Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Aurelia aurita jellyfish collagen: Recovery properties

View through CrossRef
Wound and burn healing is a complex physiological process that can be facilitated by medications based on marine collagen. In this regard, biomass of the Aurelia aurita jellyfish is a promising alternative source of medical collagen. As the global incidence of burns and wounds continues to grow, new healing methods have become a relevant area of medical science. This study featured acetic acid as a means of marine collagen extraction from A. aurita biomass. The physical and chemical properties of jellyfish collagen were determined gravimetrically and included such indicators as water solubility and water holding capacity. The molecular weight was defined by gel electrophoresis. The spectral studies relied on the method of UV spectroscopy. The regenerative experiments included such parameters as cytotoxicity, antioxidant properties, adhesion, and wound healing rate, as well as a quantitative PCR analysis. The optimal conditions for maximal collagen yield were as follows: 0.5 M acetic acid and 48 h extraction time. However, the collagen yield was very low (≤ 0.0185%). The high water holding capacity showed good prospects for A. aurita collagen to be used as hemostatic sponge. The acid-soluble collagen sample had a molecular weight of 100–115 kDa, which made it possible to classify it as type I. A. aurita jellyfish collagen revealed no cytotoxic properties; it had no effect on adhesion, migration, and proliferation of keratinocytes, neither did it affect the expression of cell differentiation markers. The wound healing model proved that the marine collagen had regenerative properties as it was able to increase the wound healing rate by 24.5%. Therefore, collagen extracted from the biomass of A. aurita jellyfish d emonstrated good p rospects for cosmetology and regenerative medicine.
Title: Aurelia aurita jellyfish collagen: Recovery properties
Description:
Wound and burn healing is a complex physiological process that can be facilitated by medications based on marine collagen.
In this regard, biomass of the Aurelia aurita jellyfish is a promising alternative source of medical collagen.
As the global incidence of burns and wounds continues to grow, new healing methods have become a relevant area of medical science.
This study featured acetic acid as a means of marine collagen extraction from A.
aurita biomass.
The physical and chemical properties of jellyfish collagen were determined gravimetrically and included such indicators as water solubility and water holding capacity.
The molecular weight was defined by gel electrophoresis.
The spectral studies relied on the method of UV spectroscopy.
The regenerative experiments included such parameters as cytotoxicity, antioxidant properties, adhesion, and wound healing rate, as well as a quantitative PCR analysis.
The optimal conditions for maximal collagen yield were as follows: 0.
5 M acetic acid and 48 h extraction time.
However, the collagen yield was very low (≤ 0.
0185%).
The high water holding capacity showed good prospects for A.
aurita collagen to be used as hemostatic sponge.
The acid-soluble collagen sample had a molecular weight of 100–115 kDa, which made it possible to classify it as type I.
A.
aurita jellyfish collagen revealed no cytotoxic properties; it had no effect on adhesion, migration, and proliferation of keratinocytes, neither did it affect the expression of cell differentiation markers.
The wound healing model proved that the marine collagen had regenerative properties as it was able to increase the wound healing rate by 24.
5%.
Therefore, collagen extracted from the biomass of A.
aurita jellyfish d emonstrated good p rospects for cosmetology and regenerative medicine.

Related Results

Jellyfish (Aurelia aurita) collagen scaffolds potential in alveolar bone regeneration
Jellyfish (Aurelia aurita) collagen scaffolds potential in alveolar bone regeneration
Background: Collagen scaffold is one of the most important parts of bone engineering especially for the alveolar bone regeneration. Jellyfish ...
Negative and positive interspecific interactions involving jellyfish polyps in marine sessile communities
Negative and positive interspecific interactions involving jellyfish polyps in marine sessile communities
AbstractSessile marine invertebrates on hard substrates are one of the two canonical examples of communities structured by competition, but some aspects of their dynamics remain po...
Abstract LB-009: Collagen regulation in postpartum mammary gland involution, a novel breast cancer prevention target
Abstract LB-009: Collagen regulation in postpartum mammary gland involution, a novel breast cancer prevention target
Abstract Collagen is the most abundant extracellular protein in breast tissue and plays a critical role in breast cancer progression. Intravital imaging shows collag...
Distinguishing venomous jellyfish species via high resolution melting analysis
Distinguishing venomous jellyfish species via high resolution melting analysis
Accurate species identification is critical for highly venomous jellyfish studies particularly for evaluation of their distribution as it is important not only for understanding po...
Jellytoring: Real-Time Jellyfish Monitoring Based on Deep Learning Object Detection
Jellytoring: Real-Time Jellyfish Monitoring Based on Deep Learning Object Detection
During the past decades, the composition and distribution of marine species have changed due to multiple anthropogenic pressures. Monitoring these changes in a cost-effective manne...
Collagen Scaffolding During Development and Its Deformation With Chronic Lung Disease
Collagen Scaffolding During Development and Its Deformation With Chronic Lung Disease
Objective. Infants with chronic lung disease (CLD) have an arrest of primary and secondary septation. We hypothesized that this may be related to damage or abnormal development of ...

Back to Top