Novel Application of Indocyanine Green as a Biomarker to Identify Tissue Necrosis in Mastectomy Patients
试验速览
- 阶段
- 早期 1 期
- 状态
- 已完成
- 入组人数
- 10
- 试验地点
- 2
- 主要终点
- Comparison of Necrotic tissue area determined visually by the operating surgeon vs indocyanine Green (ICG) microangiography
研究概览
简要总结
Breast reconstruction is a common procedure that can dramatically improve the quality of life and satisfaction for women who undergo mastectomy, with over 100,000 procedures performed in the U.S. in 2018. The success of this procedure, however, is limited by its complications, including mastectomy skin flap necrosis, which occurs at a rate a 10-15%. Mastectomy skin flap necrosis causes significant morbidity in patients undergoing breast reconstruction, potentially compromising results and delaying oncologic management. In addition, necrosis can lead to infection, implant loss, and need for reoperation.
Current approaches to identify mastectomy skin flap necrosis rely largely on the surgeon's assessment of skin flap color, capillary refill, temperature turgor and dermal bleeding. However, clinical assessment of necrosis is subjective and is not a reliable predictor of postoperative complications. ICG microangiography is an accepted adjunct method to aid in clinical judgment by identifying poor perfusion as a surrogate marker for tissue at risk for necrosis during reconstructive surgical procedures. However, transient alterations in blood flow seen by this method may not represent actual necrosis. Furthermore, the common practice of using vasoconstriction methods to prevent massive blood loss in plastic surgery also alters microperfusion and renders the microangiography inaccurate. There is an unmet need for reliable methods to identify mastectomy skin flap necrosis during or post breast reconstruction procedure in order to improve patient outcomes.
Recently in animal models of burn or ischemic injuries, ICG dye was shown to preferentially bind to exposed phospholipids in the membranes of necrotic cells, thus acting as a biomarker for necrotic tissue, when imaged a day after injection rather than minutes after injection, as is standard for microangiographic use of ICG. This necrosis-avid property of ICG has broad translational potential for clinical use in a variety of disease processes that result in necrosis. However, no clinical application of the necrosis-avid property of ICG has been reported yet. In this study, the investigator will test the feasibility of combining the necrosis-avid property of ICG and the SPY imaging system at University of Wisconsin hospital to obtain delayed imaging of ICG fluorescence for direct necrosis detection in breast reconstruction in mastectomy patients.
This project is an early feasibility study to establish whether ICG imaging, in a delayed fashion, can be used in mastectomy patients to aid in the detection of necrotic tissue in breast reconstruction wounds. Investigators will use the preliminary data generated from this pilot study to generate hypotheses and to power future studies.
研究设计
- 研究类型
- Interventional
- 干预模型
- Sequential
- 主要目的
- Basic Science
- 盲法
- None
入排标准
- 年龄范围
- 18 Years 至 —(Adult, Older Adult)
- 性别
- Female
- 接受健康志愿者
- 否
入选标准
- •Female, age 18 years or older
- •Subject undergoes mastectomy
- •Subject receives intraoperative ICG during their breast reconstruction procedure
- •Subject is expected to need at least 4 days of hospitalization as determined by the attending plastic surgeon on admission
- •Subject understands the study procedures and can provide informed consent to participate in the study and authorization for release of relevant protected health information to the study investigator.
排除标准
- •Subject has known contraindication to ICG injection, i.e. previous reaction to ICG (adverse event rate 1 in 42,00010)
- •Subject has Iodine allergy
- •Subject is pregnant
结局指标
主要结局
Comparison of Necrotic tissue area determined visually by the operating surgeon vs indocyanine Green (ICG) microangiography
时间窗: 24 hour post ICG injection
Compare the risk of necrosis as determined visually by the operating surgeon at the time of mastectomy and reconstruction vs using microangiographic properties of ICG.
Time to achieve the peak fluorescent signal from necrotic tissue using ICG
时间窗: up to 3 days
Sequential fluorescence images of necrotic tissue identified by ICG fluorescence will be collected over time to identify the peak signal of fluorescence and determine correlation to time from surgery.
Percentage overlap of identified areas of necrosis determined by ICG and clinical standard of care
时间窗: up to 3 days
Compare identified areas of necrosis between ICG and clinical outcome to determine the percentage overlap of necrosis.
次要结局
未报告次要终点
