[Previous results in the treatment of polycythemia vera with a radioactive phosphorus isotope P32].
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In this study, the diagnostic accuracy and practicability of different hybridization techniques for the detection of human papilloma virus (HPV) DNA were tested. Cervical cell scrapes (n = 67) were analysed for HPV-DNAs 6/11 and 16, in order to compare a commercially available in situ DNA hybridization-assay with the conventional Southern-blot analysis. The in situ DNA hybridization-assay gave a sensitivity of 81.5%, a specificity of 97.5% and a diagnostic efficiency of 91.0% for HPV-DNAs 6/11. Using the same assay, we observed a sensitivity of 100%, a specificity of 96.3% and a diagnostic efficiency of 97.0% for HPV-DNA 16. The practicability of dot-blot DNA hybridization technique was tested on 176 cervical cell scrapes, in order to determine the prevalence rate of HPV-genotypes 6/11, 16/18 and 31/33/35. In the random control group (n = 106), 1.9% of the cases were HPV-DNA positive. In the cancer prevention group (n = 70), patients with reactive and reparative cell changes showed a HPV-DNA positivity of 55.0%, with mild (slight) dysplasia/CIN 1 of 73.7%, and with moderate to severe dysplasia/CIN 2 to CIN 3, including the carcinoma in situ/CIN 3 of 80.0%. Patients with squamous cell carcinoma of the cervix uteri gave HPV-DNA positive results in 96.2% of the cases. The suitability of in situ DNA hybridization for morphological studies was tested on tissue biopsies (n = 68). The HPV-DNAs 6/11 were found predominantly to 72.7% of the examined condylomas. The HPV-DNA positive cervices increased with the severity of the cytological dysplasia.(ABSTRACT TRUNCATED AT 250 WORDS)
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Effect of light period length on the movement of exogenous phosphorus within aqueous eco-systems composed with water, Microcystis aeruginosa and sediments was studied by the method of phosphorus isotope tracer. Exogenous phosphorus was initially distributed rapidly in the systems in a mode of physical chemistry and then its movement was significantly influenced by the growth of M. aeruginosa. With the increasing of the light period length, the growth rate and cell density rose gradually and exogenous phosphorus level declined rapidly in the water. The light period length had nothing to do with the maximum of endocellular phosphorus per mg M. aeruginosa. After certain amounts of exogenous phosphorus were accumulated in M. aeruginosa, its growth didn't affect the amounts of endocellular phosphorus. When the light period length was long, the total amounts of exogenous phosphorus was high in M. aeruginosa. The exogenous phosphorus moved from water and cyanobacteria to sediment continuously until most of exogenous phosphorus transferred into sediment through the decline of M. aeruginosa.
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Hybrids were formed from Bacillus cereus DNA and ribosomal RNA. They were treated with various combination of S1 nuclease and ribonuclease, and the molar ratios of the RNA and DNA moieties remaining in the treated hybrids were determined using a 32P-33P dual-label technique. It was found that both S1 nuclease and ribonuclease are required to give hybrid with RNA and DNA in a perfect 1:1 molar ratio. It was noted that the dual-label technique which employs orthophosphate as the sole phosphorus source for both labels gives unambiguous molar ratios and obviates the need to calculate specific activities, make quench corrections, or correct for base content.
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