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MAFB/IGH ; CCND3/IGH ; MYC/IGH gene fusion detection probe (CCND3/IGH)

Catalog Number:
MBI-FP-A234-2
Availability: In stock
Special Price $715.50 Regular Price $795.00
Estimated shipping date 17/05/2024, order this item in the next

CCND3/IGH Gene Fusion Probe Detection Kit - 100µL/10 Tests

CCND3 (Cyclin D3) is encoded by this gene belongs to the highly conserved cyclin family, whose members are characterized by a dramatic periodicity in protein abundance through the cell cycle. Cyclins function as regulators of CDK kinases. Different cyclins exhibit distinct expression and degradation patterns which contribute to the temporal coordination of each mitotic event.

This cyclin forms a complex with and functions as a regulatory subunit of CDK4 or CDK6, whose activity is required for cell cycle G1/S transition. This protein has been shown to interact with and be involved in the phosphorylation of tumor suppressor protein Rb. The CDK4 activity associated with this cyclin was reported to be necessary for cell cycle progression through G2 phase into mitosis after UV radiation.. [provided by RefSeq, Jul 2008].

 

Product Main Components

The kit consists of CCND3/IGH dual color probe

Component name

Specifications

Quantity

Main components

CCND3/IGH dual color probe

100μL/Tube

1

CCND3 Orange probe, IGH Green probe

 

 

Intended use

The reagent carries out in situ hybridization staining on the basis of routine staining to provide doctors with auxiliary information for diagnosis. The test results are only for clinical reference and should not be used as the only basis for clinical diagnosis. Clinicians should comprehensively judge the test results in combination with the patient's condition, drug indications, treatment response and other laboratory test indicators.

 

Detection principle

Fluorescence in situ hybridization is a technique for directly observing specific nucleic acids in cells in vitro. According to the principle of base complementary pairing, the specific probe is complementary to the target sequence in the cell. Due to the fluorescence of the probe, the gene state of the hybrid probe and the target sequence can be clearly observed under the fluorescence microscope under the appropriate excitation light.

 

Applicable Instruments

Fluorescence microscopy imaging systems, including fluorescence microscopy and filter sets suitable for DAPI (367/452), Green (495/517), and Orange (547/565).

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