Abstract
AbstractBreast cancer rates are rising in low- and middle-income countries (LMICs), yet there is a lack of accessible and cost-effective treatment. As a result, the cancer burden and death rates are highest in LMICs. In an effort to meet this need, our work presents the design and feasibility of a low-cost cryoablation system using widely-available carbon dioxide as the only consumable. This system uses an 8-gauge outer-diameter needle and Joule-Thomson expansion to percutaneously necrose tissue with cryoablation. Bench top experiments characterized temperature dynamics in ultrasound gel demonstrated that isotherms greater than 2 cm were formed. Further, this system was applied to mammary tumors in anin vivorat model and necrosis was verified by histopathology. Finally, freezing capacity under a large heat load was assessed with anin vivoporcine study, where volumes of necrosis greater than 1.5 cm in diameter confirmed by histopathology were induced in a highly perfused liver after two 7-minute freeze cycles. These results demonstrate the feasibility of a carbon-dioxide based cryoablation system for improving solid tumor treatment options in resource-constrained environments.
Publisher
Cold Spring Harbor Laboratory
Reference29 articles.
1. Ferlay J , Soerjomataram I , Dikshit R , Eser S , Mathers C , Rebelo M , et al. Cancer incidence and mortality worldwide: Sources, methods and major patterns in GLOBOCAN 2012. Int J Cancer. 2014 Sep;136(5).
2. The descriptive epidemiology of female breast cancer: An international comparison of screening, incidence, survival and mortality;Cancer Epidemiol,2012
3. Cancer survival in Africa, Asia, and Central America: a population-based study
4. Rural and Urban South African Women's Awareness of Cancers of the Breast and Cervix
5. Breast Cancer in Low and Middle Income Countries (LMICs): A Shifting Tide in Global Health;Breast J,2014