Literature DB >> 25587740

Impact of therapeutic irradiation on healthy articular cartilage.

Yannick Saintigny1, Séverine Cruet-Hennequart, Dounia Houria Hamdi, François Chevalier, Jean-Louis Lefaix.   

Abstract

Radiation-induced complications in bone and cartilage are of increasing concern due to potential long-term effects in cancer survivors. Healthy articular cartilage may be exposed to radiation during either chondrosarcoma treatment or in-field radiotherapy of tumors located in close proximity to articulation. Cartilage exposed to radiation undergoes bone differentiation and senescence, which can lead to painful and disabling sequelae that can impair patient quality of life. An understanding of the biological processes involved in healthy cartilage response to radiotherapy may not only optimize the delivery of therapeutic radiation but also reduce the risk of long-term sequelae in irradiated cartilage. Over the last few decades, radiobiology studies have focused primarily on signaling and repair of DNA damage pathways induced by ionizing radiation in immortalized cells under conditions dramatically different from human homeostasis. This research needs to be continued and broadened, since the range of normal tissue responses to radiation exposure is still not fully understood, despite being recognized as the major limiting factor in the rupture of tissue homeostasis after radiotherapy. Human articular cartilage is an avascular tissue with low intracellular oxygen levels and is comprised of a single cell lineage of chondrocytes embedded in a highly dense and structured extracellular matrix. These relatively unique features may impact inherent cell radiation sensitivity and suggests that canonical cell responses to ionizing radiation may not be applicable to articular cartilage. Despite the number of studies in this field, radiation-induced modifications of chondrocyte proteome remain unclear because of the dramatic variability in reported experimental conditions. In this review, we propose to introduce cartilage tissue physiology and microenvironment concepts, and then present a comprehensive synthesis of cartilage radiation biology.

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Year:  2015        PMID: 25587740     DOI: 10.1667/RR13928.1

Source DB:  PubMed          Journal:  Radiat Res        ISSN: 0033-7587            Impact factor:   2.841


  5 in total

1.  Knee and Hip Joint Cartilage Damage from Combined Spaceflight Hazards of Low-Dose Radiation Less than 1 Gy and Prolonged Hindlimb Unloading.

Authors:  Andy T Kwok; Joseph E Moore; Samuel Rosas; Bethany A Kerr; Rachel N Andrews; Callistus M Nguyen; Jingyun Lee; Cristina M Furdui; Boyce E Collins; Michael T Munley; Jeffrey S Willey
Journal:  Radiat Res       Date:  2019-03-29       Impact factor: 2.841

Review 2.  Hadrontherapy Interactions in Molecular and Cellular Biology.

Authors:  Juliette Thariat; Samuel Valable; Carine Laurent; Siamak Haghdoost; Elodie A Pérès; Myriam Bernaudin; François Sichel; Paul Lesueur; Mathieu Césaire; Edwige Petit; Aurélie E Ferré; Yannick Saintigny; Sven Skog; Mihaela Tudor; Michael Gérard; Sebastien Thureau; Jean-Louis Habrand; Jacques Balosso; François Chevalier
Journal:  Int J Mol Sci       Date:  2019-12-24       Impact factor: 5.923

3.  Photobiomodulation Therapy Partially Restores Cartilage Integrity and Reduces Chronic Pain Behavior in a Rat Model of Osteoarthritis: Involvement of Spinal Glial Modulation.

Authors:  Gustavo Balbinot; Clarissa Pedrini Schuch; Patricia Severo do Nascimento; Fabio Juner Lanferdini; Mayra Casanova; Bruno Manfredini Baroni; Marco Aurélio Vaz
Journal:  Cartilage       Date:  2019-09-30       Impact factor: 3.117

4.  In vitro engineering of human 3D chondrosarcoma: a preclinical model relevant for investigations of radiation quality impact.

Authors:  Dounia Houria Hamdi; Sofia Barbieri; François Chevalier; Jean-Emmanuel Groetz; Florence Legendre; Magali Demoor; Philippe Galera; Jean-Louis Lefaix; Yannick Saintigny
Journal:  BMC Cancer       Date:  2015-08-08       Impact factor: 4.430

5.  Radiation induces primary osteocyte senescence phenotype and affects osteoclastogenesis in vitro.

Authors:  Yuyang Wang; Linshan Xu; Jianping Wang; Jiangtao Bai; Jianglong Zhai; Guoying Zhu
Journal:  Int J Mol Med       Date:  2021-03-11       Impact factor: 4.101

  5 in total

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