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Biomedical subjects

L J Sullivan

Publications and source records attributed to L J Sullivan.

At least 37 records · Page 2Linked to original sources

A new codon 15 rhodopsin gene mutation in autosomal dominant retinitis pigmentosa is associated with sectorial disease.

OBJECTIVE: To ascertain and characterize rhodopsin gene mutations in autosomal dominant retinitis pigmentosa and to correlate these mutations with the clinical phenotypes. METHODS: DNA was extracted from leukocytes, and the rhodopsin gene was amplified and analyzed using molecular-biological methods. Clinical and electrophysiological data were collected from patient charts. RESULTS: We found a disease-causing mutation that was previously undescribed, to our knowledge, for autosomal dominant retinitis pigmentosa within codon 15 of exon 1 of the rhodopsin gene. It was a single base-pair transversion (AAT to AGT) leading to a serine-for-asparagine substitution. This altered a glycosylation site in the intradiscal portion of the rhodopsin molecule. The pedigree examined demonstrated an inferior distribution of retinal pigmentary changes and predominantly superior visual field loss with relative preservation of electroretinographic amplitudes and good vision, which is consistent with sectorial or sectorial-like retinitis pigmentosa. CONCLUSIONS: A codon 15 rhodopsin gene mutation caused retinitis pigmentosa in the pedigree studied. There may be an association between intradiscal rhodopsin gene mutations and sectorial forms of retinitis pigmentosa.

Adult↗

Visual outcomes of pituitary adenoma surgery. St. Vincent's Hospital 1968-1987.

Pituitary tumors are a significant cause of visual morbidity. The medical records of 45 patients with histologically verified pituitary adenoma and visual defects (fields and/or acuity) were reviewed. The patients' ages ranged from 19 to 80 years with a mean of 52.4 years. Ophthalmologists referred 76% of the patients for neurosurgical opinion. Bitemporal field defects were present in 89%. Twenty-three patients underwent transfrontal craniotomy prior to 1984, and the remaining twenty-two subsequently had transsphenoidal microsurgery. Of those eyes with abnormal visual acuity preoperatively, 74% had improvement noted postoperatively (p less than 0.001). Of those eyes with preoperatively abnormal visual fields, 68% improved (p less than 0.001). For transsphenoidal surgery the rate of improvement for fields was 81%. Preoperative visual acuity, visual field score, and patient age, were not predictive of postoperative acuity. Optic disc pallor was associated with poorer postoperative fields and acuity compared to eyes without preoperative pallor. Transsphenoidal surgery is effective treatment for visual compromise due to pituitary adenoma, and the need for early diagnosis is emphasized.

Adenoma↗

Metabolism of carbaryl by kidney, liver, and lung from human postembryonic fetal autopsy tissue.

Metabolic profiles of carbaryl in human postembryonic fetal autopsy tissue were determined using an in vitro tissue-maintenance technique. 1-Naphthyl-14C or N-methyl-14C-carbaryl was applied to growth medium containing explants of the tissue. Each mixture was incubated for 18 hr and the medium analyzed by DEAE-cellulose column chromatography. Fetal liver performed the metabolic processes of demethylation, hydrolysis, hydroxylation, and oxidation, followed by conjugation, as was found with adult liver. However, the anionics from fetal liver amounts to 20% of those found with adult liver. The kidney made naphthyl glucuronide and naphthyl sulfate, whereas the lung produced naphthyl sulfate from carbaryl. The metabolic activities of the fetal kidney and lung were close to the corresponding human adult tissues based upon the anionic metabolites found and the amount of unmetabolized carbaryl in the medium after 18 hr of incubation. Silica gel chromatography of ether-extractable neutral fractions from DEAE-cellulose revealed 3,4, and 9 ether-extractable metabolites from lung, kidney, and liver, respectively. The present study shows that the in vitro technique is capable of semiquantitatively demonstrating the metabolic activities of specific organs from the human fetus.

Adult↗