Agitador Incubador
Multitron Standard
Agitador Incubador
Multitron Standard
Su agitador incubador ideal para aplicaciones microbianas
Comience rápidamente su screening y ampliación con la inigualable facilidad de uso y las condiciones de crecimiento confiables del agitador incubador Multitron Standard.
Ventajas
Esta unidad proporciona más de 60 litros de fermentación microbiana en menos de 1 m2 y el interior puede acomodar frascos de hasta 5 L.
Este agitador proporciona uniformidad en la distribución de la temperatura en toda la bandeja y proporciona resultados reproducibles desde el primer experimento hasta el último.
Nuestro equipo de técnicos experimentados y dedicados le proporciona las herramientas proactivas que necesita para minimizar el riesgo de tiempo de inactividad en su laboratorio y mantener su agitador funcionando las 24 horas del día, los 7 días de la semana.
Esta unidad proporciona más de 60 litros de fermentación microbiana en menos de 1 m2 y el interior puede acomodar frascos de hasta 5 L.
Este agitador proporciona uniformidad en la distribución de la temperatura en toda la bandeja y proporciona resultados reproducibles desde el primer experimento hasta el último.
Nuestro equipo de técnicos experimentados y dedicados le proporciona las herramientas proactivas que necesita para minimizar el riesgo de tiempo de inactividad en su laboratorio y mantener su agitador funcionando las 24 horas del día, los 7 días de la semana.
Agua para incubadoras
Agua doblemente destilada, esterilizada con filtro de 0,1 μm, especialmente formulada para prevenir el crecimiento bacteriano, los contaminantes orgánicos y la corrosión dentro de las incubadoras humidificadas.
Especificaciones del producto
- Disponible como sistema de apilamiento simple, doble o triple, cada unidad se puede configurar de manera única.
- Altura de trabajo cómoda con una huella general reducida: 1070 x 860 x 1710 mm (unidades de apilamiento triple con base baja)
- Alta velocidad de agitación y órbita: 20 - 400 rpm, 25 y 50 mm, con unidad superior de 3 pilas máx. 350 rpm
Publicaciones relacionadas
Todas las publicacionesResearchers from the University of São Paulo have developed an innovative two-stage anaerobic digestion process that enhances methane production from sugarcane vinasse. Their approach, which integrates a fermentative-sulfidogenic stage, boosts biogas quality, lowers costs, and eliminates the need for chemical additives. This promising solution could revolutionize bioenergy recovery in sugarcane biorefineries.
Researchers from the Institute of Bioprocess Engineering and Pharmaceutical Technology at the University of Applied Sciences Mittelhessen have made strides in chemoorganotrophic electrofermentation using Cupriavidus necator. By experimenting with different redox mediators, they identified ferricyanide as a key player in enhancing anodic respiration. With the INFORS HT Multitron providing precise environmental control, the team achieved remarkable current densities, offering a promising solution to the challenges of oxygen-driven fermentation systems.
Researchers from the University of Delaware, Departments of Chemical and Biomolecular Engineering and Electrical and Computer Engineering have made strides in enhancing the resilience of Chinese hamster ovary (CHO) cells used in biopharmaceutical production. By employing the INFORS HT Multitron incubator shaker, they exposed CHO cells to stress conditions commonly encountered during manufacturing, such as elevated levels of ammonia, lactate, and osmolality. Through comprehensive transcriptomic analysis, the team identified 199 genes exhibiting bistable expression, with seven emerging as prime candidates for engineering stress-resistant cell lines. This research holds promise for optimizing cell health and boosting productivity in large-scale bioreactor operations.
Researchers from the University of São Paulo have developed an innovative two-stage anaerobic digestion process that enhances methane production from sugarcane vinasse. Their approach, which integrates a fermentative-sulfidogenic stage, boosts biogas quality, lowers costs, and eliminates the need for chemical additives. This promising solution could revolutionize bioenergy recovery in sugarcane biorefineries.
Researchers from the Institute of Bioprocess Engineering and Pharmaceutical Technology at the University of Applied Sciences Mittelhessen have made strides in chemoorganotrophic electrofermentation using Cupriavidus necator. By experimenting with different redox mediators, they identified ferricyanide as a key player in enhancing anodic respiration. With the INFORS HT Multitron providing precise environmental control, the team achieved remarkable current densities, offering a promising solution to the challenges of oxygen-driven fermentation systems.
Researchers from the University of Delaware, Departments of Chemical and Biomolecular Engineering and Electrical and Computer Engineering have made strides in enhancing the resilience of Chinese hamster ovary (CHO) cells used in biopharmaceutical production. By employing the INFORS HT Multitron incubator shaker, they exposed CHO cells to stress conditions commonly encountered during manufacturing, such as elevated levels of ammonia, lactate, and osmolality. Through comprehensive transcriptomic analysis, the team identified 199 genes exhibiting bistable expression, with seven emerging as prime candidates for engineering stress-resistant cell lines. This research holds promise for optimizing cell health and boosting productivity in large-scale bioreactor operations.
Descargas de productos
Artículos relacionados
BlogIn bioprocessing, selecting the right shaker parameters is essential for optimizing the growth and productivity of various organisms, including bacteria, yeast, and mammalian cells. By fine-tuning these parameters, scientists can create ideal environments for cultivation, maximizing process efficiency and reproducibility. In this installment of our Back to Basics blog series, we focus on how INFORS HT incubator shakers enable better control and flexibility to meet diverse cultivation needs.
Gene therapy is a promising approach for treating various genetic disorders and diseases. A critical component of gene therapy is the production of viral vectors, which serve as delivery vehicles for therapeutic genes. Human Embryonic Kidney 293 (HEK293) cells have become a widely used platform for viral vector production due to their efficiency in transfection and ability to support viral replication. However, optimizing HEK293 cell cultures for large-scale production of viral vectors remains a challenge in making gene therapies more accessible and cost-effective.
Selecting the correct orbital throw for your incubator shaker is critical for achieving optimal results in cell culture, bacterial growth, and other bioprocessing applications. In this installment of the Back to Basics series, we will explore what orbital throw is, why it matters, and how to make the best choice for your experiments.
In bioprocessing, selecting the right shaker parameters is essential for optimizing the growth and productivity of various organisms, including bacteria, yeast, and mammalian cells. By fine-tuning these parameters, scientists can create ideal environments for cultivation, maximizing process efficiency and reproducibility. In this installment of our Back to Basics blog series, we focus on how INFORS HT incubator shakers enable better control and flexibility to meet diverse cultivation needs.
Gene therapy is a promising approach for treating various genetic disorders and diseases. A critical component of gene therapy is the production of viral vectors, which serve as delivery vehicles for therapeutic genes. Human Embryonic Kidney 293 (HEK293) cells have become a widely used platform for viral vector production due to their efficiency in transfection and ability to support viral replication. However, optimizing HEK293 cell cultures for large-scale production of viral vectors remains a challenge in making gene therapies more accessible and cost-effective.
Selecting the correct orbital throw for your incubator shaker is critical for achieving optimal results in cell culture, bacterial growth, and other bioprocessing applications. In this installment of the Back to Basics series, we will explore what orbital throw is, why it matters, and how to make the best choice for your experiments.
Ofertas ideales para optimizar aún más su flujo de trabajo de bioprocesos
Aumente el rendimiento de su agitador, minimice el tiempo de inactividad y maximice la seguridad.
Mejore su agitador de laboratorio con una amplia gama de bandejas, soportes y tapetes adhesivos.
Minimice las interrupciones y garantice una productividad óptima en cada paso de su bioproceso.
Aumente el rendimiento de su agitador, minimice el tiempo de inactividad y maximice la seguridad.
Mejore su agitador de laboratorio con una amplia gama de bandejas, soportes y tapetes adhesivos.
Minimice las interrupciones y garantice una productividad óptima en cada paso de su bioproceso.