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Biomedical subjects

D Yanagihara

Publications and source records attributed to D Yanagihara.

21 records · Page 2Linked to original sources

Determination of follicle regulatory protein levels in urine during the normal menstrual cycle using an enzyme-linked immunosorbant assay.

A protein from follicular fluid [referred to as follicle regulatory protein (FRP)] which inhibits aromatase activity in granulosa cells was recently isolated and partially characterized. The purified FRP was used to produce a monoclonal antibody which was used to develop an enzyme-linked immunosorbant assay suitable for quantitation of FRP in urine. Twelve normal premenopausal women underwent daily collection of blood and first morning urine samples, beginning on the 1st day of menses, as well as daily ultrasonographic evaluation of follicular diameter, beginning on the 10th day of the menstrual cycle, until the onset of the next menses. Serum estradiol, progesterone, LH, and FSH levels were determined by RIA. Urinary FRP levels increased in the midfollicular phase, reached their zenith in the midluteal phase [mean, 0.38 +/- 0.03 (+/- SE) immunoreactive units; 1 immunoreactive unit = approximately 1 ng FRP/mL.mg creatinine], and then declined to reach their nadir (not detectable) during the early follicular phase. Immunohistochemical evaluation of ovarian tissue demonstrated that anti-FRP localized to mural granulosa cells in viable follicles, to all follicular epithelial cells in atretic follicles, and to the large cells of the corpus luteum. These findings indicate that immunoreactive FRP levels in urine change during the menstrual cycle and suggest a relationship among FRP, follicular maturation, and corpus luteum formation.

Adult↗

Strain variations in the murine cellular immune response to the phenolic glycolipid I antigen of Mycobacterium leprae.

The cellular immune response to the Mycobacterium leprae-specific phenolic glycolipid I was examined in inbred mice immunized with M. leprae by in vivo delayed cutaneous hypersensitivity and in vitro lymphocyte proliferation. Whereas all mouse strains responded to M.leprae-induced delayed-type hypersensitivity and lymphocyte proliferation, only BALB.K was responsive in both assays to the glycolipid. Responsiveness was determined in part by non-H-2 genes, while the influence of H-2 genes was not apparent. Among congenic BALB/c mice differing only at Igh-C allotype loci, variations in responsiveness were found in both delayed-type hypersensitivity and lymphocytes proliferation assays, indicating a possible role for Igh-C loci-linked genes. Unresponsiveness in the lymphocyte proliferation assay to the glycolipid was inherited as a dominant trait in one set of responder X nonresponder F1 progeny. We conclude that after immunization with M. leprae organisms, the cell-mediated responses to the glycolipid, endowed with a single carbohydrate epitope, are under polygenic control, predominantly non-H-2-linked genes.

Animals↗

Antibody response to phenolic glycolipid I in inbred mice immunized with Mycobacterium leprae.

The level of circulating antibody to phenolic glycolipid I of Mycobacterium leprae was determined in 18 inbred strains of mice after immunization with M. leprae organisms. By using a solid-phase radioimmunoassay with phenolic glycolipid I as test antigen, a continuous distribution of antibody levels ranging from high to low was observed. The level was found to be controlled by multiple genes, including both H-2 complex- and Igh allotype complex-linked genes. Low antibody response to phenolic glycolipid I was shown to be inherited as a dominant trait in three combinations of high X low responder F1 progeny.

Animals↗