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50 results on '"Salmon, Adam B."'

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1. Metabolic benefits of methionine restriction in adult mice do not require functional methionine sulfoxide reductase A (MsrA).

2. Mouse models used to test the role of reactive oxygen species in aging and age-related chronic diseases.

3. Aging research using the common marmoset: Focus on aging interventions.

5. Nox2 Mediates Skeletal Muscle Insulin Resistance Induced by a High Fat Diet.

6. Altered metabolism and resistance to obesity in long-lived mice producing reduced levels of IGF-I.

8. Revisiting an age-old question regarding oxidative stress.

9. Mice Producing Reduced Levels of Insulin-Like Growth Factor Type 1 Display an Increase in Maximum, but not Mean, Life Span.

10. Genetic Disruption of SOD1 Gene Causes Glucose Intolerance and Impairs β-Cell Function.

11. Reduction of glucose intolerance with high fat feeding is associated with anti-inflammatory effects of thioredoxin 1 overexpression in mice.

12. Update on the oxidative stress theory of aging: Does oxidative stress play a role in aging or healthy aging?

13. Insulin resistance is a cellular antioxidant defense mechanism.

14. Lack of methionine sulfoxide reductase A in mice increases sensitivity to oxidative stress but does not diminish life span.

15. The long lifespan of two bat species is correlated with resistance to protein oxidation and enhanced protein homeostasis.

16. Mechanisms of stress resistance in Snell dwarf mouse fibroblasts: Enhanced antioxidant and DNA base excision repair capacity, but no differences in mitochondrial metabolism

17. Cells From Long-Lived Mutant Mice Exhibit Enhanced Repair of Ultraviolet Lesions.

18. Fibroblasts From Naked Mole-Rats Are Resistant to Multiple Forms of Cell Injury, But Sensitive to Peroxide, Ultraviolet Light, and Endoplasmic Reticulum Stress.

19. Skin-derived fibroblasts from long-lived species are resistant to some, but not all, lethal stresses and to the mitochondrial inhibitor rotenone.

20. Fibroblast cell lines from young adult mice of long-lived mutant strains are resistant to multiple forms of stress.

21. A COST OF REPRODUCTION IN DROSOPHILA MELANOGASTER: STRESS SUSCEPTIBILITY.

23. Determination of dexamethasone dose for cortisol suppression in adult common marmosets (Callithrix jacchus).

24. Age‐related changes in hematological biomarkers in common marmosets.

25. Is Rapamycin a Dietary Restriction Mimetic?

26. Sensory innervation of masseter, temporal and lateral pterygoid muscles in common marmosets.

27. Matrix-bound Cyr61/CCN1 is required to retain the properties of the bone marrow mesenchymal stem cell niche but is depleted with aging.

28. Short term treatment with a cocktail of rapamycin, acarbose and phenylbutyrate delays aging phenotypes in mice.

29. Short-Term Treatment With Rapamycin and Dietary Restriction Have Overlapping and Distinctive Effects in Young Mice.

30. Heightened Induction of Proapoptotic Signals in Response to Endoplasmic Reticulum Stress in Primary Fibroblasts from a Mouse Model of Longevity.

31. Chloride channel accessory 1 integrates chloride channel activity and mTORC1 in aging‐related kidney injury.

32. Rapamycin‐mediated mouse lifespan extension: Late‐life dosage regimes with sex‐specific effects.

33. Pharmaceutical inhibition of mTOR in the common marmoset: effect of rapamycin on regulators of proteostasis in a non-human primate.

34. MsrA Overexpression Targeted to the Mitochondria, but Not Cytosol, Preserves Insulin Sensitivity in Diet-Induced Obese Mice.

35. The paradoxical role of thioredoxin on oxidative stress and aging.

36. Obesity-induced oxidative stress, accelerated functional decline with age and increased mortality in mice.

37. Rapamycin and Dietary Restriction Induce Metabolically Distinctive Changes in Mouse Liver.

38. Rapamycin-mediated lifespan increase in mice is dose and sex dependent and metabolically distinct from dietary restriction.

39. Mice Fed Rapamycin Have an Increase in Lifespan Associated with Major Changes in the Liver Transcriptome.

40. Oxidative damage associated with obesity is prevented by overexpression of CuZn- or Mn-superoxide dismutase.

41. Methionine sulfoxide reductase A affects insulin resistance by protecting insulin receptorfunction

42. Rapamycin-lnduced Insulin Resistance Is Mediated by mTORC2 Loss and Uncoupled from Longevity.

43. Oxidative stress and diabetes: What can we learn about insulin resistance from antioxidant mutant mouse models?

44. Increased superoxide in vivo accelerates age-associated muscle atrophy through mitochondrial dysfunction and neuromuscular junction degeneration.

45. Overexpression of Mn Superoxide Dismutase Does Not Increase Life Span in Mice.

46. Protein stability and resistance to oxidative stress are determinants of longevity in the longest-living rodent, the naked mole-rat.

47. Reduction of mitochondrial H2O2 by overexpressing peroxiredoxin 3 improves glucose tolerance in mice.

48. Long‐term treatment with the mTOR inhibitor rapamycin has minor effect on clinical laboratory markers in middle‐aged marmosets.

49. Evaluation of the pharmacokinetics of metformin and acarbose in the common marmoset.

50. Metabolic effects of intra-abdominal fat in GHRKO mice.

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