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Biomedical subjects

L M Winter

Publications and source records attributed to L M Winter.

4 recordsLinked to original sources

Pinealectomy-associated decrease in ribosomal gene activity in rats.

A decrease in ribosomal gene activity is an essential feature of the aging process as it was observed in Alzheimer's disease, in elderly Down's patients and in elderly healthy people. It is well known that aging is also associated with a reduction in melatonin synthesis. We studied 24 male Wistar rats cytogenetically, by using Ag-stained NOR (6 three-month-old rats underwent pinealectomy and were studied after 20 days; 6 control rats of the same age; 6 three-month-old rats underwent pinealectomy and were studied after 8 months; 6 control rats of the same age). Our results indicate that the absence of the pineal gland leads to a decrease in NOR activity. Further studies are necessary to determine if pinealectomy in rats could provide an animal model for aging.

Aging↗

Ribosomal RNA in Alzheimer's disease and aging.

Ribosomal RNA genes are involved in cell transcription and translation processes and can modulate gene expression. In an earlier cytogenetic study, (Payão, S.L.M., Smith, M.de A.C., Kormann-Bortolotto, M.H., Toniolo, J., 1994 (Investigation of the nucleolar organizer regions in Alzheimer's disease. Gerontology 40, 13-17), reported a decreased activity of ribosomal genes in Alzheimer's disease (AD). We studied the ratio of mature rRNA 28S and 18S in peripheral blood samples derived from eight patients with AD, eight healthy elderly sisters of these patients (SA), eight healthy elderly (EC) and eight healthy young (YC) controls, all female. Our results showed a statistically significant decrease of mature rRNA 28S and 18S ratio in the elderly groups (AD, SA, EC) in relation to the young one, probably by fragmentation of 28S rRNA. The Alzheimer's patient group had the lowest 28S/18S ratio. Thus, we can suggest that there is a possible change in the transcriptional or maturation process, or a preferential degradation of the 28S subunit with ageing.

Adolescent↗

Heart rate and plasma lactate responses during submerged swimming and trained diving in California sea lions, Zalophus californianus.

California sea lions, Zalophus californianus, were trained to elicit maximum voluntary breath holds during stationary underwater targeting, submerged swimming, and trained diving. Lowest heart rate during rest periods was 57 bpm. The heart rate profiles in all three protocols were dominated by a bradycardia of 20-50 bpm, and demonstrated that otariid diving heart rates were at or below resting heart rate. Venous blood samples were collected after submerged swimming periods of 1-3 min. Plasma lactate began to increase only after 2.3-min submersions. This rise in lactate and our inability to train sea lions to dive or swim submerged for periods longer than 3 min lead us to conclude that an aerobic limit had been reached. Due to the similarity of heart rate responses and swimming velocities recorded during submerged swimming and trained diving, this 2.3-min limit should approximate the aerobic dive limit in these 40-kg sea lions. Total body O2 stores, based on measurements of blood and muscle O2 stores in these animals, and prior lung O2 store analyses, were 37-43 ml O2 kg-1. The aerobic dive limit, calculated with these O2 stores and prior measurements of at-sea metabolic rates of sea lions, is 1.8-2 min, similar to that measured by the change in post-submersion lactate concentration.

Animals↗