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Biomedical subjects

J Rafter

Publications and source records attributed to J Rafter.

At least 55 records · Page 3Linked to original sources

Calcium enhances the hemolytic action of bile salts.

The lysis of human erythrocytes by bile salts in buffer containing isotonic saline was dramatically enhanced by the addition of 5-10 mM calcium chloride. All bile acids tested showed this effect, with a marked increase in lysis occurring at 0.75 mM for deoxycholate, 1 mM for chenodeoxycholate, 2.5 mM for ursodeoxycholate and 5.5 mM with cholate in the presence of 10 mM calcium chloride. The effect appeared to be specific for calcium; strontium chloride and magnesium chloride gave no stimulatory effect. The increased lysis of the erythrocytes in the presence of 1 mM deoxycholate and 1-10 mM calcium chloride was not associated with increased uptake of the bile salt by the cells (measured with [14C]deoxycholate). Using erythrocytes previously labelled with [3H]cholesterol, there was no evidence of an enhanced removal of that membrane component in the presence of calcium and deoxycholate, compared to deoxycholate alone. The sensitivity of the cells to the effect of calcium in the presence of 1 mM deoxycholate increased with the length of time of their storage at 4 degrees C. The sensitivity returned to that of fresh cells after incubation at 37 degrees C with 30 mM adenosine plus 25 mM glucose, but this treatment did not further diminish the lysis. Lysis in the presence of 10 mM calcium chloride and 1 mM deoxycholate was partially blocked by increasing the KCl concentration at the expense of NaCl. The maximum effect occurred with a buffer comprising 100 mM KCl/50 mM NaCl. A more dramatic reduction in the lysis followed the incorporation of the calcium chelator, quin2, into the cells. The lysis induced by 1 mM deoxycholate in the presence of calcium was reduced by 80% in quin-2-loaded cells compared to controls. The data suggest that bile acids can promote the influx of calcium into erythrocytes, leading to lysis as a result of the efflux of intracellular potassium and/or the uptake of sodium from the incubation medium. The data further suggest that cellular effects may occur at lower bile acid concentrations than that thought to be required for detergent damage.

Aminoquinolines↗

Insurance premium reductions. A motivating factor in long-term hypertensive treatment.

Elevated blood pressure substantially increases mortality and requires, therefore, high premium payments for life insurance coverage. Most life insurance companies are willing to reduce the cost of yearly premiums when blood pressure is successfully treated and controlled for several years. Physicians should bring these facts to their patients' attention as a motivating factor to improve adherence to therapy.

Adolescent↗

In vitro metabolism of estradiol-17 beta by liver microsomes from juvenile rainbow trout, Salmo gairdneri.

The metabolism of [4-14C]estradiol-17 beta by liver microsomes from, Salmo gairdneri, was studied in vitro. The following metabolites were identified by gas chromatography--mass spectrometry: estrone, estra-1,3,5(10)-triene-3,16 beta,17 beta-triol, and estra-1,3,5(10)-triene-3,7 alpha,17 beta-triol. The presence of additional polar metabolites hydroxylated at positions 6 alpha and 6 beta was indicated. The formation of the hydroxylated metabolites was inhibited by CO indicating the participation of cytochrome P-450-dependent enzymes.

Animals↗

Distribution of the carcinogenic tryptophan pyrolysis product Trp-P-1 in control, 9-hydroxyellipticine and beta-naphthoflavone pretreated mice.

Autoradiograms obtained 1-4 h after i.v. injection of the 14C-labelled carcinogenic tryptophan pyrolysis product Trp-P-1 to albino and pigmented mice showed a pronounced uptake of radioactivity in the lymphatic system (thymus, lymph nodes, bone marrow and spleen), in the endocrine system (hypophysis, thyroid, adrenal medulla) and in the liver, kidney medulla and brain. High radioactivity was present in the excretory pathways, predominantly in the bile/intestinal contents. At longer post-injection times (24 h to 6 days) most of the labelled substance had left the tissues, except for the liver which still retained a high concentration of radioactivity. Trp-P-1 is known to be activated by cytochrome P-448. The uptake of radioactivity in the liver could be reduced by pretreatment with the cytochrome P-448 inhibitor 9-hydroxyellipticine suggesting that the observed accumulation of radioactivity in the liver was partly due to metabolites of Trp-P-1. After pretreatment with the cytochrome P-448 inducer beta-naphthoflavone, the administration of Trp-P-1 resulted in a highly selective accumulation of radioactivity in the lung parenchyma, exceeding all other tissues in the body. beta-Naphthoflavone pretreatment also increased the uptake of radioactivity in the kidney cortex and small intestinal mucosa. As indicated by a high labelling of the pigmented tissues of the maternal and fetal eye, the carcinogen and/or its metabolites were accumulated in melanin.

Alkaloids↗

Metabolism of 2,4',5-trichlorobiphenyl: role of the intestinal microflora in the formation of bronchial-seeking methyl sulphone metabolites in mice.

Groups of germ-free and conventional mice were treated with 2,4',5-trichlorobiphenyl (triCB) and [35S]cysteine or [35S]methionine, respectively. Control animals received the labelled amino acids only. Conventional mice accumulated significantly more extractable radioactivity both in lung and kidney tissues when compared to germ-free mice. The extracted radioactivity in lung and kidney tissues was shown to be due to the accumulation of methyl-[35S]sulphonyl-triCB. The low radioactivity in lungs of the germ-free mice was also shown to be due to the accumulation of small amounts of the sulphones. The results indicate an involvement of the intestinal flora in the formation of methyl sulphone metabolites of triCB.

Animals↗

Metabolism of 2,4',5-trichlorobiphenyl: tissue concentrations of methylsulphonyl-2,4',5-trichlorobiphenyl in germfree and conventional mice.

Whole-body autoradiography of 2,4',5-[14C]trichlorobiphenyl ([14C]triCB) indicated that, whereas there was accumulation of radioactivity in the tracheobronchial mucosa of conventional (C) mice 1-7 days after injection, no such effect was observed in germfree (GF) mice 1 day after injection. At days 4 and 7 there was a low, but significant, uptake by the tracheobronchial mucosa of the GF mice. Chemical analysis showed that the concentrations of 4-methylsulphonyl-triCB (4-MeSO2-triCB) in lung, kidney and liver 7 days after administration of triCB were 6.5, 14.7 and 3.7 times higher, respectively, in C than in GF mice. The results are interpreted as indicating the existence of a major metabolic route to triCB methyl sulphones involving the intestinal microflora, and a minor route, not requiring the flora.

Animals↗

Effects of treatment with chenodeoxycholic acid on liver microsomal metabolism of steroids in man.

The present investigation was undertaken to evaluate whether treatment of gallstone patients with chenodeoxycholic acid is associated with changes of the hepatic metabolism of steroids. Altogether 37 patients with cholesterol gallstones undergoing cholecystectomy were included in the study. Nine of them had been treated with chenodeoxycholic acid (15 mg/kg/day) for about 8 weeks prior to operation. Two hydroxylations involved in cholic acid biosynthesis, 12 alpha-hydroxylation of 7 alpha-hydroxycholest-4-en-3-one and 25-hydroxylation of 5 beta-cholestane-3 alpha, 7 alpha, 12 alpha-triol, and the metabolism of a physiological steroid hormone, androst-4-ene-3, 17-dione, were studied in the microsomal fraction of liver homogenates. The 12 alpha-hydroxylase was inhibited about 50%, which is in accordance with a regulatory function of this enzyme. The 25-hydroxylase and the metabolism of androst-4-ene,3, 17-dione were unaffected. It is concluded that chenodeoxycholic acid treatment is not associated with general influences on hepatic steroid metabolism.

Androstenedione↗

19-Nortestosterone in mouse kidney.

19-Nortestosterone was identified as a product of testosterone conversion in vitro in male mouse kidney. After incubation of [14C]testosterone with kidney slices of castrated male mice, 64% of the radioactivity was recovered as testosterone, about 6% as epitestosterone and 2.5% was identified as 19-nortestosterone. The renotrophic effect of 19-nortestosterone was at least as high as that of testosterone. Possible role of 19-nortestosterone in mouse kidney is discussed.

Animals↗

The role of lactic acid bacteria in colon cancer prevention: mechanistic considerations.

Colorectal cancer is one of the most important causes of cancer morbidity and mortality in Western countries. While a myriad of healthful effects have been attributed to the probiotic lactic acid bacteria, perhaps the most controversial remains that of anticancer activity. It should be pointed out already at this point that there is no direct experimental evidence for cancer suppression in humans as a result of consumption of lactic cultures in fermented or unfermented dairy products. However, there is a wealth of indirect evidence, based largely on laboratory studies, in the literature. The precise mechanisms by which lactic acid bacteria may inhibit colon cancer are presently unknown. However, such mechanisms might include: enhancing the host's immune response; binding and degrading potential carcinogens; quantitative and/or qualitative alterations in the intestinal microflora incriminated in producing putative carcinogen(s) and promoters (e.g. bile acid-degrading bacteria); producing antitumorigenic or antimutagenic compounds in the colon; alteration of the metabolic activities of intestinal microflora; alteration of physicochemical conditions in the colon; effects on physiology of the host. These potential mechanisms are discussed in the present paper.

Animals↗

Influence of physical and chemical characteristics of diesel fuels and exhaust emissions on biological effects of particle extracts: a multivariate statistical analysis of ten diesel fuels.

The emission of diesel exhaust particulates is associated with potentially severe biological effects, e.g., cancer. The aim of the present study was to apply multivariate statistical methods to identify factors that affect the biological potency of these exhausts. Ten diesel fuels were analyzed regarding physical and chemical characteristics. Particulate exhaust emissions were sampled after combustion of these fuels on two makes of heavy duty diesel engines. Particle extracts were chemically analyzed and tested for mutagenicity in the Ames test. Also, the potency of the extracts to competitively inhibit the binding of 2,3,7,8-tetrachlorodibenzo-p-dioxin (TCDD) to the Ah receptor was assessed. Relationships between fuel characteristics and biological effects of the extracts were studied, using partial least squares regression (PLS). The most influential chemical fuel parameters included the contents of sulfur, certain polycyclic aromatic compounds (PAC), and naphthenes. Density and flash point were positively correlated with genotoxic potency. Cetane number and upper distillation curve points were negatively correlated with both mutagenicity and Ah receptor affinity. Between 61% and 70% of the biological response data could be explained by the measured chemical and physical factors of the fuels. By PLS modeling of extract data versus the biological response data, 66% of the genotoxicity could be explained, by 41% of the chemical variation. The most important variables, associated with both mutagenicity and Ah receptor affinity, included 1-nitropyrene, particle bound nitrate, indeno[1,2,3-cd]pyrene, and emitted mass of particles. S9-requiring mutagenicity was highly correlated with certain PAC, whereas S9-independent mutagenicity was better correlated with nitrates and 1-nitropyrene. The emission of sulfates also showed a correlation both with the emission of particles and with the biological effects. The results indicate that fuels with biologically less hazardous potentials should have high cetane number and contain less PAC and sulfur. The results also indicate that engine factors affect the formation and emission of nitrated PAC.

Automobiles↗