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The Licensed Peptides research library is written and maintained by the Licensed Peptides research team. Articles summarise the published in-vitro and preclinical literature on the compounds Licensed Peptides supplies for laboratory research. They are written to a research-use-only standard: no dosing guidance, no human-use claims, and factual statements traced to the study they come from. Every article is reviewed for accuracy against the cited studies by Samuel Sarmiento, MD, MPH, MBA.

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  • ALL ARTICLES AND PRODUCT INFORMATION PROVIDED ON THIS WEBSITE ARE FOR INFORMATIONAL AND EDUCATIONAL PURPOSES ONLY. The products offered on this website are furnished for in-vitro studies only. In-vitro studies (Latin: in glass) are performed outside of the body. These products are not medicines or drugs and have not been approved by the FDA to prevent, treat or cure any medical condition, ailment or disease. Bodily introduction of any kind into humans or animals is strictly forbidden by law.

807, 2026

How to Store Peptides: A Guide for Scientific Researchers

By |07/08/2026|General Peptide Information|

To ensure the stability and structure of peptides within scientific research and study, researchers should know how to store them correctly. When it comes to working with lyophilized peptides or peptide solutions, storing them incorrectly can influence the rate of degradation (how fast the peptides break down and lose their effectiveness over time). (Clemmitt, 2024). Many peptides stay stable under the right conditions. However, environmental factors and handling protocols can affect a peptide's structure and increase the rate of degradation (Walker & Fleming, 1993). The article provides general storage guidelines for research peptides that can help reduce peptide degradation. Key...

107, 2026

Semax vs Selank: Comparing Two Research Peptides

By |07/01/2026|General Peptide Information|

The Semax vs Selank debate is a common one in science, and you’ll find they’re often mentioned side by side in peptide research circles. But what exactly makes them different? The simple answer is that scientists study them using very different biological pathways. This overlap can make it hard to decide on a study design when it comes to choosing one compound over the other. In this guide, we compare Semax and Selank. You’ll see and understand their structures, the mechanisms studied, their regulatory status, and the criteria that researchers should use when selecting the right peptides for research purposes....

107, 2026

What Is BPC-157? A Scientific Overview

By |07/01/2026|General Peptide Information|

BPC-157 is a synthetic peptide that researchers are currently investigating. It was originally developed from research done on a naturally occurring protein fragment found in human gastric juice: a protein that actively repairs and shields the gut lining. Known formally as Body Protection Compound-157, BPC-157 is a popular topic of discussion in preclinical literature. This scientific interest comes from its stability (how well it can maintain its structure), as well as its apparent involvement in multiple biological signaling pathways. Cellular signaling studies, tissue biology research, and gastrointestinal biology investigations are some of the areas that researchers are investigating regarding this...

107, 2026

List of Peptides and What They Do: A Complete Guide

By |07/01/2026|General Peptide Information|

More and more scientists are turning to peptide research. There have been a number of advances in solid-phase synthesis and a growing understanding of how short amino acid chains regulate complex biological systems are fueling this growth. Today, the list of peptides and what they do includes hundreds of distinct compounds. Some are endogenous signaling molecules, and others are precision-engineered synthetic analogs that scientists study in laboratories across many different research branches. In this guide, we’ll take a look at the major categories of peptides and their primary areas of research. Or, if you're interested in bacteriostatic water, check out...

107, 2026

What Is Cagrilintide? A Scientific Overview of This Investigational Amylin Analog

By |07/01/2026|General Peptide Information|

Metabolic research has gone through significant expansion over the past decade. Scientists have investigated peptide-based compounds that influence energy regulation and nutrient signaling. Endocrine pathways have also received a great deal of research attention. While glucagon-like peptide-1 (GLP-1) receptor research has been topical, analysts have examined other biological systems that contribute to appetite regulation, food intake signaling, and glucose homeostasis. One area of scientific interest is the amylin pathway.¹ Amylin is a naturally occurring peptide hormone. Pancreatic beta cells produce it, and it’s involved in multiple physiological signaling processes. Researchers have spent years studying how changes to amylin may influence...

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