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42 results on '"Robbins PD"'

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1. The Fourth Annual Symposium of the Midwest Aging Consortium.

2. Local senolysis in aged mice only partially replicates the benefits of systemic senolysis.

3. Cellular senescence: a key therapeutic target in aging and diseases.

4. Rare genetic coding variants associated with human longevity and protection against age-related diseases.

5. Senolytics reduce coronavirus-related mortality in old mice.

6. An aged immune system drives senescence and ageing of solid organs.

7. Mesenchymal stem cell-derived extracellular vesicles reduce senescence and extend health span in mouse models of aging.

8. The Ercc 1 -/Δ mouse model of accelerated senescence and aging for identification and testing of novel senotherapeutic interventions.

9. Influences of circulatory factors on intervertebral disc aging phenotype.

10. ATM is a key driver of NF-κB-dependent DNA-damage-induced senescence, stem cell dysfunction and aging.

11. Tissue specificity of senescent cell accumulation during physiologic and accelerated aging of mice.

12. Cellular Senescence: Defining a Path Forward.

13. Murine models of accelerated aging and musculoskeletal disease.

14. Fibrates as drugs with senolytic and autophagic activity for osteoarthritis therapy.

15. Measuring biological age in mice using differential mass spectrometry.

16. Mouse Models of Accelerated Cellular Senescence.

17. Signal Transduction, Ageing and Disease.

18. Age-dependent changes in intervertebral disc cell mitochondria and bioenergetics.

19. Spontaneous DNA damage to the nuclear genome promotes senescence, redox imbalance and aging.

20. Nuclear Genomic Instability and Aging.

21. Circulating levels of monocyte chemoattractant protein-1 as a potential measure of biological age in mice and frailty in humans.

22. Hsp90 inhibitors as senolytic drugs to extend healthy aging.

23. Treating Age-Related Diseases with Somatic Stem Cells.

24. The Clinical Potential of Senolytic Drugs.

25. Identification of HSP90 inhibitors as a novel class of senolytics.

26. mTOR signaling plays a critical role in the defects observed in muscle-derived stem/progenitor cells isolated from a murine model of accelerated aging.

27. Inhibition of NF-κB improves the stress resistance and myogenic differentiation of MDSPCs isolated from naturally aged mice.

28. Expansion of myeloid-derived suppressor cells with aging in the bone marrow of mice through a NF-κB-dependent mechanism.

29. Barriers to the Preclinical Development of Therapeutics that Target Aging Mechanisms.

30. The Achilles' heel of senescent cells: from transcriptome to senolytic drugs.

31. NF-κB activation with aging: characterization and therapeutic inhibition.

32. Mitochondrial-derived reactive oxygen species (ROS) play a causal role in aging-related intervertebral disc degeneration.

33. An overview of underlying causes and animal models for the study of age-related degenerative disorders of the spine and synovial joints.

34. Genotoxic stress accelerates age-associated degenerative changes in intervertebral discs.

35. ISSLS prize winner: inhibition of NF-κB activity ameliorates age-associated disc degeneration in a mouse model of accelerated aging.

36. The oxidative DNA lesions 8,5'-cyclopurines accumulate with aging in a tissue-specific manner.

37. NF-κB inhibition delays DNA damage-induced senescence and aging in mice.

38. Premature aging-related peripheral neuropathy in a mouse model of progeria.

39. Accelerated aging of intervertebral discs in a mouse model of progeria.

40. Mitochondrial-derived reactive oxygen species (ROS) play a causal role in aging-related intervertebral disc degeneration

41. Issls Prize Winner: Inhibition of Nf-kb Activity Ameliorates Age-associated Disc Degeneration in a Mouse Model of Accelerated Aging

42. Genotoxic stress accelerates age-associated degenerative changes in intervertebral discs

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