Search Results for Heart & Vascular Health

Found 13 peptides

Peptides (13)

Retatrutide

A multi-receptor incretin agonist studied for metabolic control.

KEY BENEFITS:

  • Triple agonist of GLP‑1, GIP, and glucagon receptors studied for substantial weight loss
  • May provide robust reductions in HbA1c and improvements in liver and cardiometabolic markers
  • Investigated for obesity, type 2 diabetes, NASH, and related metabolic diseases
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Tesamorelin

A stabilized GHRH analog studied for GH enhancement.

KEY BENEFITS:

  • GHRH analog studied for reducing visceral adipose tissue, especially in HIV‑associated lipodystrophy
  • Increases endogenous GH and IGF‑1 while largely preserving insulin sensitivity
  • Investigated for body‑composition improvement and cardiometabolic risk reduction
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B7-33

A biased agonist peptide researched for bone and tissue health.

KEY BENEFITS:

  • Investigated for anti-fibrotic effects in heart, lung, kidney, and liver tissue
  • May support vasodilation and reduced blood pressure via relaxin receptor signaling
  • Studied for cardioprotection and improved cardiac function after ischemic injury
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VIP

A neuropeptide studied for vasodilation and immune modulation.

KEY BENEFITS:

  • Endogenous vasoactive intestinal peptide researched for potent vasodilation and smooth muscle relaxation
  • May support gut motility, barrier integrity, and reduction of intestinal inflammation
  • Investigated for pulmonary, cardiovascular, and autoimmune conditions due to its immunomodulatory effects
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Semaglutide

A GLP-1 receptor agonist primarily used for weight management and blood sugar control.

KEY BENEFITS:

  • GLP‑1 receptor agonist studied for substantial and sustained weight loss in obesity
  • Improves glycemic control and reduces cardiovascular and metabolic risk factors
  • Acts on appetite centers and slows gastric emptying to enhance satiety
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Vesugen

A vascular-support bioregulatory peptide.

KEY BENEFITS:

  • Vascular peptide bioregulator studied for strengthening blood vessel walls and endothelium
  • May improve microcirculation, oxygen delivery, and metabolic balance in tissues
  • Investigated for protecting against vascular aging, atherosclerosis, and endothelial dysfunction
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MOTS-C

A mitochondrial peptide researched for metabolic health.

KEY BENEFITS:

  • Mitochondria-derived peptide researched for improving insulin sensitivity and glucose handling
  • May enhance mitochondrial respiration and protect against metabolic and cardiac dysfunction
  • Investigated for reducing weight gain and age-related metabolic decline in models
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Cardiogen

A peptide bioregulator studied for heart tissue support.

KEY BENEFITS:

  • Bioregulatory peptide researched for myocardial and vascular tissue support
  • May aid cardiac cell metabolism and resilience under stress in experimental models
  • Investigated for maintaining healthy heart contractility and circulation
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SS-31

A mitochondrial-targeted peptide studied for cellular protection.

KEY BENEFITS:

  • Mitochondria‑targeting peptide researched for binding cardiolipin and preserving mitochondrial structure
  • May improve ATP production, reduce reactive oxygen species, and enhance exercise tolerance
  • Investigated for kidney, cardiac, and age‑related mitochondrial dysfunction
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Tirzepatide

A dual incretin peptide studied for powerful metabolic regulation.

KEY BENEFITS:

  • Dual GIP/GLP‑1 receptor agonist researched for powerful glucose lowering and weight loss
  • Improves beta‑cell function and insulin sensitivity beyond GLP‑1 agonists alone
  • Investigated for type 2 diabetes, obesity, and cardiometabolic risk reduction
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Humanin

A mitochondrial-derived peptide studied for cellular protection.

KEY BENEFITS:

  • Mitochondria‑derived peptide studied for cytoprotective and anti‑apoptotic effects
  • May support neuronal survival and cognitive function in aging models
  • Investigated for cardiovascular and metabolic protection against stressors
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NMN

A NAD+ precursor studied for cellular energy and aging.

KEY BENEFITS:

  • Direct NAD+ precursor researched for boosting intracellular NAD+ levels in humans
  • May support mitochondrial function, exercise capacity, and glucose metabolism
  • Investigated for anti‑aging effects including improved insulin sensitivity and vascular health
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SLU-PP-332

A metabolic peptide studied for energy expenditure.

KEY BENEFITS:

  • Selective thyroid hormone receptor‑beta agonist researched for increasing energy expenditure
  • May improve lipid profiles, fatty liver parameters, and body composition in models
  • Investigated for obesity and metabolic syndrome without classical hyperthyroid effects
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