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Biomedical subjects

Isaac Brownell

Publications and source records attributed to Isaac Brownell.

4 recordsLinked to original sources

Eumycetoma.

Eumycetoma is a localized, chronic fungal infection of skin and subcutaneous tissues. It is characterized by tumefaction, abscess formation, draining sinuses, and sclerotia (grains) within the abscesses and fistulae. Treatment of eumycetoma is a challenge. Relapse rates are high even when a combination of surgical and medical approaches is utilized. Here we report a case of eumycetoma due to Exophiala jeanselmei arising on the foot of a man from Trinidad, West Indies.

Adult↗

Severe defects in proliferation and differentiation of lens cells in Foxe3 null mice.

During mouse eye development, the correct formation of the lens occurs as a result of reciprocal interactions between the neuroectoderm that forms the retina and surface ectoderm that forms the lens. Although many transcription factors required for early lens development have been identified, the mechanism and genetic interactions mediated by them remain poorly understood. Foxe3 encodes a winged helix-forkhead transcription factor that is initially expressed in the developing brain and in the lens placode and later restricted exclusively to the anterior lens epithelium. Here, we show that targeted disruption of Foxe3 results in abnormal development of the eye. Cells of the anterior lens epithelium show a decreased rate of proliferation, resulting in a smaller than normal lens. The anterior lens epithelium does not properly separate from the cornea and frequently forms an unusual, multilayered tissue. Because of the abnormal differentiation, lens fiber cells do not form properly, and the morphogenesis of the lens is greatly affected. The abnormally differentiated lens cells remain irregular in shape, and the lens becomes vacuolated. The defects in lens development correlate with changes in the expression of growth and differentiation factor genes, including DNase II-like acid DNase, Prox1, p57, and PDGFalpha receptor. As a result of abnormal lens development, the cornea and the retina are also affected. While Foxe3 is also expressed in a distinct region of the embryonic brain, we have not observed abnormal development of the brain in Foxe3(-/-) animals.

Animals↗

Expression of FoxE4 and Rx visualizes the timing and dynamics of critical processes taking place during initial stages of vertebrate eye development.

Several transcription factors have a critical function during initial stages of vertebrate eye formation. In this paper, we discuss the role of the Rx subfamily of homeobox-containing genes in retinal development, and the role of the Foxe3 and FoxE4 subfamily of forkhead box-containing genes in lens development. Rx genes are expressed in the initial stages of retinal development and they play a critical role in eye formation. Elimination of Rx function in mice results in lack of eye formation. Abnormal eye development observed in the mouse mutation eyeless (ey1), the medakatemperature-sensitive mutation eyeless (el), and the zebrafish mutation chokh are caused by abnormal regulation or function of Rx genes. In humans, a mutation in Rx leads to anophthalmia. In contrast, Foxe3 and FoxE4 genes are expressed in the lens and they play an essential role in its formation. Mutations in the Foxe3 gene are the cause of the mouse mutation dysgenetic lens (dyl) and in humans, mutation in FOXE3 leads to anterior segment dysgenesis and cataracts. Since Rx and FoxE4 are expressed in the earliest stages of retina and lens development, their expression visualizes the timing and dynamics of the crucial processes that comprise eye formation. In this paper we present a model of eye development based on the expression pattern of these two genes.

Animals↗

Topical pimecrolimus in the treatment of seborrheic dermatitis.

Seborrheic dermatitis is a chronic inflammatory disease that mainly affects seborrheic areas of skin. An inflammatory response to the yeast Pityrosporum ovale has been thought to be important in the etiology of the condition. Therefore, topical antifungals and corticosteroids have been the mainstay of treatment. The recent development of topical macrolactam immunomodulators has offered a useful, safe alternative to corticosteroids in the treatment of various inflammatory skin disorders. We report successful treatment of seborrheic dermatitis with pimecrolimus.

Administration, Topical↗