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An optimized dissociation protocol for FACS-based isolation of rare cell types from Caenorhabditis elegans L1 larvae.


ABSTRACT: Single-cell isolation and transcriptomic analysis of a specific cell type or tissue offers the possibility of studying cell function and heterogeneity in time-dependent processes with remarkable resolution. The reduced tissue complexity and highly stereotyped development of Caenorhabditis elegans, combined with an extensive genetic toolbox and the ease of growing large tightly synchronized populations makes it an exceptional model organism for the application of such approaches. However, the difficulty to dissociate and isolate single cells from larval stages has been a major constraint to this kind of studies. Here, we describe an improved protocol for dissociation and preparation of single cell suspensions from developmentally synchronized populations of C. elegans L1 larvae. Our protocol has been empirically optimized to allow efficient FACS-based purification of large number of single cells from rare cell types, for subsequent extraction and sequencing of their mRNA.

SUBMITTER: Fernandes Povoa EE 

PROVIDER: S-EPMC7265044 | biostudies-literature | 2020

REPOSITORIES: biostudies-literature

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An optimized dissociation protocol for FACS-based isolation of rare cell types from <i>Caenorhabditis elegans</i> L1 larvae.

Fernandes Póvoa Euclides E EE   Ebbing Annabel L P ALP   Betist Marco C MC   van der Veen Christa C   Korswagen Hendrik C HC  

MethodsX 20200516


Single-cell isolation and transcriptomic analysis of a specific cell type or tissue offers the possibility of studying cell function and heterogeneity in time-dependent processes with remarkable resolution. The reduced tissue complexity and highly stereotyped development of <i>Caenorhabditis elegans</i>, combined with an extensive genetic toolbox and the ease of growing large tightly synchronized populations makes it an exceptional model organism for the application of such approaches. However,  ...[more]

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