Cell therapy is therapy in which cellular material is injected into a patient; this generally means intact, living cells. For example, T cells capable of fighting cancer cells via cell-mediated immunity may be injected in the course of immunotherapy.
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Immunotherapy has transformed cancer treatment, but persistent challenges, such as T cell exhaustion, limited persistence, and variability in response, continue to impact therapeutic success...
Over the past decade, flow cytometry has undergone transformative advancements, notably with the adoption of spectral flow cytometry and the emergence of next-generation imaging cytometers....
The emergence of advanced computational design tools, combined with breakthrough technologies in molecular biology and sequencing, has revolutionized protein engineering. Current cell therap...
This webinar explains how CAR-T cells transfected using Solupore® technology from Avectas and sorted using the CGX10 Cell Isolation System from Sony Biotechnology outperform unsorted cel...
Engineered immune cell therapies offer the promise of more tailored interventions than traditional systemic checkpoint blockades, but so far remain ineffective across the majority of clinica...
Cell counting is a fundamental step in many workflows, including cell culture, cell analysis, transfection, single cell sequencing, and cell therapy. Automated cell counters have improved th...
CAR-T Therapy continues to evolve rapidly, mRNA encoding CAR constructs directly to T cells in the bloodstream, potentially enabling CAR T cell production in the body without the need to iso...
Efficient viral vector production is essential for the cost-effective manufacture of cell and gene therapies. Many of the current production workflows are reliant on basal media in batch-mod...
For large-scale enrichment and isolation of immune cells or stem cells for cell therapy applications, common cell purification platforms separate cells based on a single surface antigen. Enr...
Rapid developments in gene-modified cell therapies, especially CAR T-cell therapies, has increased demand for fast and reliable analytics methods for research, in-process development, and ma...
Are low gene editing efficiency or gene expression levels preventing your research from advancing? Is your transfection method killing your cells? Are you struggling to reproduce your initia...
OCT 16, 2024 | 1:00 PM
C.E. CREDITS
T cell lymphocytes play a central role in the adaptive immune response. They are an essential tool of adoptive cell therapy for the treatment of chronic viral infections and malignant diseas...
Engineered immune cell therapies offer the promise of more tailored interventions than traditional systemic checkpoint blockades, but so far remain ineffective across the majority of clinica...
Introduction to Magnetic Bead: Understand the history, development, versatility, and impact of Dynabeads magnetic beads: After listening to the podcast, learners will be able to explain the...
Cancer immunotherapy approaches such as adoptive transfer of chimeric antigen receptor (CAR) T cells or tumor-infiltrating lymphocytes have yielded promising results in hematological maligna...
The revolution in life science research aims to understand how single cells work, which is crucial for developing new therapies. Traditional methods like FACS and scRNASeq give only a partia...