Developmental programming of aging trajectory.
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Summary
Experimental and epidemiological evidence on the role of early-life conditions in programming of aging phenotypes are presented and mechanisms potentially underlying these associations are discussed.
- Type
- review
- Published
- 2018-07-27
- Cited by
- 55
- References
- 293
- OpenAlex
- https://openalex.org/W2883376335
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:51872486
Keywords
Epigenetics, Longevity, Phenotype, Biology, Epigenesis
References
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- The Role of Immunosenescence in Neurodegenerative Diseases
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- Germline-derived DNA methylation and early embryo epigenetic reprogramming: The selected survival of imprints.
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- Programming by early nutrition in man.
- Longevity Determined by Paternal Ancestors' Nutrition during Their Slow Growth Period
- Aging genomes: A necessary evil in the logic of life
- Foetus into Man: Physical Growth from Conception to Maturity
- Insulin, IGF-1 and longevity.
- Milk and linear growth: programming of the igf-I axis and implication for health in adulthood.
- Why are individuals so different from each other?
- Potential role of the intestinal microbiota in programming health and disease.
Cited by
- Interplay between diet-induced obesity and oxidative stress: Comparison between Drosophila and mammals.
- Developmental Tuning of Epigenetic Clock
- Larval crowding results in hormesis-like effects on longevity in Drosophila: timing of eclosion as a model
- Neurobiological systems in dyslexia.
- Prenatal Malnutrition-Induced Epigenetic Dysregulation as a Risk Factor for Type 2 Diabetes
- Toxin-induced hormesis may restrain aging
- Knockdown of the neuronal gene Lim3 at the early stages of development affects mitochondrial function and lifespan in Drosophila.
- Developmental Programming of Adult Haematopoiesis System.
- Genetic background, epigenetic factors and dietary interventions which influence human longevity
- Developmental Origins of Type 2 Diabetes: Focus on Epigenetics.
- Parental dietary protein-to-carbohydrate ratio affects offspring lifespan and metabolism in drosophila.
- Aging endocrine and metabolic phenotypes are programmed by mother's age at conception in a sex dependent fashion in the rat.
- Dyslexia as an adaptation to cortico-limbic stress system reactivity
- Season-of-birth phenomenon in health and longevity: epidemiologic evidence and mechanistic considerations
- Can Blood-Circulating Factors Unveil and Delay Your Biological Aging?
- Changes Induced by Mind–Body Intervention Including Epigenetic Marks and Its Effects on Diabetes
- Telomere Length as a Marker of Biological Age: State-of-the-Art, Open Issues, and Future Perspectives
- Neglecting larval rearing conditions in Drosophila melanogaster can negatively impact research on ageing
- A reduced‐sucrose diet increases the sensitivity of Drosophila melanogaster to radiation
- Chamomile as a potential remedy for obesity and metabolic syndrome
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