6′-Sialyllactose Enhances Exercise Performance via Increased Muscle Mass and Strength

Author:

Park Eun-Jung1,Kim Li-La1ORCID,Lee Jie-Oh2,Lee Hay-Young3,Kim Yong-An3,Go Hi-Roe1

Affiliation:

1. GeneChem Inc., Daejeon 34025, Republic of Korea

2. Department of Life Sciences, Pohang University of Science and Technology (POSTECH), Pohang 37673, Republic of Korea

3. POSTECH Biotech Center, Pohang University of Science and Technology (POSTECH), Pohang 37673, Republic of Korea

Abstract

Sialyllactose (SL) is a functional human milk oligosaccharide essential for immune support, brain development, intestinal maturation, and antiviral defense. However, despite its established health benefits, the effect of SL on exercise performance and muscle mass in mice remains unknown. Here, we aimed to investigate, for the first time, the effects of 6′-SL on muscle functions. Seven-week-old male C57BL/6J mice were administered 100 mg/kg 6′-SL for 12 weeks, after which exhaustive treadmill performance was conducted. Moreover, muscle strength was examined by grip strength, and muscle phenotype characteristics such as muscle mass, muscle fiber size, and muscle protein expression were also examined. The administration of 6′-SL significantly improved exhaustive treadmill performance metrics, including distance and exhaustion time. Grip strength was also increased by 6′-SL administration. Additionally, 6′-SL increased muscle mass in both the gastrocnemius (GAS) and soleus. 6′-SL administration led to an increase in the minimum Feret’s diameter and the protein expression of total myosin heavy chain in the GAS muscle. In conclusion, 6′-SL administration in vivo led to increased running distance and time by increasing muscle mass and strength. These findings collectively indicate that 6′-SL is a potential agent for improving muscle health and exercise performance.

Funder

Bio-industry Core Technology Development Business of the Ministry of Trade, Industry, and Energy

the Technology Development Program of the Ministry of SMEs and Startups

the National Research Foundation of Korea

Publisher

MDPI AG

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