Tissue-Cultured Chondrocytes Survive After Irradiation in 1300 Gy Dose

Background/Objectives: Radiobiology has shown heterogeneity in the sensitivity of cells to ionizing radiation, depending on a variety of conditions. The presence of an extracellular matrix (ECM) appears to confer a radioprotective effect on cells and can influence the cellular microenvironment by modulating the availability of oxygen and nutrients, which can affect cellular metabolism and stress responses. A three-dimensional cell culture allows the synergistic effect on cell survival to be obtained based not only on the radioprotective properties of the extracellular matrix but also on the stress-resistant endogenous properties of the cell culture. The aim of this study was to investigate the survival of chondrocytes in a 3D cell culture during high-dose ionizing irradiation. Methods: The properties of nasal chondrocytes were evaluated using a pellet culture model in which the cells were surrounded by a de novo synthesized extracellular matrix. Tissue cultures were exposed by gamma radiation at doses of 10, 100, and 1300 Gy. Cell viability was assessed after 2 days of irradiation by live/dead staining using confocal scanning laser microscopy. Results: Tissue-cultured chondrocytes survive after gamma-irradiation of low (10 Gy), medium (100 Gy), and high (1300 Gy) dosages; however, after irradiation of 1300 Gy, the percentage of surviving cells was lower. The average percentages of viable cells were evaluated as 82%, 79%, and 63% in low-, medium-, and high-dose groups, respectively. Conclusions: Under determined conditions, human cells are able to survive at doses of ionizing radiation that are significantly higher than the current limits. © 2025 by the authors.

Авторы
Baranovskii Denis 1, 2, 3 , Smirnova Anna 1 , Yakimova Anna O. 1 , Kisel Anastas A. 1 , Koryakin S.N. 1 , Atiakshin Dmitrii A. 2 , Ignatyuk Michael A. 2 , Potievskiy Mikhail B. 1 , Saburov V.O. 1 , Budnik Sergey V. 4 , Sulina Y.Y. 5 , Stepanenko Vasiliy N. 1, 5 , Churyukin Roman S. 4 , Akhmedov Bagavdin G. 6 , Shegai Petr Viktorovich 1, 2 , Kaprin Andrey D. 1, 2 , Klabukov Ilya Dmitrievich 1
Издательство
MDPI AG
Номер выпуска
9
Язык
English
Статус
Published
Номер
2153
Том
13
Год
2025
Организации
  • 1 Department of Regenerative Medicine, A. Tsyb Medical Radiological Research Center, Obninsk, Kaluga Oblast, Russian Federation
  • 2 Digital Spatial Profiling and Ultrastructural Analysis Innovative Technologies, RUDN University, Moscow, Moscow Oblast, Russian Federation
  • 3 Universität Basel, Basel, BS, Switzerland
  • 4 Center for Radiation Modification of Polymers “Teocortex Crosslink”, Borovsk, Russian Federation
  • 5 Center for Synthetic Biotechnology, Sechenov First Moscow State Medical University, Moscow, Russian Federation
  • 6 A.V. Vishnevsky National Medical Research Center of Surgery, Moscow, Russian Federation
Ключевые слова
cartilage; cell death; chondrocytes; extracellular matrix; ionizing radiation; radiobiology; radioresistance; scaffolds; tissue culture; tissue engineering
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