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Product key features

  • Highly Water-Soluble: Enhanced hydrophilicity enables efficient labeling in aqueous environments with minimal organic solvents.
  • Optimized Quenching: Designed for oligonucleotide and peptide labeling, providing high-efficiency quenching for fluorescence-based applications.
  • Broad Fluorophore Compatibility: Effectively quenches fluorophores such as TF7, Alexa Fluor 750, and Cy7, supporting diverse fluorescence-based assays.
  • Ideal for Stringent Aqueous Conditions: Enhanced hydrophilicity ensures compatibility with strictly aqueous biological and biochemical applications.

Product description

The non-fluorescent Tide Quencher™ 7HWS Acid (TQ7HWS acid) is a next-generation, highly water-soluble quencher optimized for fluorescence-based applications, particularly in oligonucleotide and peptide labeling. As an advanced derivative of TQ7WS, it features significantly enhanced water solubility, enabling efficient labeling in aqueous environments with minimal organic solvent requirements. Like TQ7WS, TQ7HWS is designed to be a superior quencher for fluorophores such as Tide Fluor™ 7 (TF7), Alexa Fluor 750, and Cy7, offering stronger absorption properties, higher quenching efficiency, and excellent solubility. The increased hydrophilicity of TQ7HWS acid further improves its applicability in biological and biochemical assays requiring stringent aqueous conditions. With its exceptional quenching performance, complete absence of background fluorescence, and excellent solubility, TQ7HWS provides a reliable and efficient solution for demanding fluorescence assays.

TQ7HWS acid is a non-reactive compound used as a reference standard or control in studies involving TQ7HWS-labeled conjugates Additionally, it serves as a key precursor for the synthesis of activated esters and STP derivatives, facilitating further chemical modifications. In aqueous solutions, TQ7HWS acid can be conjugated to hydrazines, hydroxylamines, or amines through water-soluble carbodiimides, such as EDAC. This enables the attachment of the quencher to amino-containing biomolecules, including amine-modified oligonucleotides and peptides.

Spectrum

Product family

References

View all 17 references: Citation Explorer
Brain Healthcare Quotient as a Tool for Standardized Approach in Brain Healthcare Interventions.
Authors: Yoshida, Keitaro and Nemoto, Kiyotaka and Hamano, Ami and Kawamori, Masahito and Arai, Tetsuaki and Yamakawa, Yoshinori
Journal: Life (Basel, Switzerland) (2024)
Novel Förster Resonance Energy Transfer probe with quantum dot for a long-time imaging of active caspases inside individual cells.
Authors: Procházková, Markéta and Kuchovská, Eliška and Killinger, Michael and Klepárník, Karel
Journal: Analytica chimica acta (2023): 341334
Macropinoscope: Real-Time Simultaneous Tracking of pH and Cathepsin B Activity in Individual Macropinosomes.
Authors: Hirose, Hisaaki and Nakata, Eiji and Zhang, Zhengxiao and Shibano, Yuya and Maekawa, Masashi and Morii, Takashi and Futaki, Shiroh
Journal: Analytical chemistry (2023): 11410-11419
Near-Infrared Light-Controlled and Real-Time Detection of Osteogenic Differentiation in Mesenchymal Stem Cells by Upconversion Nanoparticles for Osteoporosis Therapy.
Authors: Yan, Rui and Guo, Yujiao and Wang, Xichao and Liang, Guohai and Yang, Anli and Li, Jinming
Journal: ACS nano (2022)
Near-infrared control and real-time detection of osteogenic differentiation in mesenchymal stem cells by multifunctional upconversion nanoparticles.
Authors: Wang, Kaipeng and Wu, Qian and Wang, Xichao and Liang, Guohai and Yang, Anli and Li, Jinming
Journal: Nanoscale (2020): 10106-10116
Page updated on February 22, 2025

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Catalog Number2388
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Physical properties

Molecular weight

1104.21

Solvent

DMSO

Spectral properties

Absorbance (nm)

764

Correction Factor (260 nm)

0.072

Correction Factor (280 nm)

0.091

Extinction coefficient (cm -1 M -1)

140000

Storage, safety and handling

H-phraseH303, H313, H333
Hazard symbolXN
Intended useResearch Use Only (RUO)
R-phraseR20, R21, R22

Storage

Freeze (< -15 °C); Minimize light exposure
UNSPSC12171501