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Explore our series of high-quality proteins covering comprehensive diagnostic indicators in order to facilitate the in vitro diagnostic research of neurological diseases.
Pre-formed fibrils are an invaluable preclinical model for exploring pathogenesis of neurological diseases through aggregation of misfolded proteins. Explore our pre-seeded PFFs to use in your research.
Neural factors are a class of protein molecules with neurotrophic activity that can promote the survival and regeneration of nerve cells. Explore our series of recombinant neural factors to support the culture and differentiation of nerve cells.
Partnering with Biochips de diagnóstico, we now provide solutions for in vivo electrophysiology recordings, including high-quality multi-channel electrodes and other products to facilitate high-quality, efficient analysis of neural circuit structure and function.
Neural antibodies can specifically label and recognize molecules on nerve cells, enabling a more comprehensive understanding and study of the biological properties, functions, and mechanisms of nerve cells in neurodegenerative diseases.
Covering iPSC neural cells, brain organoids, and microelectrode array services, our tools support neural development, disease modeling, and drug screening with high quality and reliable performance to meet diverse research needs.
Los marcadores de proteínas son un componente esencial en la investigación biológica y el desarrollo de fármacos. Ya sea para electroforesis de proteínas o western blot (Mancha Occidental), nuestros marcadores de proteínas teñidos previamente le ayudan a determinar rápidamente el peso molecular de la proteína objetivo o a evaluar la eficacia de la transferencia.
La estreptavidina es una proteína tetramérica que proporciona 4 sitios de unión de biotina de alta afinidad. Ofrecemos una amplia gama de productos preconjugados con estreptavidina para apoyar su investigación, así como proteínas biotiniladas.
El ajuste del anticuerpo de control de isotipo correspondiente para detectar la unión no específica puede reducir la generación de resultados falsos positivos y evaluar los posibles factores de influencia con precisión en el proceso de desarrollo de fármacos. Explore nuestros controles de isotipo para su investigación.
La eficacia de un anticuerpo terapéutico depende del fragmento Fab y de su actividad de unión al antígeno objetivo, pero también depende del fragmento Fc y de su interacción con receptores Fc clave, por lo que los candidatos deben probarse frente a un panel de receptores durante la ingeniería de anticuerpos. ¡Explore nuestra amplia colección de proteínas recombinantes del receptor Fc!
Nos comprometimos a acelerar la investigación, el desarrollo, la aprobación y la comercialización de vacunas contra enfermedades infecciosas. Con esta idea, ViruStop está especialmente diseñado para la investigación de virus
¡Disponemos de anticuerpos antígeno-específicos o neutralizantes para su investigación! ¡Si desea realizar ensayos de neutralización o evaluar títulos de anticuerpos, explore nuestro catálogo de anticuerpos!
¡En lugar de desarrollar sus propios ensayos, explore nuestros kits y ensayos diseñados para cuantificar rápidamente la presencia de antígenos o el título de anticuerpos!
Kallikreins are a subgroup of serine proteases, enzymes capable of cleaving peptide bonds in proteins. In humans, tissue kallikrein-related peptidases (KLKs) encode a family of fifteen closely related serine proteases. Kallikreins are responsible for the co-ordination of various physiological functions including blood pressure, semen liquefaction and skin desquamation. Serine protease which exhibits a preference for Arg over Lys in the substrate P1 position and for Ser or Pro in the P2 position. Shows activity against amyloid precursor protein, myelin basic protein, gelatin, casein and extracellular matrix proteins such as fibronectin, laminin, vitronectin and collagen.
Kallikrein-6 (KLK6) is also known as Bssp, Klk7, MGC9355, PRSS18, PRSS9, SP59 and hK6. KLK6 is one of the fifteen kallikrein subfamily members, and is regulated by steroid hormones. In tissue culture, KLK6 has been found to generate amyloidogenic fragments from the amyloid precursor protein, suggesting a potential for involvement in Alzheimer's disease. The prior studies indicate KLK6 is elevated at sites of central nervous system (CNS) inflammation and which shows regulated expression with T cell activation. Notably, KLK6 is also elevated in the serum of multiple sclerosis (MS) patients. KLK6 promotes lymphocyte survival by a mechanism that depends in part on activation of PAR1. KLK6 are also associated with neuronal plasticity in the central nervous system.