Evaluation of Decentralized Verifiable Credentials to Authenticate Authorized Trading Partners and Verify Drug Provenance.

Blockchain in healthcare today Pub Date : 2021-03-11 eCollection Date: 2021-01-01 DOI:10.30953/bhty.v4.168
Ghada L Ashkar, Kalpan S Patel, Josenor de Jesus, Nikkhil Vinnakota, Natalie Helms, Will Jack, William Chien, Ben Taylor
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Abstract

Summary: In 2013, the Drug Supply Chain Security Act (DSCSA) was signed into law to address the growing threat of counterfeit drugs and to ensure prescription drugs remain safe and effective for patients. As part of this law, US pharmaceutical supply chain stakeholders are required to confirm the authorized status of trading partners for transactions and information disclosures, even when there is no prior business relationship. While larger Authorized Trading Partners (ATPs) have connectivity solutions in place, newer and smaller ATPs have not traditionally participated, including tens of thousands of dispensers. To unlock the full potential of the interoperable system mandated by the DSCSA, the authors tested eXtended ATP (XATP), a blockchain-backed framework for ATP authentication and enhanced verification in a real-world pharmacy with genuine drug packages. The objective of this research study was to prove that electronic authentication and enhanced verification can be achieved between ATPs using a mobile-based solution. Moreover, we tested accurate reading of drug and associated electronic med guides, flagging of expired and recalled drugs, and correct generation of documentation to support saleable returns.

Methods: This study involved two dispensers and three participating manufacturers. Dispensers were onboarded to a mobile application and used supporting documentation to authenticate their identities, and then scanned 2D drug barcodes to submit drug verification requests to manufacturers (including 11 additional, randomly selected manufacturers). Genuine and synthetic drug package barcodes were used to test workflows against genuine and synthetic manufacturer serialization data records. Manufacturers authenticated the identity of requesting dispensers with verifiable credentials and responded to verification requests.

Results: Enhanced drug verification was achieved, with 100% of requests successfully delivered to participating manufacturers and 88% of requests being delivered to other manufacturers (based on the pharmacist selection of random packages from the pharmacy). Drug verification matching against synthetic serialization data records resulted in 86% accuracy, with the 14% error rate attributed to human factors. All barcodes were successfully scanned and provided package-accurate data, and 97% of randomly selected packages successfully generated drug package inserts. All synthetic recalls and expired drugs were successfully flagged. Four of the manufacturers contacted were among the top 15 pharmaceutical manufacturers globally; all four responded.

Conclusions: The XATP framework provides a secure, reliable, and seamless remote method to conduct enhanced verification as required by law. Interoperability between manufacturers and dispensers with no prior business relationship can be achieved on 'day zero' using mobile devices that enable digital authentication and rapid barcode scanning. As users retain control of their own private keys, the framework also mitigates the single-point-of-attack risks associated with centrally managed systems.

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评估去中心化可验证凭证,以验证授权贸易伙伴并核实药物出处。
摘要:2013 年,《药品供应链安全法》(DSCSA)签署成为法律,以应对日益严重的假药威胁,确保处方药对患者安全有效。作为该法的一部分,美国药品供应链利益相关方必须确认交易伙伴的交易和信息披露授权状态,即使之前并无业务关系。虽然较大的授权交易伙伴 (ATP) 已制定了连接解决方案,但较新和较小的 ATP(包括数以万计的配药商)传统上并未参与其中。为了释放 DSCSA 规定的可互操作系统的全部潜力,作者测试了 eXtended ATP (XATP),这是一个由区块链支持的 ATP 身份验证框架,可在真实世界的药房中使用真药包装进行强化验证。这项研究的目的是证明使用基于移动的解决方案可以在 ATP 之间实现电子认证和增强验证。此外,我们还测试了药品和相关电子医疗指南的准确读取、过期和召回药品的标记,以及支持可销售退货的文件的正确生成:本研究涉及两家配药商和三家参与生产商。配药员登录移动应用程序,使用证明文件验证身份,然后扫描二维药品条形码,向制造商(包括另外 11 家随机选择的制造商)提交药品验证请求。真实和合成的药品包装条形码被用来对照真实和合成的制造商序列化数据记录测试工作流程。制造商通过可验证的凭证对请求配药者的身份进行验证,并对验证请求做出回应:实现了强化药品验证,100% 的请求成功交付给了参与的制造商,88% 的请求交付给了其他制造商(基于药剂师从药房随机选择的包装)。药物验证与合成序列化数据记录的匹配准确率为 86%,14% 的错误率归因于人为因素。成功扫描了所有条形码并提供了准确的包装数据,97% 的随机抽取包装成功生成了药品包装插页。所有合成召回和过期药品都被成功标记。所联系的制造商中有四家是全球排名前 15 位的制药商;这四家制造商都做出了回应:XATP 框架提供了一种安全、可靠和无缝的远程方法,可按照法律要求进行强化验证。使用可进行数字验证和快速条形码扫描的移动设备,可在 "零日 "实现制造商和配药师之间的互操作性,而无需事先建立业务关系。由于用户保留了对自己私钥的控制权,该框架还能降低与集中管理系统相关的单点攻击风险。
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