Canine SCF (Stem Cell Factor) ELISA

Catalog Number:
DIY1565D
Availability:
In stock
Application:
ELISA
100% Homology:
Canis lupus dingo (dingo), Canis lupus familiaris (dog)

Components

UsageQuantityComponentSize
Detection Antibody50 µgKPB1564D-050
Standard5 µgRP1326D-005
Capture Antibody100 µgKP1563D-1001 Pack (<= 10 Plates)
Capture Antibody100 µg X 2KP1563D-1001 Pack (<= 20 Plates)
  • The Canine SCF (Stem Cell Factor) ELISA is designed for the quantitative measurement of SCF in cell culture supernatants from dogs (Canis lupus familiaris) and can also be used to measure SCF in a variety of biological sample types reported in the literature, including serum, plasma, whole blood, bone marrow aspirates, and tissue lysates from organs such as spleen, skin, lung, and gastrointestinal tissues. While the assay is optimized for cell culture supernatants, minor modifications to the protocol may be required when measuring SCF in other sample types to ensure optimal sensitivity and accuracy, allowing researchers to adjust buffers, antibody concentrations, incubation times, temperatures, and other assay conditions as needed. SCF, also known as KIT ligand, is a hematopoietic growth factor produced by stromal cells, fibroblasts, endothelial cells, and epithelial cells and plays a central role in hematopoietic stem cell maintenance, mast cell development, melanocyte biology, and immune cell survival through signaling via the c-KIT (CD117) receptor. In the canine animal model, SCF is widely studied in the context of mast cell tumors, hematologic disorders, skin biology, pigmentation, and stem cell biology, making it a critical biomarker in veterinary oncology and regenerative medicine. Measurement of canine SCF provides valuable insight into stem cell signaling, disease progression, and therapeutic response, with reported concentrations typically detected at low to mid-picogram-per-milliliter levels in serum or plasma under basal conditions and increasing to higher picogram-per-milliliter ranges in cell culture supernatants, bone marrow samples, or disease-associated states, depending on sample type and physiological or pathological context. The kit contains a capture antibody, detection antibody, and recombinant canine SCF protein standard for assay development, and these antibodies have been validated to function together in an ELISA format using the provided standard. The quantities of kit components are not matched, and individual components may be purchased separately. This product is for research use only and is manufactured in the USA.
Storage Conditions2°C to 8°C or -20°C
Country Of OriginUSA
Canine Stem Cell Factor (SCF) (also known as KIT ligand, KITLG, mast cell growth factor, or steel factor) is a cytokine and growth factor that plays a critical role in hematopoiesis, stem cell maintenance, and immune cell development in dogs (Canis lupus familiaris). SCF belongs to a group of hematopoietic growth factors that regulate the survival, proliferation, and differentiation of stem and progenitor cells. It exerts its biological effects by binding to the c-Kit receptor (CD117), a receptor tyrosine kinase expressed on hematopoietic stem cells, mast cells, melanocytes, and germ cells, activating intracellular signaling pathways including PI3K/AKT, MAPK, and JAK/STAT that promote cell survival, proliferation, and differentiation. In dogs, SCF is produced by stromal cells, fibroblasts, endothelial cells, and epithelial cells, and exists in both membrane-bound and soluble forms, allowing both localized and systemic regulation of c-Kit–expressing cells. Canine SCF is particularly important for mast cell development and survival, making it highly relevant to canine mast cell tumors, one of the most common skin cancers in dogs, where dysregulated c-Kit signaling contributes to abnormal mast cell proliferation. SCF also plays roles in hematopoietic stem cell maintenance, pigmentation, and reproductive cell development. Because of its central role in c-Kit–mediated signaling and stem cell biology, canine SCF is widely studied in veterinary oncology, hematopoiesis, and regenerative medicine, contributing to understanding of mast cell disease and growth factor–regulated cellular development in dogs.

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