PMC:7311890 / 2138-2304 JSONTXT

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    LitCovid-PD-MONDO

    {"project":"LitCovid-PD-MONDO","denotations":[{"id":"T19","span":{"begin":43,"end":51},"obj":"Disease"}],"attributes":[{"id":"A19","pred":"mondo_id","subj":"T19","obj":"http://purl.obolibrary.org/obo/MONDO_0100096"}],"text":"c analyses of metabolic alterations during COVID-19 pathogenesis will uncover candidate pathways implicated in disease progression. Here, using a combination of targe"}

    LitCovid-PD-CLO

    {"project":"LitCovid-PD-CLO","denotations":[{"id":"T13","span":{"begin":144,"end":145},"obj":"http://purl.obolibrary.org/obo/CLO_0001020"}],"text":"c analyses of metabolic alterations during COVID-19 pathogenesis will uncover candidate pathways implicated in disease progression. Here, using a combination of targe"}

    LitCovid-PubTator

    {"project":"LitCovid-PubTator","denotations":[{"id":"91","span":{"begin":43,"end":51},"obj":"Disease"}],"attributes":[{"id":"A91","pred":"tao:has_database_id","subj":"91","obj":"MESH:C000657245"}],"namespaces":[{"prefix":"Tax","uri":"https://www.ncbi.nlm.nih.gov/taxonomy/"},{"prefix":"MESH","uri":"https://id.nlm.nih.gov/mesh/"},{"prefix":"Gene","uri":"https://www.ncbi.nlm.nih.gov/gene/"},{"prefix":"CVCL","uri":"https://web.expasy.org/cellosaurus/CVCL_"}],"text":"c analyses of metabolic alterations during COVID-19 pathogenesis will uncover candidate pathways implicated in disease progression. Here, using a combination of targe"}

    LitCovid-PD-GO-BP

    {"project":"LitCovid-PD-GO-BP","denotations":[{"id":"T4","span":{"begin":52,"end":64},"obj":"http://purl.obolibrary.org/obo/GO_0009405"}],"text":"c analyses of metabolic alterations during COVID-19 pathogenesis will uncover candidate pathways implicated in disease progression. Here, using a combination of targe"}

    LitCovid-PMC-OGER-BB

    {"project":"LitCovid-PMC-OGER-BB","denotations":[{"id":"T61","span":{"begin":14,"end":23},"obj":"GO:0008152"},{"id":"T62","span":{"begin":43,"end":51},"obj":"SP_7"}],"text":"c analyses of metabolic alterations during COVID-19 pathogenesis will uncover candidate pathways implicated in disease progression. Here, using a combination of targe"}