Gene: Csf3
Official Full Name: colony stimulating factor 3 (granulocyte)provided by MGI
Gene Summary: Enables granulocyte colony-stimulating factor receptor binding activity. Acts upstream of or within positive regulation of myeloid cell differentiation. Predicted to be located in endocytic vesicle lumen and extracellular region. Predicted to be active in extracellular space. Is expressed in several structures, including hemolymphoid system; liver; placenta; trunk; and yolk sac. Human ortholog(s) of this gene implicated in several diseases, including allergic cutaneous vasculitis; artery disease (multiple); ischemia (multiple); leukemia (multiple); and lung disease (multiple). Orthologous to human CSF3 (colony stimulating factor 3). [provided by Alliance of Genome Resources, Apr 2025]
Catalog Number | Product Name | Species | Gene | Passage ratio | Mycoplasma testing | Price |
---|---|---|---|---|---|---|
GP00489 | Csf3 gRNA7 KO plasmid | Csf3 | $850 | |||
KO01184 | Csf3 Knockout cell line(RAW 264.7) | Mouse | Csf3 | 1:2-1:3 | Negative | Online Inquiry |
Csf3 Gene Knockout Cell Lines are genetically engineered cell lines designed to specifically disrupt the expression of the colony-stimulating factor 3 (Csf3) gene, which encodes for granulocyte colony-stimulating factor (G-CSF). G-CSF is critical for the proliferation and differentiation of neutrophil precursors in the bone marrow and plays a significant role in the immune response, particularly during infections and inflammatory processes. By eliminating the expression of the Csf3 gene, these cell lines serve as invaluable tools for studying neutrophil biology, immune system regulation, and the pathophysiology of various diseases, including autoimmune disorders and cancers.
The unique mechanism behind these knockout cell lines involves targeted gene editing techniques, such as CRISPR-Cas9, which allow for precise modifications of the genome. This enables researchers to assess the functional consequences of G-CSF absence, leading to insights into signaling pathways, cellular responses, and the overall immune system behavior. Moreover, the availability of these cell lines allows for high-throughput screening of therapeutic agents aimed at modulating neutrophil function or targeting related pathways.
The scientific importance of Csf3 Gene Knockout Cell Lines is underlined by their wide-ranging applications in both research and clinical settings, including drug discovery, immunotherapy development, and the exploration of hematological disorders. Researchers are increasingly realizing the need for model systems that accurately reflect disease mechanisms, and these knockout cell lines fulfill that requirement through their ability to mimic aspects of immune dysfunction.
What sets our Csf3 Gene Knockout Cell Lines apart from alternatives is their reliability, reproducibility, and ease of use. Each cell line is thoroughly validated for genetic knockout efficiency, ensuring researchers obtain consistent results. As a result, users can confidently utilize these tools to advance their investigations without concerns about variability that often comes with less standardized models.
In summary, Csf3 Gene Knockout Cell Lines are essential for studying neutrophil biology and for the development of novel therapeutics. Their precision and reliability make them a go-to resource for clinicians and researchers alike, facilitating groundbreaking discoveries in immunology and beyond. Our company prides itself on providing high-quality biological products backed by extensive expertise and a commitment to advancing scientific research.
Please note that all services are for research use only. Not intended for any clinical use.
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