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Items: 1 to 20 of 29

1.

Attenuation of liver insoluble protein carbonyls: indicator of a longevity determinant?

Bhattacharya A, Leonard S, Tardif S, Buffenstein R, Fischer KE, Richardson A, Austad SN, Chaudhuri AR.

Aging Cell. 2011 Aug;10(4):720-3. doi: 10.1111/j.1474-9726.2011.00712.x. Epub 2011 May 6.

2.
3.

Endogenous oxidative stress: relationship to aging, longevity and caloric restriction.

Barja G.

Ageing Res Rev. 2002 Jun;1(3):397-411. Review.

PMID:
12067594
4.

Rate of generation of oxidative stress-related damage and animal longevity.

Barja G.

Free Radic Biol Med. 2002 Nov 1;33(9):1167-72. Review.

PMID:
12398924
5.

Oxidative stress and protein aggregation during biological aging.

Squier TC.

Exp Gerontol. 2001 Sep;36(9):1539-50. Review.

PMID:
11525876
6.

Membrane fatty acid unsaturation, protection against oxidative stress, and maximum life span: a homeoviscous-longevity adaptation?

Pamplona R, Barja G, Portero-Otín M.

Ann N Y Acad Sci. 2002 Apr;959:475-90. Review.

PMID:
11976221
7.

Redox regulation of cellular stress response in aging and neurodegenerative disorders: role of vitagenes.

Calabrese V, Guagliano E, Sapienza M, Panebianco M, Calafato S, Puleo E, Pennisi G, Mancuso C, Butterfield DA, Stella AG.

Neurochem Res. 2007 Apr-May;32(4-5):757-73. Epub 2006 Dec 27. Review.

PMID:
17191135
8.

Highly resistant macromolecular components and low rate of generation of endogenous damage: two key traits of longevity.

Pamplona R, Barja G.

Ageing Res Rev. 2007 Oct;6(3):189-210. Epub 2007 Jul 13. Review.

PMID:
17702671
9.

Human longevity and aging: possible role of reactive oxygen species.

Cutler RG.

Ann N Y Acad Sci. 1991;621:1-28. Review.

PMID:
1859082
10.

Proteomic approaches to oxidative protein modifications implicated in the mechanism of aging.

Toda T, Nakamura M, Morisawa H, Hirota M, Nishigaki R, Yoshimi Y.

Geriatr Gerontol Int. 2010 Jul;10 Suppl 1:S25-31. doi: 10.1111/j.1447-0594.2010.00606.x. Review.

PMID:
20590839
11.

Protein carbonylation as a major hallmark of oxidative damage: update of analytical strategies.

Fedorova M, Bollineni RC, Hoffmann R.

Mass Spectrom Rev. 2014 Mar-Apr;33(2):79-97. doi: 10.1002/mas.21381. Epub 2013 Jul 7. Review.

PMID:
23832618
12.

Extended longevity mechanisms in short-lived progeroid mice: identification of a preservative stress response associated with successful aging.

van de Ven M, Andressoo JO, Holcomb VB, Hasty P, Suh Y, van Steeg H, Garinis GA, Hoeijmakers JH, Mitchell JR.

Mech Ageing Dev. 2007 Jan;128(1):58-63. Epub 2006 Nov 28. Review.

13.

Oxidative stress and aging.

Dröge W.

Adv Exp Med Biol. 2003;543:191-200. Review.

PMID:
14713123
14.

Age-related changes in protein oxidation and proteolysis in mammalian cells.

Grune T, Shringarpure R, Sitte N, Davies K.

J Gerontol A Biol Sci Med Sci. 2001 Nov;56(11):B459-67. Review.

PMID:
11682566
15.

Protein carbonylation: proteomics, specificity and relevance to aging.

Cabiscol E, Tamarit J, Ros J.

Mass Spectrom Rev. 2014 Jan-Feb;33(1):21-48. doi: 10.1002/mas.21375. Epub 2013 Sep 30. Review.

PMID:
24114980
16.

Protein oxidation in aging and age-related diseases.

Stadtman ER.

Ann N Y Acad Sci. 2001 Apr;928:22-38. Review.

PMID:
11795513
17.

Oxidative stress and aging: catalase is a longevity determinant enzyme.

Cutler RG.

Rejuvenation Res. 2005 Fall;8(3):138-40. Review.

PMID:
16144468
18.

Acetylcarnitine and cellular stress response: roles in nutritional redox homeostasis and regulation of longevity genes.

Calabrese V, Giuffrida Stella AM, Calvani M, Butterfield DA.

J Nutr Biochem. 2006 Feb;17(2):73-88. Epub 2005 Oct 18. Review.

PMID:
16413418
19.

Protein oxidation, repair mechanisms and proteolysis in Saccharomyces cerevisiae.

Costa V, Quintanilha A, Moradas-Ferreira P.

IUBMB Life. 2007 Apr-May;59(4-5):293-8. Review.

20.

Protein oxidative modification in the aging organism and the role of the ubiquitin proteasomal system.

Kastle M, Grune T.

Curr Pharm Des. 2011 Dec 1;17(36):4007-22. Review.

PMID:
22188451
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