60 Results for "

Cellular imaging

" in MedChemExpress (MCE) Product Catalog:
Products (60)

60 Results for "Cellular imaging" in MCE Product Catalog:

Cat. No.: HY-168943B
PLGA nanoparticles, 500nm, are biodegradable tumor-targeting nanocarriers that can serve as drug delivery enhancers and multidrug resistance inhibitors. PLGA nanoparticles, 500nm, passively enriched through the EPR effect and actively targeted via ligand-mediated endocytosis, can encapsulate various antitumor active molecules. PLGA nanoparticles, 500nm can specifically recognize multiple types of tumor cells and improve cellular uptake, cytotoxicity and antiproliferative effects after modification with ligands such as transferrin, folic acid, and RGD. PLGA nanoparticles, 500nm can encapsulate various therapeutic drugs and can be surface modified to achieve targeting, imaging, and prolonged circulation time, making them suitable for cancer-related research .
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Cat. No.: HY-168943C
PLGA nanoparticles, 1μm, are biodegradable tumor-targeting nanocarriers that can serve as drug delivery enhancers and multidrug resistance inhibitors. PLGA nanoparticles, 1μm, passively enriched through the EPR effect and actively targeted via ligand-mediated endocytosis, can encapsulate various antitumor active molecules. PLGA nanoparticles, 1μm can specifically recognize multiple types of tumor cells and improve cellular uptake, cytotoxicity and antiproliferative effects after modification with ligands such as transferrin, folic acid, and RGD. PLGA nanoparticles, 1μm can encapsulate various therapeutic drugs and can be surface modified to achieve targeting, imaging, and prolonged circulation time, making them suitable for cancer-related research .
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Cat. No.: HY-D2514
Target:  

Fluorescent Dye

Research Areas:  

Others

Cy3-PEG1000-DSPE is a compound for the labeling and visualization of nanoparticles or other materials. Cy3-PEG1000-DSPE has a variety of applications including drug delivery, cellular imaging, tracing of bioprocesses, and the study of interactions at the molecular level.
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Cat. No.: HY-D2518
Target:  

Fluorescent Dye

Research Areas:  

Others

Cy3-PEG10000-DSPE is a compound for the labeling and visualization of nanoparticles or other materials. Cy3-PEG10000-DSPE has a variety of applications including drug delivery, cellular imaging, tracing of bioprocesses, and the study of interactions at the molecular level.
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Cat. No.: HY-D2941
Synonyms: SNAP-AF
BGAF (SNAP-AF) is a fluorescent diacetyl fluorescein-labeled SNAP tag fluorescent probe, specifically designed for the covalent labeling of SNAP-tag fusion proteins in living cells. BGAF utilizes the specific reaction of the human DNA repair protein hAGT to achieve specific fluorescent labeling of the target protein in the living cell environment .
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Cat. No.: HY-P11744
CAS No.: 503474-42-8
Target:  

Inhibitory Antibodies

Research Areas:  

Others

Nuclear localizing sequence is a peptide sequence that functions as an inducer and exhibits membrane permeability in mammalian cells. Nuclear localizing sequence enhances cellular uptake and directs conjugated ruthenium (II) complexes to the nucleus for nuclear DNA imaging .
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Cat. No.: HY-W416298
CAS No.: 55520-64-4
Research Areas:  

Cancer

5-Vinyl-uridine is a fluorescent probe that can be used for intracellular RNA imaging, cell division stage imaging, and in vivo tumor imaging in mice. The detection mechanism of 5-Vinyl-uridine relies on metabolic incorporation into cellular RNA during RNA synthesis; after incorporation, it undergoes a bioorthogonal Diels-Alder reaction with Biotin (HY-B0511)-tetrazine. When paired with Streptavidin (HY-P3152)-Alexa Fluor 488, 5-Vinyl-uridine has an Ex/Em = 488/500-550 nm; when using Biotin-tetrazine, the emission peak is at approximately 510 nm, with the excitation/emission filter settings of 450-490/500-550 nm. 5-Vinyl-uridine can be used in tumor-related research .
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Cat. No.: HY-D2755
CAS No.: 1638197-45-1
BP Light 650 carboxylic acid is an vibrant far-red fluorochrome with comparable or improved performance over other dyes, including BP Fluor 647 and Cy5 dye, for fluorescent applications. It is used to label antibodies and other proteins as molecular probes for cellular imaging and other fluorescence detection methods application.
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Cat. No.: HY-D3264
SiR-PEG4-DBCO is a novel fluorescent labeling molecule that combines the superior fluorescent properties of silicon-rhodamine dyes with the functionalities of polyethylene glycol (PEG) and Click Chemistry. SiR dyes exhibit excellent photostability under identical excitation conditions, making them suitable for long-term cellular imaging (Ex = 640 nm, Em = 670-680 nm).
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Cat. No.: HY-D3387
CAS No.: 3053266-55-7
TBI is a fluorescence enhancer with a Kd of 71 nM for the Broccoli fluorogenic RNA aptamer. TBI binds to the Broccoli fluorogenic RNA aptamer to activate its fluorescence.TBI undergoes photobleaching of its trans form, which dissociates rapidly, while cis-TBI from the media replaces the dissociated fluorophore to enable fluorophore recycling.TBI enables enhanced fluorescence of Broccoli during continuous cellular imaging (Ex/Em = 485/527 nm) .
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Cat. No.: HY-DY1087
CAS No.: 874748-20-6
Coppersensor 1 (solution) is a membrane-permeable fluorescent dye. Coppersensor-1 has a picomolar affinity for Cu + with high selectivity over competing cellular metalions. Coppersensor-1 as a probe, can selective and sensitive detection of copper(I) ions (Cu +) in biological samples, including live cells. Coppersensor-1 can be used for the research of imaging of severe diseases such as cancer, cardiovascular disorders and neurogenerative diseases .
Solvent and concentration: DMSO: 2 mM
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Cat. No.: HY-P11925
CAS No.: 934965-51-2
Research Areas:  

Cancer

CPP44 is a tumor lineage-homing cell-penetrating peptide (CPP) that selectively enters myeloid leukemia cells and liver tumor cells. The cellular internalization of CPP44 is associated with M160 (CD163L1), and it mainly enters cells via an ATP- and dynein-dependent, clathrin-independent endocytic pathway. CPP44 can be used in studies related to acute myeloid leukemia, hepatocellular carcinoma, tumor-targeted delivery, and tumor imaging .
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Cat. No.: HY-184103
CAS No.: 378230-75-2
Synonyms: Ethylenedicysteine deoxyglucose
ECDG is a small-molecule compound dependent on α-ketoglutarate/Fe 2+ that participates in the biosynthesis of echinocandins. ECDG is involved in the targeted transport of glucose, and can be used for PET imaging after labeling with radioactive atoms. ECDG increases blood glucose levels in rats, undergoes cellular uptake mediated by D-glucose, localizes in ischemic viable myocardial tissue, and accumulates in the synovial space of rheumatoid arthritis. ECDG can be used in research related to candidiasis, glucose metabolism disorders, fungal infections, myocardial ischemia and rheumatoid arthritis .
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Cat. No.: HY-D3007
LD-CK is a fluorescent probe based on a coumarin-chromone structure, specifically designed to visualize lipid droplet polarity changes and endowed with multimodal imaging capability. LD-CK contains a high-performance lipophilic coumarin moiety, which enables it to specifically target lipid droplets upon cellular entry while minimizing background fluorescence to the greatest extent. LD-CK has an excitation wavelength (Ex) of 488 nm and an emission wavelength (Em) of 540 nm (in low-polarity environments such as toluene) or 640 nm (in high-polarity environments such as glycerol), with its emission peak undergoing a redshift as solvent polarity increases .
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Cat. No.: HY-P11893
Research Areas:  

Cancer

PSMA-HK9 is a ligand targeting prostate-specific membrane antigen (PSMA) that binds to PSMA with high affinity, with a Kd value of 4.76 nM. PSMA-HK9 can be labeled with the diagnostic radionuclide 68Ga for imaging applications, and this labeled conjugate exhibits high tumor uptake and low normal tissue uptake in vivo. PSMA-HK9 can be labeled with the radionuclide 177Lu for targeted radionuclide studies, and this labeled conjugate possesses efficient cellular endocytosis and tumor inhibitory activity. PSMA-HK9 can be used in studies related to prostate cancer .
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Cat. No.: HY-P992367

Target:  

TROP2

Research Areas:  

Cancer

hIMB1636 is a humanized monoclonal antibody targeting Trop2. By binding to the conformational Trop2 epitope, hIMB1636 regulates related signaling pathways, triggers lysosomal endocytosis, and further induces apoptosis, cell cycle arrest, and antibody-dependent cellular cytotoxicity. hIMB1636 effectively inhibits tumor cell proliferation, migration and in vivo tumor growth, and also exerts bystander killing effect and mediates long-term retention. hIMB1636 can be conjugated with NOTA/DOTA for radiolabeling to enable immuno-PET imaging, or prepared as hIMB1636-LDP-AE to significantly inhibit the growth of breast cancer and lung cancer xenografts .
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Cat. No.: HY-D3073
CAS No.: 2477607-64-8
Target:  

Fluorescent Dye

Research Areas:  

Others

DXB-NIR is a push-pull dioxaboron fluorescent probe with solvatochromic properties, featuring high fluorescence brightness, photostability, and a large two-photon absorption cross-section. DXB-NIR exhibits Ex/Em of 550/620–780 nm (with two-photon excitation at 930 nm). DXB-NIR quantifies local polarity via the intensity ratio I (>640)/I (<640) between the far-red channel (<640 nm) and the near-infrared channel (>640 nm), and it can simultaneously label the plasma membrane, endoplasmic reticulum, and lipid droplets in live cells. DXB-NIR monitors the increase in local polarity of various cell compartments under conditions of cholesterol depletion, starvation, and oxidative stress. DXB-NIR can be used for polarity imaging of biological membranes and lipid droplets, as well as studies related to cellular stress .
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Cat. No.: HY-D3614
CAS No.: 2890606-81-0
Target:  

Estrogen Receptor/ERR

Research Areas:  

Cancer

ERβ-targeted NIR probe P5 is an ERβ-selective fluorescent probe that binds preferentially to ERβ over ERα, enabling near-infrared fluorescence imaging of ERβ in living cells and in vivo. ERβ-targeted NIR probe P5 supports measurement of ERβ diffusion coefficient via fluorescence recovery after photobleaching. ERβ-targeted NIR probe P5 shows low cytotoxicity across multiple cell types, preserves ERβ expression, accumulates at ERβ-overexpressing tumor sites in vivo, and exhibits minimal fluorescence fluctuation across varied pH and cellular analyte conditions. ERβ-targeted NIR probe P5 can be used for the research of prostate cancer .
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Cat. No.: HY-D3074
Research Areas:  

Others

TCM-4COOH is an AIE-active fluorescent probe for calcium ions. TCM-4COOH relies on aggregation-induced emission activity, and its carboxyl chelating group can bind to Ca 2+ and Mg 2+ to form insoluble aggregates, triggering fluorescence enhancement via restricting intramolecular motion (Ex/Em = 477/603 nm). TCM-4COOH shows pH independence in physiological environments (pH 4-9), can be strongly activated at Ca 2+ concentrations ranging from low nM to mM, and has a stronger binding ability to Ca 2+ than to Mg 2+. TCM-4COOH, as its acetoxymethyl ester derivative TCM-AM, can penetrate cell membranes for intracellular detection. TCM-4COOH can be used for imaging of cellular calcium overload, detection of bone microcracks, and studies related to calcium-rich biological environments .
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Cat. No.: HY-D3088
Research Areas:  

Others

CQPP is a Fluorescent probe designed for monitoring polarity changes in the cellular microenvironment, including polarity tracking of lipid droplets/nuclei during ferroptosis. CQPP exhibits ratiometric fluorescence emission and fluorescence lifetime variations in response to polarity changes; a nonpolar environment stimulates fluorescence from the locally excited (LE) state, while a polar environment drives solvation relaxation to the intramolecular charge transfer (ICT) state, which attenuates the LE emission at ~470 nm and simultaneously enhances the ICT emission at ~670 nm. CQPP binds to intranuclear DNA through electrostatic interactions and hydrogen bonds in the DNA minor groove, which enhances its emission at ~670 nm and prolongs its fluorescence lifetime. CQPP can simultaneously target lipid droplets (green LE fluorescence) and the nucleus (red ICT fluorescence). The detection wavelengths of CQPP are Ex/Em = 405/470 nm and Ex/Em = 405/670 nm, and it also supports fluorescence lifetime imaging via 810 nm two-photon excitation .
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