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Tesamorelin + Ipamorelin Mischung

Tesamorelin + Ipamorelin Mischung

Research Peptide | Lyophilized Powder | Batch Tested

Size
185,00 $
Best Value
1,23 $/mg
Auf LagerLatest batch: TI15-260601
1

For laboratory research use only. Not for human or animal consumption. Insulated shipping · Styrofoam box available.

Product Overview

Diese Mischung kombiniert das stabilisierte GHRH-Analogon Tesamorelin mit dem selektiven Sekretagogen Ipamorelin und vereint zwei komplementäre Wachstumshormon-Achsen-Peptide in einem Forschungsvial.

No published lab tests yet.

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Research Information

Die Kombination wird verwendet, um die synergistische Stimulation der GH-Freisetzung durch parallele GHRH-Rezeptor- und Ghrelin-Rezeptor-Aktivierung zu untersuchen, mit zusätzlichem Forschungsinteresse an der Stabilität von Tesamorelin und seiner Assoziation mit dem viszeralen Fettstoffwechsel in Labormodellen. Ausschließlich für die In-vitro- und Laborforschung geliefert – nicht für den menschlichen oder tierischen Verzehr.

Tesamorelin + Ipamorelin Mischung Research & Studies

What is Tesamorelin + Ipamorelin Blend?

The Tesamorelin + Ipamorelin Blend is a laboratory research material that combines Tesamorelin, a stabilized growth hormone-releasing hormone (GHRH) analog, with Ipamorelin, a selective growth hormone secretagogue. The pairing is supplied in a single research vial to support investigations of complementary activity along the growth hormone axis. All work with this blend is restricted to in-vitro assays and controlled laboratory model systems. It is provided solely for scientific examination of peptide interactions and receptor-level responses.

Mechanism of Action

Tesamorelin functions as a GHRH-receptor agonist, enabling studies of pituitary growth hormone release pathways in experimental preparations. Ipamorelin selectively engages the ghrelin receptor (GHS-R1a), offering an independent secretagogue stimulus that can be measured alongside GHRH-mediated signals. Parallel activation of these two receptors permits examination of additive or synergistic growth hormone output under defined laboratory conditions. Downstream signaling cascades and hormone secretion kinetics are typical endpoints in such model systems.

Primary Areas of Research

Research focuses on synergistic stimulation of growth hormone release through concurrent GHRH-receptor and ghrelin-receptor activation. Additional interest surrounds Tesamorelin’s improved enzymatic stability relative to native GHRH and its association with visceral-adipose metabolic markers in laboratory models. Investigators also evaluate peptide interactions, receptor selectivity, and time-course profiles of hormone release in cell-based or isolated tissue assays. All inquiries remain confined to non-clinical experimental frameworks.

Key Research Findings

Laboratory characterization has established that Tesamorelin retains high affinity for the GHRH receptor while exhibiting greater resistance to proteolytic degradation than endogenous GHRH. Ipamorelin has been shown in research assays to stimulate growth hormone secretion with notable selectivity and limited cross-activation of other pituitary axes. When applied together in model systems, the peptides allow observation of dual-pathway contributions to overall growth hormone output. These findings center on receptor pharmacology and peptide stability rather than applied outcomes.

Research Handling & Considerations

The Tesamorelin + Ipamorelin Blend is supplied strictly for in-vitro and laboratory research use only and is not for human or animal consumption. Lyophilized material is typically stored under refrigerated or frozen conditions to maintain structural integrity prior to reconstitution with research-grade solvents. Standard laboratory safety practices, including appropriate personal protective equipment and documentation of experimental variables, should be followed. Precise handling supports reproducible results across scientific investigations.

Frequently Asked Questions

Tesamorelin targets the GHRH receptor while Ipamorelin selectively activates the ghrelin receptor (GHS-R1a), enabling dual-pathway studies of growth hormone release.

Learn more

Read research overviews, COA verification guides, and reconstitution notes in our Knowledge Hub.

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