95 Results for "

PRINS technique

" in MedChemExpress (MCE) Product Catalog:
Products (95)

95 Results for "PRINS technique" in MCE Product Catalog:

Cat. No.: HY-W1061733
Target:  

Phosphoramidites

Research Areas:  

Others

TAO-F Phosphoramidite is a type of phosphoramidite monomer that can be used for solid-phase synthesis of oligonucleotides. TAO-F Phosphoramidite is used to prepare fluorescent-labeled probes and primers, and is widely applied in real-time quantitative PCR (qPCR), fluorescence in situ hybridization (FISH), and microarray molecular diagnostic techniques.
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Cat. No.: HY-165042
CAS No.: 93378-78-0
Synonyms: 1,2-Palmitin-3-caprin; 1,2-Palmitin-3-decanoin; TG(16:0/16:0/10:0)
Target:  

Others

Research Areas:  

Others

1,2-Dipalmitoyl-3-decanoyl-rac-glycerol (1,2-Palmitin-3-caprin), a compound mentioned in the chemical analysis of triglycerides and diacylglycerols in bovine milk fat, was identified by a specific chromatography-mass spectrometry technique, which is environmentally friendly and efficient.
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Cat. No.: HY-165056
CAS No.: 2535-35-5
Synonyms: 1,2-Palmitin-3-linolein; TG(16:0/16:0/18:2)
Target:  

Others

Research Areas:  

Others

1,2-Dipalmitoyl-3-linoleoyl-rac-glycerol (1,2-Palmitin-3-linolein), a compound mentioned in the chemical analysis of triglycerides and diacylglycerols in bovine milk fat, was identified by a specific chromatography-mass spectrometry technique, which is environmentally friendly and efficient.
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Cat. No.: HY-W1061585
CAS No.: 136949-85-4
Target:  

Phosphoramidites

Research Areas:  

Others

DNP Phosphoramidite is a non-nucleoside-based phosphoramidite carrying a 2,4-dinitrophenyl (DNP) hapten group, which enables multiple labeling of oligonucleotides during solid-phase synthesis. DNP Phosphoramidite binds to anti-DNP antibodies, allowing the detection of labeled oligonucleotides via enzyme-linked colorimetric techniques .
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Cat. No.: HY-N16307
CAS No.: 3091879-88-5
Target:  

Fluorescent Dye

Research Areas:  

Others

Meso-Cl cyanine 7.5 free acid chloride is a Meso-Cl cyanine fluorescent dye. Meso-Cl cyanine 7.5 free acid chloride can be used for labelling amine groups such as those on antibodies, nucleic acids, and proteins and can be detected using a variety of fluorescence detection techniques such as microscopy and flow cytometry (Ex/Em = 815/825 nm) .
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Cat. No.: HY-165105
CAS No.: 81246-69-7
Synonyms: TG(18:1/10:0/18:1); 1,3-Dioleoyl-2-caproyl glycerol; 1,3-Olein-2-caprin
Target:  

Others

Research Areas:  

Others

1,3-Dioleoyl-2-decanoyl glycerol (TG(18:1/10:0/18:1)) is a compound that was investigated in the study of triglyceride composition in human milk and infant formula. The analysis and comparison of the compound using a specific chromatography-mass spectrometry technique revealed differences in triglyceride content between human milk and infant formula.
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Cat. No.: HY-161476
Target:  

Fluorescent Dye

Research Areas:  

Cancer

Ir-ImNO is a mitochondria-targeted two-photon probe with excellent cell membrane permeability, capable of detecting both endogenous and exogenous cell membrane permeability. Ir-ImNO can monitor different immune response states of macrophages through various imaging techniques, including one-photon and two-photon phosphorescence imaging as well as phosphorescence lifetime imaging. Ir-ImNO can be utilized in the research to assist in the clinical monitoring of immunotherapy .
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Cat. No.: HY-K0605

MCE AB—PAS Staining Kit for Glycogen and Mucopolysaccharides combines Alcian Blue staining and PAS staining, allowing the simultaneous detection and differentiation of different types of mucins within the same tissue section. In this method, acidic mucins are typically stained blue, neutral mucins appear red or magenta, and mucins containing both acidic and neutral components may appear purple or bluish-purple. This technique is widely used in histological and pathological studies for the identification and distribution analysis of mucin types within tissues.

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Cat. No.: HY-116156
CAS No.: 167648-73-9
Research Areas:  

Cancer

SR-4554 is a probe for the measurement of tumor hypoxia. SR-4554 undergoes enzymatic single-electron reduction reactions within hypoxic cells. SR-4554 determines the 19F retention index for four commonly used mouse tumors (EMT6, SCCVII, KILT and RIF-I) through 19F MRS technique. SR-4554 can used to detect tumor Hypoxia noninvasively by 19F magnetic resonance spectroscopy ( 19F MRS) .
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Cat. No.: HY-L039
3,231 compounds

Techniques for reprogramming somatic cells create new opportunities for drug screening, disease modeling, artificial organ development, and cell therapy. The development of reprogramming techniques has grown exponentially since Yamanaka reprogrammed somatic cells to become induced pluripotent stem cells (iPSCs) using four transcription factors, OCT4, SOX2, KLF4, and c-MYC in 2006. Despite the development of efficient reprogramming methods, most methods are inappropriate for clinical applications because they carry the risk of integrating exogenous genetic factors or use oncogenes. Alternative approaches, such as those based on miRNA, non-viral genes, non-integrative vectors, and small molecules, have been studied as possible solutions to the problems. Among these alternatives, small molecules are attractive options for clinical applications. Reprogramming using small molecules is inexpensive and easy to control in a concentration- and time-dependent manner. It offers a high level of cell permeability, ease of synthesis and standardization, and it is appropriate for mass-producing cells.

MCE Reprogramming Compound Library contains a unique collection of 3,231 compounds that act on reprogramming signaling pathways. These compounds are potential stimulators for reprogramming. This library is a useful tool for researching reprogramming and regenerative medicine.

Cat. No.: HY-L158
6,342 compounds

According to reports, most known kinase inhibitors exert their effects through competitive binding in highly conserved ATP pockets. Although genetic techniques such as RNA interference can inactivate specific genes, most kinases are multi domain proteins, each of which has an independent function. Highly selective inhibitors have higher efficiency than non-selective inhibitors, and the selectivity to the target is at least 100 times higher. Therefore, ensuring the validation of targets with the most selective inhibitors is crucial for a more thorough understanding of the pharmacology of the kinase field. The Highly Selective Inhibitors Library contains 6,342 compounds, covering multiple targets and subtypes, such as GPCR protein family, Ion channel, multiple kinases, etc. The Highly Selective Inhibitors Library is an effective tool for screening different phenotypes

Cat. No.: HY-D3391
RMR-Tre is a fluorescent probe targeting the mycobacterial acyltransferase Ag85. Under the catalysis of Ag85, RMR-Tre undergoes 6-position mycoloylation and anchors to the mycobacterial membrane, while achieving fluorescence activation by inhibiting the intramolecular twisted charge transfer state transition. RMR-Tre can distinguish live mycobacteria from dead ones through metabolism-driven labeling, enabling rapid, wash-free, low-background detection of viable bacteria. RMR-Tre reports the drug resistance of Mycobacterium tuberculosis via the trehalose catalytic shift activity readout associated with TreS. In addition, RMR-Tre can be combined with flow cytometry or high-content imaging techniques to visualize and quantitatively analyze the metabolic heterogeneity of Mycobacterium tuberculosis related to persistence and drug resistance. RMR-Tre is widely used in tuberculosis-related research .
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Cat. No.: HY-P992061

Target:  

CD3 Calcium Channel

Research Areas:  

Inflammation/Immunology

Anti-Mouse CD3E Antibody (500A2) is an antibody targeting mouse CD3ε, which specifically binds to the region on CD3ε adjacent to the T cell receptor binding site. Anti-Mouse CD3E Antibody (500A2) triggers functional signal transduction in immature T cells and activates naive T cells. When cross-linked, Anti-Mouse CD3E Antibody (500A2) induces a rapid, robust and transient increase in cytoplasmic calcium concentration, acting as a potent calcium flux inducer. Anti-Mouse CD3E Antibody (500A2) is suitable for multiple experimental techniques such as flow cytometry, immunoprecipitation and EMARS reactions. It can be used to detect CD3E expression on thymocytes, mature T lymphocytes and NK-T cells from different mouse strains, or to identify membrane cluster components of the TCR complex, and shows no cross-reactivity with rat leukocytes .
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Cat. No.: HY-L179
39 compounds

Radiotherapy is a common treatment for various cancers, and more than 50% of cancer patients require radiotherapy during the disease treatment. With advances in radiation technology and a better understanding of tumor biology, the efficacy of radiation therapy has gradually improved, and more and more patients have benefited from it. However, even with the use of advanced radiotherapy techniques, there are still many malignant tumor cells with low sensitivity to radiation, leading to the radiation effect is not ideal. To solve this problem, radiosensitizers have received more and more attention. Radiosensitizer is a kind of drug that can enhance the radiosensitivity of tumor cells and improve the effect of radiotherapy. Radiation sensitizers act in a variety of ways, such as killing hypoxic cells, enhancing DNA damage, inhibiting DNA damage repair, and blocking cell cycle progression, making tumor cells more susceptible to radiation damage and death than surrounding normal cells.

MCE designs a unique collection of 39 compounds with definite reported radiosensitization. It can be used for drug combination research in anti-cancer treatment.

Cat. No.: HY-L038
2,574 compounds

Stem cells, which are found in all multi-cellular organisms, can divide and differentiate into diverse special cell types and can self-renew to produce more stem cells. To be useful in therapy, stem cells must be converted into desired cell types as necessary which is called induced differentiation or directed differentiation. Understanding and using signaling pathways for differentiation is an important method in successful regenerative medicine. Small molecules or growth factors induce the conversion of stem cells into appropriate progenitor cells, which will later give rise to the desired cell type. There is a variety of signal molecules and molecular families that may affect the establishment of germ layers in vivo, such as fibroblast growth factors (FGFs); the wnt family or superfamily of transforming growth factors β (TGFβ) and bone morphogenetic proteins (BMP). Unfortunately, for now, a high cost of recombinant factors is likely to limit their use on a larger scale in medicine. The more promising technique focuses on the use of small molecules. These small molecules can be used for either activating or deactivating specific signaling pathways. They enhance reprogramming efficiency by creating cells that are compatible with the desired type of tissue. It is a cheaper and non-immunogenic method.

MCE Differentiation Inducing Compound Library contains a unique collection of 2,574 compounds that act on signaling pathways for differentiation. These compounds are potential stimulators for induced differentiation. This library is a useful tool for researching directed differentiation and regenerative medicine.