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September 22, 2014The Journal of Experimental Medicine484 citationsOpen Access

Progressive replacement of embryo-derived cardiac macrophages with age

KMKaaweh MolawiYWYochai WolfPKPrashanth K. Kandalla

Structured PICO

P
Population
Mice models (genetic fate mapping, parabiotic mice, bone marrow chimeras)
O
Outcome
Origins and cellular dynamics of cardiac macrophages during postnatal development and agingsurrogate

This study demonstrates that resident embryo-derived cardiac macrophages are progressively replaced by monocyte-derived macrophages as mice age, even without inflammation.

Abstract

Cardiac macrophages (cMΦ) are critical for early postnatal heart regeneration and fibrotic repair in the adult heart, but their origins and cellular dynamics during postnatal development have not been well characterized. Tissue macrophages can be derived from embryonic progenitors or from monocytes during inflammation. We report that within the first weeks after birth, the embryo-derived population of resident CX3CR1(+) cMΦ diversifies into MHCII(+) and MHCII(-) cells. Genetic fate mapping demonstrated that cMΦ derived from CX3CR1(+) embryonic progenitors persisted into adulthood but the initially high contribution to resident cMΦ declined after birth. Consistent with this, the early significant proliferation rate of resident cMΦ decreased with age upon diversification into subpopulations. Bone marrow (BM) reconstitution experiments showed monocyte-dependent quantitative replacement of all cMΦ populations. Furthermore, parabiotic mice and BM chimeras of nonirradiated recipient mice revealed a slow but significant donor contribution to cMΦ. Together, our observations indicate that in the heart, embryo-derived cMΦ show declining self-renewal with age and are progressively substituted by monocyte-derived macrophages, even in the absence of inflammation.

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Cite This Study

Molawi et al. (2014) studied this question.

synapsesocial.com/papers/69dcd6f798c6111533e54516https://doi.org/10.1084/jem.20140639
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