Compound ID 245   (prev - next)

Name: Mulberry leaf polyphenols (edit)

19 entries:
TreatmentMulberry leaf polyphenolsreproductive functionphysiological functionhealthspan biomarkerslifespanTranscriptomeProteomeMetabolomeTargetReferenceblinded
CID (PubChem)ChEMBLnumber of offspringreproductive total spanoxidative stress resistancetriglyceride / fat / lipid contentmean lifespan
ConcentrationExposure timeFoodGrowth mediumSpecial additivesC. elegans strainTemperatureChange compared to controlPercentual change compared to controlp < 0.05notesChange compared to controlPercentual change compared to controlp < 0.05notesChange compared to controlPercentual change compared to controlp < 0.05notesChange compared to controlPercentual change compared to controlp < 0.05notesChange compared to controlPercentual change compared to controlp < 0.05notes
25 mg/lwhole life; start: L1OP50, heat-inactivatedNGM agarFUDRN2 (wild type)20°CupyesA 8, A10, A12, A14, and A16; stressor: 5 mM paraquat; endpoint: survivalup25.87yesup-regulation of sod-3, lipl-4, fard-1, unc-51, fat-6, and gst-4germline signaling pathway, DAF-12, DAF-16, PHA-4, NHR-80, fat-6, lipl-4, sod-3, unc-51, and fard-1Zheng S, Liao S, Zou Y, Qu Z, Shen W, Shi Y (2014) Mulberry leaf polyphenols delay aging and regulate fat metabolism via the germline signaling pathway in Caenorhabditis elegans. Age (Dordr) 36, 9719.
25 mg/lwhole life; start: L1OP50, heat-inactivatedNGM agarFUDRN2 (wild type)25°Cup22.46yesZheng S, Liao S, Zou Y, Qu Z, Shen W, Shi Y (2014) Mulberry leaf polyphenols delay aging and regulate fat metabolism via the germline signaling pathway in Caenorhabditis elegans. Age (Dordr) 36, 9719.
25 mg/lwhole life; start: L1OP50, heat-inactivatedNGM agarFUDRCF1038 [daf-16(mu86)]20°Cup4.67noZheng S, Liao S, Zou Y, Qu Z, Shen W, Shi Y (2014) Mulberry leaf polyphenols delay aging and regulate fat metabolism via the germline signaling pathway in Caenorhabditis elegans. Age (Dordr) 36, 9719.
25 mg/lwhole life; start: L1OP50, heat-inactivatedNGM agarFUDRAA86 [daf-12(rh61rh411)]20°Cup3.80noZheng S, Liao S, Zou Y, Qu Z, Shen W, Shi Y (2014) Mulberry leaf polyphenols delay aging and regulate fat metabolism via the germline signaling pathway in Caenorhabditis elegans. Age (Dordr) 36, 9719.
25 mg/lwhole life; start: L1OP50, heat-inactivatedNGM agarFUDRBX165 [nhr-80(tm1011)]20°Cup2.34noZheng S, Liao S, Zou Y, Qu Z, Shen W, Shi Y (2014) Mulberry leaf polyphenols delay aging and regulate fat metabolism via the germline signaling pathway in Caenorhabditis elegans. Age (Dordr) 36, 9719.
25 mg/lwhole life; start: L1OP50, heat-inactivatedNGM agarFUDRSM190 [smg-1(cc546); pha-4(zu225)]20°Cup3.82noZheng S, Liao S, Zou Y, Qu Z, Shen W, Shi Y (2014) Mulberry leaf polyphenols delay aging and regulate fat metabolism via the germline signaling pathway in Caenorhabditis elegans. Age (Dordr) 36, 9719.
25 mg/lwhole life; start: L1OP50, heat-inactivatedNGM agarFUDRVC199 [sir-2.1(ok434)]20°Cup8.73yesZheng S, Liao S, Zou Y, Qu Z, Shen W, Shi Y (2014) Mulberry leaf polyphenols delay aging and regulate fat metabolism via the germline signaling pathway in Caenorhabditis elegans. Age (Dordr) 36, 9719.
25 mg/lwhole life; start: L1OP50, heat-inactivatedNGM agarFUDRCF1903 [glp-1(e2144)]25°Cup2.81noup0.60noup-regulation of gst-4; unchanged expression of sod-3, lipl-4, fard-1, unc-51, and fat-6Zheng S, Liao S, Zou Y, Qu Z, Shen W, Shi Y (2014) Mulberry leaf polyphenols delay aging and regulate fat metabolism via the germline signaling pathway in Caenorhabditis elegans. Age (Dordr) 36, 9719.
25 mg/lwhole life; start: L1OP50, heat-inactivatedNGM agarFUDREU1 [skn-1(zu67)/nT1 [unc-?(n754) let-?]]20°Cup10.99yesZheng S, Liao S, Zou Y, Qu Z, Shen W, Shi Y (2014) Mulberry leaf polyphenols delay aging and regulate fat metabolism via the germline signaling pathway in Caenorhabditis elegans. Age (Dordr) 36, 9719.
25 mg/lwhole life; start: L1OP50, heat-inactivatedNGM agarFUDRTK22 [mev-1(kn1)]20°Cup22.58yesZheng S, Liao S, Zou Y, Qu Z, Shen W, Shi Y (2014) Mulberry leaf polyphenols delay aging and regulate fat metabolism via the germline signaling pathway in Caenorhabditis elegans. Age (Dordr) 36, 9719.
1 mg/lwhole life; start: L1OP50, heat-inactivatedNGM agarFUDRN2 (wild type)20°Cdown-3.00noZheng S, Liao S, Zou Y, Qu Z, Shen W, Shi Y (2014) Mulberry leaf polyphenols delay aging and regulate fat metabolism via the germline signaling pathway in Caenorhabditis elegans. Age (Dordr) 36, 9719.
5 mg/lwhole life; start: L1OP50, heat-inactivatedNGM agarFUDRN2 (wild type)20°Cup13.00yesZheng S, Liao S, Zou Y, Qu Z, Shen W, Shi Y (2014) Mulberry leaf polyphenols delay aging and regulate fat metabolism via the germline signaling pathway in Caenorhabditis elegans. Age (Dordr) 36, 9719.
125 mg/lwhole life; start: L1OP50, heat-inactivatedNGM agarFUDRN2 (wild type)20°Cdown-2.00noZheng S, Liao S, Zou Y, Qu Z, Shen W, Shi Y (2014) Mulberry leaf polyphenols delay aging and regulate fat metabolism via the germline signaling pathway in Caenorhabditis elegans. Age (Dordr) 36, 9719.
312.5 mg/lwhole life; start: L1OP50, heat-inactivatedNGM agarFUDRN2 (wild type)20°Cdown-14.00yesZheng S, Liao S, Zou Y, Qu Z, Shen W, Shi Y (2014) Mulberry leaf polyphenols delay aging and regulate fat metabolism via the germline signaling pathway in Caenorhabditis elegans. Age (Dordr) 36, 9719.
625 mg/lwhole life; start: L1OP50, heat-inactivatedNGM agarFUDRN2 (wild type)20°Cdown-18.00yesZheng S, Liao S, Zou Y, Qu Z, Shen W, Shi Y (2014) Mulberry leaf polyphenols delay aging and regulate fat metabolism via the germline signaling pathway in Caenorhabditis elegans. Age (Dordr) 36, 9719.
25 mg/lwhole life; start: A1OP50, heat-inactivatedNGM agarN2 (wild type)20°Cdown-27.15yesdown-28.17yesup211.11yesA6; stressor: 1.5 mM H2O2 for 5 h; endpoint: survival; enhanced resistance also by the use of 0.5 mM or 1 mM H2O2up37.00yesunclear, since decreased staining is seen in the picture and is also described in text, but increased staining is shown in the graph and the supplementary tableZheng S, Liao S, Zou Y, Qu Z, Shen W, Shi Y (2014) Mulberry leaf polyphenols delay aging and regulate fat metabolism via the germline signaling pathway in Caenorhabditis elegans. Age (Dordr) 36, 9719.