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medical imaging

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製品番号 製品名 Target 研究分野 構造式
  • HY-130735

    JF646, SE; JF646, NHS

    Fluorescent Dye Others
    Janelia Fluor 646, SE (JF646, SE) is a red fluorescent dye can be used in cellular imaging . Janelia Fluor products are licensed under U.S. Pat. Nos. 9,933,417, 10,018,624 and 10,161,932 and other patents from Howard Hughes Medical Institute.
    Janelia Fluor® 646, SE
  • HY-D0166A

    Biochemical Assay Reagents Others
    Neutral Red (IND) is an organic dye commonly used in biology and cytology laboratories. It can be used to stain living cells, secreted proteins and other molecular structures, etc., and has a wide range of applications in cell imaging and staining. In addition, Neutral Red (IND) is widely used in industrial fields such as water treatment, food processing and paper manufacturing, for example as an indicator or colorant. Although the compound has no direct medical application, it has important application value in the fields of biology, chemistry and industry.
    Neutral Red (IND)
  • HY-W749209

    Anhydrous sodium acetate-13C2

    Endogenous Metabolite
    Acetic acid-13C2 is a stable isotope labeled compound with biomarker and metabolic tracking activity. Acetic acid-13C2 is often used in biochemical research for the analysis of metabolic pathways. Acetic acid-13C2 is also used in medical imaging and compound development to improve the understanding of biological processes.
    Acetic acid-13C2 sodium
  • HY-131027

    JF646, Azide

    Fluorescent Dye Others
    Janelia Fluor 646, Azide (JF646, Azide) is a red fluorogenic fluorescent dye containing a click chemistry group Azide. Janelia Fluor 646, Azide can be used for live-cell imaging experiments . Janelia Fluor products are licensed under U.S. Pat. Nos. 9,933,417, 10,018,624 and 10,161,932 and other patents from Howard Hughes Medical Institute. Janelia Fluor? 646, Azide is a click chemistry reagent, it contains an Azide group and can undergo copper-catalyzed azide-alkyne cycloaddition reaction (CuAAc) with molecules containing Alkyne groups. It can also undergo strain-promoted alkyne-azide cycloaddition (SPAAC) reactions with molecules containing DBCO or BCN groups.
    Janelia Fluor® 646, Azide
  • HY-131029

    JF646, Maleimide

    Fluorescent Dye Others
    Janelia Fluor® 646, Maleimide (JF646, Maleimide) is a red fluorescent dye that contains a maleimide group. JF646, Maleimide can be used in cellular imaging . Janelia Fluor® products are licensed under U.S. Pat. Nos. 9,933,417, 10,018,624 and 10,161,932 and other patents from Howard Hughes Medical Institute.
    Janelia Fluor® 646, Maleimide
  • HY-131028

    JF646 TFA

    Fluorescent Dye Others
    Janelia Fluor 646 TFA (JF646 TFA), a red fluorogenic fluorescent dye, can be used in the synthesis of Janelia Fluor 646 HaloTag and SNAP-Tag ligands. JF646 TFA is used in live cell imaging experiments . Janelia Fluor products are licensed under U.S. Pat. Nos. 9,933,417, 10,018,624 and 10,161,932 and other patents from Howard Hughes Medical Institute.
    Janelia Fluor® 646 TFA
  • HY-131026

    JF635, SE; JF635, NHS

    Fluorescent Dye Others
    Janelia Fluor 635, SE (JF635, SE) is a red fluorogenic fluorescent dye containing an NHS ester that can be conjugated with primary amine groups. JF635, SE can be used for live cell imaging . Janelia Fluor products are licensed under U.S. Pat. Nos. 9,933,417, 10,018,624 and 10,161,932 and other patents from Howard Hughes Medical Institute.
    Janelia Fluor® 635, SE
  • HY-138659

    JF646, Tetrazine

    Fluorescent Dye Others
    Janelia Fluor 646, Tetrazine (JF646, Tetrazine) a red fluorescent dye that contains a tetrazine group. JF646, Tetrazine can be used in cellular imaging . Janelia Fluor products are licensed under U.S. Pat. Nos. 9,933,417, 10,018,624 and 10,161,932 and other patents from Howard Hughes Medical Institute. Janelia Fluor? 646, Tetrazine is a click chemistry reagent, it contains a Tetrazine group that can undergo an inverse electron demand Diels-Alder reaction (iEDDA) with molecules containing TCO groups.
    Janelia Fluor® 646, Tetrazine
  • HY-159770A

    Radionuclide-Drug Conjugates (RDCs) Cancer
    (S)-EB-FAPI-B2 (Compound II-11) is a precursor for radiopharmaceutical labeling, which can be combined with radionuclides to create radionuclide drug conjugates (RDCs). RDCs have the capability to specifically target biomolecules and can be used in medical imaging .
    (S)-EB-FAPI-B2
  • HY-P10732

    Radionuclide-Drug Conjugates (RDCs) Cancer
    DOTA-cyclo(RGDfK) is a radionuclide conjugate (RDC), which is capable of binding to a radionuclide. RDC has the ability to specifically target biomolecules and can be used in medical imaging or therapy .
    DOTA-cyclo(RGDfK)
  • HY-W873634

    TRAP-Pr

    Radionuclide-Drug Conjugates (RDCs) Cancer
    TRAP-Pr is a radionuclide conjugate (RDC) that can bind to the radionuclide [68]Ga. RDCs have the ability to specifically target biomolecules and can be used in medical imaging or therapy. TRAP-Pr can be further functionalized with acetone and used in click chemistry CuAAC reactions to conjugate other labeled molecules.
    TRAP
  • HY-12691

    Biochemical Assay Reagents Cancer
    BFCAs-1 is a bifunctional chelator commonly used in medical imaging and biochemistry.
    BFCAs-1
  • HY-W011118

    Radionuclide-Drug Conjugates (RDCs) Cancer
    DTPA anhydride is a bifunctional chelator whose anhydride can react with amino groups in proteins (such as lysine residues) to form stable amide bonds. DTPA anhydride can also bind to radionuclides to synthesize radionuclide-labeled drug conjugates (RDCs). RDCs have the ability to specifically target biomolecules and can be used in medical imaging or therapy.
    DTPA anhydride
  • HY-W738256

    MDTPA

    Radionuclide-Drug Conjugates (RDCs) Cancer
    Maleimide-DTPA (MDTPA) is a monoreactive DTPA derivative (MDTPA) with maleimide group as peptide binding site, which can be combined with radionuclides to prepare radionuclide conjugates (RDC). Maleimide-DTPA can chelate indium-111 (111In) and label peptides and peptides with indium-111. For example, it has high stability when combined with OST7 incubated in human serum, which is better than cyclic cDTPA. Maleimide-DTPA is a good material for medical imaging or treatment.
    Maleimide-DTPA
  • HY-131025

    JF585, SE; JF585, NHS

    Fluorescent Dye Others
    Janelia Fluor 585, SE (JF585, SE) is an orange fluorescent dye containing an NHS ester that can be conjugated with primary amine groups. Janelia Fluor 585, SE can be used immediately for structured illumination (SIM) and stimulated emission depletion (STED) imaging and could be converted to photoactivatable derivative for single-molecule localization microscopy (SMLM) experiments . Janelia Fluor products are licensed under U.S. Pat. Nos. 9,933,417, 10,018,624 and 10,161,932 and other patents from Howard Hughes Medical Institute.
    Janelia Fluor® 585, SE
  • HY-114133

    Radionuclide-Drug Conjugates (RDCs) Somatostatin Receptor Cancer
    Depreotide is a nove tumor tarcer, can be complexed with technetium-99m ( 99mTc-depreotide) for optimal imaging properties. 99mTc-depreotide somatostain receptor imaging has been playing an important role in medical diagnosis research . Depreotide can be used for the synthesis/research of Radionuclide-Drug Conjugates (RDCs).
    Depreotide
  • HY-164653

    Radionuclide-Drug Conjugates (RDCs) Cancer
    DOTAEt is a radionuclide conjugate (RDC), which is capable of binding to a radionuclide. RDC has the ability to specifically target biomolecules and can be used in medical imaging or therapy .
    DOTAEt
  • HY-164590

    Radionuclide-Drug Conjugates (RDCs) Cancer
    BCN-NODAGA is a radionuclide conjugate (RDC), which is capable of binding to a radionuclide. RDC has the ability to specifically target biomolecules and can be used in medical imaging or therapy .
    BCN-NODAGA
  • HY-P10730

    Radionuclide-Drug Conjugates (RDCs) Cancer
    DOTA-Lanreotide is a radionuclide conjugate (RDC), which is capable of binding to a radionuclide. RDC has the ability to specifically target biomolecules and can be used in medical imaging or therapy .
    DOTA-Lanreotide
  • HY-164594

    Radionuclide-Drug Conjugates (RDCs) Cancer
    TA-DOTA-GA is a radionuclide conjugate (RDC), which is capable of binding to a radionuclide. RDC has the ability to specifically target biomolecules and can be used in medical imaging or therapy .
    TA-DOTA-GA
  • HY-148155

    Biochemical Assay Reagents Others
    Iotroxic acid is an intravenous cholangiographic agent. Iotroxic acid can be used for medical imaging .
    Iotroxic acid
  • HY-138660

    HM-JF526 NHS

    Fluorescent Dye Others
    HM Janelia Fluor® 526, SE (HM-JF526 NHS) is a derivative of hydroxymethyl JF526 (HM-JF526). SMLM (single-molecule localization microscopy) imaging in standard phosphate-buffered saline (pH 7.4) revealed that the HM-JF526 label showed spontaneous blinking behavior throughout the imaging session and did not require short-wavelength activation light . Janelia Fluor® products are licensed under U.S. Pat. Nos. 9,933,417, 10,018,624 and 10,161,932 and other patents from Howard Hughes Medical Institute.
    HM Janelia Fluor® 526, SE
  • HY-159767A

    Radionuclide-Drug Conjugates (RDCs) Cancer
    (S)-DOTAGA.(SA.FAPi)2 is a precursor for radiopharmaceutical labeling, which can be combined with radionuclides to create radionuclide drug conjugates (RDCs). RDCs have the capability to specifically target biomolecules and can be used in medical imaging .
    (S)-DOTAGA.(SA.FAPi)2
  • HY-164589

    Radionuclide-Drug Conjugates (RDCs) Cancer
    NOPO is a radionuclide conjugate (RDC), which is capable of binding to a radionuclide. RDC has the ability to specifically target biomolecules and can be used in medical imaging or therapy .
    NOPO
  • HY-164599

    Radionuclide-Drug Conjugates (RDCs) Cancer
    TA-DOTA is a radionuclide conjugate (RDC), which is capable of binding to a radionuclide. RDC has the ability to specifically target biomolecules and can be used in medical imaging or therapy .
    TA-DOTA
  • HY-P10731

    Radionuclide-Drug Conjugates (RDCs) Cancer
    DOTA-NAPamide is a radionuclide conjugate (RDC), which is capable of binding to a radionuclide. RDC has the ability to specifically target biomolecules and can be used in medical imaging or therapy .
    DOTA-NAPamide
  • HY-164592

    Radionuclide-Drug Conjugates (RDCs) Cancer
    DTPA-tetra(tBu)ester is a radionuclide conjugate (RDC), which is capable of binding to a radionuclide. RDC has the ability to specifically target biomolecules and can be used in medical imaging or therapy .
    DTPA-tetra(tBu)ester
  • HY-W999782

    Radionuclide-Drug Conjugates (RDCs) Cancer
    Propargyl-DOTA-tris(tBu)ester is a radionuclide conjugate (RDC), which is capable of binding to a radionuclide. RDC has the ability to specifically target biomolecules and can be used in medical imaging .
    Propargyl-DOTA-tris(tBu)ester
  • HY-164603

    Radionuclide-Drug Conjugates (RDCs) Cancer
    3p-C-NOTA is a radionuclide conjugate (RDC), which is capable of binding to a radionuclide. RDC has the ability to specifically target biomolecules and can be used in medical imaging or therapy .
    3p-C-NOTA
  • HY-W999766

    Radionuclide-Drug Conjugates (RDCs) Cancer
    Propargyl-NOTA(tBu)2 is a bifunctional chelating ligand that can bind to radionuclides to prepare radionuclide conjugates (RDCs). RDCs have the ability to specifically target biomolecules and can be used in medical imaging.
    Propargyl-NOTA(tBu)2
  • HY-164596

    Radionuclide-Drug Conjugates (RDCs) Cancer
    THP(Bz3)-Glu is a radionuclide conjugate (RDC), which is capable of binding to a radionuclide. RDC has the ability to specifically target biomolecules and can be used in medical imaging or therapy .
    THP(Bz3)-Glu
  • HY-164654

    Radionuclide-Drug Conjugates (RDCs) Cancer
    DOTA-PEG10-azide is a radionuclide conjugate (RDC), which is capable of binding to a radionuclide. RDC has the ability to specifically target biomolecules and can be used in medical imaging or therapy .
    DOTA-PEG10-azide
  • HY-W586475

    Radionuclide-Drug Conjugates (RDCs) Cancer
    Fluorescein-triazole-PEG5-DOTA is a radionuclide conjugate (RDC), which is capable of binding to a radionuclide. RDC has the ability to specifically target biomolecules and can be used in medical imaging or therapy .
    Fluorescein-triazole-PEG5-DOTA
  • HY-164593

    Radionuclide-Drug Conjugates (RDCs) Cancer
    NH-CH2-CH2-DOTAM is a radionuclide conjugate (RDC), which is capable of binding to a radionuclide. RDC has the ability to specifically target biomolecules and can be used in medical imaging or therapy .
    NH-CH2-CH2-DOTAM
  • HY-164656

    Drug-Linker Conjugates for ADC Cancer
    DOTA-tris(acid)-amido-PEG24-amido-PEG24-DSPE is a radionuclide conjugate (RDC), which is capable of binding to a radionuclide. RDC has the ability to specifically target biomolecules and can be used in medical imaging or therapy .
    DOTA-tris(acid)-amido-PEG24-amido-PEG24-DSPE
  • HY-164588

    Radionuclide-Drug Conjugates (RDCs) Cancer
    NH2-PEG4-NODA-GA is a NODA-type metal chelator that can bind to radionuclides to prepare radionuclide drug conjugates (RDCs). RDCs have the ability to specifically target biomolecules and can be used in medical imaging or therapy.
    NH2-PEG4-NODA-GA
  • HY-W585442

    Biochemical Assay Reagents Endogenous Metabolite
    5,9,14,18,23,27,32,36-Octabutoxy-2,3-naphthalocyanine is a photosensitive material with excellent light absorption and electron conduction activity. 5,9,14,18,23,27,32,36-Octabutoxy-2,3-naphthalocyanine is widely used in optoelectronic devices and is considered to be an effective photocatalyst. 5,9,14,18,23,27,32,36-Octabutoxy-2,3-naphthalocyanine can be used to improve the performance of solar cells and increase the photoelectric conversion efficiency. 5,9,14,18,23,27,32,36-Octabutoxy-2,3-naphthalocyanine also has potential anti-tumor activity and can inhibit the proliferation of certain cancer cells. 5,9,14,18,23,27,32,36-Octabutoxy-2,3-naphthalocyanine exhibits excellent fluorescence properties in medical imaging, which helps to improve the clarity and accuracy of imaging. 5,9,14,18,23,27,32,36-Octabutoxy-2,3-naphthalocyanine is studied as a component of a novel compound delivery system to improve the targeting and release effect of the compound.
    5,9,14,18,23,27,32,36-Octabutoxy-2,3-naphthalocyanine

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