The Role of Adipotide Peptides in Weight Loss : Recently, a new peptide player known as Adipotide entered the scene amid the flurry of peptide discovery and intensive study. This peptide review looks at the possible advantages and disadvantages of Adipotide, focusing on its role in weight loss.
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What is an Adipotide peptide?
Synthetic peptidomimetic chemical Adipotide (FTPP or Fat Targeted Proapoptotic Peptide) has been shown to include pro-apoptotic components that result in weight reduction in rats and monkeys.
Adipotide was first developed as a means of combating cancer. Its intended use is to starve blood cancer cells, so they no longer divide and spread. The effects of the peptide have shown that it cuts off blood flow to adipocytes, causing the cells to die and be reabsorbed.
Initially, experiments were conducted on monkeys and rats. The findings showed that rats and mice had a 30% decrease in body mass. Ten older, overweight female subjects lost an average of 11% of their body weight and 39% of their fat deposits after receiving Adipotide through daily injections for 4 weeks and then receiving no therapy for 4 weeks.
Because of this, Adipotide is considered a peptide that may aid in weight loss. This happens when fat cells decrease, and less fatty tissue is under the skin. Reduced adipose tissue leads to smaller waist sizes and lower body mass indexes.
Adipotide is a synthetic chemical that has been shown to kill adipocytes and reduce subcutaneous fat stores. This result is accomplished by selectively causing the death of cells that serve as conduits for adipocytes inside the vascular system.
Researchers developed Adipotide to starve cancer cells in the blood and halt their development as a treatment for cancer. Adipotide was discovered to have an effect similar to starvation, leading to the death and reabsorption of adipocytes in circulation. Based on the outcomes of the clinical trials performed on animals, the peptide is still in the testing phase, according to the study.
What Are The Effects of Adipotide?
Recent studies have proven that the mechanism of action of this peptide involves the selective destruction of cells lining the blood arteries that supply white adipose tissue. Adipotide causes blood vessels to atrophy, leading to cell death (apoptosis) and the cessation of blood flow to adipocytes.
This process results in the adipocytes receiving inadequate oxygen and blood supply (ischemic damage). Fat cell death is unavoidable because of the irreversible nature of the effect.
What is the mechanism of action for Adipotide?
Molecular investigation of the stereo-chemical structure of this peptide revealed that Adipotide binds to 2 specific receptors that are present only in the blood arteries that supply white adipose tissue.
These specific receptors include ANXA-2 and Prohibitin. The tissue specificity of these receptors means that the peptide has no effect on brown adipose tissue and, by extension, does not affect thermogenesis in adaptive brown fat.
Due to their large surface area about their body volume, infant subjects have a low capacity for heat conservation and thus benefit greatly from the thermogenesis of brown fat. White adipose tissue forms when energy intake is higher than energy expenditure.
The advantages of Adipotide
About 34% of the adult population in the United States is obese, according to studies on obesity and its causes published in the early 2000s. Also, studies have demonstrated that white adipose tissue is a significant factor in the epidemic of obesity that has plagued modern societies.
Weight gain that is not due to an increase in fat cells but a gain in lean body mass should not be automatically attributed to obesity. The prevalence of co-morbidities and premature death have both been shown to increase with the prevalence of obesity.
Reducing Body Fat with Adipotide
Researchers performed studies to demonstrate that the induced cell death of white adipose tissue in the blood vessels might be used as a treatment for obesity. Mice were employed in the experiment.
In this study, a peptide motif isolate was employed that selectively targeted blood vessels in white adipose tissue. Researchers isolated the peptide motif in live systems via phage display.
In their investigation, researchers found evidence linking the peptide pattern with prohibitin, a membrane protein with several functions. The researchers deduced prohibitin as a marker for vascular white adipose tissue.
Results also showed that the white adipose tissue vasculature was the focus of the cell death-causing peptide, ultimately eliminating the adipose tissue bulk. White adipose tissue was absorbed, which normalized metabolic functions. There were no significant unintended consequences to this rule.
Treatments for obesity that were successful in rats have proven to be challenging to adapt for people due to critical biological differences between monkeys and rodents. If the participants of these experiments were also primates, experts would mitigate this problem to some extent.
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