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T Good

Publications and source records attributed to T Good.

6 recordsLinked to original sources

Biochemical and physiological validation of a corticosteroid radioimmunoassay for plasma and fecal samples in oldfield mice (Peromyscus polionotus).

The measurement of fecal steroids provides an increasingly important noninvasive technique for assessing reproduction, environmental stress, and aggression in populations of captive and free-living animals. In this paper, we validated the corticosterone (CORT) 125I-radioimmunoassay (ICN Pharmaceuticals) for plasma and fecal samples in a small rodent species, the oldfield mouse (Peromyscus polionotus subgriseus). The biochemical validations indicated that the assays accurately measured CORT concentrations in the plasma and corticosteroid concentrations in the feces. Physiological validation demonstrated that: (1) blood samples collected within 3 min of disturbing an animal's cage represented "baseline" CORT concentrations, and (2) fecal corticosteroid concentrations collected over a 24-h period closely tracked plasma CORT concentrations approximately 4 h earlier. These results demonstrate that the plasma CORT and fecal corticosteroid assays are sensitive enough to detect biologically meaningful alterations in corticosteroid concentrations in oldfield mice.

Adrenal Cortex Hormones↗

Detection of antibodies against hepatitis C virus in saliva: a marker of viral replication.

Hepatitis C surveillance has been restricted owing to the lack of a sensitive antibody assay for saliva. The aim of our study was to develop and evaluate a screening assay for hepatitis C antibody in saliva specimens. Serum/saliva pairs were collected from 115 hepatitis C-positive patients. A modified hepatitis C antibody assay for saliva was developed and linked to testing carried out in the diagnostic laboratory. Correlation between the presence of antibody in serum and in saliva was poor (100% vs 85%). However, of 98 patients who were saliva antibody positive, 96 (98%) were also serum hepatitis C RNA positive and two (2%) were serum hepatitis C RNA negative. Hence, the correlation between a positive salivary antibody test and the serum hepatitis C RNA status of intravenous drug users suggests that this test could be used as a surrogate marker for hepatitis C viraemia in epidemiological studies.

Adult↗

Predominance of HCV type 2a in saliva from intravenous drug users.

Paired serum and saliva samples were collected simultaneously from 50 intravenous drug users with serologically proven hepatitis C virus infection. The oral health of the volunteers was also assessed. Hepatitis C virus RNA was detected by nested PCR, employing primers from the 5' noncoding region. Positive PCR products were sequenced using the Sequenase PCR Product Sequencing Kit (Amersham Life Sciences). HCV RNA was detected in 33 (66%) of the 50 serum samples. HCV RNA was detected in 19 (57.6%) of the corresponding 33 saliva samples. There was no correlation between oral health status or HIV seropositivity and the detection of HCV in saliva. However, subjects with HCV in their saliva were significantly more likely to complain of xerostomia (P < 0.05). Isolate genotypes were identified in paired serum and saliva of 15 intravenous drug users. HCV genotypes 1, 2, 3 and 6 were detected in both specimens. In seven cases, a differing HCV genotype was found in serum compared to the paired saliva specimen. The distributions of genotypes in serum and saliva were very different, with genotype 2a more common in saliva than serum (P < 0.005). These data suggest that in some cases the source of salivary HCV may not be serum transudation along the periodontal membrane or across damaged mucosa, and that an alternative local source, possibly the salivary glands themselves, should be considered.

Adult↗

Viral kinetics can predict early response to alpha-interferon in chronic hepatitis C.

AIMS/BACKGROUND: Response rates to alpha-interferon therapy for chronic hepatitis C are poor. An early indication of efficacy would reduce the need for prolonged therapy, leading to significant cost savings. It was established that a change in quantitative hepatitis C virus RNA (HCV-RNA) titre at 4 weeks could predict the outcome of alpha-interferon therapy in chronic hepatitis C. METHODS: Serum HCV-RNA titres were quantified using branched chain DNA (bDNA) assay in 26 patients who responded to alpha-interferon (serum HCV-RNA negative after 12 weeks therapy) and 11 age and sex matched non-responders. Quantitative bDNA and qualitative RT-PCR assays for HCV-RNA were measured pretreatment and at 4 weeks. The change in quantitative HCV-RNA titre between pre-therapy and after 4 weeks was compared in the two groups. RESULTS: Seventeen of the 37 patients had become RT-PCR negative at 4 weeks (early responders) and had an undetectable HCV-RNA titre on bDNA assay. Nine patients were RT-PCR positive at 4 weeks but negative by 12 weeks (delayed responders), and of these, 8 had an undetectable viral titre at 4 weeks on bDNA assay. The patient with a detectable HCV titre did become RT-PCR negative after 12 weeks, but subsequently became RT-PCR positive again at 24 weeks. All the non-responders had a detectable bDNA titre (> 0.2 Meq/ml) at 4 weeks. CONCLUSIONS: Change in quantitative HCV-RNA titre measured by bDNA assay at 4 weeks predicts response to alpha interferon. If HCV-RNA remains detectable on bDNA assay at 4 weeks, no sustained response to treatment is found and alpha-interferon can be discontinued.

Hepacivirus↗

Nosocomial transmission of hepatitis C virus within a British dialysis centre.

Patients on renal replacement therapy are recognized as a group at increased risk of infection with hepatitis C virus (HCV). While the risk has been reduced by the use of erythropoietin for treatment of anaemia and the introduction of HCV screening of blood products and potential renal transplant donors, new cases of HCV are still being documented, with patients on hospital haemodialysis appearing to be particularly at risk. The exact mode of transmission of HCV within dialysis units is unclear, although there is evidence to support nosocomial transmission between patients. Third generation HCV antibody testing was performed on all dialysis patients when a new case of HCV was identified within our unit. Stored monthly serum samples were then examined retrospectively to determine when patients became HCV RNA and HCV antibody positive. Viral typing was carried out to identify the HCV strains responsible for transmission. Four new cases of HCV infection are described within a single dialysis shift. Viral typing identified two distinct strains of HCV as being responsible for these infections, both of which had previously been identified in dialysis patients within the unit known to have HCV infection. This information, taken in conjunction with knowledge of the location of each patient for dialysis, suggests two separate episodes of nosocomial transmission of HCV between haemodialysis patients. While evidence of nosocomial transmission of HCV is accumulating, with modern dialytic procedures evidence of transmission through the dialysis machine or equipment used for dialysis is lacking. This stresses the importance of strict applications of universal precautions as the key to prevention of further transmission of HCV infection. This information is obviously applicable not only to dialysis units but all units that may potentially come in contact with HCV patients.

Cross Infection↗