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Real-time Live Imaging of T-cell Signaling Complex Formation
Published on: June 23, 2013
Clonal expansion under the microscope: studying lymphocyte activation and differentiation using live-cell imaging
Michal Polonsky1, Benjamin Chain2, Nir Friedman1
1Department of Immunology, Weizmann Institute of Science, Rehovot, Israel.
Insights
Live cell imaging in microwell arrays allows detailed study of lymphocyte clonal expansion, revealing heterogeneity and differentiation mechanisms crucial for adaptive immunity. This technology offers insights into immune responses and potential manipulation strategies.
Area of Science:
- Immunology
- Cell Biology
- Biotechnology
Background:
- Clonal expansion of lymphocytes is fundamental to adaptive immunity.
- Heterogeneity in expansion levels and cell states within clones is increasingly recognized.
- In vivo studies of clonal expansion face challenges due to microenvironment complexity and tracking limitations.
Purpose of the Study:
- To describe the implementation of live-cell imaging in microwell arrays for studying lymphocyte clonal expansion.
- To highlight insights gained from these experimental systems.
- To outline future research directions in adaptive immunity.
Main Methods:
- Utilizing microfabricated microwell arrays for ex vivo culture of lymphocytes.
- Employing live-cell imaging for continuous, single-cell resolution tracking of thousands of expanding clones.
- Analyzing parameters such as cell number, proliferation, death, and differentiation state.
- Investigating intercellular interactions by co-culturing defined numbers of cells in microwells.
Main Results:
- Demonstrated the capability of microwell arrays to capture detailed clonal expansion dynamics.
- Revealed heterogeneity in cell proliferation, differentiation, and survival within expanding lymphocyte clones.
- Provided insights into stochastic and instructive mechanisms driving immune cell heterogeneity.
- Enabled the study of cell-cell interactions influencing immune responses.
Conclusions:
- Live-cell imaging in microwell arrays is a powerful methodology for dissecting lymphocyte clonal expansion.
- This approach enhances understanding of adaptive immunity heterogeneity and differentiation.
- Future research combining these methods with in vivo single-cell tracking will advance the field.
Abstract:
Clonal expansion of lymphocytes is a hallmark of vertebrate adaptive immunity. A small number of precursor cells that recognize a specific antigen proliferate into expanded clones, differentiate and acquire various effector and memory phenotypes, which promote effective immune responses. Recent studies establish a large degree of heterogeneity in the level of expansion and in cell state between and within expanding clones. Studying these processes in vivo, while providing insightful information on the level of heterogeneity, is challenging due to the complex microenvironment and the inability to continuously track individual cells over extended periods of time. Live cell imaging of ex vivo cultures within micro fabricated arrays provides an attractive methodology for studying clonal expansion. These experiments facilitate continuous acquisition of a large number of parameters on cell number, proliferation, death and differentiation state, with single-cell resolution on thousands of expanding clones that grow within controlled environments. Such data can reveal stochastic and instructive mechanisms that contribute to observed heterogeneity and elucidate the sequential order of differentiation events. Intercellular interactions can also be studied within these arrays by following responses of a controlled number of interacting cells, all trapped within the same microwell. Here we describe implementations of live-cell imaging within microwell arrays for studies of lymphocyte clonal expansion, portray insights already gained from these experiments and outline directions for future research. These tools, together with in vivo experiments tracking single-cell responses, will expand our understanding of adaptive immunity and the ways by which it can be manipulated.
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