A privacy-preserving and redactable healthcare blockchain system

Blockchain as an open and immutable ledger is being posited as the next frontier in healthcare that will help solve the industry’s interoperability challenges. However, immutability in processing personal data is no longer legal since the General Data Protection Regulation (GDPR) requires the “right...

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Main Authors: XU, Shengmin, NING, Jianting, LI, Xiaoguo, YUAN, Jiaming, HUANG, Xinyi, DENG, Robert H.
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Language:English
Published: Institutional Knowledge at Singapore Management University 2024
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Online Access:https://ink.library.smu.edu.sg/sis_research/8656
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Institution: Singapore Management University
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spelling sg-smu-ink.sis_research-96592024-02-22T03:00:04Z A privacy-preserving and redactable healthcare blockchain system XU, Shengmin NING, Jianting LI, Xiaoguo YUAN, Jiaming HUANG, Xinyi DENG, Robert H. Blockchain as an open and immutable ledger is being posited as the next frontier in healthcare that will help solve the industry’s interoperability challenges. However, immutability in processing personal data is no longer legal since the General Data Protection Regulation (GDPR) requires the “right to be forgotten” as a critical data subject right. To observe such data regulation, it is desirable to build a healthcare blockchain with data redaction in a controlled way. Moreover, electronic health records (EHRs) usually are sensitive and the conventional blockchain lacks systematic and formal security analysis of data confidentiality, especially in the multi-user setting. Furthermore, EHRs are typically helpful in medical research for predicting epidemic diseases and valuable in insurance agencies making business plans. Hence, in healthcare blockchain systems, data confidentiality and flexible key distribution have become the most challenging issues that should be urgently resolved. In this paper, we propose a privacy-preserving and redactable healthcare blockchain system (PRHBS). Our solution offers fine-grained block-level data reduction and secure data sharing with flexible key distribution mechanisms. We give the formal definition and security models of PRHBS, and propose a generic construction based on trapdoorbased chameleon-hash function, attribute-based encryption, and puncturable encryption. We present formal security analysis and give an instantiation based on our proposed generic construction. The comprehensive comparison and experimental simulation demonstrate that our implementation exhibits comparable performance, while surpassing the most relevant solutions in terms of functionality. 2024-01-01T08:00:00Z text https://ink.library.smu.edu.sg/sis_research/8656 info:doi/10.1109/TSC.2024.3356595 Research Collection School Of Computing and Information Systems eng Institutional Knowledge at Singapore Management University Blockchains chameleon hash functions Cryptography Data privacy Diseases Encryption healthcare blockchain Insurance Medical services Redactable blockchain Information Security
institution Singapore Management University
building SMU Libraries
continent Asia
country Singapore
Singapore
content_provider SMU Libraries
collection InK@SMU
language English
topic Blockchains
chameleon hash functions
Cryptography
Data privacy
Diseases
Encryption
healthcare blockchain
Insurance
Medical services
Redactable blockchain
Information Security
spellingShingle Blockchains
chameleon hash functions
Cryptography
Data privacy
Diseases
Encryption
healthcare blockchain
Insurance
Medical services
Redactable blockchain
Information Security
XU, Shengmin
NING, Jianting
LI, Xiaoguo
YUAN, Jiaming
HUANG, Xinyi
DENG, Robert H.
A privacy-preserving and redactable healthcare blockchain system
description Blockchain as an open and immutable ledger is being posited as the next frontier in healthcare that will help solve the industry’s interoperability challenges. However, immutability in processing personal data is no longer legal since the General Data Protection Regulation (GDPR) requires the “right to be forgotten” as a critical data subject right. To observe such data regulation, it is desirable to build a healthcare blockchain with data redaction in a controlled way. Moreover, electronic health records (EHRs) usually are sensitive and the conventional blockchain lacks systematic and formal security analysis of data confidentiality, especially in the multi-user setting. Furthermore, EHRs are typically helpful in medical research for predicting epidemic diseases and valuable in insurance agencies making business plans. Hence, in healthcare blockchain systems, data confidentiality and flexible key distribution have become the most challenging issues that should be urgently resolved. In this paper, we propose a privacy-preserving and redactable healthcare blockchain system (PRHBS). Our solution offers fine-grained block-level data reduction and secure data sharing with flexible key distribution mechanisms. We give the formal definition and security models of PRHBS, and propose a generic construction based on trapdoorbased chameleon-hash function, attribute-based encryption, and puncturable encryption. We present formal security analysis and give an instantiation based on our proposed generic construction. The comprehensive comparison and experimental simulation demonstrate that our implementation exhibits comparable performance, while surpassing the most relevant solutions in terms of functionality.
format text
author XU, Shengmin
NING, Jianting
LI, Xiaoguo
YUAN, Jiaming
HUANG, Xinyi
DENG, Robert H.
author_facet XU, Shengmin
NING, Jianting
LI, Xiaoguo
YUAN, Jiaming
HUANG, Xinyi
DENG, Robert H.
author_sort XU, Shengmin
title A privacy-preserving and redactable healthcare blockchain system
title_short A privacy-preserving and redactable healthcare blockchain system
title_full A privacy-preserving and redactable healthcare blockchain system
title_fullStr A privacy-preserving and redactable healthcare blockchain system
title_full_unstemmed A privacy-preserving and redactable healthcare blockchain system
title_sort privacy-preserving and redactable healthcare blockchain system
publisher Institutional Knowledge at Singapore Management University
publishDate 2024
url https://ink.library.smu.edu.sg/sis_research/8656
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