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Biomedical subjects

G M Glenn

Publications and source records attributed to G M Glenn.

At least 19 recordsLinked to original sources

Natural killer (NK) cell lytic dysfunction and putative NK cell receptor expression abnormality in members of a family with chromosome 3p-linked von Hippel-Lindau disease.

UNLABELLED: BACKGROUND. Using antibodies to a putative natural killer (NK) cell receptor (pNKR), we recently cloned a novel cDNA and localized this gene to the short arm of human chromosome 3, region 3p21-3p24. Individuals susceptible to or clinically manifesting von Hippel-Lindau disease (VHL) have a genetic defect telomeric to this region on chromosome 3. This defect, resulting in VHL, is manifested by a high incidence of certain tumors. PURPOSE: Based on the location of this gene, we sought to determine if VHL patients have a defect in gene expression of pNKR. METHODS: Because of the proximity of the VHL and pNKR genetic regions, the variable expression of VHL tumors, and the ability of NK cells to target tumor cells, we investigated NK cell activity and other aspects of the immunologic status in 40 members (four branches) of a family with a high incidence of VHL tumors. RESULTS: Individuals affected with VHL and lacking in normal surface expression of pNKR had virtually no NK cell lytic activity. Analysis of genotypes and phenotypes of all subjects revealed that the greatest difference in NK cell lytic activity (P = .0002) was seen when family members exhibited both VHL and pNKR surface expression defects, compared with normal relatives who had neither defect. Furthermore, the lack of NK cell activity strongly correlated (P = .0005) with abnormal pNKR protein surface expression. Of particular interest, individuals who lacked NK cell activity had normal numbers of NK cells. In addition, analysis of leukocyte subsets indicated normal numbers of T and B cells, monocytes, and NK cells in both affected and normal individuals. CONCLUSIONS: These data indicate that although all affected individuals have the cell population responsible for NK cell activity, many have cells low in expression of pNKR and lack functional NK cell activity. Overall, these results indicate that, in addition to a predisposition to the development of neoplasms, VHL patients have a defect in a specific mechanism of natural immunosurveillance that correlates with a defect in expression of a novel large granular lymphocyte pNKR protein.

Adolescent

Screening for von Hippel-Lindau disease by DNA polymorphism analysis.

OBJECTIVE: Von Hippel-Lindau (VHL) disease is a rare, inherited multisystem neoplastic disorder. There is no biochemical test available to distinguish VHL disease gene carriers from their healthy siblings. We evaluated DNA polymorphism analysis as a method for identifying disease gene carriers. DESIGN: Prospective comparison of the results of DNA analysis with a comprehensive clinical screening examination. SETTING: The Clinical Center of the National Institutes of Health. PATIENTS: Blood was collected from 182 members of 16 families with VHL disease. Forty-eight asymptomatic individuals, at risk of developing this hereditary illness (with an affected parent or sibling), were examined for occult disease at the Clinical Center of the National Institutes of Health and tested by DNA polymorphism analysis. RESULTS: DNA polymorphism analysis predicted nine disease gene carriers and 33 individuals with the wild-type (normal) allele among the 48 individuals at risk of developing VHL disease; the test was not informative in six individuals. All nine individuals predicted to carry the VHL gene had evidence of occult disease on clinical examination. There was no clinical evidence of VHL disease in 32 of 33 individuals predicted to carry the wild-type allele. CONCLUSIONS: DNA polymorphism analysis can identify individuals likely to carry the VHL disease gene among asymptomatic members of disease families. This technique serves to focus attention on those individuals who require periodic medical examination and may help to alleviate the morbidity and mortality associated with this disease.

DNA

The natural history of renal lesions in von Hippel-Lindau disease: a serial CT study in 28 patients.

OBJECTIVE: Von Hippel-Lindau disease is a multisystem disorder predisposing to renal cysts and cancer. The growth and development of these renal lesions have not been documented previously. We reviewed serial CT scans to determine the rates and patterns of growth of renal lesions associated with von Hippel-Lindau disease. SUBJECTS AND METHODS: Twenty-eight patients with von Hippel-Lindau disease and renal involvement, including the spectrum from simple cysts to solid masses, had follow-up examinations for at least 1 year (mean, 2.4 years; range, 1-12 years) with serial contrast-enhanced abdominal CT. Renal lesions were measured and characterized. Surgical correlation was available in 12 patients. RESULTS: Two hundred twenty-eight lesions (eight lesions per patient) were detected. On the basis of their CT appearance, 168 lesions (74%) were classified as cysts, 18 (8%) as cysts with solid components, and 42 (18%) as solid masses. Among 12 patients with pathologic confirmation, the solid components of cystic lesions and solid lesions almost always contained renal carcinoma. The majority of cysts remained the same size (71%) or enlarged (20%); 9% became smaller or entirely involuted during the follow-up period. Although it is generally presumed that renal cysts are precursors to cancers, the transformation of a simple cyst to a solid lesion was observed in only two patients. Among the 42 solid lesions, all but two enlarged with time, with a mean doubling time of 10 months. CONCLUSION: The renal lesions associated with von Hippel-Lindau disease exhibited wide differences in growth. The majority of renal cysts grew slowly but some involuted. Transition to solid renal cancer was rare among cysts. Complex cystic and solid lesions contained neoplastic tissue that uniformly enlarged. These data may be used to help predict the progression of renal lesions in von Hippel-Lindau disease.

Adult

Block-surface staining for differentiation of starch and cell walls in wheat endosperm.

A staining technique for differentiating starch granules and cell walls was developed for computer-assisted studies of starch granule distribution in cells of wheat (Triticum aestivum L.) caryopses. Blocks of embedded caryopses were sectioned, exposing the endosperm tissue, and stained with iodine potassium iodide (IKI) and Calcofluor White. Excessive tissue hydration during staining was avoided by using stains prepared in 80% ethanol and using short staining times. The IKI quenched background fluorescence which facilitated the use of higher concentrations of Calcofluor White. Cell wall definition was improved with the IKI-Calcofluor staining combination compared to Calcofluor alone. The high contrast between darkly stained starch granules and fluorescent cell walls permitted computer assisted analysis of data from selected hard and soft wheat varieties. The ratio of starch granule area to cell area was similar for both wheat classes. The starch granule sizes ranged from 2.1 microns 3 to 22,000 microns 3 with approximately 90% of the granules measuring less than 752 microns 3 (ca. 11 microns in diameter). Hard wheat samples had a greater number of small starch granules and a lower mean starch granule area compared to the soft wheat varieties tested. The starch size distribution curve was bimodal for both the hard and soft wheat varieties. Three-dimensional starch size distribution was measured for four cells near the central cheek region of a single caryopsis. The percentage of small granules was higher at the ends than at the mid-section of the cells.

Cell Wall