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Human SPTBN1 Stable Cell Line - HEK293

Human SPTBN1 Stable Cell Line - HEK293

Cat.No. :  CSC-RO0685 Host Cell:  HEK293

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Cat. No. CSC-RO0685
Description This cell line is engineered to stably human spectrin beta, non-erythrocytic 1 (SPTBN1).
Gene SPTBN1
Host Cell HEK293
Stability Validated for at least 10 passages
Application

1. Gene expression studies

2. Signaling pathway research

3. Drug screening and toxicology

4. Disease research

Quality Control Negative for bacteria, yeast, fungi and mycoplasma.
Media Type Cells were cultured in DMEM supplemented with 10% fetal bovine serum.
Freeze Medium Complete medium supplemented with 10% (v/v) DMSO
Shipping Dry ice
Storage Liquid nitrogen
Revival Rapidly thaw cells in a 37°C water bath. Transfer contents into a tube containing pre-warmed media. Centrifuge cells and seed into a 25 cm2 flask containing pre-warmed media.
Growth Properties Cells are cultured as a monolayer at 37°C in a humidified atmosphere with 5% CO2. Split at 80-90% confluence, approximately 1:3-1:6.
Mycoplasma Negative
Format One frozen vial containing millions of cells
Storage Liquid nitrogen
Safety Considerations

The following safety precautions should be observed.

1. Use pipette aids to prevent ingestion and keep aerosols down to a minimum.

2. No eating, drinking or smoking while handling the stable line.

3. Wash hands after handling the stable line and before leaving the lab.

4. Decontaminate work surface with disinfectant or 70% ethanol before and after working with stable cells.

5. All waste should be considered hazardous.

6. Dispose of all liquid waste after each experiment and treat with bleach.

Ship Dry ice
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Spectrin beta, non-erythrocytic 1 (SPTBN1) is a gene encoding a member of the spectrin family. Spectrin is widely distributed in cells and forms a key component of the cytoskeletal system, giving cells their shape and ability to function efficiently. The SPTBN1 protein plays a critical role in maintaining cell shape, cytokinesis, and cell stability. It is also involved in intracellular membrane trafficking and binding to various cellular proteins. Mutations in this gene can lead to a variety of health conditions, including neurodegenerative diseases. Furthermore, SPTBN1 is considered to be a key link between the cell membrane and the underlying cytoskeleton, essential for maintaining the integrity of the plasma membrane and cell morphology. Furthermore, SPTBN1 has been reported to be associated with tumor progression and metastasis in various cancers. Human SPTBN1 Stable Cell Line - HEK293 is a cell line engineered to stably express the human SPTBN1 gene. The SPTBN1 gene was encoded into the HEK293 cell line, a specific line of human embryonic kidney cells. These kidney cells are grown in vitro and are commonly used in cell biology research due to their ease of culture and vigorous growth. The stability of the SPTBN1 gene in this cell line ensures continued expression of the gene, making these cells an extremely reliable tool for studying gene function using advanced molecular techniques.

SPTBN1 exerts anticancer effects in a variety of tumors and is involved in chemoresistance in epithelial ovarian cancer (EOC). Here, researchers report that lower SPTBN1 expression was significantly associated with advanced EOC stage and shorter progression-free survival. SPTBN1 expression was also higher in less aggressive EOC cell lines. Furthermore, SPTBN1 reduced the migration capacity of EOC cells A2780 and HO8910 and inhibited the growth of EOC cells in vitro and tumor xenografts in vivo. SPTBN1 inhibition increased the epithelial-mesenchymal transition marker Vimentin, while reducing the expression of E-cadherin. SOCS3 overexpression or JAK2 inhibition reduced the proliferation and migration of EOC cells, as well as the expression of p-JAK2, p-STAT3, and Vimentin, while SPTBN1 downregulation enhanced these expressions, while the expression of E-cadherin was reversed. It was also demonstrated in mouse embryonic fibroblasts (MEFs) that loss of SPTBN1 activated the JAK/STAT3 signaling pathway while inhibiting SOCS3. These findings suggest that SPTBN1 inhibits the progression of epithelial ovarian cancer through SOCS3-mediated blockade of the JAK/STAT3 signaling pathway.

The results showed that SPTBN1 overexpression inhibited HO8910 cell migration (Figure 1A), while SPTBN1 inhibition promoted A2780 cell migration (Figure 1B).

Figure 1. Cell migration assessment. Overexpression of SPTBN1 inhibits the migration of HO8910 cells (A), whereas downregulation of SPTBN1 promotes the migration of A2780 cells (B).Figure 1. Cell migration assessment. Overexpression of SPTBN1 inhibits the migration of HO8910 cells (A), whereas downregulation of SPTBN1 promotes the migration of A2780 cells (B). (Chen M, et al., 2020)

Human SPTBN1 stable cell lines can be used in a variety of applications, including but not limited to: Drug Discovery: Cell lines provide important tools for the development and testing of new drugs. Human SPTBN1 stable cell lines can be used in high-throughput screening assays to evaluate the efficacy and toxicity of new therapeutic molecules. Cell Research: Can be used to study the molecular and cellular functions of the SPTBN1 gene, which plays a crucial role in cell shape and movement. Disease Models: These cells can serve as in vitro models to understand diseases associated with SPTBN1 gene dysfunction, such as spinocerebellar ataxias and inherited sensory neuropathies. Protein interaction studies: The SPTBN1 protein encoded by the SPTBN1 gene can interact with other proteins, and this cell line can be used to study these interactions. Protein expression: As a stable cell line, it can ensure the continuous and stable expression of SPTBN1 protein, so it can be used for protein expression research.
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Customer Reviews
Time-Saving Solution for Biochemical Analysis

Producing enough protein for biochemical analysis used to be a major bottleneck in our research. The Human SPTBN1 Stable Cell Line now provides us with a robust and high-yield system that simplifies our workflow and allows us to focus more on the analytical part rather than the production phase.

United States

04/30/2022

Versatile tool for drug screening

We have been using Human SPTBN1 Stable Cell Line - HEK293 for compound screening in our drug discovery pipeline. The robustness and predictability of this cell line make it an ideal model for high-throughput screening, allowing us to identify potential drug candidates efficiently and with greater confidence.

Canada

10/07/2021

Reliable and consistent performance

The Human SPTBN1 Stable Cell Line consistently provides reliable results in our signaling experiments. This greatly increases our confidence in our findings.

French

09/13/2020

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