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	<title>Search Results for &#8220;feed&#8221; &#8211; schmidtlab.org</title>
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	<title>Search Results for &#8220;feed&#8221; &#8211; schmidtlab.org</title>
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		<title>Areas of Study</title>
		<link>https://schmidtlab.org/areas-of-study/</link>
		
		<dc:creator><![CDATA[Riley]]></dc:creator>
		<pubDate>Fri, 14 Jul 2023 15:15:06 +0000</pubDate>
				<guid isPermaLink="false">https://schmidtlab.org/?page_id=519</guid>

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			<h3>
<p><em><b>“To see what is in front of one’s nose needs a constant struggle” &#8211; George Orwell</b></em></p>
</h3>
<h2><strong><b>Novel roles for peripheral metabolic factors in substance use disorders<img fetchpriority="high" decoding="async" class="size-medium wp-image-231 alignright" src="https://schmidtlab.org/wp-content/uploads/sites/8/2020/04/image-2-300x212.png?x53922" alt="" width="300" height="212" srcset="https://schmidtlab.org/wp-content/uploads/sites/8/2020/04/image-2-300x212.png 300w, https://schmidtlab.org/wp-content/uploads/sites/8/2020/04/image-2-1024x722.png 1024w, https://schmidtlab.org/wp-content/uploads/sites/8/2020/04/image-2-768x542.png 768w, https://schmidtlab.org/wp-content/uploads/sites/8/2020/04/image-2.png 1280w" sizes="(max-width: 300px) 100vw, 300px" /></b></strong></h2>
<p>Given that the search for effective pharmacotherapies for&nbsp;cocaine&nbsp;use disorder has, thus far, been fruitless, there remains a critical need for conceptually innovative approaches toward identifying new medications to treat this disease. A better understanding of the neurocircuits and neurobiological mechanisms underlying&nbsp;cocaine&nbsp;taking and seeking may identify molecular substrates that could serve as targets for novel pharmacotherapies to treat&nbsp;cocaine&nbsp;use disorder. Our recent preclinical findings suggest that glucagon-like peptide-1 (GLP-1) receptor agonists could be re-purposed to treat&nbsp;cocaine&nbsp;craving-induced relapse.&nbsp;Specifically, we have identified doses of a GLP-1 receptor agonist that selectively reduce cocaine seeking and do not produce notable feeding and malaise-like effects associated with these medications in humans and rodents. Interestingly, activation of central GLP-1 receptors also decreases the reinforcing efficacy of opioids and other drugs of abuse. Our pilot studies reveal that a GLP-1 receptor agonist decreases oxycodone taking and seeking without compromising the antinociceptive effects of oxycodone. These findings suggest that GLP-1 receptor agonists could serve as adjunct medications that reduce the abuse liability of opioid analgesics in patients treated for chronic pain. Overall, our preclinical studies provide compelling evidence to advance GLP-1 receptor agonists into clinical trials testing the efficacy of these medications to reduce substance use disorders. Current and future studies aim to expand our understanding of central GLP-1 mechanisms that regulate drug-mediated behaviors. We are also exploring novel approaches to targeting multiple neuropeptide systems and the impact of these pharmacotherapies on motivated behaviors including drug taking and seeking as well as aberrant feeding behaviors.</p>
<p>&nbsp;</p>
<h2><b>Nicotine withdrawal-induced hyperphagia and body weight gain<img decoding="async" class="size-medium wp-image-220 alignright" src="https://schmidtlab.org/wp-content/uploads/sites/8/2020/04/smoke-300x178.png?x53922" alt="" width="300" height="178" srcset="https://schmidtlab.org/wp-content/uploads/sites/8/2020/04/smoke-300x178.png 300w, https://schmidtlab.org/wp-content/uploads/sites/8/2020/04/smoke.png 750w" sizes="(max-width: 300px) 100vw, 300px" /></b></h2>
<p>Our research program also includes translational studies of nicotine use disorder. Using the self-administation/extinction/reinstatement paradigm we are actively investigating the neurobioogical bases of nicotine taking and seeking as well as aberrant nicotine withdrawal-induced phenotypes. Increased weight gain during smoking abstinence is commonly cited as the primary motivator for continued smoking and smoking relapse, making post-cessation weight gain and the increased risk for obesity a significant public health problem. Our provocative pilot studies show that administration of a glucagon-like peptide-1 (GLP-1) receptor agonist attenuates nicotine seeking during withdrawal. We are currently working to characterize central GLP-1-focused mechanisms underlying nicotine seeking, over-eating and body weight gain during withdrawal. Results from these study will provide strong rationale for clinical studies examining the efficacy of GLP-1 receptor agonists in nicotine use disorder, as well as development of pharmacotherapies aimed at increasing GLP-1 receptor signaling in the brain to prevent smoking relapse and withdrawal-induced hyperphagia and body weight gain.</p>
<p>&nbsp;</p>
<h2><b>Identifying novel pharmacotherapies for substance use disorders</b></h2>
<p>An overarching goal of our lab is to identify novel pharmacotherapies to treat substance use disorders. To this end, we screen the efficacy of novel drugs to attenuate voluntary drug-taking and -seeking behaviors. &nbsp;These include:</p>
<ol start="1" type="1">
<li>A novel PICK1 inhibitor for cocaine craving-induced relapse.</li>
<li>Novel dual receptor agonists for cocaine and opioid use disorders.</li>
<li>Positive allosteric modulators of nicotinic acetylcholine receptor subtypes for nicotine use disorder.</li>
<li>GLP-1 receptor agonists for cocaine, opioid and nicotine use disorders.</li>
<li>A novel selective kainate receptor antagonist for alcohol use disorder.</li>
</ol>
<p>&nbsp;</p>
<h2><b>Expanding our understanding of the neural circuits and cell types mediating drug-taking and -seeking behaviors<img decoding="async" class="size-medium wp-image-230 alignright" src="https://schmidtlab.org/wp-content/uploads/sites/8/2020/04/image-1-287x300.png?x53922" alt="" width="287" height="300" srcset="https://schmidtlab.org/wp-content/uploads/sites/8/2020/04/image-1-287x300.png 287w, https://schmidtlab.org/wp-content/uploads/sites/8/2020/04/image-1-980x1024.png 980w, https://schmidtlab.org/wp-content/uploads/sites/8/2020/04/image-1-768x802.png 768w, https://schmidtlab.org/wp-content/uploads/sites/8/2020/04/image-1.png 1026w" sizes="(max-width: 287px) 100vw, 287px" /><br /></b></h2>
<p>Receptors for metabolic factors including GLP-1 are expressed throughout the brain including nuclei known to play important roles in drug taking and seeking. However, the cell types and neural circuits expressing these receptors are not clearly defined. Therefore, an improved understanding of the cell phenotypes and their target nuclei is required to understand the central mechanisms by</p>
<p>which activation of these receptors affects motivated behaviors. Using transgenic rat models, we are characterizing central GLP-1 circuits. We are also using fiber photometry to study the functional significance of activating GLP-1 receptors in discrete microcircuits. &nbsp;Expanding our understanding of the central mechanisms by which metabolic factors regulate drug reinforcement will allow us to develop precision therapies targeting specific cell types and neural circuits to reduce drug taking and seeking.</p>
<p>&nbsp;</p>
<h2><b><img loading="lazy" decoding="async" class="wp-image-221 size-medium alignleft" src="https://schmidtlab.org/wp-content/uploads/sites/8/2020/04/rat-300x170.png?x53922" alt="" width="300" height="170" srcset="https://schmidtlab.org/wp-content/uploads/sites/8/2020/04/rat-300x170.png 300w, https://schmidtlab.org/wp-content/uploads/sites/8/2020/04/rat-1024x581.png 1024w, https://schmidtlab.org/wp-content/uploads/sites/8/2020/04/rat-768x436.png 768w, https://schmidtlab.org/wp-content/uploads/sites/8/2020/04/rat.png 1280w" sizes="auto, (max-width: 300px) 100vw, 300px" />Inter-generational effects of parental drug taking</b></h2>
<p>We are also pursing studies examining the inter-generational effects of voluntary parental drug taking. With our team of collaborators, we have shown that male, but not female, offspring of cocaine-experienced sires had decreased levels of cocaine intake and increased anxiety-like behavior compared to controls. My research program is expanding this field to examine the heritable effects of parental nicotine self-administration on behavior and physiology in subsequent generations. Our preliminary studies (not published) are consistent with human epidemiological studies and show that <i>both</i> male and female offspring of nicotine-experienced sires have <i>increased susceptibility</i> to developing nicotine dependence. We continue to pursue these studies and are investigating the effects of paternal nicotine taking on learning and memory in offspring. We are also using unbiased whole genome approaches to identify novel molecular substrates underlying the heritable effects of paternal drug taking.</p>
<h2></h2>

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		<item>
		<title>Activation of GLP-1 Receptors Attenuates Oxycodone Taking and Seeking Without Compromising the Antinociceptive Effects of Oxycodone in Rats</title>
		<link>https://schmidtlab.org/2019/12/04/activation-of-glp-1-receptors-attenuates-oxycodone-taking-and-seeking-without-compromising-the-antinociceptive-effects-of-oxycodone-in-rats/</link>
		
		<dc:creator><![CDATA[suditir]]></dc:creator>
		<pubDate>Wed, 04 Dec 2019 20:34:00 +0000</pubDate>
				<category><![CDATA[Publications & News]]></category>
		<category><![CDATA[Published Studies]]></category>
		<category><![CDATA[GLP-1]]></category>
		<category><![CDATA[MSNs]]></category>
		<category><![CDATA[opioids]]></category>
		<category><![CDATA[self administration]]></category>
		<guid isPermaLink="false">https://schmidtlab.org/?p=149</guid>

					<description><![CDATA[Postdoctoral researcher Yafang Zhang recently had a paper published in Neuropsychopharmacology in collaboration with many of our lab members! Congrats Yafang! Find the abstract below: Despite the effectiveness of current medications to treat opioid use disorder, there is still a &#8230; <a class="kt-excerpt-readmore more-link" href="https://schmidtlab.org/2019/12/04/activation-of-glp-1-receptors-attenuates-oxycodone-taking-and-seeking-without-compromising-the-antinociceptive-effects-of-oxycodone-in-rats/">Read More</a>]]></description>
										<content:encoded><![CDATA[
<p class="wp-block-paragraph">Postdoctoral researcher Yafang Zhang recently had a paper published in Neuropsychopharmacology in collaboration with many of our lab members! Congrats Yafang!</p>



<p class="wp-block-paragraph">Find the abstract below:</p>



<blockquote class="wp-block-quote is-layout-flow wp-block-quote-is-layout-flow"><p><em>Despite the effectiveness of current medications to treat opioid use disorder, there is still a high rate of relapse following detoxification. Thus, there is critical need for innovative studies aimed at identifying novel neurobiological mechanisms that could be targeted to treat opioid use disorder. A growing body of preclinical evidence indicates that glucagon-like peptide-1 (GLP-1) receptor agonists reduce drug reinforcement. However, the efficacy of GLP-1 receptor agonists in attenuating opioid-mediated behaviors has not been thoroughly investigated. Using recently established models of opioid-taking and -seeking behaviors, we showed that systemic administration of the GLP-1 receptor agonist exendin-4 reduced oxycodone self-administration and the reinstatement of oxycodone-seeking behavior in rats. We also identified behaviorally selective doses of exendin-4 that reduced opioid-taking and -seeking behaviors and did not produce adverse feeding effects in oxycodone-experienced rats. To identify a central site of action, we showed that systemic exendin-4 penetrated the brain and bound putative GLP-1 receptors on dopamine D1 receptor- and dopamine D2 receptor-expressing medium spiny neurons in the nucleus accumbens shell. Consistent with our systemic studies, infusions of exendin-4 directly into the accumbens shell attenuated oxycodone self-administration and the reinstatement of oxycodone-seeking behavior without affecting ad libitum food intake. Finally, exendin-4 did not alter the analgesic effects of oxycodone, suggesting that activation of GLP-1 receptors attenuated opioid reinforcement without reducing the thermal antinociceptive effects of oxycodone. Taken together, these findings suggest that GLP-1 receptors could serve as potential molecular targets for pharmacotherapies aimed at reducing opioid use disorder.</em></p></blockquote>



<p class="wp-block-paragraph">The University of Pennsylvania School of Nursing also highlighted our research on opioids and satiety factors in a news <a href="https://www.nursing.upenn.edu/live/news/1518-novel-research-aims-to-identify-new-medications-">article</a> . Find the full paper in Neuropsychopharmacology published <a href="https://www.nature.com/articles/s41386-019-0531-4">here</a>. </p>



<p class="wp-block-paragraph"></p>
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		<title>Research</title>
		<link>https://schmidtlab.org/research/</link>
		
		<dc:creator><![CDATA[suditir]]></dc:creator>
		<pubDate>Tue, 20 Nov 2018 22:58:15 +0000</pubDate>
				<guid isPermaLink="false">https://schmidtlab.org/?page_id=18</guid>

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			<p><em><b>“To see what is in front of one’s nose needs a constant struggle” &#8211; George Orwell</b></em></p>

		</div>
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			<h2><strong><b>Novel roles for peripheral metabolic factors in substance use disorders<img loading="lazy" decoding="async" class="size-medium wp-image-231 alignright" src="https://schmidtlab.org/wp-content/uploads/sites/8/2020/04/image-2-300x212.png?x53922" alt="" width="300" height="212" srcset="https://schmidtlab.org/wp-content/uploads/sites/8/2020/04/image-2-300x212.png 300w, https://schmidtlab.org/wp-content/uploads/sites/8/2020/04/image-2-1024x722.png 1024w, https://schmidtlab.org/wp-content/uploads/sites/8/2020/04/image-2-768x542.png 768w, https://schmidtlab.org/wp-content/uploads/sites/8/2020/04/image-2.png 1280w" sizes="auto, (max-width: 300px) 100vw, 300px" /></b></strong></h2>
<p>Given that the search for effective pharmacotherapies for cocaine use disorder has, thus far, been fruitless, there remains a critical need for conceptually innovative approaches toward identifying new medications to treat this disease. A better understanding of the neurocircuits and neurobiological mechanisms underlying cocaine taking and seeking may identify molecular substrates that could serve as targets for novel pharmacotherapies to treat cocaine use disorder. Our recent preclinical findings suggest that glucagon-like peptide-1 (GLP-1) receptor agonists could be re-purposed to treat cocaine craving-induced relapse. Specifically, we have identified doses of a GLP-1 receptor agonist that selectively reduce cocaine seeking and do not produce notable feeding and malaise-like effects associated with these medications in humans and rodents. Interestingly, activation of central GLP-1 receptors also decreases the reinforcing efficacy of opioids and other drugs of abuse. Our pilot studies reveal that a GLP-1 receptor agonist decreases oxycodone taking and seeking without compromising the antinociceptive effects of oxycodone. These findings suggest that GLP-1 receptor agonists could serve as adjunct medications that reduce the abuse liability of opioid analgesics in patients treated for chronic pain. Overall, our preclinical studies provide compelling evidence to advance GLP-1 receptor agonists into clinical trials testing the efficacy of these medications to reduce substance use disorders. Current and future studies aim to expand our understanding of central GLP-1 mechanisms that regulate drug-mediated behaviors. We are also exploring novel approaches to targeting multiple neuropeptide systems and the impact of these pharmacotherapies on motivated behaviors including drug taking and seeking as well as aberrant feeding behaviors.</p>
<p>&nbsp;</p>
<h2><b>Nicotine withdrawal-induced hyperphagia and body weight gain<img loading="lazy" decoding="async" class="size-medium wp-image-220 alignright" src="https://schmidtlab.org/wp-content/uploads/sites/8/2020/04/smoke-300x178.png?x53922" alt="" width="300" height="178" srcset="https://schmidtlab.org/wp-content/uploads/sites/8/2020/04/smoke-300x178.png 300w, https://schmidtlab.org/wp-content/uploads/sites/8/2020/04/smoke.png 750w" sizes="auto, (max-width: 300px) 100vw, 300px" /></b></h2>
<p>Our research program also includes translational studies of nicotine use disorder. Using the self-administation/extinction/reinstatement paradigm we are actively investigating the neurobioogical bases of nicotine taking and seeking as well as aberrant nicotine withdrawal-induced phenotypes. Increased weight gain during smoking abstinence is commonly cited as the primary motivator for continued smoking and smoking relapse, making post-cessation weight gain and the increased risk for obesity a significant public health problem. Our provocative pilot studies show that administration of a glucagon-like peptide-1 (GLP-1) receptor agonist attenuates nicotine seeking during withdrawal. We are currently working to characterize central GLP-1-focused mechanisms underlying nicotine seeking, over-eating and body weight gain during withdrawal. Results from these study will provide strong rationale for clinical studies examining the efficacy of GLP-1 receptor agonists in nicotine use disorder, as well as development of pharmacotherapies aimed at increasing GLP-1 receptor signaling in the brain to prevent smoking relapse and withdrawal-induced hyperphagia and body weight gain.</p>
<p>&nbsp;</p>
<h2><b>Identifying novel pharmacotherapies for substance use disorders</b></h2>
<p>An overarching goal of our lab is to identify novel pharmacotherapies to treat substance use disorders. To this end, we screen the efficacy of novel drugs to attenuate voluntary drug-taking and -seeking behaviors.  These include:</p>
<ol start="1" type="1">
<li>A novel PICK1 inhibitor for cocaine craving-induced relapse.</li>
<li>Novel dual receptor agonists for cocaine and opioid use disorders.</li>
<li>Positive allosteric modulators of nicotinic acetylcholine receptor subtypes for nicotine use disorder.</li>
<li>GLP-1 receptor agonists for cocaine, opioid and nicotine use disorders.</li>
<li>A novel selective kainate receptor antagonist for alcohol use disorder.</li>
</ol>
<p>&nbsp;</p>
<h2><b>Expanding our understanding of the neural circuits and cell types mediating drug-taking and -seeking behaviors<img loading="lazy" decoding="async" class="size-medium wp-image-230 alignright" src="https://schmidtlab.org/wp-content/uploads/sites/8/2020/04/image-1-287x300.png?x53922" alt="" width="287" height="300" srcset="https://schmidtlab.org/wp-content/uploads/sites/8/2020/04/image-1-287x300.png 287w, https://schmidtlab.org/wp-content/uploads/sites/8/2020/04/image-1-980x1024.png 980w, https://schmidtlab.org/wp-content/uploads/sites/8/2020/04/image-1-768x802.png 768w, https://schmidtlab.org/wp-content/uploads/sites/8/2020/04/image-1.png 1026w" sizes="auto, (max-width: 287px) 100vw, 287px" /><br />
</b></h2>
<p>Receptors for metabolic factors including GLP-1 are expressed throughout the brain including nuclei known to play important roles in drug taking and seeking. However, the cell types and neural circuits expressing these receptors are not clearly defined. Therefore, an improved understanding of the cell phenotypes and their target nuclei is required to understand the central mechanisms by</p>
<p>which activation of these receptors affects motivated behaviors. Using transgenic rat models, we are characterizing central GLP-1 circuits. We are also using fiber photometry to study the functional significance of activating GLP-1 receptors in discrete microcircuits.  Expanding our understanding of the central mechanisms by which metabolic factors regulate drug reinforcement will allow us to develop precision therapies targeting specific cell types and neural circuits to reduce drug taking and seeking.</p>
<p>&nbsp;</p>
<h2><b><img loading="lazy" decoding="async" class="wp-image-221 size-medium alignleft" src="https://schmidtlab.org/wp-content/uploads/sites/8/2020/04/rat-300x170.png?x53922" alt="" width="300" height="170" srcset="https://schmidtlab.org/wp-content/uploads/sites/8/2020/04/rat-300x170.png 300w, https://schmidtlab.org/wp-content/uploads/sites/8/2020/04/rat-1024x581.png 1024w, https://schmidtlab.org/wp-content/uploads/sites/8/2020/04/rat-768x436.png 768w, https://schmidtlab.org/wp-content/uploads/sites/8/2020/04/rat.png 1280w" sizes="auto, (max-width: 300px) 100vw, 300px" />Inter-generational effects of parental drug taking</b></h2>
<p>We are also pursing studies examining the inter-generational effects of voluntary parental drug taking. With our team of collaborators, we have shown that male, but not female, offspring of cocaine-experienced sires had decreased levels of cocaine intake and increased anxiety-like behavior compared to controls. My research program is expanding this field to examine the heritable effects of parental nicotine self-administration on behavior and physiology in subsequent generations. Our preliminary studies (not published) are consistent with human epidemiological studies and show that <i>both</i> male and female offspring of nicotine-experienced sires have <i>increased susceptibility</i> to developing nicotine dependence. We continue to pursue these studies and are investigating the effects of paternal nicotine taking on learning and memory in offspring. We are also using unbiased whole genome approaches to identify novel molecular substrates underlying the heritable effects of paternal drug taking.</p>
<h2></h2>

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			<h2 class="wpb_heading wpb_video_heading">Fall 2017: Can Anti-Diebetic Drugs be Used to Treat Cocaine Addiction? </h2>
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			<h2 class="wpb_heading wpb_video_heading"> The role of CeA GLP-1R-expressing circuits in cocaine-abstinence mediated behaviors BBC 2023</h2>
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			<h2 class="wpb_heading wpb_video_heading">Jenn Ben Nathan - Ben Talk</h2>
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			<h2 class="wpb_heading wpb_video_heading">Schmidt Lab Research Overview by Vanessa Weir</h2>
			<div class="wpb_video_wrapper"><div class="entry-content-asset videofit"><iframe loading="lazy" title="Quaker Days Elevator Pitch" width="500" height="281" src="https://www.youtube.com/embed/JwxQV-vEkWA?feature=oembed" frameborder="0" allow="accelerometer; autoplay; clipboard-write; encrypted-media; gyroscope; picture-in-picture; web-share" allowfullscreen></iframe></div></div>
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			<h1><strong>Funding </strong></h1>

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