亞洲知識產權資訊網為知識產權業界提供一個一站式網上交易平台,協助業界發掘知識產權貿易商機,並與環球知識產權業界建立聯繫。無論你是知識產權擁有者正在出售您的知識產權,或是製造商需要購買技術以提高操作效能,又或是知識產權配套服務供應商,你將會從本網站發掘到有用的知識產權貿易資訊。

Alkyne-Activated Fluorogenic Azide Probes

技術優勢
No need to wash away unreacted probe.Can help develop probes for in vivo studies.No need of using cytotoxic copper catalyst.
技術應用
Detection of biomolecules.Detection of alkynes in vitro.Detection of binding interactions via proximity-accelerated click reactions.Ideal for imaging studies.
詳細技術說明
None
*Abstract

Significant progress has been made in the discovery of fluorogenic probes activated by various bioorthogonal chemistries, including the Staudinger ligation as well as azide-alkyne, tetrazine-alkene, tetrazine-alkyne, and photoactivated tetrazole-alkene cycloadditions. However, the dyes employed have emission maxima below 600 nm. The identification of activatable near infrared (NIR) fluorogenic probes with emission maxima greater than 600 nm has proven much more challenging. There is a clear need in the art for methods of labeling biomolecules in vitro or in vivo.

Scientists at UC Berkeley have developed NIR fluorogenic azide probes and the methods for labeling a target biomolecule using these compounds based on Si-rhodamine scaffold that undergo a fluorescence enhancement of up to 48-fold upon reaction with terminal or strained alkynes. These xanthene fluorogenic azide probes consist of xanthene fluorophores containing functionalized pendant aryl rings. This azide switch quenches fluorescence via photo induced electronic transfer. As the probes leverage the inherent emission properties of the xanthane fluorophore, these fluorogenic azide probes fluoresce from the green through the NIR at commonly used excitation and emission wavelengths. They used the probes for mammalian cell surface imaging and, in conjunction with a new class of cyclooctyne D-amino acids, for visualization of bacterial peptidoglycan without the need to wash away unreacted probe.

*IP Issue Date
Aug 9, 2016
*Principal Investigation

Name: Carolyn Bertozzi

Department:


Name: Peyton Shieh

Department:

申請號碼
9410958
其他

Related Materials



Additional Technologies by these Inventors


Tech ID/UC Case

24000/2014-147-0


Related Cases

2014-147-0

國家/地區
美國

欲了解更多信息,請點擊 這裡
移動設備