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Hypoxia of the growing liver accelerates regeneration.

Publication ,  Journal Article
Schadde, E; Tsatsaris, C; Swiderska-Syn, M; Breitenstein, S; Urner, M; Schimmer, R; Booy, C; Z'graggen, BR; Wenger, RH; Spahn, DR; Hertl, M ...
Published in: Surgery
March 2017

BACKGROUND: After portal vein ligation of 1 side of the liver, the other side regenerates at a slow rate. This slow growth may be accelerated to rapid growth by adding a transection between the 2 sides, i.e., performing portal vein ligation and parenchymal transection. We found that in patients undergoing portal vein ligation and parenchymal transection, portal vein hyperflow in the regenerating liver causes a significant reduction of arterial flow due to the hepatic arterial buffer response. We postulated that the reduction of arterial flow induces hypoxia in the regenerating liver and used a rat model to assess hypoxia and its impact on kinetic growth. METHODS: A rat model of rapid (portal vein ligation and parenchymal transection) and slow regeneration (portal vein ligation) was established. Portal vein flow and pressure data were collected. Liver regeneration was assessed in rats using computed tomography, proliferation with Ki-67, and hypoxia with pimonidazole and HIF-1α staining. RESULTS: The rat model confirmed acceleration of regeneration in portal vein ligation and parenchymal transection as well as the portal vein hyperflow seen in patients. Additionally, tissue hypoxia was observed after portal vein ligation and parenchymal transection, while little hypoxia staining was detected after portal vein ligation. To determine if hypoxia is a consequence or an inciting stimulus of rapid liver regeneration, we used a prolyl-hydroxylase blocker to activate hypoxia signaling pathways in the slow model. This clearly accelerated slow to rapid liver regeneration. Inversely, abrogation of hypoxia led to a blunting of rapid growth to slow growth. The topical application of prolyl-hydroxylase inhibitors on livers in rats induced spontaneous areas of regeneration. CONCLUSION: This study shows that pharmacologically induced hypoxic signaling accelerates liver regeneration similar to portal vein ligation and parenchymal transection. Hypoxia is likely an accelerator of liver regeneration. Also, prolyl-hydroxylase inhibitors may be used to enhance liver regeneration pharmaceutically.

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Published In

Surgery

DOI

EISSN

1532-7361

Publication Date

March 2017

Volume

161

Issue

3

Start / End Page

666 / 679

Location

United States

Related Subject Headings

  • Surgery
  • Rats, Wistar
  • Rats
  • Portal Vein
  • Models, Animal
  • Male
  • Liver Regeneration
  • Liver
  • Ligation
  • Hepatectomy
 

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Schadde, E., Tsatsaris, C., Swiderska-Syn, M., Breitenstein, S., Urner, M., Schimmer, R., … Beck-Schimmer, B. (2017). Hypoxia of the growing liver accelerates regeneration. Surgery, 161(3), 666–679. https://doi.org/10.1016/j.surg.2016.05.018
Schadde, Erik, Christopher Tsatsaris, Marzena Swiderska-Syn, Stefan Breitenstein, Martin Urner, Roman Schimmer, Christa Booy, et al. “Hypoxia of the growing liver accelerates regeneration.Surgery 161, no. 3 (March 2017): 666–79. https://doi.org/10.1016/j.surg.2016.05.018.
Schadde E, Tsatsaris C, Swiderska-Syn M, Breitenstein S, Urner M, Schimmer R, et al. Hypoxia of the growing liver accelerates regeneration. Surgery. 2017 Mar;161(3):666–79.
Schadde, Erik, et al. “Hypoxia of the growing liver accelerates regeneration.Surgery, vol. 161, no. 3, Mar. 2017, pp. 666–79. Pubmed, doi:10.1016/j.surg.2016.05.018.
Schadde E, Tsatsaris C, Swiderska-Syn M, Breitenstein S, Urner M, Schimmer R, Booy C, Z’graggen BR, Wenger RH, Spahn DR, Hertl M, Knechtle S, Diehl AM, Schläpfer M, Beck-Schimmer B. Hypoxia of the growing liver accelerates regeneration. Surgery. 2017 Mar;161(3):666–679.
Journal cover image

Published In

Surgery

DOI

EISSN

1532-7361

Publication Date

March 2017

Volume

161

Issue

3

Start / End Page

666 / 679

Location

United States

Related Subject Headings

  • Surgery
  • Rats, Wistar
  • Rats
  • Portal Vein
  • Models, Animal
  • Male
  • Liver Regeneration
  • Liver
  • Ligation
  • Hepatectomy