Benedikt W Grau, Arpit Dheeraj, Irimpan I Mathews, Dhanir Tailor, Sanjay V Malhotra
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引用次数: 0
摘要
n -桥头堡杂环结构是众多天然产物中丰富的基序。这种结构特征引起了人们的高度关注,因为它存在于许多不同的生物活性分子中,其中许多是公认的药物。在n -桥头堡体系中引入一个砜基团,产生了一个含有n -桥头堡磺酰胺的新核心结构。虽然线性磺胺可以在天然产品中找到,但迄今为止只知道人工环磺胺。相关环磺酰胺化合物的应用包括基质金属蛋白酶抑制剂、潜在的HIV和癌症治疗以及抗炎化合物。为了探索n -桥头堡磺胺支架的潜在生物活性,我们开发了一种合成n -桥头堡磺胺支架的途径,并探索了其对不同癌细胞系的生物活性。
Designing Cyclic Nitrogen-Bridged Sulfonamides with Anti-Cancer Activity.
The N-bridgehead heterocyclic structure is an abundant motif in a multitude of natural products. This structural feature is of high interest because it is present in many different bioactive molecules, many of which are well-established pharmaceuticals. The introduction of a sulfone group into the N-bridgehead system yields a new core structure containing a N-bridgehead sulfonamide. While linear sulfonamides can be found in natural products, only artificial cyclic sulfonamides are known to date. Applications of related cyclic sulfonamide compounds include matrix metalloproteinase inhibitors, potential HIV and cancer therapeutics, and anti-inflammatory compounds. To explore the potential bioactivity of the N-bridgehead sulfonamide scaffold, a synthetic route toward these scaffolds is developed and their bioactivity is explored against different cancer cell lines.
期刊介绍:
Quality research. Outstanding publications. With an impact factor of 3.124 (2019), ChemMedChem is a top journal for research at the interface of chemistry, biology and medicine. It is published on behalf of Chemistry Europe, an association of 16 European chemical societies.
ChemMedChem publishes primary as well as critical secondary and tertiary information from authors across and for the world. Its mission is to integrate the wide and flourishing field of medicinal and pharmaceutical sciences, ranging from drug design and discovery to drug development and delivery, from molecular modeling to combinatorial chemistry, from target validation to lead generation and ADMET studies. ChemMedChem typically covers topics on small molecules, therapeutic macromolecules, peptides, peptidomimetics, and aptamers, protein-drug conjugates, nucleic acid therapies, and beginning 2017, nanomedicine, particularly 1) targeted nanodelivery, 2) theranostic nanoparticles, and 3) nanodrugs.
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