Department of Basic and Translational Sciences, School of Dental Medicine, University of Pennsylvania, Philadelphia, PA 19104, USA.
Department of Basic and Translational Sciences, School of Dental Medicine, University of Pennsylvania, Philadelphia, PA 19104, USA.
Mol Ther. 2022 May 4;30(5):1966-1978. doi: 10.1016/j.ymthe.2021.11.008. Epub 2021 Nov 11.
To advance a novel concept of debulking virus in the oral cavity, the primary site of viral replication, virus-trapping proteins CTB-ACE2 were expressed in chloroplasts and clinical-grade plant material was developed to meet FDA requirements. Chewing gum (2 g) containing plant cells expressed CTB-ACE2 up to 17.2 mg ACE2/g dry weight (11.7% leaf protein), have physical characteristics and taste/flavor like conventional gums, and no protein was lost during gum compression. CTB-ACE2 gum efficiently (>95%) inhibited entry of lentivirus spike or VSV-spike pseudovirus into Vero/CHO cells when quantified by luciferase or red fluorescence. Incubation of CTB-ACE2 microparticles reduced SARS-CoV-2 virus count in COVID-19 swab/saliva samples by >95% when evaluated by microbubbles (femtomolar concentration) or qPCR, demonstrating both virus trapping and blocking of cellular entry. COVID-19 saliva samples showed low or undetectable ACE2 activity when compared with healthy individuals (2,582 versus 50,126 ΔRFU; 27 versus 225 enzyme units), confirming greater susceptibility of infected patients for viral entry. CTB-ACE2 activity was completely inhibited by pre-incubation with SARS-CoV-2 receptor-binding domain, offering an explanation for reduced saliva ACE2 activity among COVID-19 patients. Chewing gum with virus-trapping proteins offers a general affordable strategy to protect patients from most oral virus re-infections through debulking or minimizing transmission to others.
为了推进在口腔这一病毒复制的主要部位清除病毒的新概念,病毒捕获蛋白 CTB-ACE2 被表达在叶绿体中,并开发出符合 FDA 要求的临床级植物材料。含有表达 CTB-ACE2 的植物细胞的口香糖(2 克)达到 17.2mg ACE2/g 干重(11.7%的叶蛋白),具有与传统口香糖相似的物理特性和口感/味道,且在口香糖压缩过程中没有蛋白丢失。CTB-ACE2 口香糖在通过荧光素酶或红色荧光定量时,有效地(>95%)抑制了慢病毒刺突或 VSV-刺突假病毒进入 Vero/CHO 细胞的进入。当用微泡(皮摩尔浓度)或 qPCR 评估时,CTB-ACE2 微粒的孵育使 COVID-19 拭子/唾液样本中的 SARS-CoV-2 病毒数量减少了>95%,证明了病毒捕获和阻止细胞进入。与健康个体相比,COVID-19 唾液样本中的 ACE2 活性较低或无法检测到(2,582 与 50,126 ΔRFU;27 与 225 酶单位),证实了感染患者对病毒进入的更高敏感性。CTB-ACE2 活性通过与 SARS-CoV-2 受体结合域的预孵育而完全被抑制,这解释了 COVID-19 患者唾液中 ACE2 活性降低的原因。含有病毒捕获蛋白的口香糖提供了一种普遍负担得起的策略,通过清除或最大限度地减少病毒传播到他人,保护患者免受大多数口腔病毒再感染。