Department of Chemistry & Biochemistry, The Ohio State University, 100 West 18th Avenue, 43210, Columbus, Ohio, USA.
Chemistry. 2019 Jan 24;25(5):1242-1248. doi: 10.1002/chem.201805246. Epub 2018 Dec 20.
Inspired by polyvalency and its prevalence in nature, we developed an efficient synthetic route for accessing a large variety of multivalent and dual-cavity baskets from inexpensive and abundant starting materials. First, the cycloaddition of vinyl acetate to anthracene was optimized to, upon hydrolysis, give dibenzobarrelene derivative 6, which after five functional group transformations and then cyclotrimerization gave heptiptycene dodecaester 4 in an overall 17 % yield. Following that, compound 4 was converted into D symmetric 1, composed of two fused cavitands each holding three terminal alkynes at the rim for conjugation to functional molecules using the highly efficient CuAAC reaction. To survey the reactivity of hexavalent 1, we "clicked" 2-acetamido-2-deoxy-β-d-glucopyranosyl azide 3,4,6-triacetate (carbohydrate), methoxypolyethylene glycol azide (PEG, M =2000; polymer) and benzyl azide (aromatic) to obtain hexavalent conjugates 12-14 in 50-79 % yields. In summary, dual-cavity 1 is an accessible, structurally-unique and hexavalent host that can be "clicked" to a variety of functional molecules for (a) combinatorial lead identification of drugs, (b) preparation of hierarchical soft materials and (c) design of selective chemosensors, scavengers, or supramolecular catalysts.
受多价性及其在自然界中的普遍性的启发,我们开发了一种从廉价且丰富的起始原料高效合成各种多价和双腔篮状化合物的方法。首先,优化了醋酸乙烯酯与蒽的环加成反应,得到二苯并[bc,ef]薁衍生物 6,经过五个官能团转化,然后环三聚化,得到总体产率为 17%的七并环十二烷十二酯 4。之后,将化合物 4 转化为 D 对称的 1,由两个融合的空腔组成,每个空腔在边缘处都有三个末端炔基,用于使用高效的 CuAAC 反应与功能分子进行共轭。为了研究六价化合物 1 的反应性,我们将 2-乙酰氨基-2-脱氧-β-d-吡喃葡萄糖基叠氮化物 3、4、6-三乙酸酯(碳水化合物)、甲氧基聚乙二醇叠氮化物(PEG,M=2000;聚合物)和苯甲酰叠氮化物(芳香族)点击到 1 中,以 50-79%的收率得到六价共轭物 12-14。总之,双腔 1 是一种易于获得的、结构独特的六价主体,可与各种功能分子进行“点击”反应,用于(a)药物的组合先导物鉴定,(b)分级软材料的制备和(c)选择性化学传感器、清除剂或超分子催化剂的设计。