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Institution

University of Medicine and Dentistry of New Jersey

Education
About: University of Medicine and Dentistry of New Jersey is a based out in . It is known for research contribution in the topics: Population & Pregnancy. The organization has 14634 authors who have published 19610 publications receiving 1041794 citations.
Topics: Population, Pregnancy, Poison control, Gene, Receptor


Papers
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Journal ArticleDOI
TL;DR: Findings of the first comprehensive longitudinal study of 450 whites and 185 African Americans in Louisiana suggest that determinants in addition to the “end-replication problem” contribute to telomere shortening in vivo and underscore the complexity of leukocyte telomeres dynamics in vivo.
Abstract: Leukocyte telomere length (LTL) is ostensibly a biomarker of human aging. Cross-sectional analyses have found that LTL is relatively short in a host of aging-related diseases. These studies have also provided indirect estimates of age-dependent LTL shortening. In this paper, the authors report findings of the first comprehensive longitudinal study of 450 whites and 185 African Americans in Louisiana (aged 31.4 and 37.4 years at baseline (1995–1996) and follow-up (2001–2006) examinations, respectively) participating in the Bogalusa Heart Study. Rate of change in LTL was highly variable among individuals, with some displaying a paradoxical gain in LTL during the follow-up period. The most striking observation was that age-dependent LTL shortening was proportional to LTL at baseline examination. At both baseline and follow-up examinations, African Americans had longer LTLs than whites, and smokers had shorter LTLs than nonsmokers. The longer LTL in African Americans than in whites explained in part the faster rate of LTL shortening observed among African Americans. These findings underscore the complexity of leukocyte telomere dynamics in vivo and suggest that determinants in addition to the ‘‘end-replication problem’’ contribute to telomere shortening in vivo.

277 citations

Journal ArticleDOI
TL;DR: A survey of hypoxia-tolerant cellular systems and organisms suggests that hypoxic respiratory depression may be a manifestation of the depression of cellular metabolism, which appears to be a major adaptation to limited oxygen availability in these systems.
Abstract: This review is a summary of the effects of brain hypoxia on respiration with a particular emphasis on those studies relevant to understanding the cellular basis of these effects. Special attention is given to mechanisms that may be responsible for the respiratory depression that appears to be the primary sequela of brain hypoxia in animal models. Although a variety of potential mechanisms for hypoxic respiratory depression are considered, emphasis is placed on changes in the neuromodulator constituency of the respiratory neuron microenvironment during hypoxia as the primary cause of this phenomenon. Hypoxia is accompanied by a net increase in neuronal inhibition due to both decreased excitatory and increased inhibitory neuromodulator levels. A survey of hypoxia-tolerant cellular systems and organisms suggests that hypoxic respiratory depression may be a manifestation of the depression of cellular metabolism, which appears to be a major adaptation to limited oxygen availability in these systems.

277 citations

Journal ArticleDOI
TL;DR: Ethanol-associated alterations in fetal DNA methylation may contribute to the developmental abnormalities seen in the fetal alcohol syndrome and is thought to play an important role in the regulation of gene expression during embryogenesis.
Abstract: Acute ethanol administration (3 g/kg twice a day) to pregnant mice, from the 9th thru the 11th day of gestation, resulted in hypomethylation of fetal deoxyribonucleic acid (DNA) Nuclei isolated from the fetuses of the ethanol-treated mice had lower levels of methylase activity relative to controls even in the presence of excess S-adenosylmethionine, which serves as the methyl donor for the enzyme DNA methyltransferase Acetaldehyde, at concentrations as low as 3 to 10 microM, inhibited DNA methyltransferase activity in vitro Since DNA methylation is thought to play an important role in the regulation of gene expression during embryogenesis, ethanol-associated alterations in fetal DNA methylation may contribute to the developmental abnormalities seen in the fetal alcohol syndrome

277 citations

Journal ArticleDOI
TL;DR: Recurrent somatic mutations and deletions in CDKN1B, the cyclin-dependent kinase inhibitor gene, which encodes p27 are identified, nominating p27 as a tumor suppressor and implicating cell cycle dysregulation in the etiology of SI-NETs.
Abstract: The diagnosed incidence of small intestine neuroendocrine tumors (SI-NETs) is increasing, and the underlying genomic mechanisms have not yet been defined. Using exome- and genome-sequence analysis of SI-NETs, we identified recurrent somatic mutations and deletions in CDKN1B, the cyclin-dependent kinase inhibitor gene, which encodes p27. We observed frameshift mutations of CDKN1B in 14 of 180 SI-NETs, and we detected hemizygous deletions encompassing CDKN1B in 7 out of 50 SI-NETs, nominating p27 as a tumor suppressor and implicating cell cycle dysregulation in the etiology of SI-NETs.

277 citations

Journal ArticleDOI
TL;DR: Mechanistic studies reveal that NSC319726 restores WT structure and function to the p53(R175) mutant and is identified as a lead compound for p53-targeted drug development.

276 citations


Authors

Showing all 14639 results

NameH-indexPapersCitations
John Q. Trojanowski2261467213948
Virginia M.-Y. Lee194993148820
Danny Reinberg14534268201
Michael F. Holick145767107937
Tasuku Honjo14171288428
Arnold J. Levine139485116005
Aaron T. Beck139536170816
Charles J. Yeo13667276424
Jerry W. Shay13363974774
Chung S. Yang12856056265
Paul G. Falkowski12737864898
Csaba Szabó12395861791
William C. Roberts122111755285
Bryan R. Cullen12137150901
John R. Perfect11957352325
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Performance
Metrics
No. of papers from the Institution in previous years
YearPapers
20226
202113
20208
201917
201823
201736