6533b874fe1ef96bd12d6398
RESEARCH PRODUCT
Adipose tissue sensitivity to radiation exposure
Bénédicte Prunet-marcassusLuc PénicaudSylvain GalvaniLouis CasteillaSandy BourSandrine PoglioBéatrice CousinMireille Andrésubject
Pathologymedicine.medical_specialtyCellular differentiationPopulationExperimental/metabolism/*pathologyAdipose tissueConnective tissueCell Proliferation/*radiation effectsBiologyPolymerase Chain ReactionPathology and Forensic MedicineMiceOxidative Stress/radiation effectsmedicineAdipocytesIn Situ Nick-End LabelingAutologous transplantationAnimalsStem Cells/metabolism/pathology/radiation effectsProgenitor celleducationRadiation InjuriesCell Proliferationeducation.field_of_studyStem CellsAdipocytes/cytology/metabolism/*radiation effectsCell DifferentiationTotal body irradiationFlow CytometryImmunohistochemistryAdipose Tissue/cytology/*radiation effectsOxidative StressRadiation Injuries ExperimentalCell Differentiation/*radiation effectsmedicine.anatomical_structurePhenotypeAdipose TissueStem cellRegular Articlesdescription
1525-2191 (Electronic) Journal Article Research Support, Non-U.S. Gov't; Treatment of cancer using radiation can be significantly compromised by the development of severe acute and late damage to normal tissue. Treatments that either reduce the risk and severity of damage or that facilitate the healing of radiation injuries are being developed, including autologous adipose tissue grafts to repair tissue defects or involutional disorders that result from tumor resection. Adipose tissue is specialized in energy storage and contains different cell types, including preadipocytes, which could be used for autologous transplantation. It has long been considered a poorly proliferative connective tissue; however, the acute effects of ionizing radiation on adipose tissue have not been investigated. Therefore, the aim of this study was to characterize the alterations induced in adipose tissue by total body irradiation. A severe decrease in proliferating cells, as well as a significant increase in apoptotic cells, was observed in vivo in inguinal fat pads following irradiation. Additionally, irradiation altered the hematopoietic population. Decreases in the proliferation and differentiation capacities of non-hematopoietic progenitors were also observed following irradiation. Together, these data demonstrate that subcutaneous adipose tissue is very sensitive to irradiation, leading to a profound alteration of its developmental potential. This damage could also alter the reconstructive properties of adipose tissue and, therefore, calls into question its use in autologous fat transfer following radiotherapy.
year | journal | country | edition | language |
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2008-12-20 |