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2X Blend Tesamorelin (10mg) / Ipamorelin (2mg)

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2X Blend Tesamorelin (10mg) / Ipamorelin (2mg)

2X Blend Tesamorelin (10mg) / Ipamorelin (2mg)

  • 2X Blend is a balanced blend of Tesamorelin (10mg) and Ipamorelin (2mg) designed to investigate synergistic effects on growth hormone (GH) secretion pathways in experimental models, with applications in metabolic and endocrine research.
  • Tesamorelin, a GHRF analog, has been studied for its role in stimulating GH release and modulating lipolytic activity in controlled laboratory settings.
  • Ipamorelin selectively binds to the ghrelin receptor, exhibiting GH-releasing activity with limited impact on ACTH or prolactin secretion in non-clinical research models.
  • This combination is under investigation for its potential to influence adipose metabolism, protein synthesis signaling, and tissue regeneration mechanisms in vitro and in vivo studies.
  • This dual-peptide formulation provides a research tool for evaluating combined GH secretagogue effects on metabolic, endocrine, and cellular repair pathways.
$16.50

Original: $55.00

-70%
2X Blend Tesamorelin (10mg) / Ipamorelin (2mg)

$55.00

$16.50

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Description

  • 2X Blend is a balanced blend of Tesamorelin (10mg) and Ipamorelin (2mg) designed to investigate synergistic effects on growth hormone (GH) secretion pathways in experimental models, with applications in metabolic and endocrine research.
  • Tesamorelin, a GHRF analog, has been studied for its role in stimulating GH release and modulating lipolytic activity in controlled laboratory settings.
  • Ipamorelin selectively binds to the ghrelin receptor, exhibiting GH-releasing activity with limited impact on ACTH or prolactin secretion in non-clinical research models.
  • This combination is under investigation for its potential to influence adipose metabolism, protein synthesis signaling, and tissue regeneration mechanisms in vitro and in vivo studies.
  • This dual-peptide formulation provides a research tool for evaluating combined GH secretagogue effects on metabolic, endocrine, and cellular repair pathways.