Procedural safeguards for euthanasia.
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Biomedical subjects
Publications and source records attributed to D J Harrison.
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Glutathione S-transferase (GST) isoenzyme expression is altered in a variety of neoplasms and the enzymes are implicated in metabolism of carcinogens and resistance to drugs, including cisplatin. We have studied GST Alpha, Pi, Mu and microsomal isoenzyme expression by immunohistochemistry in normal and cryptorchid testes, intratubal germ cell neoplasia (ITGCN), seminoma and non-seminomatous germ cell tumours. In 16 stage II-IV malignant teratoma intermediate (MTI) both orchidectomy and post-treatment residual surgical masses were studied. All four isoenzymes were strongly expressed in Leydig and Sertoli cells. GST Pi was absent from normal spermatogonia but strongly expressed by the neoplastic germ cells of ITGCN and seminoma. GST Pi was strongly expressed in all elements of teratoma, irrespective of differentiation. There were no qualitative differences in expression between primary and post-chemotherapy metastases. GST Alpha expression in teratoma correlated with epithelial differentiation. GSTs may be important in normal spermatogenesis and protection of germ cells from teratogens and carcinogens. They may have a role in testicular tumour drug resistance but this role is not well defined. GST Pi is a new marker for ITGCN.
Induction of glutathione S-transferases (GST) by the anticarcinogen butylated hydroxyanisole (BHA) has been examined in lung, kidney and small intestine of male and female BALB/c mice. BHA produced maximal induction of GST in the gut and although it increased GST levels in the kidney, it had little effect on pulmonary GST. Dietary BHA induced Alpha (Ya and Yk), Mu (Yb) and Pi (Yf) class GST subunits at least 10-fold in the small intestine but, by contrast, selenium-dependent glutathione peroxidase activity was reduced by approximately 4-fold in this organ following BHA treatment. In the kidney, all of the GST subunits, apart from Yk in males, showed modest levels of induction by BHA. However, a pronounced sex difference in the expression of renal alpha class subunits in both control and BHA-treated mice was observed, with female mice expressing approximately 4-fold greater levels of Ya and Yk than male mice. All renal GST were localized primarily in the proximal tubules. Dietary BHA was found to have the least inductive effect in the lung, where the GST were localized solely in the bronchi. The pulmonary Mu class GST subunits were induced approximately 2-fold by BHA; the expression of other GST was marginally increased by this inducer. Alpha class GST was also subject to sexual differentiation in the lung with female mice possessing higher levels of Yc and Yk than males. The Ya-type subunit was not detected in the lung nor was it induced by BHA.
Gall bladder bile is more acid that hepatic bile and this has been attributed to bicarbonate absorption by the gall bladder epithelium. The aim of this study was to investigate in vitro the acid base changes that occur across the human gall bladder mucosa. Fresh gall bladder tissue was obtained at cholecystectomy and placed in an Ussing Chamber and perfused with Ringer-Krebs glucose bicarbonate solution. The viability of the gall bladder was assessed by measuring the potential differences across the epithelium and by the morphology of the epithelial cells at the end of the experiments. Aliquots from the solutions were taken at two, 45 and 70 minutes and pCO2, hydrogen ion and bicarbonate concentrations were measured. In the mucosal side of the chamber a consistent and significant decrease was observed from two minutes to 70 minutes in bicarbonate concentration while pCO2 and hydrogen ion concentrations significantly increased. The degree of inflammation correlated well with the ability for acidification, the more inflamed the tissue the less its ability to acidify. When the gall bladder was exposed to amiloride or sodium free solution acidification was abolished in the mucosal side. When tissue metabolism was irreversibly inhibited by exposure to formaldehyde, hydrogen ion concentration and pCO2 were significantly decreased in the mucosal side of the chamber compared with the viable gall bladder. The human gall bladder is capable of secreting acid and this may be an important mechanism for preventing calcium precipitation and gall stone formation.
In this work, the role of genetic as well as environmental factors in determining cytochrome P450 isozyme levels in man have been studied. Simple DNA based assays for the identification of individuals nulled at the CYP2D6 locus are described and have been applied to investigate whether this gene defect is associated with altered cancer susceptibility. In contrast to literature reports, in no cancer type were poor metabolizers underrepresented, indeed in several cancers the mutant allele frequency was increased. A model using human tumours grown as xenografts is described that should help elucidate the factors which regulate P450 levels in man.
The cytosolic glutathione S-transferases (GST) from human skeletal muscle were purified by a combination of affinity chromatography and anion-exchange chromatography followed by either chromatofocusing or hydroxyapatite chromatography. Pi-class and Mu-class GST, but not Alpha-class GST, were isolated from muscle. In addition to a Pi-class GST subunit, which exists as a homodimer, this tissue also contains a total of three distinct neutral-type Mu-class GST subunits, which hybridize to form homodimers or heterodimers. The neutral-type subunits are referred to as N1-N3 and are defined by the decreasing isoelectric points of the homodimers; GST N1N1, N2N2 and N3N3 have estimated pI values of 6.1, 5.3 and less than 5.0 respectively. SDS/PAGE showed that N1, N2 and N3 have Mr values of 26,700, 26,000 and 26,300 respectively. The N1, N2 and N3 subunits are catalytically distinct, with N1 possessing a high activity for trans-4-phenylbut-3-en-2-one and N2 having high activity with 1,2-dichloro-4-nitrobenzene. In skeletal muscle the expression of the N1 subunit, but not of N2 and N3 subunits, was found to differ from specimen to specimen. The N1 subunit was absent from about 50% of samples examined, and the purification results from two different specimens are presented to illustrate this inter-individual variation. Skeletal muscle from one individual (M1), which did not express N1, contained only GST N2N2, N2N3 and pi, whereas the second sample examined (M2) contained GST N1N2, N2N2 and N2N3 as well as GST pi. N-Terminal amino acid sequence analysis supported the electrophoretic evidence that the N2 subunit in GST N1N2, N2N2 and N2N3 represents the same polypeptide. The peptides obtained from CNBr digests of N2 were subjected separately to automated amino acid sequencing, and the results indicate that N2 is distinct but closely related to the protein encoded by the human Mu-class cDNA clone GTH4 [DeJong, Chang, Whang-Peng, Knutsen & Tu (1988) Nucleic Acids Res. 16, 8541-8554]. GST N2N2 is probably identical with GST 4 [Board, Suzuki & Shaw (1988) Biochim. Biophys. Acta 953, 214-217], as over the 24 N-terminal residues of GST 4 there is complete identity between the two enzymes. Our data suggest that the GST 1 and GST 4 loci are part of the same multi-gene family.
The first biocompatibility studies on the DuPont perfluorosulphonic acid polymer (Nafion) are presented. Presterilized samples of commercially cast and solution cast Nafion membranes were implanted subcutaneously, intraperitoneally and intravenously in male Sprague-Dawley rats. Scanning electron microscopy and histological examination of explanted samples and surrounding tissues reveal little, if any, evidence of acute or chronic foreign body inflammatory response. The fibrous capsules surrounding the implant remain nominally thin (less than 100 microns) after more than 3 months in situ, while the surrounding tissue remains well vascularized. Nafion polymer exhibits sufficient biocompatibility to make it a viable candidate for some implantable biosensor applications. It may, however, be necessary to compensate for the effect of the progression of fibrous encapsulation on sensor performance, particularly during the acute response stage.
Seven patients with a clinical and histologic diagnosis of Sweet's syndrome were tested for the presence of circulating antibodies to neutrophil cytoplasmic antibodies. Six of the seven patients had detectable antibodies to neutrophil cytoplasmic antibodies at a serum dilution of at least 1:20. Antibodies to neutrophil cytoplasmic antibodies were not found in serum from patients with a range of cutaneous diseases, some known to cause clinical or histologic confusion with Sweet's syndrome. The detection of circulating antibodies to the neutrophil cytoplasm may be of possible diagnostic value in Sweet's syndrome.
Somatostatin analogues have been suggested as possible therapy for human pancreatic cancer. This paper investigates the effect of the somatostatin analogue SMS 201-995 (Sandoz) in the Syrian golden hamster model of nitrosamine-induced pancreatic carcinogenesis. Step-wise increasing doses of i.v. SMS 201-995 suppressed pancreatic juice output from a median basal value of 212 mg/kg body wt/h (Q1:Q3 = 121:334) to a median basal value of 70 mg/kg body wt/h during infusion of 5 micrograms/kg body wt/h of SMS 201-995 (Q1:Q3 = 64:102, P less than 0.05). Chronic s.c. injection of 5 and 10 micrograms/kg body wt SMS 201-995 twice daily for 3 days each week, did not affect pancreatic wet wt or pancreatic total DNA content after 1 or 6 weeks of treatment when compared to controls. The most interesting and unexpected finding in our study was that SMS 201-995 seemed to promote pancreatic carcinogenesis when administered in low dosage. More SMS 201-995 treated animals receiving 5 micrograms/kg body wt developed invasive pancreatic adenocarcinoma than controls after 15 weeks of carcinogen (4/10 animals versus 0/10, P less than 0.05, Fisher's exact test) and pancreatic involvement by tumour was more extensive (17/75 pancreatic blocks affected versus 0/71, P less than 0.001). When carcinoma in situ and microcarcinomata were analysed with invasive lesions, animals injected with 5 micrograms/kg body wt SMS 201-995 were still significantly more affected than controls (33/75 blocks versus 9/71, P less than 0.001). Hamsters injected with the higher SMS 201-995 dose (10 micrograms/kg body wt) did not show any increase in malignancy over the controls. These results suggest that the effect of SMS 201-995 on pancreatic carcinogenesis in the Syrian hamster is complex and varies with dose administered. Further work is required before its use on man can be justified.
Recent work has suggested that glutathione S-transferase (GST) enzymuria may be used to assess renal injury in transplant kidneys. There is little work investigating the possibility of using glutathione S-transferase enzymuria to assess other renal diseases and this study was undertaken to evaluate the localisation of GST isoenzymes in various glomerular and tubular pathologies so that the specificity of these enzymes as markers of tubular injury could be defined. Immunostaining was carried out to establish the location of alpha and pi class GST in renal biopsies from patients with a wide variety of renal diseases including membranous glomerulonephritis, minimal-lesion glomerulonephritis, mesangial proliferative glomerulonephritis, loin pain haematuria syndrome, and renal allograft rejection. In the cases of glomerulonephritis studied, alpha class GST was detected in proximal tubules and pi class GST in distal convoluted tubules, podocytes, and Bowman's capsule. The majority of cases of glomerulonephritis showed a heterogeneous pattern of expression of both isoenzymes: that is, there was variation in intensity of staining both in single tubules and also between tubules as opposed to the uniform staining pattern observed in normal kidneys. The location of enzymes in the cases of glomerulonephritis was the same as that in normal kidneys and we were unable to demonstrate any de novo expression of GST isoenzymes. However, seven out of ten renal allograft biopsies showed expression of pi class GST in proximal tubules which were atrophic. Provided there is no significant tubular atrophy, urinary release of these enzymes may be used to localise renal tubular injury.(ABSTRACT TRUNCATED AT 250 WORDS)
An immunohistochemical study of glutathione S-transferase (GST) expression in hepatocellular carcinoma and cholangiocarcinoma is described. Unlike most animal models of hepatic malignancy pi class GST was not consistently overexpressed in hepatocellular carcinoma. This tumour type either predominantly expressed alpha class GST or failed to express GST. By contrast, cholangiocarcinoma always expressed pi class GST, presumably reflecting the tissue of origin, since in human biliary epithelium pi class GST is the predominant GST. The variable expression of pi class GST which was observed in hepatocellular carcinoma may reflect transformation of hepatocytes damaged by toxins, since this GST can be induced after a chemical insult such as alcohol. As well as indicating the biochemical heterogeneity of hepatocellular carcinoma with respect to GST, this study indicates the need for further study of the nature of inherent drug resistance in these tumour types.
Glutathione S-transferases (GST) are drug-metabolizing and detoxification enzymes involved in the intracellular transport and metabolism of steroid hormones. We studied expression of pi, alpha, mu and microsomal GST by immunohistochemistry in normal human ovaries at different stages of the menstrual cycle and pregnancy and after the menopause. Antibodies were raised in rabbits to purified GST subunits and formalin-fixed, paraffin-embedded sections were studied using the peroxidase-antiperoxidase method. Staining density was graded from very strong to negative. All four isoenzymes were identified in the ovary and their distribution was heterogeneous. The staining pattern of follicles varied with the stage of the menstrual cycle for each isoenzyme. All the ovaries contained abundant GST pi in stroma. GST alpha is closely associated with the glutathione-dependent enzyme delta-5,3-ketosteroid isomerase, which catalyses the conversion of pregnenolone to progesterone and dehydroepiandrosterone to androstenedione. GST alpha was localized to the steroid-producing cells and thus may be useful in studying ovaries in conditions where there are assumed alterations in steroid production.
Normal rat liver expresses Ya (Mr 25,500), Yc (Mr 27,500) and Yk (Mr 25,000) Class Alpha glutathione S-transferase (GST) subunits. The Ya-type subunit can be resolved into two separate polypeptides, designated Ya1 and Ya2, by reverse-phase h.p.l.c. In rat livers that possess aflatoxin B1-induced pre-neoplastic nodules, a marked increase is observed in the expression of Ya1, Ya2, Yc and Yk; of these subunits, Ya2 exhibited the greatest increase in concentration. The Ya1 and Ya2 subunits isolated from nodule-bearing livers were cleaved with CNBr, and the purified peptides were subjected to automated amino-acid-sequence analysis. Differences in the primary structures of the two Ya GST subunits were found at positions 31, 34, 107 and 117. These data demonstrate that Ya1 and Ya2 are distinct polypeptides and are the products of separate genes. The amino acid sequences obtained from Ya1 and Ya2 were compared with the cloned cDNAs pGTB 38 [Pickett, Telakowski-Hopkins, Ding, Argenbright & Lu (1984) J. Biol. Chem. 259, 4112-4115] and pGTR 261 [Lai, Li, Weiss, Reddy & Tu (1984) J. Biol. Chem. 259, 5182-5188], which encode rat Ya-type subunits. From these comparisons it appears probable that Ya1 represents the GST subunit encoded by pGTR 261, whereas Ya2 represents the subunit encoded by pGTB 38. It is likely that the over-expression of Ya1 and Ya2 in nodule-bearing livers is of major significance in the acquired resistance of nodules to aflatoxin B1, since previous work [Coles, Meyer, Ketterer, Stanton & Garner (1985) Carcinogenesis 6, 693-697] has shown that the Ya-type GST subunit has high activity towards aflatoxin B1 8,9-epoxide.
Altered expression of the glutathione S-transferases (GSTs) has been implicated in the progression to tumour after exposure to carcinogens, and GST Pi has been suggested as a possible marker of preneoplasia in the cervix. We have studied expression of the GST isoenzymes in normal cervix, non-dysplastic cervical condylomata, cervical intraepithelial neoplasia (CIN), and invasive squamous carcinoma of the cervix using immunocytochemistry. An increase in GST Pi in CIN as compared with normal cervix was paralleled by a reduction in the expression of microsomal GST. Similar changes were seen in cervical condylomata and immature squamous metaplasia, and thus neither isoenzyme is a marker of dysplasia. Microsomal GST was expressed in only 66 per cent of cases and in 22 per cent showed strong expression in vascular endothelium. These findings are of particular interest in view of the association between cervical carcinoma and cigarette smoking. Differences between individuals in the ability to detoxify environmental carcinogens may influence the likelihood of progression from benign proliferation to invasive malignancy.
The Rett syndrome (RS) is associated with a neurological form of scoliosis. From 1985 we have instituted a postal survey of families with Rett girls. The prevalence of scoliosis in the survey population is 64%. The age at onset of scoliosis has a normal distribution about a peak age of 8 years, with 72% of cases occurring before age 8. The scoliosis in RS is typically a long thoracolumbar curvature that progresses rapidly in girls over the age of 10 years. Operative treatment is successful in reducing the curvature, preventing curve progression and improving spinal balance for sitting and walking. The 5 girls who walked pre-operatively are still able to do so.
The glutathione S-transferases (GSTs) have been implicated in carcinogenesis and tumour drug-therapy resistance. In this study GST pi was the predominant isoenzyme in the fetal human kidney. It was present in differentiated epithelial structures but never in the primitive mesenchyme. By contrast most cases of Wilms' tumours showed GST pi in both epithelial structures and undifferentiated blastema. The level of expression, as assessed by immunostaining, was no more than moderate, and was generally higher in differentiated elements. In only one case was GST alpha found in Wilms' tumour. This study had demonstrated a difference between fetal kidney and Wilms' tumour blastema in terms of GST expression.
Overexpression of detoxication enzymes is associated with the development of drug-resistant, preneoplastic nodules in the carcinogen-treated rat liver. The most consistent marker of preneoplasia in many experimental models is increased expression of the pi-class glutathione S-transferase (GST) YfYf. We have confirmed by immunostaining that the pi-class GST is overexpressed in aflatoxin B1-induced preneoplastic nodules and liver tumours in rats. However, pi-class GST YfYf has low activity against aflatoxin B1-8,9-epoxide, and most activity against this cytotoxic and genotoxic metabolite is associated with the alpha-class GSTs YaYa, YaYc and YcYc. We have demonstrated that there is also a consistent increase in the alpha-class GSTs in this model. It seems likely that the overexpression of the Ya and Yc subunits, rather than increased levels of the pi-class GST YfYf, is responsible for the acquisition of a drug-resistant phenotype in rat liver preneoplastic nodules and tumours induced by aflatoxin B1.
There is already evidence in alcoholic liver disease, mostly from studies of morphology and cytokeratin distribution, that hepatocytes can undergo a variety of phenotypic changes. This study reports findings of immunohistochemistry using antibodies against members of the glutathione S-transferase supergene family of detoxification enzymes. Hepatocytes in severe alcoholic liver disease coexpressed both alpha and pi class glutathione S-transferase. This coexpression has been previously described only in human fetal liver and in chemically-induced preneoplastic foci in rat liver. The use of function associated markers should provide additional information in the investigation of liver disease.