Protective Effect of Novel Lactobacillus plantarum KC3 Isolated from Fermented Kimchi on Gut and Respiratory Disorders

Author:

Park Min-Seon12ORCID,Kim Yu-Jeong13,Shin Han-Jae4,Kwon Yoo Jin5ORCID,Chu Jaeryang5,Lee Inock5,Kim Kyung Hwan5,Kim Byoung Kook5,Kim Seung-Hyung6ORCID,Seo Hwi Won1,Kim Tae-Won2ORCID

Affiliation:

1. Infectious Disease Research Center, Korea Research Institute of Bioscience and Biotechnology, Daejeon 34141, Republic of Korea

2. College of Veterinary Medicine (BK21 FOUR Program), Chungnam National University, Daejeon 34131, Republic of Korea

3. Biosystems & Bioengineering Program, University of Science and Technology (UST), Daejeon 34113, Republic of Korea

4. KT&G Research Institute, Daejeon 34128, Republic of Korea

5. Chong Kun Dang Bio Research Institute (CKDBiO), Seoul 03722, Republic of Korea

6. Institute of Traditional Medicine and Bioscience, Daejeon University, Daejeon 34520, Republic of Korea

Abstract

Probiotics have been shown to possess anti-inflammatory effects in the gut by directly reducing the production of pro-inflammatory cytokines and by secreting anti-inflammatory molecules. However, their systemic anti-inflammatory effects have not been thoroughly investigated. In this study, we aimed to develop probiotics that have efficacy in both intestinal and lung inflammation. Lactobacillus plantarum KC3 (KC3), which was isolated from kimchi, was selected as a pre-candidate based on its inhibitory effects on the production of pro-inflammatory cytokines in vitro. To further validate the effectiveness of KC3, we used ear edema, DSS-induced colitis, and ambient particulate-matter-induced lung inflammation models. First, KC3 exhibited direct anti-inflammatory effects on intestinal cells with the inhibition of IL-1β and TNF-α production. Additionally, KC3 treatment alleviated ear edema and DSS-induced colic inflammation, improving colon length and increasing the number of regulatory T cells. Beyond its local intestinal anti-inflammatory activity, KC3 inhibited pro-inflammatory cytokines in the bronchoalveolar fluid and prevented neutrophil infiltration in the lungs. These results suggest that KC3 could be a potential functional ingredient with respiratory protective effects against air-pollutant-derived inflammation, as well as for the treatment of local gut disorders.

Funder

Ministry of Science and ICT

Publisher

MDPI AG

Subject

Virology,Microbiology (medical),Microbiology

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