Plum-Derived Exosome-like Nanovesicles Induce Differentiation of Osteoblasts and Reduction of Osteoclast Activation

Author:

Park Yu-Seong1,Kim Hyun-Woo2,Hwang Jin-Hyeon2,Eom Jung-Young2,Kim Dong-Ha1,Park Jinho3,Tae Hyun-Jin4ORCID,Lee Seunghoon5,Yoo Jae-Gyu5ORCID,Kim Jee-In6,Lim Jae-Hwan7,Kwun In-Sook8,Baek Moon-Chang1ORCID,Cho Young-Eun8ORCID,Kim Do-Kyun2

Affiliation:

1. Department of Molecular Medicine, Cell and Matrix Research Institute (CMRI), School of Medicine, Kyungpook National University, Daegu 41944, Republic of Korea

2. Korea Zoonosis Research Institute, Jeonbuk National University, Iksan 54531, Republic of Korea

3. College of Veterinary Medicine, Jeonbuk National University, Iksan 54596, Republic of Korea

4. Department of Veterinary Anatomy, College of Veterinary Medicine and Institute of Animal Transplantation, Jeonbuk National University, Iksan 54596, Republic of Korea

5. Department of Animal Biotechnology Division, National Institute of Animal Science, Rural Development Administration, Wanju 55365, Republic of Korea

6. Department of Biochemistry and Cell Biology, School of Medicine, Kyungpook National University, Daegu 41944, Republic of Korea

7. Department of Biological Science, Andong National University, Andong 36729, Republic of Korea

8. Department of Food and Nutrition, Andong National University, Andong 36729, Republic of Korea

Abstract

Osteoblasts and osteoclasts play crucial roles in bone formation and bone resorption. We found that plum-derived exosome-like nanovesicles (PENVs) suppressed osteoclast activation and modulated osteoblast differentiation. PENVs increased the proliferation, differentiation, and mineralization of osteoblastic MC3T3-E1 cells and osteoblasts from mouse bone marrow cultures. Notably, PENVs elevated the expression of osteoblastic transcription factors and osteoblast differentiation marker proteins in MC3T3-E1 cells. Higher levels of phosphorylated BMP-2, p38, JNK, and smad1 proteins were detected in PENV-treated MC3T3-E1 cells. Additionally, the number of TRAP-positive cells was significantly decreased in PENV-treated osteoclasts isolated from osteoblasts from mouse bone marrow cultures. Importantly, osteoclastogenesis of marker proteins such as PPAR-gamma, NFATc1, and c-Fos were suppressed by treatment with PENVs (50 μg/mL). Taken together, these results demonstrate that PENVs can be used as therapeutic targets for treating bone-related diseases by improving osteoblast differentiation and inhibiting osteoclast activation for the first time.

Funder

Korea Government

Rural Development Administration

Publisher

MDPI AG

Subject

Food Science,Nutrition and Dietetics

Reference38 articles.

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