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Mouse Clec9a Stable Cell Line - CHO-K1

Mouse Clec9a Stable Cell Line - CHO-K1

Cat.No. :  CSC-RO0248 Host Cell:  CHO-K1

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Cat. No. CSC-RO0248
Description This cell line is egineered to stably overexpress mouse Clec9a with no tag. Overexpression of mouse Clec9a has been validated through real-time QPCR and FACS.
Host Cell CHO-K1
Host Cell Species Cricetulus griseus (Chinese hamster)
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.
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.
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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Background

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The Clec9a gene encodes a member of the C-type lectin superfamily, which is involved in the recognition and binding of pathogens. Clec9a is primarily expressed in dendritic cells and plays a crucial role in the initiation of immune responses. It has been shown to bind to various pathogens, such as bacteria and fungi, and to facilitate the presentation of these pathogens to T cells, thereby activating the immune response. CHO Cell Line (Chinese Hamster Ovary) is a widely used cell line in research. It was derived from the ovary of a Chinese hamster and has been extensively characterized. CHO cells are known for their ability to grow in vitro and are often used for the production of recombinant proteins and the study of cellular metabolism. They have also been used in the development and production of vaccines and therapeutic proteins.
The Mouse Clec9a Stable CHO Cell Line has demonstrated potential in the treatment of various diseases. Clec9a, a member of the C-type lectin domain family, plays a crucial role in the immune response against infections and tumors. In the context of immunotherapy, the Mouse Clec9a Stable CHO Cell Line can be used to develop novel treatments for cancer and infectious diseases. Clec9a has been shown to activate immune cells, such as dendritic cells, and enhance their antigen presentation capabilities. By modulating Clec9a expression and function, researchers can potentially improve the efficacy of immunotherapies and enhance the body’s immune response against tumors and pathogens. Furthermore, this cell line can be utilized to study the role of Clec9a in inflammation and autoimmune diseases. By investigating the effects of genetic or pharmacological interventions on Clec9a expression and function, researchers can identify new targets for therapeutic intervention and develop drugs that modulate Clec9a-mediated signaling pathways.
Customer Q&As
What is the Clec9a gene and its function?

A: The Clec9a gene encodes for the CLEC9A protein, also known as C-type lectin domain family 9A. This protein is a member of the C-type lectin family, a group of carbohydrate-binding proteins involved in various biological processes. CLEC9A is expressed on the surface of dendritic cells and plays a role in the activation of innate immunity and the regulation of adaptive immune responses.

How does the Clec9a gene contribute to immune response?

A: The Clec9a gene contributes to immune response by enabling dendritic cells to detect and respond to pathogens and tumor cells. CLEC9A binds to specific carbohydrate structures on the surface of these cells, triggering their activation and the subsequent production of pro-inflammatory cytokines. This process is crucial for the initiation and regulation of immune responses.

Are there any diseases associated with mutations in the Clec9a gene?

A: Mutations in the Clec9a gene are not commonly associated with specific diseases. However, dysfunctional CLEC9A expression or function may lead to alterations in immune responses, potentially affecting the body's ability to mount effective defenses against pathogens or cancer cells.

How is the expression of the Clec9a gene regulated?

A: The expression of the Clec9a gene is regulated by various factors, including cytokines and pathogen-associated molecular patterns. The activation of dendritic cells by pathogens or tumor cells can lead to the upregulation of CLEC9A expression. Additionally, regulatory mechanisms, such as epigenetic modifications and post-translational modifications, can influence the expression of CLEC9A, ensuring proper immune responses.

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Customer Reviews
Quality control

The Mouse Clec9a Stable Cell Line - CHO undergoes strict quality control measures, including mycoplasma testing and viability checks, ensuring that researchers receive a high-quality and reliable cell line for their experiments.

Canada

07/18/2021

Delivery system

The cell line is provided with a well-established and efficient delivery system, enabling researchers to receive the cells in a timely manner while maintaining their viability and functionality during transit.

United Kingdom

01/05/2024

Shipping and storage conditions

The Mouse Clec9a Stable Cell Line - CHO is shipped under optimal conditions, including temperature-controlled packaging and overnight delivery, to ensure the preservation of cell viability. Additionally, clear storage guidelines are provided to maintain cell line stability over time.

Germany

11/23/2023

Application range

This cell line finds applications in various research areas, such as immunology, cancer biology, and drug discovery. It can be used for studying the function of Clec9a, developing antibody-based therapeutics, and assessing the immune response to potential therapeutic candidates.

United States

06/02/2023

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