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A clinically applicable technique to study cytoskeletal dynamics in normal and abnormal polymorphonuclear leukocytes
R G Watts1, B M Gray, H S Patterson
1Division of Hematology-Oncology, University of Alabama at Birmingham 35233.
Abstract:
Shape change and motility of polymorphonuclear leukocytes (PMNs) are essential for host defense and require dynamic reorganizations of microfilamentous cytoskeleton by reversible polymerization of G-actin into filaments (F-actin). Although clinical disorders of actin polymerization are rare, recently described simple methodologies for assaying actin dynamics in PMNs make the technique readily applicable to clinical studies. To develop a clinically useful F-actin assay, the authors investigated the optimal preparation conditions for PMN isolation that resulted in the least in vitro cytoskeletal activation and evaluated the variability in actin dynamics in acutely and chronically infected patients. Basal and chemotactic factor-activated PMN F-actin content was measured by a previously described flow cytometric technique in fixed, permeabilized, NBDphallacidin-stained PMNs isolated by centrifugation in Percoll or Ficoll-Hypaque density gradients or by countercurrent elutriation. F-actin content is expressed as mean fluorescent channel or relative fluorescence intensity. Basal F-actin in PMNs prepared from countercurrent elutriation (mean fluorescent channel = 79.0 +/- 4.5, n = 6) or by Ficoll Hypaque (82.0 +/- 3.5, n = 4) was significantly higher than endotoxin free, Percoll purified PMNs, whether purified in bulk (56.1 +/- 7.9, n = 8) or by the small volume modification applicable to clinical studies (53.3 +/- 8.7, n = 15). Basal Ficoll Hypaque purified PMNs have evidence of shape change, whereas endotoxin free, Percoll purified PMNs are smooth and round and represent the most basal cell equivalent in F-actin content to a circulating PMN.(ABSTRACT TRUNCATED AT 250 WORDS)
Insights
Optimal preparation of polymorphonuclear leukocytes (PMNs) is crucial for accurate actin dynamics assays. Endotoxin-free Percoll purification yields the most basal F-actin content, representing circulating PMNs for clinical studies.
Area of Science:
- Immunology
- Cell Biology
- Biochemistry
Background:
- Polymorphonuclear leukocytes (PMNs) shape change and motility are vital for host defense.
- These processes depend on dynamic reorganization of the actin cytoskeleton via G-actin to F-actin polymerization.
- Assaying actin dynamics in PMNs is now clinically applicable.
Purpose of the Study:
- To identify optimal PMN isolation conditions minimizing in vitro cytoskeletal activation.
- To evaluate actin dynamics variability in infected patients.
- To develop a clinically useful F-actin assay.
Main Methods:
- Flow cytometry was used to measure F-actin content in fixed, permeabilized, NBDphallacidin-stained PMNs.
- PMNs were isolated using Percoll, Ficoll-Hypaque density gradients, or countercurrent elutriation.
- F-actin content was quantified as mean fluorescent channel or relative fluorescence intensity.
Main Results:
- Countercurrent elutriation and Ficoll-Hypaque methods yielded significantly higher basal F-actin content in PMNs compared to Percoll methods.
- Endotoxin-free Percoll-purified PMNs (bulk and clinical modifications) showed the lowest basal F-actin.
- Percoll-purified PMNs were smooth and round, representing the most basal state, unlike Ficoll-Hypaque purified PMNs which showed shape change.
Conclusions:
- Endotoxin-free Percoll purification is optimal for isolating PMNs with minimal in vitro cytoskeletal activation.
- This method provides a reliable basal F-actin content, crucial for clinical studies on PMN actin dynamics.
- Accurate assessment of PMN actin dynamics is essential for understanding host defense mechanisms.

