The Study of the Caudal Vertebrae of Thick-Toed Geckos after a Prolonged Space Flight by X-ray Phase-Contrast Micro-CT

Cells. 2023 Oct 7;12(19):2415. doi: 10.3390/cells12192415.

Abstract

The proximal caudal vertebrae and notochord in thick-toed geckos (TG) (Chondrodactylus turneri, Gray, 1864) were investigated after a 30-day space flight onboard the biosatellite Bion-M1. This region has not been explored in previous studies. Our research focused on finding sites most affected by demineralization caused by microgravity (G0). We used X-ray phase-contrast tomography to study TG samples without invasive prior preparation to clarify our previous findings on the resistance of TG's bones to demineralization in G0. The results of the present study confirmed that geckos are capable of preserving bone mass after flight, as neither cortical nor trabecular bone volume fraction showed statistically significant changes after flight. On the other hand, we observed a clear decrease in the mineralization of the notochordal septum and a substantial rise in intercentrum volume following the flight. To monitor TG's mineral metabolism in G0, we propose to measure the volume of mineralized tissue in the notochordal septum. This technique holds promise as a sensitive approach to track the demineralization process in G0, given that the volume of calcification within the septum is limited, making it easy to detect even slight changes in mineral content.

Keywords: Bion-M1; X-ray phase-contrast tomography; intercentrae; microtomography; notochord; proximal caudal vertebrae; spaceflight adaptation; thick-toed gecko (Chondrodactylus turneri, Gray, 1864).

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • Coccyx
  • Lizards*
  • Minerals
  • Space Flight*
  • X-Ray Microtomography
  • X-Rays

Substances

  • Minerals

Grants and funding

This work was performed within the State assignment of Federal Scientific Research Center “Crystallography and Photonics” of Russian Academy of Sciences. We acknwoledge for financial support: the FISR Project “Tecnopolo di nanotecnologia e fotonica per la medicina di precisione” (funded by MIUR/CNR, CUP B83B17000010001); the TECNOMED project (funded by Regione Puglia, CUP B84I18000540002).