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将生物聚合物设计与物理不可克隆功能相结合,用于农业防伪和产品可追溯性。

Integrating biopolymer design with physical unclonable functions for anticounterfeiting and product traceability in agriculture.

机构信息

Department of Civil and Environmental Engineering, Massachusetts Institute of Technology, Cambridge, MA 02139, USA.

Department of Electrical Engineering and Computer Science, Massachusetts Institute of Technology, Cambridge, MA 02139, USA.

出版信息

Sci Adv. 2023 Mar 22;9(12):eadf1978. doi: 10.1126/sciadv.adf1978.

Abstract

Smallholder farmers and manufacturers in the Agri-Food sector face substantial challenges because of increasing circulation of counterfeit products (e.g., seeds), for which current countermeasures are implemented mainly at the secondary packaging level, and are generally vulnerable because of limited security guarantees. Here, by integrating biopolymer design with physical unclonable functions (PUFs), we propose a cryptographic protocol for seed authentication using biodegradable and miniaturized PUF tags made of silk microparticles. By simply drop casting a mixture of variant silk microparticles on a seed surface, tamper-evident PUF tags can be seamlessly fabricated on a variety of seeds, where the unclonability comes from the stochastic assembly of spectrally and visually distinct silk microparticles in the tag. Unique, reproducible, and unpredictable PUF codes are generated from both Raman mapping and microscopy imaging of the silk tags. Together, the proposed technology offers a highly secure solution for anticounterfeiting and product traceability in agriculture.

摘要

小农和农业食品部门的制造商面临着巨大的挑战,因为假冒产品(例如,种子)的流通越来越多,目前的对策主要在二级包装层面实施,而且由于安全保障有限,通常很容易受到攻击。在这里,我们通过将生物聚合物设计与物理不可克隆功能(PUF)相结合,提出了一种使用由丝微粒子制成的可生物降解和微型化 PUF 标签进行种子认证的加密协议。通过简单地在种子表面滴铸变体丝微粒子的混合物,可以在各种种子上无缝制造防篡改 PUF 标签,其中不可克隆性来自标签中光谱和视觉上明显不同的丝微粒子的随机组装。独特、可重复且不可预测的 PUF 代码可通过丝质标签的拉曼映射和显微镜成像生成。总之,该技术为农业中的防伪和产品可追溯性提供了一种高度安全的解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5425/10032598/3a161343023f/keyimage.jpg

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