38 results on '"Shah, Ruchir R"'
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2. Exposure to PFAS chemicals induces sex-dependent alterations in key rate-limiting steps of lipid metabolism in liver steatosis
3. Single nucleotide polymorphism patterns associated with a cancer resistant phenotype
4. Low-calorie sweeteners and health outcomes: an evaluation of rapid versus traditional evidence mapping
5. Characterizing PFAS hazards and risks: a human population-based in vitro cardiotoxicity assessment strategy.
6. Hazard and Risk Characterization and Grouping of 56 Structurally Diverse PFAS Using a Targeted Battery of Broad Coverage Assays in Six Human Cell Types
7. Genome-wide promoter DNA methylation profiling of hepatocellular carcinomas arising either spontaneously or due to chronic exposure to Ginkgo biloba extract (GBE) in B6C3F1/N mice
8. Transcriptional pathways linked to fetal and maternal hepatic dysfunction caused by gestational exposure to perfluorooctanoic acid (PFOA) or hexafluoropropylene oxide-dimer acid (HFPO-DA or GenX) in CD-1 mice
9. Whole exome sequencing in the rat
10. Cause or Consequence
11. Additional file 3 of Low-calorie sweeteners and health outcomes: an evaluation of rapid versus traditional evidence mapping
12. Additional file 1 of Low-calorie sweeteners and health outcomes: an evaluation of rapid versus traditional evidence mapping
13. Additional file 2 of Low-calorie sweeteners and health outcomes: an evaluation of rapid versus traditional evidence mapping
14. Additional file 4 of Low-calorie sweeteners and health outcomes: an evaluation of rapid versus traditional evidence mapping
15. Additional file 5 of Low-calorie sweeteners and health outcomes: an evaluation of rapid versus traditional evidence mapping
16. Impact of Aligner, Normalization Method, and Sequencing Depth on TempO-seq Accuracy
17. Whole genome sequencing of low input circulating cell‐free DNA obtained from normal human subjects
18. Saagar–A New, Extensible Set of Molecular Substructures for QSAR/QSPR and Read-Across Predictions
19. Risk and Protective Factors in the COVID-19 Pandemic: A Rapid Evidence Map
20. Evaluation of 5-day In Vivo Rat Liver and Kidney With High-throughput Transcriptomics for Estimating Benchmark Doses of Apical Outcomes
21. KRAS-retroviral fusion transcripts and gene amplification in arsenic-transformed, human prostate CAsE-PE cancer cells
22. SWIFT-Active Screener: Accelerated document screening through active learning and integrated recall estimation
23. Utility of Extrapolating Human S1500+ Genes to the Whole Transcriptome: Tunicamycin Case Study
24. Development of a Zebrafish S1500+ Sentinel Gene Set for High-Throughput Transcriptomics
25. Arsenite malignantly transforms human prostate epithelial cells in vitro by gene amplification of mutated KRAS
26. The Power of Resolution: Contextualized Understanding of Biological Responses to Liver Injury Chemicals Using High-throughput Transcriptomics and Benchmark Concentration Modeling
27. Low-calorie sweeteners and health outcomes: A demonstration of rapid evidence mapping (rEM)
28. Saagar–A New, Extensible Set of Molecular Substructures for QSAR/QSPR and Read-Across Predictions.
29. BMDExpress 2: enhanced transcriptomic dose-response analysis workflow
30. A hybrid gene selection approach to create the S1500+ targeted gene sets for use in high-throughput transcriptomics
31. HAfTs are novel lncRNA transcripts from aflatoxin exposure
32. Power of Resolution: Contextualized Understanding of Biological Responses to Liver Injury Chemicals Using High-throughput Transcriptomics and Benchmark Concentration Modeling.
33. SWIFT-Review: a text-mining workbench for systematic review
34. RNA-Seq-based toxicogenomic assessment of fresh frozen and formalin-fixed tissues yields similar mechanistic insights
35. BMDExpress 2: enhanced transcriptomic dose-response analysis workflow.
36. Abstract 405: Mbd3 localizes at promoters, gene bodies and enhancers of active genes
37. RNA-Seq-based toxicogenomic assessment of fresh frozen and formalin-fixed tissues yields similar mechanistic insights.
38. Correction: Pannala et al. High-Throughput Transcriptomics Differentiates Toxic versus Non-Toxic Chemical Exposures Using a Rat Liver Model. Int. J. Mol. Sci. 2023, 24 , 17425.
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