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		<title>Anti-Aging &amp; Longevity</title>
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		<description>Explore the evolving science of lifespan and cellular resilience. Learn how research peptides like Epithalon, FOXO4-DRI, and GHK-Cu are being studied in the context of aging, immunity, and rejuvenation.
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		<itunes:subtitle>Top-quality research products</itunes:subtitle>
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		<itunes:summary>Explore the evolving science of lifespan and cellular resilience. Learn how research peptides like Epithalon, FOXO4-DRI, and GHK-Cu are being studied in the context of aging, immunity, and rejuvenation.
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						<googleplay:description>Explore the evolving science of lifespan and cellular resilience. Learn how research peptides like Epithalon, FOXO4-DRI, and GHK-Cu are being studied in the context of aging, immunity, and rejuvenation.
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	<title>Thymalin, GHK-Cu &#038; Immune Health: What Researchers Are Finding</title>
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	<description><![CDATA[In the expanding world of peptide research, few compounds are garnering as much attention as Thymalin and GHK-Cu—two peptides with unique biological roles that are helping researchers explore new pathways in immune modulation, tissue repair, and cellular balance. While neither compound is approved for human use, their behavior in controlled laboratory models has opened the &#8230; <p class="more-link-wrap"><a href="https://bc9.co/episode/thymalin-ghk-cu-immune-health-what-researchers-are-finding/" class="more-link"><i class="opal-icon-plus" aria-hidden="true"></i><span>Read More<span class="screen-reader-text"> "Thymalin, GHK-Cu &#038; Immune Health: What Researchers Are Finding"</span></span></a></p>]]></description>
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	<content:encoded><![CDATA[In the expanding world of peptide research, few compounds are garnering as much attention as Thymalin and GHK-Cu—two peptides with unique biological roles that are helping researchers explore new pathways in immune modulation, tissue repair, and cellular balance. While neither compound is approved for human use, their behavior in controlled laboratory models has opened the &#8230; <p class="more-link-wrap"><a href="https://bc9.co/episode/thymalin-ghk-cu-immune-health-what-researchers-are-finding/" class="more-link"><i class="opal-icon-plus" aria-hidden="true"></i><span>Read More<span class="screen-reader-text"> "Thymalin, GHK-Cu &#038; Immune Health: What Researchers Are Finding"</span></span></a></p>]]></content:encoded>
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	<itunes:summary><![CDATA[In the expanding world of peptide research, few compounds are garnering as much attention as Thymalin and GHK-Cu—two peptides with unique biological roles that are helping researchers explore new pathways in immune modulation, tissue repair, and cellular balance. While neither compound is approved for human use, their behavior in controlled laboratory models has opened the &#8230; Read More "Thymalin, GHK-Cu &#038; Immune Health: What Researchers Are Finding"]]></itunes:summary>
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	<title>Epithalon &#038; FOXO4-DRI: The Science of Cellular Longevity</title>
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	<pubDate>Tue, 25 Nov 2025 08:58:52 +0000</pubDate>
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	<description><![CDATA[The study of cellular longevity has rapidly evolved over the past decade, driven by an increasing scientific interest in how cells age, regenerate, and respond to molecular damage. Two peptides at the forefront of this research are Epithalon and FOXO4-DRI—compounds widely studied for their potential roles in telomere maintenance, cellular senescence, and age-related biological pathways. &#8230; <p class="more-link-wrap"><a href="https://bc9.co/episode/epithalon-foxo4-dri-the-science-of-cellular-longevity/" class="more-link"><i class="opal-icon-plus" aria-hidden="true"></i><span>Read More<span class="screen-reader-text"> "Epithalon &#038; FOXO4-DRI: The Science of Cellular Longevity"</span></span></a></p>]]></description>
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