Intraportally delivered stem cell spheroids localize in the liver and protect hepatocytes against GalN/LPS-induced fulminant hepatic toxicity

Systemic inflammatory response syndrome (SIRS) is common in severe fulminant hepatic failure (FHF) and has a high mortality rate (20-50%) due to irreversible cerebral edema or sepsis. Stem cell-based treatment has emerged as a promising alternative therapeutic strategy to prolong the survival of pat...

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Veröffentlicht in:Stem cell research & therapy 2019-10, Vol.10 (1), p.230-230, Article 230
Hauptverfasser: Regmi, Shobha, Pathak, Shiva, Thanh, Tung Pham, Nguyen, Tiep Tien, Sung, Jong-Hyuk, Yook, Simmyung, Kim, Jong Oh, Yong, Chul Soon, Choi, Inho, Doh, Kyoung-Oh, Park, Pil-Hoon, Park, Jun-Beom, Seo, Yoojin, Kim, Bieong-Kil, Lee, Dong-Mok, Moon, Ik-Jae, Kim, Hyung-Sik, Jeong, Jee-Heon
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Sprache:eng
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Zusammenfassung:Systemic inflammatory response syndrome (SIRS) is common in severe fulminant hepatic failure (FHF) and has a high mortality rate (20-50%) due to irreversible cerebral edema or sepsis. Stem cell-based treatment has emerged as a promising alternative therapeutic strategy to prolong the survival of patients suffering from FHF via the inhibition of SIRS due to their immunomodulatory effects. 3D spheroids of adipose-derived mesenchymal stem cells (3D-ADSC) were prepared by the hanging drop method. The efficacy of the 3D-ADSC to rescue FHF was evaluated in a D-galactosamine/lipopolysaccharide (GalN/LPS)-induced mouse model of FHF via intraportal transplantation of the spheroids. Intraportally delivered 3D-ADSC better engrafted and localized into the damaged livers compared to 2D-cultured adipose-derived mesenchymal stem cells (2D-ADSC). Transplantation of 3D-ADSC rescued 50% of mice from FHF-induced lethality, whereas only 20% of mice survived when 2D-ADSC were transplanted. The improved transplantation outcomes correlated with the enhanced immunomodulatory effect of 3D-ADSC in the liver microenvironment. The study shows that the transplantation of optimized 3D-ADSC can efficiently ameliorate GalN/LPS-induced FHF due to improved viability, resistance to exogenous ROS, and enhanced immunomodulatory effects of 3D-ADSC.
ISSN:1757-6512
1757-6512
DOI:10.1186/s13287-019-1337-3