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  <subtitle>Pinealon neuroprotective bioregulator research — Khavinson short peptide bioregulators, pineal gland regulation, circadian rhythm modulation, thymic function, immune restoration, and longevity science...</subtitle>
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  <updated>2026-04-16T00:00:00Z</updated>
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    <title>Epitalon: Telomerase Activation and Longevity Research</title>
    <link href="https://pinealonresearch.com/articles/epitalon-telomerase-activation-longevity-research/"/>
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    <updated>2026-04-09T00:00:00Z</updated>
    <published>2026-01-15T00:00:00Z</published>
    <summary>Research review of Epitalon (Epithalon) — the synthetic tetrapeptide studied for telomerase activation, pineal gland function, melatonin production, and cellular aging pathways.</summary>
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    <title>Essential Peptides for Anti-Aging and Longevity Research</title>
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    <updated>2026-04-09T00:00:00Z</updated>
    <published>2026-01-15T00:00:00Z</published>
    <summary>The most studied peptides in aging research — Epitalon, NAD+, MOTS-c, GHK-Cu, and SS-31. Mechanisms, evidence levels, and how they target aging hallmarks.</summary>
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  <entry>
    <title>The SIRT1-NAD+ Axis: A Key Target in Peptide Longevity Research</title>
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    <updated>2026-04-09T00:00:00Z</updated>
    <published>2026-01-15T00:00:00Z</published>
    <summary>How the SIRT1-NAD+ signaling axis connects cellular energy, aging, and peptide interventions like NAD+ supplementation and MOTS-c.</summary>
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  <entry>
    <title>NAD+ and Longevity: What the Latest Research Shows</title>
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    <updated>2026-04-09T00:00:00Z</updated>
    <published>2026-01-15T00:00:00Z</published>
    <summary>A review of NAD+ in aging and longevity research — sirtuin activation, mitochondrial function, and why NAD+ decline is considered a hallmark of aging.</summary>
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