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Published on: July 27, 2011
Interstitial Cajal-like cells (ICLC) in atrial myocardium: ultrastructural and immunohistochemical characterization
M E Hinescu1, Mihaela Gherghiceanu, E Mandache
1Department of Cellular and Molecular Medicine, Carol Davila University of Medicine and Pharmacy, Bucharest, Romania.
Insights
Interstitial Cajal-like cells (ICLC) exist in human atrial myocardium, identified via non-conventional light microscopy and immunohistochemistry. These cells may play roles in heart rhythm and signaling.
Area of Science:
- Cardiovascular Biology
- Cell Biology
- Histology
Background:
- Interstitial Cajal-like cells (ICLC) were previously identified in human atrial myocardium via transmission electron microscopy.
- Understanding the precise role and characteristics of these cells is crucial for comprehending atrial function and pathology.
Purpose of the Study:
- To identify and characterize interstitial Cajal-like cells (ICLC) in human atrial myocardium using non-conventional light microscopy (NCLM) and immunohistochemistry (IHC).
- To investigate the quantitative distribution, morphology, and potential functional associations of ICLC within the atrial tissue.
Main Methods:
- Non-conventional light microscopy (NCLM) on semi-thin sections stained with toluidine blue.
- Immunohistochemistry (IHC) for CD117/c-kit, CD34, vimentin, and other antigens for differential diagnosis.
- Quantitative analysis of ICLC volume percentage and spatial relationship with atrial myocytes, nerve fibers, and capillaries.
Main Results:
- ICLC constitute approximately 1-1.5% of atrial myocardial volume, with one ICLC per 8-10 atrial myocytes.
- ICLC exhibit characteristic thin, long, moniliform processes, forming stromal synapses with other interstitial cells.
- Immunohistochemistry revealed ICLC are positive for vimentin, variably express CD117/c-kit and CD34, and are negative for nestin and desmin.
Conclusions:
- This study provides further evidence for the existence of ICLC in human atrial myocardium.
- ICLC are suggested to be involved in pacemaking, secretion, and intercellular signaling.
- ICLC may play a role in atrial arrhythmogenesis and remodeling.
Abstract:
We have previously reported (Hinescu & Popescu, 2005) the existence of interstitial Cajal-like cells (ICLC), by transmission electron microscopy, in human atrial myocardium. In the present study, ICLC were identified with non-conventional light microscopy (NCLM) on semi-thin sections stained with toluidine blue and immunohistochemistry (IHC) for CD117/c-kit, CD34, vimentin and other additional antigens for differential diagnosis. Quantitatively, on semi-thin sections, ICLC represent about 1-1.5% of the atrial myocardial volume (vs. approximately 45% working myocytes, approximately 2% endothelial cells, 3-4% for other interstitial cells, and the remaining percentage: extracellular matrix). Roughly, there is one ICLC for 8-10 working atrial myocytes in the intercellular space, beneath the epicardium, with a characteristic (pyriform, spindle or triangular) shape. These ICLC usually have 2-3 definitory processes, emerging from cell body, which usually embrace atrial myocytes (260 nm average distance plasmalemma/sarcolemma) or establish close contact with nerve fibers or capillaries (approximately 420 nm average distance to endothelial cells). Cell prolongations are characteristic: very thin (mean thickness = 0.15+/-0.1 microm), very long for a non-nervous cell (several tens of microm) and moniliform (uneven caliber). Stromal synapses between ICLC and other interstitial cells (macrophages) were found (e.g. in a multicontact type synapse, the average synaptic cleft was approximately 65 nm). Naturally, the usual cell organelles (mitochondria, smooth and rough endoplasmic reticulum, intermediate filaments) are relatively well developed. Caveolae were also visible on cell prolongations. No thick filaments were detected. IHC showed that ICLC were slightly and inconsistently positive for CD117/c-kit, variously co-expressed CD34 and EGF receptor, but appeared strongly positive for vimentin, along their prolongations. Some ICLC seemed positive for a-smooth muscle actin and tau protein, but were negative for nestin, desmin, CD13 and S-100. In conclusion, we provide further evidence of the existence of ICLC in human atrial myocardium, supporting the possible ICLC role in pacemaking, secretion (juxta- and/or paracrine), intercellular signaling (neurons and myocytes). For pathology, ICLC might as well be 'players' in arrhythmogenesis and atrial remodeling.
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