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Hadrontherapy Interactions in Molecular and Cellular Biology.
Thariat, Juliette; Valable, Samuel; Laurent, Carine; Haghdoost, Siamak; Pérès, Elodie A; Bernaudin, Myriam; Sichel, François; Lesueur, Paul; Césaire, Mathieu; Petit, Edwige; Ferré, Aurélie E; Saintigny, Yannick; Skog, Sven; Tudor, Mihaela; Gérard, Michael; Thureau, Sebastien; Habrand, Jean-Louis; Balosso, Jacques; Chevalier, François.
Afiliação
  • Thariat J; Department of Radiation Oncology, Centre François Baclesse, 14000 Caen, France.
  • Valable S; Laboratoire de Physique Corpusculaire IN2P3/ENSICAEN-UMR6534-Unicaen-Normandie Université, 14000 Caen, France.
  • Laurent C; ARCHADE Research Community, 14000 Caen, France.
  • Haghdoost S; ARCHADE Research Community, 14000 Caen, France.
  • Pérès EA; Normandie Univ, UNICAEN, CEA, CNRS, ISTCT/CERVOxy Group, GIP CYCERON, 14000 Caen, France.
  • Bernaudin M; ARCHADE Research Community, 14000 Caen, France.
  • Sichel F; Normandie Univ, UNICAEN, UNIROUEN, ABTE, 14000 Caen, France.
  • Lesueur P; ARCHADE Research Community, 14000 Caen, France.
  • Césaire M; LARIA, iRCM, François Jacob Institute, DRF-CEA, 14000 Caen, France.
  • Petit E; UMR6252 CIMAP, CEA-CNRS-ENSICAEN-Université de Caen Normandie, 14000 Caen, France.
  • Ferré AE; ARCHADE Research Community, 14000 Caen, France.
  • Saintigny Y; Normandie Univ, UNICAEN, CEA, CNRS, ISTCT/CERVOxy Group, GIP CYCERON, 14000 Caen, France.
  • Skog S; ARCHADE Research Community, 14000 Caen, France.
  • Tudor M; Normandie Univ, UNICAEN, CEA, CNRS, ISTCT/CERVOxy Group, GIP CYCERON, 14000 Caen, France.
  • Gérard M; ARCHADE Research Community, 14000 Caen, France.
  • Thureau S; Normandie Univ, UNICAEN, UNIROUEN, ABTE, 14000 Caen, France.
  • Habrand JL; Department of Radiation Oncology, Centre François Baclesse, 14000 Caen, France.
  • Balosso J; ARCHADE Research Community, 14000 Caen, France.
  • Chevalier F; Normandie Univ, UNICAEN, CEA, CNRS, ISTCT/CERVOxy Group, GIP CYCERON, 14000 Caen, France.
Int J Mol Sci ; 21(1)2019 Dec 24.
Article em En | MEDLINE | ID: mdl-31878191
ABSTRACT
The resistance of cancer cells to radiotherapy is a major issue in the curative treatment of cancer patients. This resistance can be intrinsic or acquired after irradiation and has various definitions, depending on the endpoint that is chosen in assessing the response to radiation. This phenomenon might be strengthened by the radiosensitivity of surrounding healthy tissues. Sensitive organs near the tumor that is to be treated can be affected by direct irradiation or experience nontargeted reactions, leading to early or late effects that disrupt the quality of life of patients. For several decades, new modalities of irradiation that involve accelerated particles have been available, such as proton therapy and carbon therapy, raising the possibility of specifically targeting the tumor volume. The goal of this review is to examine the up-to-date radiobiological and clinical aspects of hadrontherapy, a discipline that is maturing, with promising applications. We first describe the physical and biological advantages of particles and their application in cancer treatment. The contribution of the microenvironment and surrounding healthy tissues to tumor radioresistance is then discussed, in relation to imaging and accurate visualization of potentially resistant hypoxic areas using dedicated markers, to identify patients and tumors that could benefit from hadrontherapy over conventional irradiation. Finally, we consider combined treatment strategies to improve the particle therapy of radioresistant cancers.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Radioterapia / Neoplasias Aspecto: Patient_preference Limite: Humans Idioma: En Revista: Int J Mol Sci Ano de publicação: 2019 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Radioterapia / Neoplasias Aspecto: Patient_preference Limite: Humans Idioma: En Revista: Int J Mol Sci Ano de publicação: 2019 Tipo de documento: Article