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43 Results
Section: Testing > Sensory
Hair Care
Silicone Stand-in: Lauryl/Myristyl Polyricinoleate Naturally Improves Perceived Hair Hydration
This article is focused on a nonionic, nature-friendly hair care ingredient: lauryl/myristyl polyricinoleate. Designed to impart a sense of hydration to hair, the material is shown to ease combing and provide a smooth after-feel in a manner surpassing benchmarks.
Methods/Tools
Conditioned Response: Fragrance's Cross-modal Effect on Sensory Perception in Hair Care*
This study compared the impact of two fragrance types on the tactile perception of dry, bleached hair treated with a base or enhanced leave-on conditioner. Sensory tests showed a fruity fragrance was most successful at imparting the perception of conditioned hair.
Sensory
Reaching a Zen-like State in Skin: Biomimetic Peptide to Balance Sensitivity
Inspired by nature, biomimetic peptides are potent allies in skin care. This paper identifies palmitoyl tripeptide-8 as an effective modulator of neurogenic inflammation and provides clinical evidence of its protective and soothing activities in sensitized skin.
Method/Process
Fluorescence LSCM to Assess the Penetration of Low Molecular Protein Hydrolyzates Into Hair
The present study uses confocal laser scanning fluorescence microscopy to assess the penetration of protein hydrolyzates into hair. While higher amounts of protein were found in the cuticle, still significant quantities were observed in the cortical parts of hair, and this penetration was enhanced by longer incubation times.
Skin Care
Gone in a ‘Flash’: Night Sweats Subside with a Novel Astringent Peptide Spray
Certain peptides have been shown to reduce perspiration. Here, the authors explore their use to develop a spray to treat menopause night sweats. To complicate formulation work, salt-based astringents were desired to provide immediate sensory benefits. The authors address this formulation challenge as well.
Event Coverage
Testing Innovators: Submit Now to Take Center Stage at the
2026 C&T Allē Awards
Do your methods and devices put cosmetic innovations to the test? The
Cosmetics & Toiletries
2026
Allē Awards
want to recognize you - enter now.
Method/Process
Fluorescence Laser Scanning Confocal Microscopy to Assess the Penetration of Low Molecular Protein Hydrolyzates Into Hair
The present study uses confocal laser scanning fluorescence microscopy to assess the penetration of protein hydrolyzates into hair. While higher amounts of protein were found in the cuticle, still significant quantities were observed in the cortical parts of hair, and this penetration was enhanced by longer incubation times.
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