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Study breakdown

Novel Collagen Peptides Show Direct Antioxidant Activity Measured by Electron Spin Resonance

evidence
The takeaway

Novel collagen peptides demonstrated direct reactive oxygen species scavenging measured by electron spin resonance spectroscopy — confirming collagen peptide antioxidant activity at the molecular level.

Key finding

Novel collagen peptides demonstrated direct reactive oxygen species scavenging measured by electron spin resonance spectroscopy — confirming collagen

What the researchers found

Novel collagen peptides demonstrated direct reactive oxygen species scavenging measured by electron spin resonance spectroscopy — confirming collagen peptide antioxidant activity at the molecular level.

Why it matters

Relevant for peptide research.

How the study worked

research study.

What this study cannot tell us

See abstract.

How to read the evidence

emerging evidence.

When this study was published

Published in 2011.

The bigger picture

Advances peptide research.

Questions still open

  • Further research needed.

Common questions

What was studied?
Novel Collagen Peptides Show Direct Antioxidant Activity Measured by Electron Spin Resonance
What was found?
Novel collagen peptides demonstrated direct reactive oxygen species scavenging measured by electron spin resonance spectroscopy — confirming collagen peptide antioxidant activity at the molecular level.

Read the original research

Direct assessments of the antioxidant effects of the novel collagen peptide on reactive oxygen species using electron spin resonance spectroscopy.

Journal of pharmacological sciences, 116(1), 97-106

Citation

Kobayashi, Kyo; Maehata, Yojiro; Kawamura, Yosuke; Kusubata, Masashi; Hattori, Shunji; Tanaka, Keisuke; Miyamoto, Chihiro; Yoshino, Fumihiko; Yoshida, Ayaka; Wada-Takahashi, Satoko; Komatsu, Tomoko; Takahashi, Shun-Suke; Lee, Masaichi-Chang-Il. (2011). Direct assessments of the antioxidant effects of the novel collagen peptide on reactive oxygen species using electron spin resonance spectroscopy.. Journal of pharmacological sciences, 116(1), 97-106.