4.7 Article

Chicken bone marrow mesenchymal stem cells improve lung and distal organ injury

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SCIENTIFIC REPORTS
卷 11, 期 1, 页码 -

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NATURE PORTFOLIO
DOI: 10.1038/s41598-021-97383-4

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  1. Agricultural Science and Technology Innovation Program of China [ASTIPIAS01]
  2. National Germplasm Center of Domestic Animal Resources
  3. National Natural Science Foundation of China [71874017, 81472992]
  4. BNU Interdisciplinary Research Foundation for First-Year Doctoral Candidates [BNUXKJC1814]

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This study demonstrated the therapeutic potential of chicken bone marrow-derived mesenchymal stem cells (BM-MSCs) in improving survival rates, reducing inflammation, and alleviating tissue damage in LPS-induced acute lung injury and extrapulmonary injury. The BM-MSCs showed beneficial effects through TRL4/Mdy88 signaling, inhibition of neutrophil inflammation, and reducing oxidative stress injury.
Mesenchymal stem cells (MSCs) are associated with pulmonary protection and longevity. We separated chicken bone marrow-derived mesenchymal stem cells (BM-MSCs); investigated whether BM-MSCs can improve lipopolysaccharide (LPS)-induced lung and distal organ injury; and explored the underlying mechanisms. Ninety-six male ICR (6 weeks old) mice were randomly divided into three groups: Sham, LPS, and LPS + MSC groups. The mice were intratracheally injected with 5 mg/kg LPS to induce acute lung injury (ALI). The histopathological severity of injury to the lung, liver, kidney, heart, and aortic tissues was detected. Wet/dry ratio, protein concentrations in bronchoalveolar lavage fluid (BALF), BALF cell counts, inflammatory cytokine levels in serum, inflammatory cytokine gene expression, and oxidative stress-related indicators were detected. In addition, a survival analysis was performed in sixty male ICR mice (6 weeks old, 18-20 g). This study used chicken BM-MSCs, which are easier to obtain and more convenient than other animal or human MSCs, and have MSC-associated properties, such as a colony forming ability, multilineage differentiation potential, and certain phenotypes. BM-MSCs administration significantly improved the survival rate, systemic inflammation, and the histopathological severity of lung, liver, kidney, and aortic injury during ALI. BM-MSCs administration reduced the levels of inflammatory factors in BALF, the infiltration of neutrophils, and oxidative stress injury in lung tissue. In addition, BM-MSCs administration reduced TRL4 and Mdy88 mRNA expression during ALI. Chicken BM-MSCs serve as a potential alternative resource for stem cell therapy and exert a prominent effect on LPS-induced ALI and extrapulmonary injury, in part through TRL4/Mdy88 signaling and inhibition of neutrophil inflammation and oxidative stress injury.

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