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D Defoe

Publications and source records attributed to D Defoe.

4 recordsLinked to original sources

Ultrastructural and ERG findings in mice with adenomatous polyposis coli gene disruption.

PURPOSE: In order to continue the previous morphological studies of eyes from mice with adenomatous polyposis coli (APC) gene mutation at codon 1638, we determined the ultrastructural and electrophysiologic characteristics of these eyes. METHODS: Thirty-eight eyes from 20 mice heterozygous for APC gene mutation and 22 eyes from 11 wild-type mice were examined by light microscopy. Six APC-modified eyes without light microscopic abnormalities, four APC-modified eyes with focal light microscopic abnormalities, and four wild-type eyes were examined by electron microscopy. Electroretinograms were recorded from four APC-modified and three wild-type mice. RESULTS: Four of 38 APC-modified eyes demonstrated ultrastructural evidence of focal RPE cells with increased melanosome production and atrophy. Other areas of the RPE in these four eyes demonstrated no ultrastructural abnormalities. Three APC-modified eyes demonstrated electron and light microscopic evidence of RPE hyperplasia. Electron microscopic examination of APC-modified eyes without light microscopic evidence of abnormalities demonstrated no ultrastructural differences from age-matched controls. Electroretinography demonstrated no differences in the b-wave or c-wave amplitudes between APC-modified and wild-type mice. CONCLUSIONS: While light microscopic RPE alterations are observed in these APC-modified mice, the absence of a generalized, ultrastructural murine RPE defect is in contradistinction to observations in electron microscopic investigations of humans with colonic polyposis, pigmented ocular fundus lesions, and APC gene mutations between codons 463 and 1444. Our results in mice with APC mutation at codon 1638, however, are consistent with a previously identified association between the expression of pigmented ocular fundus lesions and region-specific mutation in the human APC gene. The APC protein may possess a physiologic function for both retinal and RPE development.

Adenomatous Polyposis Coli↗

The plague returns

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Journal Article↗

Evidence of decreased adhesion between the neural retina and retinal pigmented epithelium of the Mitfvit (vitiligo) mutant mouse.

In order for the retina to function properly, photoreceptor cell outer segments must be in contact with the adjacent retinal pigmented epithelium (RPE). A mouse model homozygous for the vitiligo mutation of the microphthalmia (Mitf) gene manifests disruption of the outer segment/RPE interdigitation and demonstrates progressive loss of the photoreceptor cells. The mouse nevertheless has near normal levels of rhodopsin for many weeks and it is not known whether there is an in vivo loss of adhesion or whether the disruption is visible following tissue processing for histology. To assess this, a mechanical separation experiment was performed in which neural retinas were peeled free from the RPE and examined for the amount of pigment adherent to them. The peeling experiment indicated that control neural retinas retained significant amounts of adherent pigment at all ages examined. Neural retinas of mutant mice at age 2 weeks demonstrated adherent pigment, but older animals retained minimal pigment. Scanning electron microscopy indicated that the RPE cells of control mice were markedly damaged upon peeling and displayed different planes of cleavage, whereas those of mutants showed minimal cellular damage upon peeling, suggestive of decreased adhesion. A recombination experiment revealed that the mutant RPE/eyecup could reappose mutant and control retinas under in vitro conditions, suggesting that RPE fluid transport abilities were intact. The data provide the first direct experimental evidence that the Mitfvit mutant mouse has a naturally occurring retinal detachment and hence support its value as a model for studies of retina/RPE adhesion.

Animals↗

Retinal pigment epithelium abnormalities in mice with adenomatous polyposis coli gene disruption.

OBJECTIVE: To examine eyes from mice with targeted adenomatous polyposis coli (APC) gene disruption to determine if retinal pigment epithelium (RPE) abnormalities replicate the human counterpart. METHODS: Thirty-two eyes from 16 mice heterozygous for APC gene disruption (chain-termination mutation in codon 1638 of exon 15) and 12 control eyes were examined by light microscopy. RESULTS: Fifteen of 32 eyes from 12 of 16 APC-disrupted mice demonstrated abnormalities of the RPE and retina. The RPE abnormalities included RPE coloboma, unifocal and multifocal RPE hypertrophy, RPE hyperplasia, and RPE duplication with invasion in the areas of outer and inner segments. Retinal abnormalities included outer nuclear layer duplication and outer nuclear layer atrophy. There were no RPE and retinal abnormalities seen in the control eyes. CONCLUSIONS: This study is consistent with the hypothesis that the APC gene is critical in the regulation of RPE proliferation and development. These findings also demonstrate that mutation of the APC gene in codon 1638, a location beyond the previously described critical region for human RPE abnormalities, leads to perturbation in the mouse RPE and retina. Further study of this murine model and the APC/RPE relationship may provide insight into regulatory mechanisms for RPE proliferation.

Adenomatous Polyposis Coli↗