GenMatch:安全的DNA兼容性测试

M. Riazi, N. K. R. Dantu, L. N. V. Gattu, F. Koushanfar
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引用次数: 7

摘要

我们介绍了GenMatch,一套基于硬件合成的新技术,用于实现高效和可扩展的隐私保护基因检测。处理和处理敏感的基因组数据需要方法来阻止可能的攻击和数据盗窃场景。GenMatch安全基因组测试方法利用Yao的乱码电路(GC)协议,并以顺序GC格式创建匹配问题的公式。我们的公式包括通过GC协议对基因组数据进行私人匹配。我们的方法减少了安全计算的内存占用,因此它可以在资源受限的设备(如嵌入式平台)中完成,使该方法具有可扩展性和时间效率。概念验证评估的应用进行匹配人类白细胞抗原(HLA)数据的器官和组织移植受体和供体之间的兼容性。这种类型的测试在祖先测试和基因配对中也有应用。受体的HLA数据与可能的供体HLA数据数据库相匹配,同时保持双方数据的私密性。在真实基因组数据上的实验结果证明了GenMatch在时序和通信复杂度方面对HLA数据库的实用性。
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GenMatch: Secure DNA compatibility testing
We introduce GenMatch, a novel set of techniques based on hardware synthesis, for achieving efficient and scalable privacy-preserving genetic testing. Processing and handling sensitive genome data require methodologies to thwart possible attacks and data theft scenarios. The GenMatch secure genome testing method utilizes Yao's Garbled Circuit (GC) protocol and creates a formulation of the matching problem in a sequential GC format. Our formulation involves private matching of genome data by the GC protocol. Our method reduces the memory footprint of the secure computation such that it can be done in a resource-constrained devices like embedded platforms, rendering the method scalable and time-efficient. Proof-of-concept evaluations are performed on the application of matching Human Leukocyte Antigen (HLA) data for organ and tissue transplant compatibility between recipient and donors. This type of testing also has applications in ancestry testing and genetic matchmaking. HLA data of the recipient is matched with a database of possible donor HLA data while keeping the data from both parties private. Experimental results on real genome data demonstrate the practicability of GenMatch in terms of timing and communication complexity for HLA database in the order of million user profiles.
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