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J Plast Reconstr Aesthet Surg ; 69(2): 234-40, 2016 Feb.
Article in English | MEDLINE | ID: mdl-26631290

ABSTRACT

BACKGROUND: Although expander-based breast reconstruction is the most commonly used method of reconstruction worldwide, it continues to be plagued with complication rates as high as 60% when radiotherapy is implemented. We hypothesized that quantitative measures of radiotherapy-induced vascular injury can be mitigated by utilizing amifostine in a murine model of expander-based breast reconstruction. METHODS: 30 rats were divided into three groups: expander placement (Control), expander placement followed by radiotherapy (XRT), and expander placement followed by radiotherapy with amifostine (AMF/XRT). All groups underwent placement of a sub-latissimus tissue expander. After a 45 day recovery period, all groups underwent vascular perfusion and micro-CT analysis. RESULTS: Micro-CT analysis was used to calculate vessel volume fraction (VVF), vessel number (VN), and vessel separation (VSp). A significant increase in VN was seen in the XRT group as compared to the Control (p = 0.021) and the AMF/XRT (p = 0.027). There was no difference between Control and AMF/XRT (p = 0.862). VVF was significantly higher in XRT than either Control (p = 0.043) and AMF/XRT (p = 0.040), however no difference was seen between Control and AMF/XRT (p = 0.980). VSp of XRT was smaller when compared to both Control and AMF/XRT specimens (p = 0.05 and p = 0.048, respectively), and no difference was seen between Control and AMF/XRT (p = 0.339). CONCLUSIONS: Amifostine administered prior to radiotherapy preserved vascular metrics similar to those of non-radiated specimens. Elevated vascularity demonstrated within the XRT group was not seen in either the Control or AMF/XRT groups. These results indicate that amifostine protects soft tissue in our model from a radiotherapy-induced pathologic vascular response.


Subject(s)
Amifostine/administration & dosage , Breast Neoplasms/radiotherapy , Mammaplasty/methods , Mammary Arteries/pathology , Neoplasms, Experimental , Radiation Injuries, Experimental/prevention & control , Tissue Expansion Devices , Angiography , Animals , Breast Neoplasms/blood supply , Breast Neoplasms/surgery , Disease Models, Animal , Dose-Response Relationship, Drug , Imaging, Three-Dimensional , Male , Mammary Arteries/drug effects , Mammary Arteries/radiation effects , Radiation Injuries, Experimental/diagnosis , Radiation-Protective Agents/administration & dosage , Rats , Rats, Sprague-Dawley
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