Sodium hyaluronates applied in the face affects the diversity of skin microbiota in healthy people

Author:

He Chen1ORCID,Yue YingXue1,Li Ruilong1,Huang Yiping1,Shu Luan1,Lv Huixia2,Wang Jing1,Zhang Zhenhai1

Affiliation:

1. Affiliated Hospital of Integrated Traditional Chinese and Western Medicine Nanjing University of Chinese Medicine Nanjing China

2. Special Cosmetics R&D Joint laboratory of China Pharmaceutical University & Bloomage Biotechnology Corporation Limited Nanjing China

Abstract

AbstractObjectiveA healthy and stable microbiome has many beneficial effects on the host, while an unbalanced or disordered microbiome can lead to various skin diseases. Hyaluronic acid is widely used in the cosmetics and pharmaceutical industries; however, specific reports on its effect on the skin microflora of healthy people have not been published. This study aimed to determine the effect of sodium hyaluronate on the facial microflora of healthy individuals.MethodsFace of 20 healthy female volunteers between 18 and 24 years was smeared with sodium hyaluronate solution once per day. Cotton swabs were used to retrieve samples on days 0, 14, and 28, and high‐throughput sequencing of 16 S rRNA was used to determine the changes in bacterial community composition.ResultsFacial application of HA can reduce the abundance of pathogenic bacteria, such as Cutibacterium and S. aureus, and increase the colonization of beneficial bacteria.ConclusionThis is the first intuitive report to demonstrate the effect of hyaluronic acid on facial microflora in healthy people. Accordingly, sodium hyaluronate was found to have a positive effect on facial skin health.

Funder

Nanjing University of Chinese Medicine

National Natural Science Foundation of China

Government of Jiangsu Province

Publisher

Wiley

Subject

Colloid and Surface Chemistry,Dermatology,Drug Discovery,Pharmaceutical Science,Aging,Chemistry (miscellaneous)

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1. Sulfated hyaluronic acid gel for the treatment of rheumatoid arthritis in rats;International Journal of Biological Macromolecules;2024-01

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