoebal growth and the extent to which they were metabolised.

Adenosine Triphosphate

Interleukin-1 beta enhances the response of human articular chondrocytes to extracellular ATP.

It has been observed that both interleukin-1 (IL-1) and extracellular ATP stimulate the production of prostaglandin E (PGE) by human articular chondrocytes in monolayer culture. The combined effects of recombinant human IL-1 beta and ATP were therefore studied using these cells. IL-1 beta rapidly enhanced the response to a maximally effective concentration of ATP (100 microM). On continuous exposure of the cells to the cytokine, its effect was greatest after approx. 24 h and tended to decline thereafter. The enhancement of the response to 100 microM ATP by IL-1 beta was dose-dependent. Removal of IL-1 beta prior to treating the cells with 100 microM ATP did not affect the degree of enhancement of the response. The effect of the cytokine on the response to suboptimal concentrations of extracellular ATP was also tested. IL-1 beta lowered the minimum concentration of ATP required to elicit an increase in the production of PGE by human articular chondrocytes. These findings are of interest, since they indicate a synergistic interaction between a cytokine and a purinergic agonist. Moreover, since both the sensitivity of the cells to extracellular ATP and the maximum response to this agent were enhanced, it is possible that IL-1 modulates more than one step in the process of P2-purinoceptor-mediated stimulation of PGE production. These observations may be relevant to the pathogenesis of some forms of arthritis.

Adenosine Triphosphate

Bradykinin stimulates the production of prostaglandin E2 and interleukin-6 in human osteoblast-like cells.

The effect of bradykinin (BK) on proteinase activity, prostaglandin synthesis, and the production of interleukin-6 (IL-6) was investigated in cultures of human osteoblast-like cells. Bradykinin had no effect on stromelysin activity and plasminogen activator activity produced by human osteoblast-like cells. However, BK stimulated the production of prostaglandin E2, an effect that was markedly enhanced by pre-incubation with recombinant interleukin-1 alpha (rhIL-1 alpha), but was apparently unaffected by BK receptor antagonists types 1 and 2. Bradykinin stimulated the intracellular accumulation of total inositol phosphates suggesting that its effects were mediated by stimulation of phosphoinositide metabolism. Bradykinin within the dose range of 10(-11)-10(-5) M also significantly stimulated the production of IL-6. Bradykinin may, therefore, mediate a variety of responses in bone under both physiological and pathological conditions.

Bradykinin

The regulation of connective tissue metabolism by vasoactive intestinal polypeptide.

Immunohistochemical studies have confirmed the innervation of bone with neuropeptidergic neurons containing vasoactive intestinal polypeptide (VIP), substance P (SP) and calcitonin gene-related peptide (CGRP). In this study, we report effects of VIP on connective tissue cell metabolism. VIP stimulated PGE2 production in human articular chondrocytes, human osteoblast-like cells and human synovial cells, however, stromelysin production was unaffected. VIP also stimulated cAMP production in human osteoblast-like cells, but not in human articular chondrocytes or synovial cells. These findings are suggestive of a role of VIP in connective tissue cell metabolism which may contribute to the inflammatory processes of arthritis.

Cartilage, Articular

The effect of transforming growth factor beta on the plasminogen activator activity of normal human osteoblast-like cells and a human osteosarcoma cell line MG-63.

Transforming growth beta (TGF-beta) has been proposed to have a role in bone remodeling by affecting the differentiation and activity of osteoblasts and osteoclasts and by inhibiting the production of proteinases, such as plasminogen activators (PAs). Studies on PAs have largely been based on data from nonhuman and fetal cell lines, however. The purpose of this study was to investigate the effect of TGF-beta on the PA activity of normal human osteoblast-like cells and to compare this with its action on the human osteosarcoma cell line MG-63. The action of interleukin-1 beta (IL-1 beta) was also assessed because it has been shown to increase PA activity in other connective tissue cell types. Normal osteoblast-like cells had low to undetectable basal urokinase (uPA) and tissue plasminogen activator (tPA) activity, which was significantly stimulated by TGF-beta 1. This action was shown to be dependent on transcription and new protein synthesis. TGF-beta 2 had a similar action. IL-1 beta did not stimulate PA activity. In contrast, the MG-63 cell line had high basal tPA and uPA activities. TGF-beta 1 decreased basal PA activity, the effect being most marked for uPA activity. IL-1 beta stimulated uPA and tPA activity. TGF-beta 1 inhibited IL-1 beta-stimulated uPA activity, but the effect on tPA was more variable. This study has shown that TGF-beta has opposite effects on the PA activity of the two osteoblast-like cell types studied. Care must therefore be used before extrapolating data from one cell type to another.(ABSTRACT TRUNCATED AT 250 WORDS)

Bone Remodeling

Investigation of an outbreak of bloody diarrhea: association with endoscopic cleaning solution and demonstration of lesions in an animal model.

UNLABELLED: OUTBREAK INVESTIGATION: An outbreak of diarrhea, bloody diarrhea, and abdominal cramps occurred among persons undergoing flexible sigmoidoscopy at a branch clinic of a local health center. Illness was associated with use of sigmoidoscopes cleaned by one clinic assistant and appeared to be caused by 2% glutaraldehyde disinfectant solution left in the instruments after cleaning. ANIMAL STUDIES: In subsequent animal studies, colonic instillation of 2% glutaraldehyde solutions caused bloody diarrhea and a distinctive pattern of mucosal damage; similar changes were seen in a review of pathologic samples from other human cases of glutaraldehyde disinfectant-associated diarrhea. CONCLUSION: Our data indicate that improper endoscopic reprocessing can result in serious illness and underscore the importance of adequate training and quality control in this area.

Animals

Parathyroid gland hormones in the skeletal development of the ovine foetus: the effect of parathyroidectomy with calcium and phosphate infusion.

It has been confirmed that the foetal parathyroid glands are important in development and that thyroparathyroidectomy (TXPTX) of the ovine foetus with thyroxine (T4) replacement leads to hypocalcaemia, retarded skeletal development, depressed calcification and rickets, relative to thyroidectomy plus T4 replacement. Histomorphometric and biochemical (urinary excretion of deoxypyridinoline) indices of bone resorption are also reduced. However, skeletal calcification can be restored to normal by long-term infusion of the TXPTX foetuses with phosphate and calcium sufficient to normalise the plasma Ca2+ x Pi ion product. Nevertheless, depressed resorption, reduced osteoblast numbers and delayed development persisted. The evidence suggests that the abnormally low number of resorption cavities and osteoclasts may result from the reduction in circulatory parathyroid-hormone-related protein consequent upon the removal of the foetal parathyroid glands and that this hypercalcaemic factor has a direct effect upon the process of resorption and primary trabecular remodelling of the foetal skeleton.

Amino Acids

The effect of rat parathyroid hormone (1-34) infusion on urinary 3-hydroxypyridinium cross-link excretion in the rat.

The utility of measurement of the urinary excretion of the 3-hydroxypyridinium cross-links, pyridinoline (Pyr) and deoxypyridinoline (Dpyr) as indices of bone resorption in rats was investigated. Total Pyr and Dpyr excretion were measured in young rats treated by s.c. infusion with rat parathyroid hormone (1-34) (PTH) at 22-30 micrograms/kg/day or with diluent (controls) for 14 days. During infusion, average urinary excretion of both cross-links was significantly higher in PTH rats (Pyr: 11.77 +/- 0.44 nmol/day), Dpyr: 15.81 +/- 0.95 nmol/day) than in controls (Pyr: 10.17 +/- 0.35 nmol/day, Dpyr: 12.03 +/- 0.67 nmol/day). These results were consistent with the magnitude of the expected increase in bone resorption rate with this dose of PTH. The method appears to provide a sensitive measure of bone resorption for in vivo bone studies in rats.

Amino Acids

Expression of bone morphogenetic proteins in human prostatic adenocarcinoma and benign prostatic hyperplasia.

There are important interactions between prostatic tumours and bone. This study was designed to examine whether prostatic tissue can express bone inductive factors, in particular, the Bone Morphogenetic Proteins (BMPs). The polymerase chain reaction (PCR) has been used to screen for the expression of BMPs one to six in the prostatic tissue of patients with benign prostatic hyperplasia (BPH), non-metastatic prostatic adenocarcinoma and metastatic prostatic adenocarcinoma. BMPs were expressed in both benign and malignant prostate tissue and in the prostate tumour cell lines, PC3 and DU145. BMPs were also expressed in ocular melanoma tissue, a tissue which rarely metastasizes to bone. BMP-6 expression was detected in the prostate tissue of over 50% of patients with clinically defined metastatic prostate adenocarcinoma, but was not detected in non-metastatic or benign prostate samples or in ocular melanoma tissue. These findings suggest that the BMPs may play a role in the osteoinductive activity of prostate metastases and that the pattern of expression of BMPs may be important in the pathogenesis of osteoblastic metastases associated with prostate adenocarcinoma.

Adenocarcinoma

Nyctohemeral changes in bone turnover assessed by serum bone Gla-protein concentration and urinary deoxypyridinoline excretion: effects of growth and ageing.

1. To investigate whether there is a nyctohemeral rhythm in bone turnover, we measured serum bone Gla-protein (osteocalcin, an index of osteoblast activity) concentration every 2h and urinary deoxypyridinoline (a marker of bone collagen resorption) excretion for 8h periods in 10 pubertal girls (aged 10-14 years), 15 premenopausal women (aged 20-49 years) and 17 postmenopausal women (aged 50-75 years). 2. The serum concentration of bone Gla-protein and the urinary excretion of deoxypyridinoline were five times higher in the pubertal girls than in the premenopausal women. The urinary excretion of deoxypyridinoline in the postmenopausal women was twice that in the premenopausal women. 3. There was a nyctohemeral pattern in all age groups with mean night-time increases of 28% (P < 0.001) in the urinary excretion of deoxypyridinoline and of 5% (P < 0.001) in the serum bone Gla-protein concentration. 4. There also were nyctohemeral patterns in the urinary excretion of calcium (P < 0.02), sodium (P < 0.001) and potassium (P < 0.001), with decreases at night. There was a negative correlation between the night-time changes in the urinary excretion of deoxypyridinoline and calcium, especially in adult women (P < 0.01). 5. The serum level of parathyroid hormone increased with age, but this effect was only observed at night (01.00 to 07.00 hours). There was a nyctohemeral rhythm of the serum intact parathyroid hormone level at all ages, with a peak in the afternoon and night. 6. Thus, at night, there is a large increase in bone resorption and a small increase in osteoblastic activity, representing a nyctohemeral rhythm of bone turnover.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent

Effect of menopause and hormone replacement therapy on urinary excretion of pyridinium cross-links: a longitudinal and cross-sectional study.

OBJECTIVE: To study longitudinally the effect of the menopause and hormone replacement therapy on the new markers of bone resorption: urinary excretion of pyridinoline and deoxypyridinoline. DESIGN AND PATIENTS: Urinary pyridinoline and deoxypyridinoline were measured every 3 months for 2-3 years in 15 healthy women aged 45-54 years. Nine remained premenopausal and six became post-menopausal during the study. Urinary pyridinoline and deoxypyridinoline were also measured before and after 3 months of either placebo or hormone replacement therapy in 65 post-menopausal women, aged 45-54 years, who were participating in a double-blind study. MEASUREMENTS: Urinary pyridinoline and deoxypyridinoline were measured in fasting urine samples by spectrofluorometry after high performance liquid chromatography and corrected for creatinine excretion. RESULTS: Urinary pyridinoline and deoxypyridinoline remained almost constant during the premenopausal period. Both started to increase 6 months after the last menstrual bleeding and the mean post-menopausal values were 30-50% higher than the premenopausal values in the same subjects (values in nmol/mmol creatinine given as mean +/- SEM: urinary pyridinoline (premenopausal) = 29 +/- 2 vs urinary pyridinoline (post-menopausal) = 38 +/- 6, P < 0.05; urinary deoxypyridinoline (premenopausal) = 8 +/- 1 vs urinary deoxypyridinoline (post-menopausal) = 12 +/- 1, P < 0.05). Three months of post-menopausal hormone replacement therapy decreased (P < 0.001) both to premenopausal levels. CONCLUSION: Urinary pyridinoline and deoxypyridinoline, new markers of bone resorption, remain fairly constant in the years before the menopause and start to increase about 6 months after the last menstrual bleeding. This increase is reversed by hormone replacement therapy.

Amino Acids

Non-O1 Vibrio cholerae intestinal pathology and invasion in the removable intestinal tie adult rabbit diarrhea model.

A modified removable intestinal tie adult rabbit diarrhea (RITARD) model was used to investigate the intestinal pathology, intestinal bacterial colonization, intestinal fluid volume, and onset of diarrhea caused by non-O1 Vibrio cholerae. Three strains of non-O1 V. cholerae were studied. RITARD rabbits challenged with 10(3) CFU of strain NRT36S (a strain previously shown to cause diarrhea in volunteers) developed grade 3 diarrhea at 48 to 72 h. The mean counts of non-O1 V. cholerae isolated were 9.3 +/- 0.07 and 8.7 +/- 0.7 CFU/g from the small and large intestines, respectively. Histologic examination showed necrosis of the luminal epithelium in the colon and mild inflammatory cell infiltration in the adjacent lamina propria. The severity and extent of intestinal damage by strain NRT36S was dose dependent. Higher doses of strain NRT36S caused severe necrotizing colitis and enteritis, with bacteremia and mortality at less than 24 h in RITARD rabbits challenged with 10(9) CFU and at less than 48 h in RITARD rabbits challenged with 10(4) CFU. Electron and light microscopy demonstrated invasion of NRT36S into the luminal epithelial cells of the intestine. Challenge of RITARD rabbits with non-O1 V. cholerae A-5 and 2076-79 (strains which did not cause diarrhea in volunteers) did not cause diarrhea or intestinal pathology. Intestinal colonization was transient: at 72 h postchallenge, animals inoculated with strain A-5 were culture negative, while only low numbers of strain 2076-79 were detectable (approximately 0.4 to 0.8 CFU/g). Our data highlight the utility of the RITARD model, when combined with appropriate pathologic and bacteriologic studies, for obtaining insights into pathophysiologic mechanisms of enteric disease by non-O1 V. cholerae. In agreement with volunteer studies, non-O1 V. cholerae NRT36S is clearly pathogenic in this model; direct cell invasion may play a role in its ability to cause illness.

Animals

Enterotoxigenicity of Vibrio parahaemolyticus with and without genes encoding thermostable direct hemolysin.

Vibrio parahaemolyticus produces a thermostable direct hemolysin (TDH) that has been implicated in the pathogenesis of diarrheal disease caused by this organism. However, previous studies attempting to demonstrate the contribution of the hemolysin to virulence have been inconclusive. We investigated this putative virulence factor by using an isogenic TDH-negative (TDH-) strain constructed by specifically inactivating the two copies of the tdh gene encoding TDH. The enterotoxigenicities of the parent strain (AQ3815) and the mutant strain were tested by adding sterile culture supernatants to rabbit ileal tissue mounted in Ussing chambers. The culture filtrate of the parent strain produced a significant increase in short-circuit current (Isc), compared with the change induced by the TDH- mutant. The capacity of the culture filtrate of AQ3815 to increase the Isc was reduced by neutralization with anti-TDH serum, and the return of the cloned tdh gene to the TDH- mutant restored the ability to increase the Isc. These results were corroborated by rabbit ileal loop assays in which AQ3815 caused fluid accumulation but the TDH- mutant did not. No microscopic damage was seen in mucosal tissues exposed to the culture filtrate of either strain. These results indicate that TDH has an enterotoxigenic effect on rabbit small intestine and could be responsible for the watery diarrhea seen with V. parahaemolyticus.

Animals

Uncommon Campylobacter species in infant Macaca nemestrina monkeys housed in a nursery.

Studies were conducted to characterize 18 isolates of Campylobacter spp. that could not be identified as either Campylobacter jejuni or C. coli. The isolates were cultured from specimens from 13 of 18 infant nonhuman primates during a prospective epidemiologic study reported previously. Phenotypic tests, DNA hybridization, and analysis of DNA coding for rRNA identified the isolates as C. butzleri (seven isolates), C. hyointestinalis (seven isolates), and C. fetus subsp. fetus or C. fetus subsp. fetus-like organisms (four isolates). Ribotype and polyacrylamide gel electrophoresis patterns indicated that there was heterogeneity among the isolates of C. butzleri and C. fetus subsp. fetus-like organisms.

Animal Husbandry

Abnormalities in circadian patterns of bone resorption and renal calcium conservation in type I osteoporosis.

We compared changes over 24 h in 15 postmenopausal normal women (mean [+/- SD] age, 64 +/- 7 yr) with those in 15 postmenopausal women with type I osteoporosis and vertebral fractures (mean age, 64 +/- 5 yr). The serum osteocalcin concentration, a sensitive index of bone formation, increased by about 5% at night in both groups. Urinary deoxypyridinoline excretion, a sensitive index of bone resorption, increased by 48% at night (P less than 0.01) in the normal women, whereas in the osteoporotic women it was 62% higher overall (P less than 0.05), and the increase persisted into the morning. At night, urinary fractional excretion of calcium decreased by 20% (P less than 0.001) in the normal women, but was unchanged in the osteoporotic women; this circadian pattern differed between groups (P less than 0.05). The serum ionized calcium concentration did not change at night in either group. There was a trend (P = 0.07) for blunting of the nocturnal increase in the serum intact PTH level in osteoporotic women. Thus, the nocturnal serum ionized calcium level is maintained by decreased urinary calcium excretion and increased bone resorption in postmenopausal normal women, but almost entirely by increased resorption in postmenopausal osteoporotic women. This greater dependence on bone resorption during the nocturnal fast may account in part for the greater bone loss in osteoporotic women.

Amino Acids

Cyclosporin A. Mode of action and effects on bone and joint tissues.

Cyclosporin A is an established immunomodulatory agent with an increasing number of clinical applications. Although its precise mechanisms of action remain elusive, one of the most important known properties of CyA is its ability to inhibit the production of cytokines involved in the regulation of T-cell activation. In particular, CyA inhibits de novo synthesis of interleukin 2(IL-2), the major cytokine involved in T-cell proliferation, as well as other cytokines, probably at the level of gene transcription, as shown by the suppression of mRNA levels in activated T-cells. Although the major actions of CyA are on T-cells, there is some evidence for possible direct effects on other cell types e.g. B-cells, macrophages and, from our own work, on bone and cartilage cells. Cyclosporin A is thought to enter cells and to bind to cyclophilins, which are members of a family of high-affinity cyclosporin A-binding proteins, now known as immunophilins. The binding of cyclosporins to such proteins appears to be closely linked to the immunosuppressive action of cyclosporins. The immunophilins possess enzyme activity, ie. peptidyl-prolyl cis-trans isomerase, also known as rotamase, which can regulate protein folding, and may therefore alter the functional state of many cell proteins. Cyclosporin A blocks peptidyl-prolyl cis-trans isomerase activity but it is not clear whether this plays a part in its selective inhibition of cytokine-gene transcription. Moreover, the ubiquitous presence of cyclophilins and immunophilins raises the question of why cyclosporin A has its apparent major effects only on T-cells. Recent proposals regarding the intracellular mode of action of CyA suggest that it interacts with cyclophilin and other regulatory proteins including calmodulin and calcineurin, which is a serine/threonine phosphatase, and thereby affects the functional state of key regulators of gene transcription in its target cells. The effects of CyA on T-cells and directly or indirectly on connective tissue cells, including bone, cartilage and synovial cells, which all can produce a range of cytokines, are of interest in relation to the tissue changes that occur in inflammatory diseases, such as rheumatoid arthritis. Thus, for example, cyclosporin A inhibits in vitro the bone resorbing activity of interleukin 1, 1,25-dihydroxy-vitamin D3, parathyroid hormone and prostaglandin E2 by apparently non-T-cell effects, while in vivo protects against bone and cartilage loss in adjuvant arthritis. More needs to be known about the direct and indirect modulation of cytokine production by cyclosporin A in connective tissues, in order to understand its potential value in clinical disorders.

Arthritis, Rheumatoid