欧美a√-久久h-色香蕉视频-国产成人午夜-成人开心网-日日夜夜影院-91黑人精品一区二区三区-色5月婷婷-天堂网一区-欧美性做爰毛片-久久99久久精品-根深蒂固在线观看-日韩啪啪片-色小说香蕉-深夜福利免费观看-久久a毛片-成人日皮视频-欧洲成人在线观看-bt男人天堂-手机av资源-欧美性极品少妇xxxx-色窝在线-爱射影院-日韩成人av免费在线观看-欧美精品资源

技術(shù)文章您現(xiàn)在的位置:首頁 > 技術(shù)文章 > ClickChemistryTools點擊化學銅穩(wěn)定配體BTTAA選購指南

ClickChemistryTools點擊化學銅穩(wěn)定配體BTTAA選購指南

更新時間:2025-03-19   點擊次數(shù):1659次

BTTAA是一種 Cu(I) 穩(wěn)定配體。能夠長時間保持Cu(I)的催化能力,從而更好的進行ADC合成。BTTAA 的性能遠遠優(yōu)于 THPTA 或 TBTA。

結(jié)構(gòu)圖:


ClickChemistryTools點擊化學銅穩(wěn)定配體BTTAA選購指南

ClickChemistryTools點擊化學銅穩(wěn)定配體BTTAA選購指南

中文簡介:

BTTAA 是最新一代的 CuAAC 水溶性加速配體,與上一代配體(例如 THPTA 或 TBTA)相比,它提供了更大的速率增強。更重要的是,它最大限度地減少了對所探測細胞或生物體生理狀態(tài)的擾動,并通過進一步降低催化劑制劑中的銅負載,實現(xiàn)與抑制細胞細胞毒性的有效生物偶聯(lián)。


英文簡介:

BTTAA is a newest generation, water-soluble accelerating ligand for CuAAC that provides much greater rate enhancement compared to previous generation ligands (e.g. THPTA or TBTA). More importantly, it minimizes perturbations to the physiological state of the cells or organisms probed and allows for effective bioconjugation with suppressed cell cytotoxicity by further lowering copper loading in the catalyst formulation.


ClickChemistryTools點擊化學銅穩(wěn)定配體BTTAA選購指南--文獻參考:

1. Graham, A. J., et al. (2022). Extracellular Electron Transfer Enables Cellular Control of Cu(I)-Catalyzed Alkyne-Azide Cycloaddition. ACS Cent Sci., 8 (2), 246-257.

2. Tharp, J. M., et al. (2021). Genetic Encoding of Three Distinct Noncanonical Amino Acids Using Reprogrammed Initiator and Nonsense Codons. ACS Chem Biol., 16 (4), 766-774.

3. Wood, T. M., et al. (2021). Optimization of Metabolic Oligosaccharide Engineering with Ac4GalNAlk and Ac4GlcNAlk by an Engineered Pyrophosphorylase. ACS Chem. Biol.,

4. Li, B., et al. (2020). TMEM132A, a Novel Wnt Signaling Pathway Regulator Through Wntless (WLS) Interaction. Front Cell Dev Biol., 8, 599890.

5. Simon P. Wisnovsky, et al. (2020). Metabolic precision labeling enables selective probing of O-linked N-acetylgalactosamine glycosylation. PNAS, 117 (41), 25293-25301.

6. Jun Kit Ow, M., et al. (2020). Super-Resolution Fluorescence Microscopy Reveals Nanoscale Catalytic Heterogeneity on Single Copper Nanowires. ACS Appl. Nano Mater.,, 3, 4, 3163–7.

7. Jiang, H., et al. (2014). Monitoring Dynamic Glycosylation in Vivo Using Supersensitive Click Chemistry. Bioconjugate Chem.,, 25, 698-706.

8. Uttamapinant, C., et al. (2012). Fast, Cell-Compatible Click Chemistry with Copper-Chelating Azides for Biomolecular Labeling. Angew. Chem. Int. Ed,., 51, 5852-56.

9. Besanceney-Webler, C., et al. (2011). Increasing the efficacy of bioorthogonal click reactions for bioconjugation: a comparative study. Angew. Chem. Int. Ed,. 50 (35): 8051–6.





靶點科技(北京)有限公司

靶點科技(北京)有限公司

地址:中關(guān)村生命科學園北清創(chuàng)意園2-4樓2層

© 2026 版權(quán)所有:靶點科技(北京)有限公司  備案號:京ICP備18027329號-2  總訪問量:467794  站點地圖  技術(shù)支持:化工儀器網(wǎng)  管理登陸