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Qualitätsniveau
Speziesreaktivität
human
Hersteller/Markenname
CPGWIZ™
Chemicon®
Methode(n)
PCR: suitable
NCBI-Hinterlegungsnummer
Anwendung(en)
genomic analysis
Angaben zum Gen
human ... CDKN2B(1030)
Verwandte Kategorien
1 of 4
Dieser Artikel | S7804 | S7842 | S7810-M |
|---|---|---|---|
| technique(s) PCR: suitable | technique(s) PCR: suitable | technique(s) PCR: suitable | technique(s) PCR: suitable |
| species reactivity human | species reactivity human | species reactivity human | species reactivity human |
| manufacturer/tradename CPGWIZ™ | manufacturer/tradename CPGWIZ™, Chemicon® | manufacturer/tradename CPGWIZ™, Chemicon® | manufacturer/tradename CPGWIZ™, Chemicon® |
| NCBI accession no. | NCBI accession no. | NCBI accession no. | NCBI accession no. |
| application(s) genomic analysis | application(s) genomic analysis | application(s) genomic analysis | application(s) genomic analysis |
| Quality Level 100 | Quality Level 100 | Quality Level 100 | Quality Level 100 |
Allgemeine Beschreibung
Methylation-specific PCR (MSP) is a new technology for sensitive detection of abnormal gene methylation utilizing small amounts of DNA (Herman, 1996 ). This process employs an initial bisulfite reaction to modify the DNA, followed by PCR amplification with specific primers designed to distinguish methylated from unmethylated DNA.
*p15 is covered under U.S. patents 5,994,095, US 6,140,473, 6,180,776, 6,210,949 and 6,218,146.
Anwendung
Use of either the CpGenome DNA Modification Kit (Cat. No. S7820) or the CpGENOME Fast DNA Modification Kit (Cat. No. S7824) facilitates the initial bisulfite reactions, while the The CpG WIZ p15 Amplification Kit contains the reagents required for the gene-specific PCR amplification reactions.
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Verwandter Inhalt
"Epigenetics describes heritable changes in gene expression caused by non-genetic mechanisms instead of by alterations in DNA sequence. These changes can be cell- or tissue-specific, and can be passed on to multiple generations. Epigenetic regulation enriches DNAbased information, allowing a cell to vary its response across diverse biological and environmental contexts. Although epigenetic mechanisms are primarily centered in the nucleus, these mechanisms can be induced by environmental signals such as hormones, nutrients, stress, and cellular damage, pointing to the involvement of cytoplasmic and extracellular factors in epigenetic regulation."
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