ELISA kits are commonly used to measure soluble biomarkers across a variety of research areas. ELISA kits for Human Latexin can be quantified in various samples, including plasma, serum, supernatant.
Invitrogen ELISA kits exist in two formats: Uncoated and Coated....ELISA kits are commonly used to measure soluble biomarkers across a variety of research areas. ELISA kits for Human Latexin can be quantified in various samples, including plasma, serum, supernatant.
Invitrogen ELISA kits exist in two formats: Uncoated and Coated. Uncoated ELISA kits...ELISA kits are commonly used to measure soluble biomarkers across a variety of research areas. ELISA kits for Human Latexin can be quantified in various samples, including plasma, serum, supernatant.
Invitrogen ELISA kits exist in two formats: Uncoated and Coated. Uncoated ELISA kits include all the necessary reagents to coat your own plates and run your assay with maximum flexibility. Coated ELISA kits...
ELISA kits are commonly used to measure soluble biomarkers across a variety of research areas. ELISA kits for Human Latexin can be quantified in various samples, including plasma, serum, supernatant.
Invitrogen ELISA kits exist in two formats: Uncoated and Coated. Uncoated ELISA kits include all the necessary reagents to coat your own plates and run your assay with maximum flexibility. Coated ELISA kits are ready-to-use and quality tested for sensitivity, specificity, precision and lot-to-lot consistency.
靶标信息
Latexin, also known as LXN, is a carboxypeptidase A inhibitor found in mammals, and it shares structural similarities with cystatin C, suggesting its role in protein abundance regulation. The LXN gene is located on chromosome 3, specifically at 3q25.32, encompassing 5 exons and coding for a protein of 222 amino acids. Latexin is identified as a molecular marker in the developing rat brain and is known for its tumor suppressive activities. With a molecular weight of 29 kDa, LXN is highly expressed in macrophages and plays a significant role in the inflammatory immune response, including regulating macrophage polarity and enhancing tumor immune surveillance. Research involving a Lxn knockout mouse model has demonstrated its importance in the regulation of hematopoietic stem cell function, suggesting its involvement in cellular homeostasis and survival mechanisms. Additionally, latexin contributes to sex dimorphism in hematopoiesis through gender-specific differential expression of microRNA, indicating its nuanced role in genetic regulation and cellular processes.