Life science research and development
Life science research and development
Advancing bioprocess workflows in life science research
Enhancing bioprocess workflows with superior products and services empowers researchers to focus on their core scientific mission. This commitment drives innovation and progress in biotechnology, microbiology, and pharmaceutical development, fostering advancements in life science research.
Life science research challenges
Enhancing process efficiency
Achieving optimal performance across various processes entails balancing critical parameters such as oxygen levels, pH, and agitation. Leading solutions in the market provide advanced monitoring and control features, enhancing process efficiency to ensure ideal conditions for consistent outcomes in bioprocessing endeavors.
Efficient data management
Handling and analyzing extensive experimental data present significant hurdles in life science research. Advanced software solutions offer robust tools for data management and analysis, empowering researchers to organize, visualize, and interpret data effectively. This streamlined approach is crucial for enhancing research productivity and achieving successful outcomes.
Scalability and reproducibility
Scaling experiments while maintaining reproducibility is critical in all stages of life science research. Advanced systems and software solutions facilitate seamless scale-up processes, ensuring consistency and reproducibility across different experimental scales. This capability is essential for addressing the fundamental challenge of scaling in life science research.
Enhancing process efficiency
Achieving optimal performance across various processes entails balancing critical parameters such as oxygen levels, pH, and agitation. Leading solutions in the market provide advanced monitoring and control features, enhancing process efficiency to ensure ideal conditions for consistent outcomes in bioprocessing endeavors.
Efficient data management
Handling and analyzing extensive experimental data present significant hurdles in life science research. Advanced software solutions offer robust tools for data management and analysis, empowering researchers to organize, visualize, and interpret data effectively. This streamlined approach is crucial for enhancing research productivity and achieving successful outcomes.
Scalability and reproducibility
Scaling experiments while maintaining reproducibility is critical in all stages of life science research. Advanced systems and software solutions facilitate seamless scale-up processes, ensuring consistency and reproducibility across different experimental scales. This capability is essential for addressing the fundamental challenge of scaling in life science research.
Research and development product offerings
INFORS HT is a bioprocess equipment and automation provider, offering bioreactors, incubator shakers, and bioprocess software. Our solutions support drug discovery and process development with a focus on efficiency, scalability, and reproducibility, helping to ensure optimal growth conditions and reliable research outcomes.
Incubator shakers
Discover improved efficiency and performance with INFORS HT incubator shakers. Engineered for optimal space utilization and equipped with precise temperature control, these shakers provide consistent and reproducible outcomes—setting a new standard in excellence for growth conditions.
Bioreactors
Experience groundbreaking advancements in bioprocessing with INFORS HT Bioreactors. Our cutting-edge technology introduces precision, scalability, and control to your process, optimizing productivity for life science researches. Discover how our bioreactors empower you to achieve optimal results in your bioprocess applications.
Bioprocess platform software
Explore how our software innovation is tailored for the life sciences industry. Our eve® bioprocess platform software seamlessly integrates advanced monitoring and control features into cultivation systems, offering real-time assessment of culture parameters and responsive adjustments. With online sensors and intelligent automation, life science researchers can optimize growth conditions throughout their bioprocess operations while ensuring process stability.
A guide for life science beginners
Download this eBook for basic concepts, recipes, and strategies for bioprocesses involving cell culture and microorganisms.
Related content
Related articles
See allResearchers at the University of Stuttgart discovered that blue LED light exposure can boost CHO cell productivity by 57%. Using the INFORS HT Minitron incubator shaker, they demonstrated how precise light optimization offers a simple, non-invasive approach to enhancing biopharmaceutical production. This breakthrough could enhance efficiency in bioreactors.
Researchers from the School of Natural Sciences at TU Munich utilized the Minifors bench-top bioreactor to support their innovative experiment on cell-free gene expression in bioprinted fluidic networks. This study highlights how integrating cell-free protein synthesis into vascularized hydrogels enables dynamic molecular control, providing valuable insights for creating synthetic biomaterials that mimic biological functions.
Researchers from the Department of Parasitology-Mycology at Institut Pasteur de Côte d'Ivoire are exploring new solutions for diagnosing human cysticercosis in remote areas. Their study tested a set of recombinant antigens for use in ELISA assays as a low-cost alternative to neuroimaging. While some challenges remain in optimizing sensitivity, the results show great promise, particularly in regions with limited medical resources. These antigens could provide a crucial screening tool for detecting neurocysticercosis, especially in patients with epilepsy, helping those in remote areas access better diagnosis and care.
Researchers at the University of Stuttgart discovered that blue LED light exposure can boost CHO cell productivity by 57%. Using the INFORS HT Minitron incubator shaker, they demonstrated how precise light optimization offers a simple, non-invasive approach to enhancing biopharmaceutical production. This breakthrough could enhance efficiency in bioreactors.
Researchers from the School of Natural Sciences at TU Munich utilized the Minifors bench-top bioreactor to support their innovative experiment on cell-free gene expression in bioprinted fluidic networks. This study highlights how integrating cell-free protein synthesis into vascularized hydrogels enables dynamic molecular control, providing valuable insights for creating synthetic biomaterials that mimic biological functions.
Researchers from the Department of Parasitology-Mycology at Institut Pasteur de Côte d'Ivoire are exploring new solutions for diagnosing human cysticercosis in remote areas. Their study tested a set of recombinant antigens for use in ELISA assays as a low-cost alternative to neuroimaging. While some challenges remain in optimizing sensitivity, the results show great promise, particularly in regions with limited medical resources. These antigens could provide a crucial screening tool for detecting neurocysticercosis, especially in patients with epilepsy, helping those in remote areas access better diagnosis and care.