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酶前药疗法联合上转换纳米颗粒偶联光交联型抗 EGFR Affibodies

Enzyme Prodrug Therapy with Photo-Cross-Linkable Anti-EGFR Affibodies Conjugated to Upconverting Nanoparticles.

出版信息

ACS Nano. 2022 Oct 25;16(10):15873-15883. doi: 10.1021/acsnano.2c02558. Epub 2022 Sep 21.

DOI:10.1021/acsnano.2c02558
PMID:36129781
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10197967/
Abstract

In this work, we demonstrate that a photo-cross-linkable conjugate of upconverting nanoparticles and cytosine deaminase can catalyze prodrug conversion specifically at tumor sites . Non-covalent association of proteins and peptides with cellular surfaces leads to receptor-mediated endocytosis and catabolic degradation. Recently, we showed that covalent attachment of proteins such as affibodies to cell receptors yields extended expression on cell surfaces with preservation of protein function. To adapt this technology for applications, conjugates were prepared from upconverting nanoparticles and fusion proteins of affibody and cytosine deaminase enzyme (UC-ACD). The affibody allows covalent photo-cross-linking to epidermal growth factor receptors (EGFRs) overexpressed on Caco-2 human colorectal cancer cells under near-infrared (NIR) light. Once bound, the cytosine deaminase portion of the fusion protein converts the prodrug 5-fluorocytosine (5-FC) to the anticancer drug 5-fluorouracil (5-FU). NIR covalent photoconjugation of UC-ACD to Caco-2 cells showed 4-fold higher retention than observed with cells that were not irradiated . Next, athymic mice expressing Caco-2 tumors showed 5-fold greater UC-ACD accumulation in the tumors than either conjugates without the CD enzyme or UC-ACDs in the absence of NIR excitation. With oral administration of 5-FC prodrug, tumors with photoconjugated UC-ACD yielded 2-fold slower growth than control groups, and median mouse survival increased from 28 days to 35 days. These experiments demonstrate that enzyme-decorated nanoparticles can remain viable after a single covalent photoconjugation , which can in turn localize prodrug conversion to tumor sites for multiple weeks.

摘要

在这项工作中,我们证明上转化纳米粒子和胞嘧啶脱氨酶的光交联共轭物可以在肿瘤部位特异性催化前药转化。蛋白质和肽与细胞表面的非共价结合导致受体介导的内吞作用和分解代谢降解。最近,我们表明,将蛋白质(如亲和体)共价连接到细胞受体上,可以延长其在细胞表面的表达,并保持蛋白质功能。为了将这项技术应用于实际应用,我们从上转化纳米粒子和亲和体与胞嘧啶脱氨酶酶(UC-ACD)的融合蛋白制备了缀合物。亲和体允许在近红外(NIR)光下与在 Caco-2 人结肠直肠癌细胞上过表达的表皮生长因子受体(EGFR)进行共价光交联。一旦结合,融合蛋白的胞嘧啶脱氨酶部分将前药 5-氟胞嘧啶(5-FC)转化为抗癌药物 5-氟尿嘧啶(5-FU)。UC-ACD 与 Caco-2 细胞的 NIR 共价光偶联显示出比未照射的细胞高 4 倍的保留率。接下来,表达 Caco-2 肿瘤的无胸腺小鼠在肿瘤中的 UC-ACD 积累量是没有 CD 酶的缀合物或没有 NIR 激发的 UC-ACDs 的 5 倍。用 5-FC 前药口服给药后,与对照组相比,具有光交联 UC-ACD 的肿瘤生长速度减慢了 2 倍,中位小鼠存活时间从 28 天延长至 35 天。这些实验表明,酶修饰的纳米粒子可以在单次共价光交联后保持存活,这反过来又可以将前药转化定位到肿瘤部位长达数周。