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GlycoErase™ ST3GAL6 Knockout Human Thyroid Carcinoma Cell 8305C (CAT#: GLJF-0525-JF731)

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1 M cells/vial*2

Description The ST3GAL6 deficient human thyroid carcinoma cell line 8305C, lacking ST3 beta-galactoside alpha-2,3-sialyltransferase 6, a sialyltransferase family member, enables the study of sialylation disruption in thyroid carcinoma, potentially affecting sialylation of galactose-containing substrates and sialic acid-dependent processes in thyroid cells.
Product Type KO Cell Lines
Species Human
Cell Morphology Large spindle-shaped cell, adherent
Passage Ratio 1:3~1:6
Cell Line 8305C
Primary Disease Anaplastic Thyroid Cancer
Lineage Thyroid
Cell Viability >90%
Sterility Test The sterility test indicated an absence of microbial growth.
Identity Test STR identification
Mycoplasma Test Negative
Virus Test Negative for HIV, HBV and HCV.
Genetic Stability Testing We conduct cell genetic stability studies in full compliance with ICH guidelines. Our expertise enables us to design and execute a comprehensive testing program tailored to your specific needs and regulatory requirements.
Validation PCR, Sanger Sequencing
Culture Medium FBS & RPMI
Application Functional assay
Size 1 M cells/vial*2
Product Format Frozen
Shipping Dry ice
Availability Status Made to order
Handling Notes Upon receipt, this product must be immediately transferred from dry ice to liquid nitrogen (-150°C to -190°C) and stored in a liquid nitrogen tank. Cell viability is critically dependent on proper handling. We cannot guarantee viability if these instructions are not strictly adhered to.
Product Disclaimer This product is provided for research only, not suitable for human or animal use. Due to the inherent limitations of infectious agent testing, investigators must exercise extreme caution when handling cells provided by Creative Biolabs, treating all cells as potentially biohazardous.
Target ST3GAL6
Full Name ST3 Beta-galactoside alpha-2,3-sialyltransferase 6
Alternative Name ST3GALVI, SIAT10
Location 3q12.1
Gene ID 10402
Summary Transfers sialic acid to terminal positions on glycolipids and glycoproteins, contributing to the diversity and function of cell surface molecules.
For Research Use Only.
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