Mondal Utpal K, Barchi Joseph J
Chemical Biology Laboratory, Center for Cancer Research, National Cancer Institute at Frederick, Frederick, MD, United States.
Front Chem. 2022 Oct 10;10:1002146. doi: 10.3389/fchem.2022.1002146. eCollection 2022.
We have previously prepared gold nanoparticles (AuNPs) bearing the Thomsen-Friedenreich antigen disaccharide (TF), a pan-carcinoma, Tumor-Associated Carbohydrate Antigen (TACA), as tools for various assays and biological applications. Conjugation to AuNPs typically involves the use of thiols due to the affinity of sulfur for the gold surface of the nanoparticle. While a use of a single thiol-containing ligand bound to the gold surface is standard practice, several studies have shown that ligands bearing multiple thiols can enhance the strength of the conjugation in a nearly linear fashion. ()-(+)-α-Lipoic acid (LA), a naturally occurring disulfide-containing organic acid that is used as a cofactor in many enzymatic reactions, has been used as a linker to conjugate various molecules to AuNPs through its branched di-thiol system to enhance nanoparticle stability. We sought to use a similar system to increase nanoparticle stability that was devoid of the chiral center in ()-(+)-α-lipoic acid. Isolipoic acid, an isomer of LA, where the exocyclic pentanoic acid chain is shifted by one carbon on the dithiolane ring to produce an achiral acid, was thought to act similarly as LA without the risk of any contaminating ()-(-) isomer. We synthesized AuNPs with ligands of both serine and threonine glycoamino acids bearing the TF linked to isolipoic acid and examined their stability under various conditions. In addition, these particles were shown to bind to Galectin-3 and inhibit the interaction of Galectin-3 with a protein displaying copies of the TF. These agents should prove useful in the design of potential antimetastatic therapeutics that would benefit from achiral linkers that are geometrically linear and achiral.
我们之前制备了带有汤姆斯en-弗里德赖希抗原二糖(TF)的金纳米颗粒(AuNP),TF是一种泛癌肿瘤相关碳水化合物抗原(TACA),作为各种检测和生物学应用的工具。由于硫对纳米颗粒金表面的亲和力,与AuNP的共轭通常涉及使用硫醇。虽然使用单个与金表面结合的含硫醇配体是标准做法,但多项研究表明,带有多个硫醇的配体可以以近乎线性的方式增强共轭强度。()-(+)-α-硫辛酸(LA)是一种天然存在的含二硫键的有机酸,在许多酶促反应中用作辅助因子,已被用作连接体,通过其分支的二硫醇系统将各种分子与AuNP共轭,以提高纳米颗粒的稳定性。我们试图使用类似的系统来提高纳米颗粒的稳定性,该系统不含()-(+)-α-硫辛酸中的手性中心。异硫辛酸是LA的一种异构体,其中环外戊酸链在二硫杂环戊烷环上移动一个碳原子以产生一种非手性酸,被认为其作用与LA相似,且没有任何污染()-(-)异构体的风险。我们合成了带有与异硫辛酸连接的TF的丝氨酸和苏氨酸糖氨基酸配体的AuNP,并在各种条件下检查了它们的稳定性。此外,这些颗粒被证明能与半乳糖凝集素-3结合,并抑制半乳糖凝集素-3与展示TF拷贝的蛋白质之间的相互作用。这些试剂在设计潜在的抗转移疗法中应该会很有用,这些疗法将受益于几何形状线性且非手性的非手性连接体。