This review evaluates quantum-resilient security mechanisms, including Quantum Key Distribution, Quantum Random Number Generation, and NIST-standardized Post-Quantum Cryptography (PQC) algorithms specified in FIPS 203, FIPS 204, and FIPS 205, and proposes a novel four-layer Quantum-Blockchain Security Architecture (QBSA) designed for secure healthcare environments.
Abstract
The rapid digitalisation of healthcare has accelerated the adoption of telemedicine, Electronic Health Records (EHRs), and the Internet of Medical Things (IoMT), transforming healthcare delivery into a highly interconnected and patient-centric ecosystem. In response to growing concerns about data security, privacy, and interoperability, blockchain technology has emerged as a promising solution for its decentralization, immutability, auditability, and secure access control. However, many existing blockchain infrastructures rely on classical cryptographic primitives, including RSA- or elliptic-curve-based public-key mechanisms and cryptographic hash functions such as SHA-256, whose relevant security properties may be affected by sufficiently powerful quantum attacks. This review investigates the convergence of blockchain and quantum technologies to address emerging security threats in e-health systems. A structured literature review was conducted in accordance with the PRISMA 2020 guidelines using the IEEE Xplore, PubMed, ACM Digital Library, Google Scholar, and Crossref databases, covering studies published between January 2018 and June 2025. Following a systematic screening and eligibility-verification process, 57 relevant studies were selected and analyzed. The review evaluates quantum-resilient security mechanisms, including Quantum Key Distribution (QKD), Quantum Random Number Generation (QRNG), and NIST-standardized Post-Quantum Cryptography (PQC) algorithms specified in FIPS 203, FIPS 204, and FIPS 205. Based on the identified research gaps in the state of the art, this study also proposes a novel four-layer Quantum-Blockchain Security Architecture (QBSA) designed for secure healthcare environments. The analysis further reveals significant challenges associated with lightweight PQC deployment for IoMT devices, interoperability standardization, quantum hardware limitations, and regulatory compliance in cross-institutional healthcare systems. The findings highlight the necessity of integrating quantum-resilient cryptographic frameworks with blockchain infrastructures to support the development of secure, scalable, and patient-centric next-generation e-health ecosystems.
A novel blockchain-based secure framework with the integration of Ethereum smart contracts, CBOR compression, AES-256 GCM encryption, and SHA-256 validation is proposed with the integration of Ethereum smart contracts, CBOR compression, AES-256 GCM encryption, and SHA-256 validation.
Vinita Hari Patil, S. Kolhe· Journal of Intelligent Decis...· 0 citations
Overall, the proposed solution enhances interoperability, auditability, and automation while ensuring data privacy and security, demonstrating its viability across various blockchain networks.
A. Kashmar, A. I. Shihab· Iraqi Journal of Science· 0 citations
Providing security, privacy, and integrity to sensitive medical data in the contemporary healthcare systems is an issue that is very pressing during the digital health age. The growing use of smart healthcare technologies, electronic health records (EHRs), and Internet of Medical Things (IoMT) devices has increased the...
S. Sreesubha, Moorthy Agoramoorthy· International Conference on...· 0 citations
ABSTRACT
The increasing digitization of healthcare has amplified the need for secure, scalable, and interoperable systems capable of managing sensitive patient information. Traditional centralized healthcare data management systems are limited by issues of data silos, vulnerability to tampering, and single points of fa...
Dhruv Gupta, Sandeep Tiwari· International Scientific Jou...· 0 citations
The accelerating digitisation of healthcare, financial services, and urban governance has intensified concerns regarding data privacy, security, and unauthorised data exploitation. Traditional centralised data management architectures exhibit inherent vulnerabilities, including single points of failure, susceptibility...
Divyang Joshi, Paresh Patel, Hiren Harsora et al.· International journal of bus...· 0 citations
This paper is a systematic review of recent research into blockchain‐based healthcare solutions which includes an examination of recent research development, technological frameworks, and current trends and presents several possible research directions toward creating patient‐centric healthcare systems.
S. Roy, J. Kumar· WIREs Data Mining and Knowle...· 0 citations
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