Literature DB >> 15833839

Influence of mast cells on structural and functional manifestations of radiation-induced heart disease.

Marjan Boerma1, Junru Wang, Jan Wondergem, Jacob Joseph, Xiaohua Qiu, Richard H Kennedy, Martin Hauer-Jensen.   

Abstract

Radiation-induced heart disease (RIHD), characterized by accelerated atherosclerosis and adverse tissue remodeling, is a serious sequelae after radiotherapy of thoracic and chest wall tumors. Adverse cardiac remodeling in RIHD and other cardiac disorders is frequently accompanied by mast cell hyperplasia, suggesting that mast cells may affect the development of cardiac fibrosis. This study used a mast cell-deficient rat model to define the role of mast cells in RIHD. Mast cell-deficient rats (Ws/Ws) and mast cell-competent littermate controls (+/+) were exposed to 18 Gy localized single-dose irradiation of the heart. Six months after irradiation, cardiac function was examined by echocardiography and Langendorff-perfused isolated heart preparation, whereas structural changes were assessed using quantitative histology and immunohistochemical analysis. Mast cell-deficient rats exhibited more severe postradiation changes than mast cell-competent littermates. Hence, mast cell-deficient rats exhibited a greater upward/leftward shift in the left ventricular (LV) diastolic pressure-volume relationship (P = 0.001), a greater reduction in in vivo LV diastolic area (from 0.50 +/- 0.024 cm in age-matched controls to 0.24 +/- 0.032 cm after irradiation; P = 0.006), and a greater increase in LV posterior wall thickness (from 0.13 +/- 0.003 cm in age-matched controls to 0.15 +/- 0.003 cm after irradiation; P = 0.04). Structural analysis revealed more pronounced postradiation accumulation of interstitial collagen III but less myocardial degeneration in hearts from mast cell-deficient rats. These data show that the absence of mast cells accelerates the development of functional changes in the irradiated heart, particularly diastolic dysfunction, and suggest that, in contrast to what has been the prevailing assumption, the role of mast cells in RIHD is predominantly protective.

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Year:  2005        PMID: 15833839     DOI: 10.1158/0008-5472.CAN-04-4333

Source DB:  PubMed          Journal:  Cancer Res        ISSN: 0008-5472            Impact factor:   12.701


  30 in total

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Review 2.  Potential targets for intervention in radiation-induced heart disease.

Authors:  M Boerma; M Hauer-Jensen
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3.  Cellular inflammatory infiltrate in pneumonitis induced by a single moderate dose of thoracic x radiation in rats.

Authors:  Sara Szabo; Swarajit N Ghosh; Brian L Fish; Sreedhar Bodiga; Rade Tomic; Gagan Kumar; Natalya V Morrow; John E Moulder; Elizabeth R Jacobs; Meetha Medhora
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4.  Mast cells are an essential component of human radiation proctitis and contribute to experimental colorectal damage in mice.

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5.  Cardiac Remodeling and Reversible Pulmonary Hypertension During Pneumonitis in Rats after 13-Gy Partial-Body Irradiation with Minimal Bone Marrow Sparing: Effect of Lisinopril.

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7.  Roles of sensory nerves in the regulation of radiation-induced structural and functional changes in the heart.

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8.  Mapping genetic modifiers of radiation-induced cardiotoxicity to rat chromosome 3.

Authors:  Rachel A Schlaak; Anne Frei; Aronne M Schottstaedt; Shirng-Wern Tsaih; Brian L Fish; Leanne Harmann; Qian Liu; Tracy Gasperetti; Meetha Medhora; Paula E North; Jennifer L Strande; Yunguang Sun; Hallgeir Rui; Michael J Flister; Carmen Bergom
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9.  Influence of endothelin 1 receptor inhibition on functional, structural and molecular changes in the rat heart after irradiation.

Authors:  Marjan Boerma; Junru Wang; Ashwini Kulkarni; Kerrey A Roberto; Xiaohua Qiu; Richard H Kennedy; Martin Hauer-Jensen
Journal:  Radiat Res       Date:  2008-09       Impact factor: 2.841

10.  Cardiac injury after 10 gy total body irradiation: indirect role of effects on abdominal organs.

Authors:  Marek Lenarczyk; Vy Lam; Eric Jensen; Brian L Fish; Jidong Su; Stacy Koprowski; Richard A Komorowski; Leanne Harmann; Raymond Q Migrino; X Allen Li; John W Hopewell; John E Moulder; John E Baker
Journal:  Radiat Res       Date:  2013-08-06       Impact factor: 2.841

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