For Research Use Only. Not for human use.
PTD-DBM is a synthetic peptide commonly used in pre-clinical research to study activation of the Wnt cell signaling pathway, hair follicle development, new follicle formation after injury, and skin tissue repair. This research-grade PTD-DBM peptide is produced under strict GMP-compliant conditions and supplied as a lyophilized powder to maintain high purity, stability, and consistency in laboratory experiments.
Designed only for preclinical studies, each batch of PTD-DBM undergoes thorough quality checks and comes with full documentation, including a Certificate of Analysis (COA), purity reports, and structure confirmation.
Scientific Overview
PTD-DBM works by blocking the interaction between two proteins (CXXC5 and Dishevelled), thereby increasing Wnt/β-catenin signaling activity in research models. According to preclinical literature, PTD-DBM has been studied in the following research areas (
- Formation of new hair follicles and hair regrowth in animal models
- Wound closure and skin tissue repair observations in preclinical settings
- Increased activity of key growth signals in skin cell research models
- Collagen production observations in preclinical wound repair studies
- Growth and activity of cells involved in skin regeneration research
Why Researchers Choose Our PTD-DBM
Laboratories seeking reliable PTD-DBM for research benefit from our focus on consistency and accuracy. Every batch is verified for:
- High purity and correct structure
- Reliable results across experiments
- Strict manufacturing controls and complete records
- Competitive pricing for research needs
Research-Referenced Functional Attributes
(Based on existing preclinical and literature data — not intended as claims of therapeutic use. For research use only.)
- Blocking CXXC5-Dishevelled protein interactions to study Wnt pathway activity
- Observing new hair follicle growth outcomes in animal research models
- Studying skin wound closure and collagen dynamics in preclinical models
- Investigating regeneration mechanisms after tissue injury in laboratory settings
- Examining cell growth signals in skin research models
- Studying combinatory effects with other Wnt pathway activators in preclinical repair research
For Research Use Only. Not for human use.

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