DrugAge's Bibliographical Database
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Found 700 results. Showing results 401 to 420. | |
| BIBLIO ID | Author and year | Title | External link |
|---|---|---|---|
| 19163 | Ryu D, et al. (2016) | Urolithin A induces mitophagy and prolongs lifespan in C. elegans and increases muscle function in rodents | PubMed |
| 19164 | Lee J, et al (2016) | Brief Communication: SIR-2.1-dependent lifespan extension of Caenorhabditis elegans by oxyresveratrol and resveratrol | PubMed |
| 19165 | Basso N, et al. (2007) | Protective effect of long-term angiotensin II inhibition | PubMed |
| 19166 | Ghimire S, et al. (2017) | Jujube (Ziziphus Jujuba Mill.) fruit feeding extends lifespan and increases tolerance to environmental stresses by regulating aging-associated gene expression in Drosophila | PubMed |
| 19167 | Kumar S, et al. (2016) | Angiotensin Converting Enzyme (ACE) Inhibitor Extends Caenorhabditis elegans Life Span | PubMed |
| 19168 | Urban, N et al. (2017) | Non-linear impact of glutathione depletion on C. elegans life span and stress resistance. | PubMed |
| 19169 | Chen Di, et al. (2013) | Germline Signaling Mediates the Synergistically Prolonged Longevity Produced by Double Mutations in daf-2 and rsks-1 in C. elegans | PubMed |
| 19170 | Abergel R, et al. (2017) | Synergism between soluble guanylate cyclase signaling and neuropeptides extends lifespan in the nematode Caenorhabditis elegans. | PubMed |
| 19171 | Proshkina E, et al. (2016) | Geroprotective and Radioprotective Activity of Quercetin, (-)-Epicatechin, and Ibuprofen in Drosophila melanogaster | PubMed |
| 19172 | Nguyen TT, et al. (2016) | Scavengers of reactive γ-ketoaldehydes extend Caenorhabditis elegans lifespan and healthspan through protein-level interactions with SIR-2.1 and ETS-7. | PubMed |
| 19173 | Xu J, et al. (2016) | Feeding recombinant E. coli with GST-mBmKTX fusion protein increases the fecundity and lifespan of Caenorhabditis elegans | PubMed |
| 19174 | Desjardins D, et al. (2017) | Antioxidants reveal an inverted U-shaped dose-response relationship between reactive oxygen species levels and the rate of aging in Caenorhabditis elegans. | PubMed |
| 19175 | Zhang J, et al. (2015) | Oleanolic acid activates daf-16 to increase lifespan in Caenorhabditis elegans. | PubMed |
| 19176 | Kumar J, et al. (2016) | Zinc Levels Modulate Lifespan through Multiple Longevity Pathways in Caenorhabditis elegans. | PubMed |
| 19177 | Bitto A, et al. (2016) | Transient rapamycin treatment can increase lifespan and healthspan in middle-aged mice | PubMed |
| 19178 | Wang Z, et al. (2016) | Peptides from sesame cake extend healthspan of Caenorhabditis elegans via upregulation of skn-1 and inhibition of intracellular ROS levels. | PubMed |
| 19179 | Bharill P, et al. (2013) | Extreme Depletion of PIP3 Accompanies the Increased Life Span and Stress Tolerance of PI3K-null C. elegans Mutants | PubMed |
| 19180 | Gao l, et al. (2016) | A Bioinformatic Approach for the Discovery of Antiaging Effects of Baicalein from Scutellaria baicalensis Georgi. | PubMed |
| 19181 | Wang E and Wink M (2016) | Chlorophyll enhances oxidative stress tolerance in Caenorhabditis elegans and extends its lifespan | PubMed |
| 19182 | Snell TW, et al. (2016) | Repurposing FDA-approved drugs for anti-aging therapies. | PubMed |

