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Biomedical subjects

U Ray

Publications and source records attributed to U Ray.

7 recordsLinked to original sources

National Quality Assurance Programme for rural and provincial laboratory services in Papua New Guinea.

The expansion of laboratory services in Papua New Guinea in recent times, particularly at the rural health centre level, in support of public health laboratory activities has stressed the need to monitor the technical performance of laboratory workers. With this in mind, a National Quality Assurance Programme (NQAP) was devised following a successful trial in the Momase Region in 1990. The NQAP has expanded rapidly and met with good response and high levels of achievement by participating laboratories nation-wide. Future plans are to develop a National Quality Assurance Committee and work towards an accreditation scheme in Papua New Guinea.

Clinical Laboratory Techniques

Virus-induced thyroiditis.

Mice infected with reovirus type 1 developed a mild thyroiditis characterized by focal destruction of acinar tissue, infiltration of inflammatory cells, and autoantibodies to thyroglobulin and microsomal antigens. Thyroid involvement appears to be part of a more generalized virus-induced polyendocrine disease.

Animals

Selection of coxsackievirus B4 variants with monoclonal antibodies results in attenuation.

Inoculation of suckling mice with coxsackievirus B4 (CB4) results in the death of a majority of the animals. In this study we selected antigenic variants of CB4 in the presence of neutralizing monoclonal antibodies and tested them to see whether they were attenuated. Antigenic variants selected with a single antibody showed little or no attenuation by producing a high mortality (60 to 100%). A double variant selected with two antibodies showed considerable attenuation by causing only 25% mortality. A triple variant selected with three antibodies was almost completely attenuated (killed only 5% of the animals). Polypeptides from these variants were tested for their ability to interact with the monoclonal antibodies used for their selection. These studies showed that resistance of variant virus to neutralization in general was due to the inability of the antibody to bind to the virus. However, one of the antibodies could bind but not neutralize the virus, perhaps due to an alteration in the epitope. It is concluded that selection of CB4 variants using more than one neutralizing monoclonal antibody can lead to attenuation of the virus.

Animals

Host restriction of Friend Leukemia virus coat protein synthesis.

Fv-1 gene-mediated host restriction of Friend leukemia virus replication was investigated in terms of coat protein synthesis. By using the assay of pseudotype formation with vesicular stomatitis virus. it was shown that under restricting growth conditions the availablity of leukemia virus coat protein for pseudotype formation was decreased. These studies appear to eliminate a pure assembly defect as the mechanism of Fv-1 host restriction.

Cell Line

Lysogenization of Escherichia coli by bacteriophage Lambda: complementary activity of the host's DNA polymerase I and ligase and bacteriophage replication proteins Q and P.

When bacteriophage lambda DNA replication is blocked by mutation in phage genes O or P, the efficiency of lysogenization drops to a very low value unless high multiplicities of infecting phage are used. Our results show that even at high multiplicity, lambda O or P mutants cannot efficiently lysogenize some hosts that are defective in either DNA polymerase I or DNA ligase. Covalent closure of infecting DNA molecules, a preliminary step for insertion according to Campbell's model and an obvious candidate for this lysogenization defect, appears to occur normally under our conditions. In addition, prophage excision as measured by the frequency of curing O- and P- lysogens seemed normal when tested in the poll- strain. These results suggest that the Escherichia coli enzymes DNA polymerase I and ligase, and phage proteins O and P, are able to provide some complementary activity whose function is required specifically for prophage integration.

Coliphages

Inactivation of bacteriophage T4 by ethyl methanesulfonate: influence of host and viral genotypes.

Inactivation of bacteriophage T4 by ethyl methanesulfonate (EMS) is a complex process which depends critically upon the conditions of treatment and upon both the viral and the host genotypes. EMS-inactivated particles are capable of multiplicity and cross-reactivation, indicating the need for caution in using EMS in certain types of mutation studies. The pyrimidine dimer excision systems of the phage and the host do not affect the EMS sensitivity of T4, but the T4x(+)y(+) system does. Mutational defects in the deoxyribonucleic acid (DNA) ligase and the DNA polymerase systems both of the virus and of its host also affect viral EMS sensitivity.

Alkylating Agents