2022
DOI: 10.1016/j.kint.2022.04.045
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Kidney omics in hypertension: from statistical associations to biological mechanisms and clinical applications

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Cited by 18 publications
(21 citation statements)
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“…STEP 5: Trim and optimise the causality network based on biological facts53; this will probably generate a causality chain (ie, the causal biological pathway) starting with genetic signals or other biophenotypes and pointing to the end of the core symptom.…”
Section: How Brain Science Could Help Decode Psychosismentioning
confidence: 99%
“…STEP 5: Trim and optimise the causality network based on biological facts53; this will probably generate a causality chain (ie, the causal biological pathway) starting with genetic signals or other biophenotypes and pointing to the end of the core symptom.…”
Section: How Brain Science Could Help Decode Psychosismentioning
confidence: 99%
“…Blood pressure is controlled by various mechanisms, including short- medium- and long-term mechanisms ( Ahmed et al, 2020 ; 2021; de Bhailis and Kalra, 2022 ; Tomaszewski et al, 2022 ). CSK has been shown to engage in blood pressure regulation and CSK depletion has been identified as a possible trigger for hypertension ( Lee et al, 2016 ; Oh et al, 2018 ).…”
Section: Clinical Importance Of Tyrosine-protein Kinase Cskmentioning
confidence: 99%
“…Due to the cellular heterogeneity of the focal organs, single cell resolution research is needed. Using the single-cell omic methodology, scientists could map disease-associated SNPs or genes to cell types at the single-cell level, reveal the heterogeneity among cells at multiple omic levels and elucidate their different omic associations or variations, which would provide new directions for functional genetic research in human diseases and animal models ( Timshel et al, 2020 ; Tomaszewski et al, 2022 ).…”
Section: Introductionmentioning
confidence: 99%