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Updated: Jun 22, 2025

Imaging Denatured Collagen Strands In vivo and Ex vivo via Photo-triggered Hybridization of Caged Collagen Mimetic Peptides
Published on: January 31, 2014
The Versatility of Collagen in Pharmacology: Targeting Collagen, Targeting with Collagen
Francisco Revert-Ros1, Ignacio Ventura1, Jesús A Prieto-Ruiz1
1Mitochondrial and Molecular Medicine Research Group, Facultad de Medicina y Ciencias de la Salud, Universidad Católica de Valencia San Vicente Mártir, 46001 Valencia, Spain.
Abstract:
Collagen, a versatile family of proteins with 28 members and 44 genes, is pivotal in maintaining tissue integrity and function. It plays a crucial role in physiological processes like wound healing, hemostasis, and pathological conditions such as fibrosis and cancer. Collagen is a target in these processes. Direct methods for collagen modulation include enzymatic breakdown and molecular binding approaches. For instance, Clostridium histolyticum collagenase is effective in treating localized fibrosis. Polypeptides like collagen-binding domains offer promising avenues for tumor-specific immunotherapy and drug delivery. Indirect targeting of collagen involves regulating cellular processes essential for its synthesis and maturation, such as translation regulation and microRNA activity. Enzymes involved in collagen modification, such as prolyl-hydroxylases or lysyl-oxidases, are also indirect therapeutic targets. From another perspective, collagen is also a natural source of drugs. Enzymatic degradation of collagen generates bioactive fragments known as matrikines and matricryptins, which exhibit diverse pharmacological activities. Overall, collagen-derived peptides present significant therapeutic potential beyond tissue repair, offering various strategies for treating fibrosis, cancer, and genetic disorders. Continued research into specific collagen targeting and the application of collagen and its derivatives may lead to the development of novel treatments for a range of pathological conditions.
Insights
Collagen, a key protein, can be directly targeted or modulated indirectly for therapeutic benefits. Collagen derivatives also offer diverse pharmacological activities for treating diseases like fibrosis and cancer.
Area of Science:
- Biochemistry
- Molecular Biology
- Medical Science
Background:
- Collagen, a family of 28 proteins encoded by 44 genes, is essential for tissue integrity and function.
- It plays critical roles in physiological processes (wound healing, hemostasis) and pathological conditions (fibrosis, cancer).
Purpose of the Study:
- To explore direct and indirect strategies for collagen targeting in disease treatment.
- To investigate the therapeutic potential of collagen-derived peptides.
Main Methods:
- Direct collagen modulation via enzymatic breakdown (e.g., Clostridium histolyticum collagenase) and molecular binding (e.g., collagen-binding domains).
- Indirect targeting through regulation of collagen synthesis and maturation pathways (translation, microRNA, enzyme activity).
- Analysis of bioactive fragments (matrikines, matricryptins) generated from collagen degradation.
Main Results:
- Clostridium histolyticum collagenase shows efficacy in treating localized fibrosis.
- Collagen-binding domains offer potential for tumor-specific immunotherapy and drug delivery.
- Collagen-derived peptides exhibit diverse pharmacological activities beyond tissue repair.
Conclusions:
- Collagen targeting presents multifaceted therapeutic strategies for fibrosis, cancer, and genetic disorders.
- Collagen and its derivatives hold significant promise for novel treatment development.
- Further research into specific collagen targeting mechanisms is warranted.
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