Marine sponge collagen: isolation, characterization and effects on the skin parameters surface-pH, moisture and sebum

A previously described isolation procedure for collagen of the marine sponge Chondrosia reniformis Nardo was modified for scaling-up reasons yielding 30% of collagen (freeze-dried collagen in relation to freeze-dried sponge). Light microscope observations showed fibrous structures. Transmission elec...

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Published inEuropean journal of pharmaceutics and biopharmaceutics Vol. 53; no. 1; pp. 107 - 113
Main Authors Swatschek, Dieter, Schatton, Wolfgang, Kellermann, Josef, Müller, Werner E.G, Kreuter, Jörg
Format Journal Article
LanguageEnglish
Published Amsterdam Elsevier B.V 2002
Elsevier Science
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Online AccessGet full text
ISSN0939-6411
1873-3441
DOI10.1016/S0939-6411(01)00192-8

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Abstract A previously described isolation procedure for collagen of the marine sponge Chondrosia reniformis Nardo was modified for scaling-up reasons yielding 30% of collagen (freeze-dried collagen in relation to freeze-dried sponge). Light microscope observations showed fibrous structures. Transmission electron microscopy studies proved the collagenous nature of this material: high magnifications showed the typical periodic banding-pattern of collagen fibres. However, the results of the amino acid analysis differed from most publications, presumably due to impurities that still were present. In agreement with earlier studies, sponge collagen was insoluble in dilute acid mediums and all solvents investigated. Dispersion of collagen was facilitated when dilute basic mediums were employed. The acid–base properties of the material were investigated by titration. Furthermore, a sponge extract was incorporated in two different formulations and compared with their extract-free analogues and a commercially available collagen containing product with respect to their effects on biophysical skin parameters. None of the preparations had a noticeable influence on the physiological skin surface pH. Skin hydration increased only slightly. However, all tested formulations showed a significant increase of lipids measured by sebumetry.
AbstractList A previously described isolation procedure for collagen of the marine sponge Chondrosia reniformis Nardo was modified for scaling-up reasons yielding 30% of collagen (freeze-dried collagen in relation to freeze-dried sponge). Light microscope observations showed fibrous structures. Transmission electron microscopy studies proved the collagenous nature of this material: high magnifications showed the typical periodic banding-pattern of collagen fibres. However, the results of the amino acid analysis differed from most publications, presumably due to impurities that still were present. In agreement with earlier studies, sponge collagen was insoluble in dilute acid mediums and all solvents investigated. Dispersion of collagen was facilitated when dilute basic mediums were employed. The acid-base properties of the material were investigated by titration. Furthermore, a sponge extract was incorporated in two different formulations and compared with their extract-free analogues and a commercially available collagen containing product with respect to their effects on biophysical skin parameters. None of the preparations had a noticeable influence on the physiological skin surface pH. Skin hydration increased only slightly. However, all tested formulations showed a significant increase of lipids measured by sebumetry.A previously described isolation procedure for collagen of the marine sponge Chondrosia reniformis Nardo was modified for scaling-up reasons yielding 30% of collagen (freeze-dried collagen in relation to freeze-dried sponge). Light microscope observations showed fibrous structures. Transmission electron microscopy studies proved the collagenous nature of this material: high magnifications showed the typical periodic banding-pattern of collagen fibres. However, the results of the amino acid analysis differed from most publications, presumably due to impurities that still were present. In agreement with earlier studies, sponge collagen was insoluble in dilute acid mediums and all solvents investigated. Dispersion of collagen was facilitated when dilute basic mediums were employed. The acid-base properties of the material were investigated by titration. Furthermore, a sponge extract was incorporated in two different formulations and compared with their extract-free analogues and a commercially available collagen containing product with respect to their effects on biophysical skin parameters. None of the preparations had a noticeable influence on the physiological skin surface pH. Skin hydration increased only slightly. However, all tested formulations showed a significant increase of lipids measured by sebumetry.
A previously described isolation procedure for collagen of the marine sponge Chondrosia reniformis Nardo was modified for scaling-up reasons yielding 30% of collagen (freeze-dried collagen in relation to freeze-dried sponge). Light microscope observations showed fibrous structures. Transmission electron microscopy studies proved the collagenous nature of this material: high magnifications showed the typical periodic banding-pattern of collagen fibres. However, the results of the amino acid analysis differed from most publications, presumably due to impurities that still were present. In agreement with earlier studies, sponge collagen was insoluble in dilute acid mediums and all solvents investigated. Dispersion of collagen was facilitated when dilute basic mediums were employed. The acid-base properties of the material were investigated by titration. Furthermore, a sponge extract was incorporated in two different formulations and compared with their extract-free analogues and a commercially available collagen containing product with respect to their effects on biophysical skin parameters. None of the preparations had a noticeable influence on the physiological skin surface pH. Skin hydration increased only slightly. However, all tested formulations showed a significant increase of lipids measured by sebumetry.
A previously described isolation procedure for collagen of the marine sponge Chondrosia reniformis Nardo was modified for scaling-up reasons yielding 30% of collagen (freeze-dried collagen in relation to freeze-dried sponge). Light microscope observations showed fibrous structures. Transmission electron microscopy studies proved the collagenous nature of this material: high magnifications showed the typical periodic banding-pattern of collagen fibres. However, the results of the amino acid analysis differed from most publications, presumably due to impurities that still were present. In agreement with earlier studies, sponge collagen was insoluble in dilute acid mediums and all solvents investigated. Dispersion of collagen was facilitated when dilute basic mediums were employed. The acid–base properties of the material were investigated by titration. Furthermore, a sponge extract was incorporated in two different formulations and compared with their extract-free analogues and a commercially available collagen containing product with respect to their effects on biophysical skin parameters. None of the preparations had a noticeable influence on the physiological skin surface pH. Skin hydration increased only slightly. However, all tested formulations showed a significant increase of lipids measured by sebumetry.
Author Kellermann, Josef
Kreuter, Jörg
Schatton, Wolfgang
Swatschek, Dieter
Müller, Werner E.G
Author_xml – sequence: 1
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  organization: KliniPharm, Frankfurt/Main, Germany
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  surname: Schatton
  fullname: Schatton, Wolfgang
  organization: KliniPharm, Frankfurt/Main, Germany
– sequence: 3
  givenname: Josef
  surname: Kellermann
  fullname: Kellermann, Josef
  organization: Max-Planck-Institute for Biochemistry, Martinsried, Germany
– sequence: 4
  givenname: Werner E.G
  surname: Müller
  fullname: Müller, Werner E.G
  organization: Institute of Physiological Chemistry, Johannes Gutenberg University, Mainz, Germany
– sequence: 5
  givenname: Jörg
  surname: Kreuter
  fullname: Kreuter, Jörg
  email: kreuter@em.uni-frankfurt.de
  organization: Institute of Pharmaceutical Technology, Johann Wolfgang Goethe 1-1 University, Frankfurt am Main, Germany
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Issue 1
Keywords Moisturiser
Sponge Chondrosia reniformis
Biophysical skin parameters
Marine sponge collagen
Sebumetry
Skin pH
Skin hydration
Human
Pharmaceutical technology
Hydration
Healthy subject
Cream
Solubility
Cosmetology
Animal origin
Extract
In vitro
Moisturizing product
In vivo
Aminoacid
Collagen
Dosage form
Sponge
Extraction
Skin
Physicochemical properties
Topical administration
Physical structure
Language English
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SSID ssj0004758
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Snippet A previously described isolation procedure for collagen of the marine sponge Chondrosia reniformis Nardo was modified for scaling-up reasons yielding 30% of...
A previously described isolation procedure for collagen of the marine sponge Chondrosia reniformis Nardo was modified for scaling-up reasons yielding 30% of...
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StartPage 107
SubjectTerms Adult
Animals
Applied sciences
Biological and medical sciences
Biophysical skin parameters
Chemical industry and chemicals
Chemistry, Pharmaceutical
Collagen - chemistry
Collagen - isolation & purification
Collagen - pharmacology
Cosmetics, toiletries
Exact sciences and technology
Female
General pharmacology
Humans
Humidity
Hydrogen-Ion Concentration
Male
Marine sponge collagen
Medical sciences
Middle Aged
Moisturiser
Pharmaceutical technology. Pharmaceutical industry
Pharmacology. Drug treatments
Porifera - chemistry
Porifera - metabolism
Sebum - drug effects
Sebum - metabolism
Sebumetry
Skin - drug effects
Skin - metabolism
Skin hydration
Skin pH
Sponge Chondrosiareniformis
Washing products. Cosmetics and toiletries. Perfumes
Title Marine sponge collagen: isolation, characterization and effects on the skin parameters surface-pH, moisture and sebum
URI https://dx.doi.org/10.1016/S0939-6411(01)00192-8
https://www.ncbi.nlm.nih.gov/pubmed/11777758
https://www.proquest.com/docview/71358150
Volume 53
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