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1.
Mechanisms by which different functional states of mitochondria define yeast longevity.
Int J Mol Sci
; 16(3): 5528-54, 2015 Mar 11.
Artículo
en Inglés
| MEDLINE | ID: mdl-25768339
2.
Longevity extension by phytochemicals.
Molecules
; 20(4): 6544-72, 2015 Apr 13.
Artículo
en Inglés
| MEDLINE | ID: mdl-25871373
3.
Diverse geroprotectors differently affect a mechanism linking cellular aging to cellular quiescence in budding yeast.
Oncotarget
; 13: 918-943, 2022.
Artículo
en Inglés
| MEDLINE | ID: mdl-35937500
4.
Discovery of fifteen new geroprotective plant extracts and identification of cellular processes they affect to prolong the chronological lifespan of budding yeast.
Oncotarget
; 11(23): 2182-2203, 2020 Jun 09.
Artículo
en Inglés
| MEDLINE | ID: mdl-32577164
5.
Pairwise combinations of chemical compounds that delay yeast chronological aging through different signaling pathways display synergistic effects on the extent of aging delay.
Oncotarget
; 10(3): 313-338, 2019 Jan 08.
Artículo
en Inglés
| MEDLINE | ID: mdl-30719227
6.
Caloric restriction extends yeast chronological lifespan via a mechanism linking cellular aging to cell cycle regulation, maintenance of a quiescent state, entry into a non-quiescent state and survival in the non-quiescent state.
Oncotarget
; 8(41): 69328-69350, 2017 Sep 19.
Artículo
en Inglés
| MEDLINE | ID: mdl-29050207
7.
Six plant extracts delay yeast chronological aging through different signaling pathways.
Oncotarget
; 7(32): 50845-50863, 2016 Aug 09.
Artículo
en Inglés
| MEDLINE | ID: mdl-27447556
8.
Discovery of plant extracts that greatly delay yeast chronological aging and have different effects on longevity-defining cellular processes.
Oncotarget
; 7(13): 16542-66, 2016 Mar 29.
Artículo
en Inglés
| MEDLINE | ID: mdl-26918729
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