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An In vitro Model to Study Heterogeneity of Human Macrophage Differentiation and Polarization
Published on: June 12, 2013
Monocyte isolation techniques significantly impact the phenotype of both isolated monocytes and derived macrophages
Marlene C Nielsen1, Morten N Andersen1,2, Holger J Møller1
1Department of Clinical Biochemistry, Aarhus University Hospital, Aarhus, Denmark.
Abstract:
Monocyte-derived macrophages (MDMs) generated from peripheral blood monocytes are widely used to model human macrophages for in vitro studies. However, the possible impact of different isolation methods on the resulting MDM phenotype is poorly described. We aimed to investigate the effects of three commonly used monocyte isolation techniques on the resulting MDM phenotype. Plastic adhesion, negative selection, and CD14pos selection were compared. Monocyte-derived macrophages were generated by 5-day culture with macrophage and granulocyte-macrophage colony-stimulating factors. We investigated monocyte and MDM yields, purity, viability, and cell phenotype. CD14pos selection resulted in highest monocyte yield (19·8 × 106 cells, equivalent to 70% of total) and purity (98·7%), compared with negative selection (17·7 × 106 cells, 61% of total, 85·0% purity), and plastic adhesion (6·1 × 106 cells, 12·9% of total, 44·2% purity). Negatively selected monocytes were highly contaminated with platelets. Expression of CD163 and CD14 were significantly lower on CD14pos selection and plastic adhesion monocytes, compared with untouched peripheral blood mononuclear cells. After maturation, CD14pos selection also resulted in the highest MDM purity (98·2%) compared with negative selection (94·5%) and plastic adhesion (66·1%). Furthermore, MDMs from plastic adhesion were M1-skewed (CD80high HLA-DRhigh CD163low ), whereas negative selection MDMs were M2-skewed (CD80low HLA-DRlow CD163high ). Choice of monocyte isolation method not only significantly affects yield and purity, but also impacts resulting phenotype of cultured MDMs. These differences may partly be explained by the presence of contaminating cells when using plastic adherence or negative selection. Careful considerations of monocyte isolation methods are important for designing in vitro assays on MDMs.
Insights
The method used to isolate monocytes significantly impacts the yield, purity, and resulting phenotype of monocyte-derived macrophages (MDMs). CD14pos selection offers the highest yield and purity for in vitro macrophage studies.
Area of Science:
- Immunology
- Cell Biology
Background:
- Monocyte-derived macrophages (MDMs) are crucial in vitro models for human macrophages.
- The influence of different monocyte isolation techniques on MDM phenotype is not well-established.
Purpose of the Study:
- To evaluate the impact of three common monocyte isolation methods on MDM yield, purity, and phenotype.
- To determine the optimal method for generating consistent and representative MDMs for research.
Main Methods:
- Comparison of plastic adhesion, negative selection, and CD14pos selection for monocyte isolation.
- Generation of MDMs via 5-day culture with CSF-M and CSF-GM.
- Assessment of monocyte and MDM yield, purity, viability, and cell surface marker expression (CD14, CD163, CD80, HLA-DR).
Main Results:
- CD14pos selection yielded the highest monocyte purity (98.7%) and cell count (19.8 × 10^6).
- MDM purity was highest with CD14pos selection (98.2%), followed by negative selection (94.5%), and plastic adhesion (66.1%).
- Plastic adhesion resulted in M1-skewed MDMs, while negative selection yielded M2-skewed MDMs, likely due to contaminating cells.
Conclusions:
- Monocyte isolation method critically affects MDM yield, purity, and phenotype.
- CD14pos selection is recommended for high-purity MDM generation.
- Researchers must carefully consider isolation techniques to ensure reliable in vitro macrophage models.

