九九香蕉视频,欧美 亚洲 日韩 国产,18禁日本黄无遮挡网站,91www在线观看,亚洲中文字幕97久久精品少妇,国产男人天堂,欧美中文字幕,91精品国产一区
技術文章您現在的位置:首頁 > 技術文章 > Broadpharm基礎篇什么是點擊化學?What is Click Chemistry?

Broadpharm基礎篇什么是點擊化學?What is Click Chemistry?

更新時間:2023-12-06   點擊次數:1345次

Click Chemistry is a chemical reaction between pairs of reagents (named click chemistry reagents) to exclusively react with each other under mild conditions and is effectively inert to naturally occurring functional groups such as amine groups. The term "Click Chemistry" was first coined by Sharpless in 2001 in an effort to design a method to easily synthesize molecules under mild conditions and the product can be easily isolated.


Click Chemistry reactions can be categorized into three generations:

(1) Cu(I)-catalyzed Azide-Alkyne Click Chemistry (CuAAC reactions, Figure 1):

Cu catalyzed azide-alkyne click chemistry reactions diagram


The first generation of Click Chemistry involved the reaction of azide with alkyne catalyzed by Cu(I). The copper catalyst allows for this reaction to be carried out efficiently under mild conditions in water whereas the reaction would require high temperature and high pressure without the copper catalyst. Copper catalyzed Click Chemistry has been found to have the second fastest rate constant of 10-100 M-1s-1.

Due to the toxic nature of copper to living structures and biosystems, copper catalyzed Click Chemistry is not a viable method of carrying out reactions in living systems which has led to the development of the following two generations of Click Chemistry.

(2) Strain-promoted Azide-Alkyne Click Chemistry (SPAAC reactions, Figure 2):

DBCO reagent or BCN reagent can be used to perform Click Chemistry with azide molecules without the need of heavy-metal catalysis.


Strain-promoted Azide-Alkyne Click Chemistry reactions diagram

Figure 2: Strain-promoted Azide-DBCO Click Chemistry


The bond strain created by the bond angle of the cyclooctyne (DBCO or BCN) requires less energy for the cyclooctyne to form the (3+2) cycloaddition which releases enthalpic energy caused by the ring strain of the cyclooctyne. This generation does not require copper as a catalyst and it can be used in cell surface and in vivo labeling. The rate constant is 10-2-1 M-1s-1.


(3) Ligation between tetrazine and alkene (trans-Cyclooctene)

Ligation between tetrazine and alkene (trans-Cyclooctene) diagram


The third generation of Click Chemistry is the ligation between tetrazine with trans-Cyclooctene (TCO). The mechanism for this ligation utilizes ring strain from the trans-Cyclooctene and an inverse Diels-Alder reaction between the electron rich trans-Cyclooctene and the electron poor tetrazine. This ligation has been found to be the fastest generation of Click Chemistry thus far with a rate constant of 1-106 M-1s-1. The reaction can also be carried out in vivo in aqueous solution.

Applications of Click Chemistry

Click Chemistry has been widely used in drug discovery, bioconjugation, labeling, and material sciences in the pharmaceutical and biotech industry due to its mild conditions and high selectivity.

Click Chemistry in Drug Discovery

Click Chemistry is utilized in the formation of ADC linkers in antibody drug conjugates. For example, Trodelvy (Sacituzumab Govitecan), also known as IMMU-132 (Figure 4), is an immune target therapy medicine for triple-negative breast cancer which contains sacituzumab and SN-38 bound with a linker. Click Chemistry is used in the formation of the linker to form a triazole that links SMCC to a PEG8 moiety.


structure of trodelvy

Figure 4: Structure of Trodelvy.


Click Chemistry in Joint Cartilage Therapy

Click Chemistry has also been used in cell-based therapy to treat damage in joint cartilage, relieve pain, and improve function. Autologous chondrocyte transplantation targets apoptotic chondrocytes in cartilage which can be identified by a six amino acid peptide, ApoPep-1, and by binding injected healthy chondrocytes from unaffected cartilage. ApoPep-1 carries a trans-Cyclooctene bound by a PEG Linker to apoptotic chondrocytes which can then bind healthy chondrocytes via Click Chemistry to tetrazine to encourage cartilage regeneration (Figure 5).


Diels-Alder diagram



Figure 5: Inverse Diels-Alder Click Chemistry reaction between TCO and tetrazene for joint cartilage therapy


Click Chemistry Tools

As a leading click chemisty reagent supplier worldwide, BroadPharm provides over 500 high purity Click Chemistry Reagents (tools) and Kits with an array of functional groups such as: Azide, Alkyne, DBCO, TCO, Tetrazine, BCN to empower our clients' advanced research and drug development.



靶點科技攜手Broadpharm,最快一周,為您提供點擊化學試劑。授權代理,正品保證,質量無憂,貨期超快,助力您的研究應用。

靶點科技(北京)有限公司

靶點科技(北京)有限公司

地址:中關村生命科學園北清創意園2-4樓2層

© 2025 版權所有:靶點科技(北京)有限公司  備案號:京ICP備18027329號-2  總訪問量:373767  站點地圖  技術支持:化工儀器網  管理登陸

主站蜘蛛池模板: 精品撒尿视频一区二区三区| 伊人久久久久久久久久| 国产黄色爱视频| 国产91小视频在线观看| 国产免费福利网站| 日韩av资源在线| 欧美激情二区三区| 国产亚洲精品无码专| 麻豆精品久久久久久久99蜜桃| 99视频在线免费看| 欧美亚洲第一页| 最新亚洲人成网站在线观看| 国产一级精品毛片基地| 91精品免费高清在线| 久久五月天国产自| 国产黄色免费看| 久久婷婷综合色一区二区| 免费高清a毛片| 久久精品亚洲热综合一区二区| 国产免费黄| 亚洲最黄视频| 免费在线一区| 成人欧美日韩| 亚洲精品第一页不卡| 亚洲第一页在线观看| 国产精品思思热在线| 国产福利大秀91| 手机在线免费不卡一区二| 久久久久人妻一区精品色奶水 | 国产最爽的乱婬视频国语对白| 午夜视频在线观看区二区| 日韩欧美国产精品| 国产午夜精品鲁丝片| 免费在线色| 国产成人a毛片在线| 日本高清有码人妻| 亚洲天堂在线视频| 精品视频福利| 久久人搡人人玩人妻精品| 亚洲无线国产观看| 免费一级毛片在线播放傲雪网| 一级毛片免费不卡在线 | 国产高清无码麻豆精品| 国产99在线观看| 国产午夜无码专区喷水| 美女一级毛片无遮挡内谢| 久草中文网| 71pao成人国产永久免费视频| 波多野结衣第一页| 日韩专区欧美| 美女扒开下面流白浆在线试听| 欧洲日本亚洲中文字幕| 人妻精品全国免费视频| 国产激情国语对白普通话| 久久亚洲黄色视频| 亚洲熟女偷拍| 美女免费精品高清毛片在线视| 亚洲天堂视频在线观看免费| 中文字幕日韩视频欧美一区| 重口调教一区二区视频| 99re这里只有国产中文精品国产精品 | 午夜三级在线| 亚洲精品第一在线观看视频| 91黄色在线观看| 最新国产成人剧情在线播放| 国产菊爆视频在线观看| 国产不卡国语在线| 97se亚洲综合在线| 国产成人亚洲无码淙合青草| 亚洲天堂区| 亚洲成人精品久久| 国产精品久久久久久影院| 亚洲久悠悠色悠在线播放| 青青久久91| 91精品福利自产拍在线观看| 亚洲欧美一级一级a| 亚洲日韩久久综合中文字幕| 亚洲成肉网| 精品久久久久无码| 黄色福利在线| 亚洲大尺码专区影院| 亚洲精品视频免费|