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PEG MGF - 5mg
€68.00
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Pegylated Mechano Growth Factor (PEG-MGF) is a modified splice variant related to insulin-like growth factor-1    (IGF-1). In experimental research settings, PEG-MGF has been studied for its role in supporting myoblast division and facilitating the fusion and maturation of muscle fibers. Pegylation enhances the peptide’s stability and circulating half-life, allowing prolonged biological activity compared to non-pegylated MGF. Based on preclinical and experimental studies, PEG-MGF has been investigated in relation to the following biological processes: Support of muscle tissue remodeling Stimulation of new muscle cell formation Neuroprotective mechanisms in experimental models Cardioprotective pathways associated with cellular survival Processes involved in wound healing and tissue regeneration Bone repair and osteogenic activity in injury models Regulation of body fat metabolism and lipid-related markers Modulation of immune-related cellular responses
RETA - 6mg, 10mg
€44.00
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INDEPENDENTLY TESTED • VERIFIED QUALITY ✓ Purity — HPLC analysis ✓ Identity — Mass spectrometry ✓ Net content — Verified on the 6 mg vial RETA 6 mg and 10 mg share the same peptide batch. The tested sample was a 6 mg vial. VERIFY COA AT FREEDOM DIAGNOSTICS → Enter search code: Suaw2605040577Reta is a next-generation metabolic research peptide classified as a multi-receptor agonist designed to interact with GLP-related, GIP-associated, and glucagon-mediated signaling pathways. By targeting multiple receptor systems simultaneously, it has become a key subject of investigation in studies focused on integrative metabolic regulation, energy balance, and complex signaling networks. Its molecular structure has been engineered to enhance stability and albumin binding, supporting an extended activity profile and improved pharmacokinetic characteristics in research environments. Current research explores its role in multi-pathway signaling dynamics, systemic regulatory processes, and advanced metabolic communication mechanisms.
SEMA - 5mg, 10mg
€68.00
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INDEPENDENTLY TESTED • VERIFIED QUALITY ✓ Purity — HPLC analysis ✓ Identity — Mass spectrometry ✓ Net content — Verified on the 5 mg vial SEMA 5 mg and 10 mg share the same peptide batch. The tested sample was a 5 mg vial. VERIFY COA AT FREEDOM DIAGNOSTICS → Enter search code: Suaw2605040573SEMA is a synthetic metabolic research peptide belonging to a class of regulatory compounds associated with incretin-related signaling pathways. It is widely studied for its interaction with receptor-mediated mechanisms involved in glucose handling, energy balance, and systemic metabolic regulation. Research interest also extends to its role in broader signaling networks, including those associated with cardiovascular function and neuroendocrine communication, making it a key compound in modern metabolic research models.
SETMELANOTIDE - 20 mg
€79.00
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Setmelanotide is a synthetic peptide and potent melanocortin 4 receptor (MC4R) agonist studied for its ability to restore satiety signaling in rare genetic disorders such as POMC deficiency, PCSK1 deficiency, and leptin-related pathway dysfunction. It works by directly activating MC4R, bypassing upstream genetic defects that impair production of α-MSH and other satiety mediators. Research suggests that setmelanotide has significantly higher potency than endogenous α-MSH and may reduce hyperphagia and support weight loss in genetically defined obesity conditions. Its activity may be influenced by its atypical bitopic binding behavior, interacting with both orthosteric and putative allosteric receptor sites, potentially contributing to improved receptor specificity and a distinct signaling profile compared to earlier MC4R agonists.
SLU-PP-332 - 30ml/300mg
€125.00
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SLU-PP-332 is a synthetic small-molecule research compound best known as a pan-agonist of ERRα, ERRβ, and ERRγ, a family of nuclear receptors involved in mitochondrial function, oxidative metabolism, and cellular energy regulation. Its main interest lies in its ability to shift tissues toward a more oxidative metabolic state. Rather than acting like a stimulant, it appears to influence upstream transcriptional programs that regulate how cells produce and use energy. This includes effects on mitochondrial biogenesis, fatty acid oxidation, oxidative phosphorylation, and overall fuel preference. In preclinical studies, SLU-PP-332 has been associated with increased mitochondrial respiration, enhanced oxidative muscle remodeling, greater reliance on fat oxidation, higher energy expenditure, and improved endurance-related parameters in animal models. It has also shown activity in experimental settings involving metabolic dysfunction, liver fat accumulation, cardiac energy impairment, and age-related mitochondrial decline. Overall, SLU-PP-332 is best described as a preclinical metabolic reprogramming compound with exercise-mimetic and oxidative metabolic activity. It is relevant for research into mitochondrial biology, fuel utilization, and ERR-driven transcriptional regulation.
TESAMORELIN - 10mg
€69.00
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Tesamorelin is a synthetic Growth Hormone-Releasing Hormone (GHRH) analogue designed for improved stability and extended activity in human plasma. By activating pituitary GHRH receptors, it stimulates endogenous growth hormone release while maintaining physiological pulsatile secretion patterns. This leads to increased downstream IGF-1 production, supporting anabolic and metabolic regulation. Research suggests tesamorelin may reduce visceral adipose tissue, support lean muscle maintenance, and influence metabolic health. It has been extensively studied in HIV-associated lipodystrophy, where reductions in abdominal fat have been associated with improved body composition markers and potential improvements in lipid-related cardiovascular risk factors. Emerging research also suggests possible relevance in cognitive aging and neuroendocrine function, as GH and IGF-1 pathways contribute to synaptic plasticity and brain metabolism.
TESOFENSINE 10mg
€70.00
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Tesofensine significantly supports weight loss, body fat reduction, and appetite reduction. It increases an individual's resting energy expenditure by stimulating the fat oxidation process. Below are its main effects: - Reduced body fat / Weight loss - Appetite suppression - Improved libido - Better sleep quality - Improved cognitive function
TIRZ - 10mg
€69.00
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INDEPENDENTLY TESTED • VERIFIED QUALITY ✓ Purity — HPLC analysis ✓ Identity — Mass spectrometry ✓ Net content  VERIFY COA AT FREEDOM DIAGNOSTICS → Enter search code: Suaw2605040575Tirz is a synthetic dual-receptor metabolic research peptide designed to interact with GIP-associated and GLP-related signaling pathways. By targeting multiple incretin-associated receptor systems simultaneously, it has become a key subject of investigation in studies focused on metabolic regulation, energy balance, and coordinated signaling networks. Its multi-pathway activity supports research into integrative metabolic processes, cellular signaling dynamics, and system-wide regulatory mechanisms involved in nutrient-response and energy homeostasis.
TRH - THYROTROPIN - 20 mg
€80.00
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Thyrotropin-Releasing Hormone (TRH) is a naturally occurring tripeptide neurohormone best known for stimulating pituitary release of TSH and regulating thyroid hormone production. Beyond its classical endocrine role, TRH is widely distributed throughout the CNS and peripheral tissues, suggesting broader biological functions. Research indicates that TRH may influence immune development and immune homeostasis through interactions with cytokine signaling pathways, supporting its relevance in inflammatory disorders and cytokine-induced sickness behavior models. Animal studies have suggested that TRH may improve aging-related metabolic and hormonal parameters, including support for reproductive function, reduction of age-associated kidney degeneration, and modulation of fat metabolism. Additional investigations have explored TRH’s potential role in thymus-related immune resilience and pancreatic metabolic regulation.
VESUGEN - 10ml/100mg - Spray
€229.00
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Vesugen is a short synthetic bioregulatory peptide investigated for its role in vascular and neurovascular regulation. It belongs to a class of organ-specific peptides studied for their potential capacity to modulate gene expression patterns associated with endothelial stability, metabolic regulation, and cellular stress resistance. Experimental models have explored its interaction with genes such as p16 and p21 (cell cycle regulation), as well as pathways linked to SIRT1 activity, which is widely associated with metabolic control, stress adaptation, and longevity-related signaling mechanisms. Within neurovascular research contexts, Vesugen has been examined for its potential role in maintaining microvascular integrity and supporting oxidative balance in neural tissues. Additional research has evaluated Vesugen in the context of endothelial gene expression, nitric oxide signaling balance, and vascular membrane stability. Modulation of endothelin-1 expression and reduction of oxidative vascular markers have been reported in controlled laboratory studies. Overall, Vesugen is characterized in scientific literature as a vascular bioregulatory peptide investigated for its potential epigenetic modulation of gene expression related to endothelial function, neurovascular stability, metabolic balance, and cellular aging pathways. FRESHLY PREPARED SOLUTION 
VESUGEN - 500mg
€780.00
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Vesugen is a short synthetic bioregulatory peptide investigated for its role in vascular and neurovascular regulation. It belongs to a class of organ-specific peptides studied for their potential capacity to modulate gene expression patterns associated with endothelial stability, metabolic regulation, and cellular stress resistance. Experimental models have explored its interaction with genes such as p16 and p21 (cell cycle regulation), as well as pathways linked to SIRT1 activity, which is widely associated with metabolic control, stress adaptation, and longevity-related signaling mechanisms. Within neurovascular research contexts, Vesugen has been examined for its potential role in maintaining microvascular integrity and supporting oxidative balance in neural tissues. Additional research has evaluated Vesugen in the context of endothelial gene expression, nitric oxide signaling balance, and vascular membrane stability. Modulation of endothelin-1 expression and reduction of oxidative vascular markers have been reported in controlled laboratory studies. Overall, Vesugen is characterized in scientific literature as a vascular bioregulatory peptide investigated for its potential epigenetic modulation of gene expression related to endothelial function, neurovascular stability, metabolic balance, and cellular aging pathways.
VESUGEN -100mg
€185.00
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Vesugen is a short synthetic bioregulatory peptide investigated for its role in vascular and neurovascular regulation. It belongs to a class of organ-specific peptides studied for their potential capacity to modulate gene expression patterns associated with endothelial stability, metabolic regulation, and cellular stress resistance. Experimental models have explored its interaction with genes such as p16 and p21 (cell cycle regulation), as well as pathways linked to SIRT1 activity, which is widely associated with metabolic control, stress adaptation, and longevity-related signaling mechanisms. Within neurovascular research contexts, Vesugen has been examined for its potential role in maintaining microvascular integrity and supporting oxidative balance in neural tissues. Additional research has evaluated Vesugen in the context of endothelial gene expression, nitric oxide signaling balance, and vascular membrane stability. Modulation of endothelin-1 expression and reduction of oxidative vascular markers have been reported in controlled laboratory studies. Overall, Vesugen is characterized in scientific literature as a vascular bioregulatory peptide investigated for its potential epigenetic modulation of gene expression related to endothelial function, neurovascular stability, metabolic balance, and cellular aging pathways.
α-Klotho - 25mcg
€245.00
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α-Klotho is a transmembrane and soluble endocrine protein first identified in 1997 and now widely recognized as a key candidate in aging biology. It is expressed predominantly in the kidney and choroid plexus of the brain, and its soluble form circulates in blood, urine, and cerebrospinal fluid. Membrane α-Klotho functions as an essential co-receptor for FGF23, regulating phosphate and vitamin D metabolism. Soluble α-Klotho is studied for its broader endocrine-like effects, including modulation of oxidative stress responses, inflammatory signaling, IGF-1 and mTOR pathways, and Wnt-associated tissue remodeling. Experimental models show that Klotho deficiency is linked to accelerated aging-like phenotypes such as vascular dysfunction, sarcopenia, cognitive decline, cardiac fibrosis, and osteopenia, while elevated Klotho expression is associated with improved cognition, delayed vascular aging, enhanced muscle regeneration, and increased lifespan. Due to its connection with senescence biology, SASP-driven inflammation, kidney decline, and neurodegenerative processes, α-Klotho remains a central molecule in research focused on longevity, metabolic regulation, and systemic resilience.