Literature DB >> 9505837

The radiobiological basis of total body irradiation.

T E Wheldon1.   

Abstract

Total body irradiation (TBI) is an all-pervasive systemic treatment modality which is well suited to the sterilization of small numbers of widely dispersed radiosensitive cells. This makes it attractive for the treatment of leukaemia or lymphoma in remission. It is unlikely that hypoxia or repopulation will be a problem in TBI treatment of leukaemia, and clonal resistance to radiation occurs less readily than to drugs. Leukaemic cells are often radiosensitive with poor repair capacities but considerable variation is seen in laboratory studies and leukaemias may be highly individual. It is possible that programmed cell death (apoptosis) contributes to leukaemic cell killing and variability of apoptosis may give rise to biological individuality. Molecular methodologies may now be used to monitor leukaemic cell populations and may enable semi-quantitative predictive assays of radiosensitivity. When the malignant cell population is not uniformly distributed throughout the body, as in lymphoma, non-uniform TBI is appropriate, e.g. by addition of local boosts or by the combination of TBI with radiolabelled antibody treatment. Major side-effects mostly relate to critical organs with late-responding characteristics (low alpha/beta ratio, high sensitivity to fraction size or dose rate). The radiobiological basis of developmental effects in children is not well understood. In future, improved selectivity of TBI may come from molecular biological strategies to sensitize malignant cells and to protect normal tissues.

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Year:  1997        PMID: 9505837     DOI: 10.1259/bjr.70.840.9505837

Source DB:  PubMed          Journal:  Br J Radiol        ISSN: 0007-1285            Impact factor:   3.039


  7 in total

1.  Dose Escalation of Total Marrow Irradiation in High-Risk Patients Undergoing Allogeneic Hematopoietic Stem Cell Transplantation.

Authors:  Susanta Hui; Claudio Brunstein; Yutaka Takahashi; Todd DeFor; Shernan G Holtan; Veronika Bachanova; Christopher Wilke; Darren Zuro; Celalettin Ustun; Daniel Weisdorf; Kathryn Dusenbery; Michael R Verneris
Journal:  Biol Blood Marrow Transplant       Date:  2017-04-07       Impact factor: 5.742

2.  Mitigation of Lethal Radiation Syndrome in Mice by Intramuscular Injection of 3D Cultured Adherent Human Placental Stromal Cells.

Authors:  Elena Gaberman; Lena Pinzur; Lilia Levdansky; Maria Tsirlin; Nir Netzer; Zami Aberman; Raphael Gorodetsky
Journal:  PLoS One       Date:  2013-06-18       Impact factor: 3.240

3.  CT-based analysis of dose homogeneity in total body irradiation using lateral beam.

Authors:  Susanta K Hui; R K Das; Bruce Thomadsen; Douglas Henderson
Journal:  J Appl Clin Med Phys       Date:  2004-10-01       Impact factor: 2.102

4.  Organ sparing of linac-based targeted marrow irradiation over total body irradiation.

Authors:  Gregory R Warrell; Valdir C Colussi; Wayne L Swanson; Paolo F Caimi; David B Mansur; Marcos J G de Lima; Gisele C Pereira
Journal:  J Appl Clin Med Phys       Date:  2019-10-11       Impact factor: 2.102

5.  Optimized Conformal Total Body Irradiation Among Recipients of TCRαβ/CD19-Depleted Grafts in Pediatric Patients With Hematologic Malignancies: Single-Center Experience.

Authors:  Daria Kobyzeva; Larisa Shelikhova; Anna Loginova; Francheska Kanestri; Diana Tovmasyan; Michael Maschan; Rimma Khismatullina; Mariya Ilushina; Dina Baidildina; Natalya Myakova; Alexey Nechesnyuk
Journal:  Front Oncol       Date:  2021-12-16       Impact factor: 6.244

6.  Effects of dose-dependent response to gamma radiation on circumvallate papilla by expression of caspase-3 in vivo.

Authors:  Khaled El-Haddad; Nabil El-Faramawy
Journal:  Saudi Dent J       Date:  2021-09-13

7.  Total Body Irradiation for Hematopoietic Stem Cell Transplantation: What Can We Agree on?

Authors:  Mitchell Sabloff; Steven Tisseverasinghe; Mustafa Ege Babadagli; Rajiv Samant
Journal:  Curr Oncol       Date:  2021-02-14       Impact factor: 3.677

  7 in total

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