WuXi AppTec, Am Klopferspitz 19a, 82152 Martinsried, Germany.
WuXi AppTec, Am Klopferspitz 19a, 82152 Martinsried, Germany.
Bioorg Med Chem Lett. 2021 May 1;39:127851. doi: 10.1016/j.bmcl.2021.127851. Epub 2021 Feb 23.
The use of DNA-encoded libraries (DELs) has increased greatly over the last decade, and today a majority of pharmaceutical companies employ the technology. The technology may be applied to most soluble and purified targets. However, standard DEL technology has limitations; some targets are challenging to purify, and it is not possible to directly screen for cellular or biochemical activity. Numerous creative methods have been reported to overcome these limitations and expand DEL target scope. Reported proof-of-concept experiments include DEL selections of cell surfaces, and inside of living cells. Additional alternatives include the construction and biochemical screening of one-bead-one-compound (OBOC) DELs using picoliter aqueous droplets or microfabricated wells as containers. In these cases, the small-molecule moiety of the library member is liberated from its DNA barcode, and able to interact freely with the desired target. Lastly, patent literature suggests the ability to conduct cellular functional screens using OBOC DELs.
在过去的十年中,DNA 编码文库 (DEL) 的使用大大增加,今天大多数制药公司都采用了这项技术。该技术可应用于大多数可溶性和纯化的靶标。然而,标准的 DEL 技术存在局限性;有些靶标难以纯化,并且不可能直接筛选细胞或生化活性。已经报道了许多有创意的方法来克服这些限制并扩大 DEL 靶标范围。已报道的概念验证实验包括对细胞表面和活细胞内部进行 DEL 选择。其他替代方法包括使用皮升级水液滴或微加工井作为容器构建和生化筛选一珠一化合物 (OBOC) DEL。在这些情况下,文库成员的小分子部分从其 DNA 条码中释放出来,并能够与所需的靶标自由相互作用。最后,专利文献表明,使用 OBOC DEL 进行细胞功能筛选的能力。