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      <title>BI-456906 shows strong body weight lowering efficacy in DIO mice</title>
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        <![CDATA[Researchers from Boehringer Ingelheim Pharma GmbH & Co. KG presented preclinical data for BI-456906, a novel long-acting glucagon (GCG)/glucagon-like peptide-1 (GLP-1) dual receptor agonist, currently in phase II development in patients with obesity and nonalcoholic steatohepatitis (NASH).]]>
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      <guid>http://www.bioworld.com/articles/689506</guid>
      <pubDate>Fri, 09 Sep 2022 09:00:00 -0400</pubDate>
      <link>https://www.bioworld.com/articles/689506-bi-456906-shows-strong-body-weight-lowering-efficacy-in-dio-mice</link>
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      <title>Metabolomics study reveals dementia-linked metabolites</title>
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        <![CDATA[A comprehensive nontargeted metabolomics analysis has revealed previously unknown classes of disease-linked metabolites in whole blood samples from dementia patients, which may have significant therapeutic implications for managing the untreatable common cognitive disorder.]]>
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      <guid>http://www.bioworld.com/articles/511365</guid>
      <pubDate>Tue, 14 Sep 2021 12:30:00 -0400</pubDate>
      <link>https://www.bioworld.com/articles/511365-metabolomics-study-reveals-dementia-linked-metabolites</link>
      <media:content url="https://www.bioworld.com/ext/resources/Stock-images/Therapeutic-topics/Neurology/Alzheimers-illustration.webp?t=1604527274" type="image/png" medium="image" fileSize="407999">
        <media:title type="plain">Elderly hands holding broken brain structure</media:title>
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      <title>Metabolomics study reveals dementia-linked metabolites</title>
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        <![CDATA[A comprehensive nontargeted metabolomics analysis has revealed previously unknown classes of disease-linked metabolites in whole blood samples from dementia patients, which may have significant therapeutic implications for managing the untreatable common cognitive disorder.]]>
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      <guid>http://www.bioworld.com/articles/511332</guid>
      <pubDate>Mon, 13 Sep 2021 13:00:00 -0400</pubDate>
      <link>https://www.bioworld.com/articles/511332-metabolomics-study-reveals-dementia-linked-metabolites</link>
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        <media:title type="plain">Elderly hands holding broken brain structure</media:title>
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      <title>Metabolomics study reveals dementia-linked metabolites</title>
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        <![CDATA[A comprehensive nontargeted metabolomics analysis has revealed previously unknown classes of disease-linked metabolites in whole blood samples from dementia patients, which may have significant therapeutic implications for managing the untreatable common cognitive disorder.]]>
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      <guid>http://www.bioworld.com/articles/511316</guid>
      <pubDate>Mon, 13 Sep 2021 09:00:00 -0400</pubDate>
      <link>https://www.bioworld.com/articles/511316-metabolomics-study-reveals-dementia-linked-metabolites</link>
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        <media:title type="plain">Elderly hands holding broken brain structure</media:title>
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      <title>Multimorbid diseases cluster in predictable ways: study</title>
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        <![CDATA[A large-scale metabolomics study of blood samples from 11,000 people has identified common biological links among a number of chronic non-communicable diseases, opening up the possibility of countering multiple diseases simultaneously.]]>
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      <guid>http://www.bioworld.com/articles/504790</guid>
      <pubDate>Fri, 19 Mar 2021 13:00:00 -0400</pubDate>
      <link>https://www.bioworld.com/articles/504790-multimorbid-diseases-cluster-in-predictable-ways-study</link>
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        <media:title type="plain">Molecule/disease graph</media:title>
        <media:description type="plain">Each segment of the graph depicts the number of small molecules associated with one out 27 diseases. Colored segments and connections between disease indicate the fraction of small molecules common between at least two diseases. Credit: Dr Maik Pietzner at the MRC Epidemiology Unit
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      <title>Multimorbid diseases cluster in predictable ways: study</title>
      <description>
        <![CDATA[A large-scale metabolomics study of blood samples from 11,000 people has identified common biological links among a number of chronic non-communicable diseases, opening up the possibility of countering multiple diseases simultaneously.]]>
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      <guid>http://www.bioworld.com/articles/504804</guid>
      <pubDate>Tue, 16 Mar 2021 15:10:00 -0400</pubDate>
      <link>https://www.bioworld.com/articles/504804-multimorbid-diseases-cluster-in-predictable-ways-study</link>
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        <media:title type="plain">Molecule/disease graph</media:title>
        <media:description type="plain">Each segment of the graph depicts the number of small molecules associated with one out 27 diseases. Colored segments and connections between disease indicate the fraction of small molecules common between at least two diseases. Credit: Dr Maik Pietzner at the MRC Epidemiology Unit
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    <item>
      <title>Multimorbid diseases cluster in predictable ways: study</title>
      <description>
        <![CDATA[A large-scale metabolomics study of blood samples from 11,000 people has identified common biological links among a number of chronic non-communicable diseases, opening up the possibility of countering multiple diseases simultaneously.]]>
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      <guid>http://www.bioworld.com/articles/504730</guid>
      <pubDate>Mon, 15 Mar 2021 12:00:00 -0400</pubDate>
      <link>https://www.bioworld.com/articles/504730-multimorbid-diseases-cluster-in-predictable-ways-study</link>
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        <media:title type="plain">Molecule/disease graph</media:title>
        <media:description type="plain">Each segment of the graph depicts the number of small molecules associated with one out 27 diseases. Colored segments and connections between disease indicate the fraction of small molecules common between at least two diseases. Credit: Dr Maik Pietzner at the MRC Epidemiology Unit
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