IR-775 chloride

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IR-775 chloride

IR-775 chloride | 199444-11-6

Catalog Number A17-0003
Category Laser Dyes
Molecular Formula C32H36Cl2N2
Molecular Weight 519.56
Catalog Number Size Price Quantity
A17-0003 -- $--

Product Introduction

IR-775 chloride is used as a laser dye and near-infrared dye.

Chemical Information

Synonyms 2-[2-[2-Chloro-3-[2-(1,3-dihydro-1,3,3-trimethyl-2H-indol-2-ylidene)-ethylidene]-1-cyclohexen-1-yl]-ethenyl]-1,3,3-trimethyl-3H-indolium chloride
Canonical SMILES CC1(C2=CC=CC=C2[N+](=C1C=CC3=C(C(=CC=C4C(C5=CC=CC=C5N4C)(C)C)CCC3)Cl)C)C.[Cl-]
InChI InChI=1S/C32H36ClN2.ClH/c1-31(2)24-14-7-9-16-26(24)34(5)28(31)20-18-22-12-11-13-23(30(22)33)19-21-29-32(3,4)25-15-8-10-17-27(25)35(29)6;/h7-10,14-21H,11-13H2,1-6H3;1H/q+1;/p-1
InChI Key BPSIJFMUSNMMAL-UHFFFAOYSA-M
  • Product Specification
  • Application
Storage 24 months after receival at -20°C in the dark. Transportation: at room temperature for up to 3 weeks. Avoid prolonged exposure to light.

IR-775 chloride, a near-infrared fluorescent dye, is a versatile tool with diverse applications in bioscience and medical research. Here are four key applications of IR-775 chloride:

In Vivo Imaging: Widely utilized for in vivo imaging, IR-775 chloride boasts exceptional tissue penetration and minimal background fluorescence. This unique property enables researchers to visualize and monitor biological processes within living organisms, shedding light on aspects such as tumor growth, metastasis, and drug delivery. This non-invasive imaging technique allows for real-time tracking, enhancing our comprehension of disease progression and therapeutic responses.

Cell Labeling: Within the realm of cell biology, IR-775 chloride serves as a valuable resource for labeling and tracking specific cell populations. Its robust fluorescent characteristics make it an ideal means for studying cell migration, proliferation, and interactions. Researchers can observe the behaviors of labeled cells under varying conditions, facilitating in-depth investigations into cell biology and potential therapeutic interventions.

Biosensing: Embraced in the development of biosensors, IR-775 chloride aids in detecting biological molecules and environmental contaminants. Its fluorescence undergoes changes upon interacting with target analytes, providing a precise and sensitive method for biosensing applications. This capability is vital for crafting diagnostic tools and environmental monitoring systems, contributing to advancements in healthcare and environmental protection.

Photodynamic Therapy: Embracing the role of a key player in photodynamic therapy (PDT), IR-775 chloride leverages its photoactive attributes to combat cancer and other diseases. Upon exposure to light, this dye generates reactive oxygen species that trigger cell death, targeting afflicted tissues with precision. This minimally invasive therapeutic approach offers a pathway to high specificity and reduced side effects, presenting a promising alternative for treating various conditions.

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