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232 results for “Phytochemicals”

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geo16/100

Transcriptomics and Metabolomics Reveal Liver Metabolic Changes and Phytochemical Deposition Occurring after Tomato Consumption in Mice

GEO Series GSE221230. Mus musculus. 36 samples. Type: Expression profiling by high throughput sequencing.

openGEO-OpenDec 2022View details →
geo16/100

Analysis of differential genetic expression by dietary intervention using moderate-carbohydrate restriction diet supplemented with calorie restriction mimetic multiple phytochemicals extracts(MCDmp) i

GEO Series GSE36633. Mus musculus. 19 samples. Type: Expression profiling by array; Genome binding/occupancy profiling by genome tiling array.

openGEO-OpenMar 2012View details →
zenodo16/100

Fig. 5 in Iranian Salvia species: A phytochemical and pharmacological update

Fig. 5. (continued).

opennotspecifiedMar 2021View details →
zenodo16/100

Fig. 3 in Iranian Salvia species: A phytochemical and pharmacological update

Fig. 3. The structures of diterpenoids isolated from Iranian Salvia species.

opennotspecifiedMar 2021View details →
zenodo16/100

Fig. 3 in Phytochemical investigation of Scabiosa sicula guided by a preliminary HPLC-ESIMS profiling

Fig. 3. Ursane-type saponins (18, 19, 22, 23, 28, 32–33) and ursolic acid (34) from S. sicula.

opennotspecifiedJun 2020View details →
zenodo16/100

Fig. 1 in Phytochemical investigation of Scabiosa sicula guided by a preliminary HPLC-ESIMS profiling

Fig. 1. LC-MS profile (Base Peak chromatogram) in negative ion mode of S. sicula MeOH extract.

opennotspecifiedJun 2020View details →
zenodo16/100

Fig. 4 in Phytochemical and biological studies on rare and endangered plants endemic to China. Part XIV. Structurally diverse terpenoids from the twigs and needles of the endangered plant Picea brachytyla

Fig. 4. Observed key HMBC correlations of 1–7.

opennotspecifiedJan 2020View details →
zenodo12/100

Dataset: Bumble bee parasite strains vary in susceptibility to phytochemicals

<p>The two spreadsheets contain data on phytochemical concentrations in&nbsp;nectar and pollen of field samples.</p> <p>The zipped&nbsp;folder contains all of the data for the cell culture experiments testing the effects of phytochemicals on growth of Crithidia bombi.</p> <p>Each folder contains the results of one week&#39;s experiment<br /> The OD readings for each strain are in a separate .csv file within the folder</p> <p>In the csv files:<br /> The column &quot;conc&quot; refers to concentration of the phytochemical in ppm,&nbsp;<br /> except for caryophyllene, which is in ppb<br /> The columns &quot;net0&quot; through &quot;net120&quot; contain the net OD for each sample<br /> at the 6 timepoints, 0h (start of experiment) through 120h</p> <p>For the 3 compounds for which we modeled EC50 values<br /> (anabasine, eugenol, and thymol)<br /> the folder also contains&nbsp;</p> <p>(1) &quot;(name of experiment).grofit.R&quot; file<br /> R script to calculate growth integral for each sample</p> <p>(2) &quot;mcmc_input.txt&quot; file&nbsp;<br /> containing the calculated growth integrals&nbsp;</p> <p>(3) .jags file<br /> containing the specifications of the MCMC model</p> <p>(4) &quot;fit-evan-model.R&quot; file<br /> R script to calculate dose-response curves and EC50 values</p> <p>Note that for the calculation of integrals,<br /> the thymol grofit.R script omits samples in columns 2,3, and 4<br /> and<br /> the eugenol grofit.R script omits samples in columns 3 and 4</p> <p>Samples in these columns displayed poor growth,&nbsp;<br /> which we attributed to exposure to phytochemicals&nbsp;<br /> that volatilized from the neighboring control wells,<br /> which contained high concentrations of thymol and eugenol</p>

restrictedMar 2016View details →
zenodo12/100

Dataset: Evolution of resistance to single and combined floral phytochemicals by a bumble bee parasite

<p>Data for evolution of resistance by <em>Crithidia bombi&nbsp;</em>to thymol, eugenol, and 1:4 thymol:eugenol blend.</p> <ol> <li>EC50_all.csv:&nbsp;Data for EC50 estimates from fitted dose-response curves.</li> <li>Prop_all.csv:&nbsp;Data for OD at time of transfer.</li> <li>Evolution_ec50_od_all.csv:&nbsp;Raw OD measurements from the EC50 assays.</li> </ol> <p>&nbsp;</p>

restrictedJun 2016View details →
zenodo12/100

Dataset: Synergistic effects of floral phytochemicals against a bumble bee parasite

<p>Each file contains data for phytochemical combination experiments with one of the <em>Crithidia bombi&nbsp;</em>strains referenced in the paper:</p> <p>IL13.2, VT1, C1.1, or S08</p> <p>Conc.E: Eugenol concentration (ppm)</p> <p>Conc.T: Thymol concentration (ppm)</p> <p>max_rate: Maximum growth rate estimated from model-free spline using grofit</p> <p>integral: Growth integral estimated from model-free spline</p> <p>lag: Lag to onset of log phase, estimated from model-free spline&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;</p> <p>maximum_predictedOD: Maximum OD, estimated from model-free spline</p>

restrictedJun 2016View details →
zenodo12/100

Dataset: Synergistic effects of floral phytochemicals against a bumble bee parasite

<p>Each file contains data for phytochemical combination experiments with one of the <em>Crithidia bombi </em>strains referenced in the paper:</p> <p>IL13.2, VT1, C1.1, or S08</p> <p>Conc.E: Eugenol concentration (ppm)</p> <p>Conc.T: Thymol concentration (ppm)</p> <p>max_rate: Maximum growth rate estimated from model-free spline using grofit</p> <p>integral: Growth integral estimated from model-free spline</p> <p>lag: Lag to onset of log phase, estimated from model-free spline     </p> <p>maximum_predictedOD: Maximum OD, estimated from model-free spline</p>

restrictedJun 2016View details →
zenodo8/100

Phytochemicals from AYUSH-64 screened against main protease and spike protein of Omicron variant of SARS-CoV-2 using ensemble docking and molecular dynamics approach

<p>Data for &quot;Phytochemicals from AYUSH-64 screened against main protease and spike protein of Omicron variant of SARS-CoV-2 using ensemble docking and molecular dynamics approach&quot;&nbsp;</p>

restrictedMay 2023View details →

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