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Protein Misfolding and Cellular Stress in Disease and Aging: Concepts and Protocols

Peter Bross, Niels Gregersen2010Researchers and laboratory scientists in proteostasis, protein aggregation, cellular stress, autophagy, mitochondrial biology, aging, and age-related disease.

Protein misfolding, aggregation, endoplasmic-reticulum and mitochondrial stress, chaperones, autophagy, quality-control responses, premature-aging connections, disease mechanisms, and laboratory methods for studying proteotoxic stress.

Genome Stability: DNA Repair and Recombination

James Haber2013Advanced students and researchers in DNA repair, recombination, genome stability, molecular genetics, chromosome biology, aging mechanisms, and cancer biology.

Maintenance of genome stability through homologous recombination, double-strand-break repair, single-strand annealing, gene conversion, break-induced replication, sister-chromatid repair, meiotic recombination, nonhomologous end joining, DNA-damage checkpoints, and genome instability.

Lysosomes: Biology, Diseases, and Therapeutics

Frederick R. Maxfield, James M. Willard, Shuyan Lu2016Researchers and advanced students in lysosomal biology, autophagy, mitophagy, proteostasis, neurodegeneration, metabolism, pharmacology, and drug development.

Lysosome biogenesis and regulation, autophagy and mitophagy, membrane repair, lipid metabolism, TFEB-mediated cellular clearance, aging-related neurodegeneration, lysosomal storage disorders, and therapeutic targeting of lysosomal pathways.

Methuselah's Zoo: What Nature Can Teach Us about Living Longer, Healthier Lives

Steven N. Austad2022Scientists, students, clinicians, and general readers interested in comparative gerontology, evolutionary biology, animal longevity, healthspan, and natural models of aging resistance.

Comparative biology of exceptional longevity across wild animals, including insects, birds, bats, mole rats, elephants, whales, sharks, quahogs, fish, dolphins, and long-lived marine invertebrates, with attention to evolved resistance to aging and disease.

Mitochondrial DNA: Methods and Protocols

Thomas J. Nicholls, Jay P. Uhler, Maria Falkenberg2023Laboratory researchers and clinicians working in mitochondrial genetics, mtDNA maintenance and repair, genome integrity, mitochondrial disease, and aging biology.

Experimental methods for mitochondrial-DNA isolation, imaging, nucleoid structure and packaging, replication, genome integrity, damage bypass and repair, sequencing, gene editing, disease diagnostics, and analysis of mtDNA-interacting proteins.

Biochemistry and Cell Biology of Ageing: Part V, Anti-Ageing Interventions

Viktor I. Korolchuk, J. Robin Harris2024Researchers and advanced students in cellular aging, proteostasis, telomeres, NAD metabolism, senescence, stem cells, geroscience, and translational interventions.

Mechanism-based interventions targeting aging biology, including telomerase, proteasome and chaperone activation, NAD+ restoration, senolytics, stem-cell therapies, dietary restriction, SIRT1, hormesis, exercise, geroprotectors, and the gut microbiome.

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Evolutionary Biology of Aging

Source date not recordedAnalyse record ↗

Oxford University Press monograph published November 15, 1990. The official catalog lists print ISBN 978-0-19-506133-8 and online ISBN 978-0-19-770093-8, without assigning a separate digital publication date. Sources verified 2026-09-28: https://academic.oup.com/book/51065

Author
Michael R. Rose
Year
1990
Focus area
Evolutionary theory and experimental tests of senescence, including age-specific natural selection, genetic mechanisms, comparative biology and evolutionary interpretations of organismal, cellular and molecular aging theories.
Audience
Researchers and students in evolutionary genetics, comparative aging, demography, gerontology and the theoretical biology of senescence.