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L M Popescu

Publications and source records attributed to L M Popescu.

71 records · Page 4Linked to original sources

The connective connection: interstitial cells of Cajal (ICC) and ICC-like cells establish synapses with immunoreactive cells. Electron microscope study in situ.

We present transmission electron microscope (TEM) evidence that ICC and ICC-like cells frequently establish close contacts (synapses) with several types of immunoreactive cells (IRC): lymphocytes, plasma cells, eosinophils, basophils, macrophages and mast cells. Such synapses were found in various organs: human mammary gland and myometrium, as well as rat stomach, gut, bladder and uterus. Specimens were observed by conventional TEM on ultrathin sections. Based on morphometric analyses and computer-aided 3-D reconstructions from serial sections, we propose an operational definition of ICC-IRC synapses: cell-to-cell close contacts where the two cells are separated by only approximately 15 nm, equivalent to twice the plasmalemmal thickness. Two types of such synapses were found: (i) uniform ('plain') synapses (PS). close contact extending for >200 nm, and (ii) multi-contact ('kiss and run') synapses (MS)--with multiple, focal, close-contact points alternating with regions of wider intermembrane distance. For instance, a typical PS between a rat bladder ICC-like cell and an eosinophil was 2.48 microm long and 11+/-4 nm wide. By contrast, a MS synapse in rat myometrium (between an ICC-like cell and an eosinophil) was 8.64 microm long and had 13 contact points. The synaptic cleft measured 15+/-8 nm at contact points and approximately 100 nm or more in wider areas. These synapses are different from gap junctions usually seen between ICC and between ICC and smooth muscle cells. We previously proposed that ICC-like cells might represent stromal progenitor cells, participate in juxtacrine/paracrine signaling and play a role in immune surveillance. The nanoscopic distances between the two contiguous membranes suggest a juxtacrine cell-to-cell signaling (chemical synapse), via juxtacrinins, a specific case of phenomenins. However, the (micro)vesicles found in the synaptic cleft may correspond to an exosome-based mechanism.

Animals↗

Cajal-type cells from human mammary gland stroma: phenotype characteristics in cell culture.

We report here the in vitro isolation of Cajal-like interstitial cells from human inactive mammary-gland stroma. Primary cell cultures examined in phase-contrast microscopy or after vital methylene-blue staining revealed a cell population with characteristic morphological phenotype: fusiform, triangular or polygonal cell body and the corresponding (very) long, slender, moniliform cytoplasmic processes. Giemsa staining pointed out the typical knobbed aspect of cell prolongations. Immunofluorescence (IF) showed, like in situ immunohistochemistry, that Cajal-type cells in vitro (primary cultures), expressed c-kit/CD117 and vimentin. In conclusion, the images presented here reinforce our previous hypothesis that human mammary glands have a distinct population of Cajal-like cells in non-epithelial tissue compartments.

Breast↗

Interstitial Cajal-like cells (ICLC) in atrial myocardium: ultrastructural and immunohistochemical characterization.

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.

Animals↗

Insights into the interstitium of ventricular myocardium: interstitial Cajal-like cells (ICLC).

We have previously described interstitial Cajal-like cells (ICLC) in human atrial myocardium. Several complementary approaches were used to verify the existence of ICLC in the interstitium of rat or human ventricular myocardium: primary cell cultures, vital stainings (e.g.: methylene blue), traditional stainings (including silver impregnation), phase contrast and non-conventional light microscopy (Epon-embedded semithin sections), transmission electron microscopy (TEM) (serial ultrathin sections), stereology, immunohistochemistry (IHC) and immunofluorescence (IF) with molecular probes. Cardiomyocytes occupy about 75% of rat ventricular myocardium volume. ICLC represent approximately 32% of the number of interstitial cells and the ratio cardiomyocytes/ICLC is about 70/1. In the interstitium, ICLC establish close contacts with nerve fibers, myocytes, blood capillaries and with immunoreactive cells (stromal synapses). ICLC show characteristic cytoplasmic processes, frequently two or three, which are very long (tens up to hundreds of microm), very thin (0.1-0.5 microm thick), with uneven caliber, having dilations, resulting in a moniliform aspect. Gap junctions between such processes can be found. Usually, the dilations are occupied by mitochondria (as revealed by Janus green B and MitoTracker Green FM) and elements of endoplasmic reticulum. Characteristically, some prolongations are flat, with a veil-like appearance, forming a labyrinthic system. ICLC display caveolae (about 1 caveola/ 1 microm cell membrane length, or 2-4% of the relative cytoplasmic volume). Mitochondria and endoplasmic reticulum (rough and smooth) occupy 5-10% and 1-2% of cytoplasmic volume, respectively. IHC revealed positive staining for CD34, EGFR and vimentin and, only in a few cases for CD117. IHC was negative for: desmin, CD57, tau, chymase, tryptase and CD13. IF showed that ventricular ICLC expressed connexin 43. We may speculate that possible ICLC roles might be: intercellular signaling (neurons, myocytes, capillaries etc.) and/or chemomechanical sensors. For pathology, it seems attractive to think that ICLC might participate in the process of cardiac repair/remodeling, arrhythmogenesis and, eventually, sudden death.

Animals↗

Caveolar nanospaces in smooth muscle cells.

Caveolae, specialized membrane nanodomains, have a key role in signaling processes, including calcium handling in smooth muscle cells (SMC). We explored the three-dimensional (3D) architecture of peripheral cytoplasmic space at the nanoscale level and the close spatial relationships between caveolae, sarcoplasmic reticulum (SR), and mitochondria, as ultrastructural basis for excitation-contraction coupling system and, eventually, for excitation-transcription coupling. About 150 electron micrographs of SMC showed that superficial SR and peripheral mitochondria are rigorously located along the caveolar domains of plasma membrane, alternating with plasmalemmal dense plaques. Electron micrographs made on serial ultrathin sections were digitized, then computer-assisted organellar profiles were traced on images, and automatic 3D reconstruction was obtained using the Reconstruct software. The reconstruction was made for 1 microm(3) in rat stomach (muscularis mucosa) and 10 microm(3) in rat urinary bladder (detrusor). Caveolae, peripheral SR, and mitochondria close appositions create coherent cytoplasmic nanoscale subdomains of about 15 nm distance. Apparently, 80% of caveolae establish close contacts with SR and about 10% establish close contacts with mitochondria in both types of SMC. Thus, our results showed that caveolae and peripheral SR build Ca(2+) release units at which mitochondria often could play a part. The couplings caveolae-SR occupy 4.19% of cellular volume in stomach and 3.10% in rat urinary bladder, while couplings caveolae-mitochondria occupy 3.66% and 3.17% respectively. We conclude that there are strategic caveolae-SR or caveolae-mitochondria contacts at the nanoscale level in the cortical cytoplasm of SMC, presumably responsible for vectorial control of free Ca(2+) cytoplasmic concentrations in definite nanospaces. This may account for selective activation of specific Ca(2+) signaling pathways.

Animals↗

Interstitial Cajal-like cells (ICLC) as steroid hormone sensors in human myometrium: immunocytochemical approach.

Expression of estrogen (ER) and progesterone (PR) receptors was investigated in cultured human normal myometrial cells (non-pregnant uterus, fertile period). The ER and PR expression was studied by immunohistochemistry and immunofluorescence on either myocytes or interstitial Cajal-like cells (ICLC). Only those cells double immunostained for c-kit and steroid receptors were considered as ICLC. ER and/or PR immunoreactivity was localized in ICLC, primarily concentrated at the nucleus level, but it was also observed in the cell body (cytoplasm) and processes. Stronger immunopositive reaction in the ICLC nucleus for PR than for ER was noted. Under our experimental conditions, a clear positive repeatable reaction for steroid receptors could not be detected in myocytes. In conclusion, these data suggest that ICLC could be true hormonal 'sensors', possibly participating in the regulation of human myometrial contractions (via gap junctions with myocytes and/or by paracrine signaling).

Cells, Cultured↗

Caveolae in smooth muscles: nanocontacts.

Smooth muscle cell (SMC) caveolae have been investigated by quantitative and qualitative analysis of transmission electron microscopy (TEM) images of rat stomach, bladder and myometrium, guinea pig taenia coli, human ileum, and rat aortic SMCs. Ultrathin (below 30 nm) serial sections were used for examination of caveolar morphology and their connections with SMC organelles. Average caveolar diameter was smaller in vascular SMCs (70 nm, n=50) than in visceral SMCs (77 nm, n=100), but with the same morphology. Most of the caveolae, featured as flask-shaped plasma membrane (PM) invaginations, opened to the extracellular space through a 20 nm stoma (21 +/- 3 nm) having a 7 nm thick diaphragm. A small percentage of caveolae (3%), gathered as grape-like clusters, did not open directly to the extracellular space, but to irregular PM pockets having a 20-30 nm opening to the extracellular space. In visceral SMCs, caveolae were disposed in 4-6 rows, parallel to myofilaments, whilst aortic SMCs caveolae were arranged as clusters. This caveolar organization in rows or clusters minimizes the occupied volume, providing more space for the contractile compartment. The morphometric analysis of relative volumes (% of cell volume) showed that caveolae were more conspicuous in visceral than in vascular SMCs (myometrium - 2.40%; bladder - 3.66%, stomach - 2.61%, aorta - 1.43%). We also observed a higher number of caveolae per length unit of cellular membrane in most visceral SMCs compared to vascular SMCs (myometrium - 1.06/microm, bladder - 0.74/microm, aorta - 0.57/microm, stomach - 0.48/microm). Caveolae increase the cellular perimeter up to 15% and enlarge the surface area of the plasma membrane about 80% in SMCs. Threedimensional reconstructions (15micro(3)) showed that most caveolae, in both visceral and vascular SMCs, have nanocontacts with SR (87%), other with mitochondria (10%) and 3% apparently have no contact with these organelles. Usually, 15 nm wide junctional spaces exist between caveolae and SR, some of them with nanostructural links between each other or with mitochondria: direct contacts (space <2 nm or none) and molecular links, so called 'feet' (about 12 nm electron dense structures between organellar membranes). Direct contacts possibly allow molecular translocation between the two membranes. Electron-dense 'feet'-like structures suggest a molecular link between these organelles responsible for intracellular Ca(2+) homeostasis (excitation-contraction coupling or pharmaco-mechanical coupling). Close appositions (approximately 15 nm) have also been observed between caveolae and perinuclear SR cisternae, suggesting that caveolae might be directly implicated in excitation-transcription coupling.

Animals↗

[Expression of stem cell markers on fetal and tumoral human liver cells in primary culture].

Hepatic stem cells can be identified by the expression of putative markers such as CD117 (c-kit), CD90 (Thy-1), CD34, and HLA-DR. We have identified populations expressing these markers in both fetal and tumoral human liver by flow cytometry, using monoclonal antibodies against CD90, CD117, CD34, and HLA-DR. In tumoral liver CD117+/CD90+ cells were found in decreasing number from the neoplastic (2.48 +/- 0.67) and peritumoral region (0.88 +/- 0.12) to the area of para-tumoral (normal) parenchyma (0.13 +/- 0.04). The CD117+/CD34+ cells showed the following distribution: 0.35 +/- 0.05% in the tumoral region, 1.01 +/- 0.23% in the peritumoral region and 0.35 +/- 0.01 in the para-tumoral region. Using the same markers on fetal liver cells we have also identified small populations of CD117+/CD90+ cells (0.28 +/- 0.07%) and CD117+/CD34+ cells (1.13 +/- 0.24%), presumably resident stem cells or hematopoietic stem cells. Immunomagnetic negative separation was then performed on fetal liver cells using monoclonal antibodies against specific markers of hematopoietic lineages such as CD3, 14, 16, 19, 22, and CD56 to eliminate this population. The remaining cells were then incubated with fluorescently labeled monoclonal antibodies against CD90 and CD117 and analyzed using fluorescence microscopy. As expected these markers were expressed on the majority of the selected cells (89.28 +/- 9.56%). Isolation using appropriate markers and initiation of primary cultures is a first step to the therapeutic use of fetal stem cells and for the study of adult liver stem cells involvement in carcinogenesis.

Adult↗

Electron microscopic observations of vesicular stomatitis virus particles penetration in human fibroblasts.

The penetration of vesicular stomatitis virus (VSV) into the target cells is known to depend on the acid triggered receptor-mediated endocytosis pathway (RME). However, the possible contribution of phagocytosis and macropinocytosis both at early and late stages of infection and of plaque-forming process is unknown. Electron microscopic images of fibroblasts obtained one hour after VSV adsorption at 37 degrees C showed RME vesicles as well as clusters of particles in cytoplasmic inlets and phagocytic vacuoles which are morphologically similar with macropinosomes. Therefore, the possibility that VSV can use, in addition to RME, phagocytosis and macropinocytosis is discussed with respect to the wide range of host cell VSV infectivity and binding as well as to pseudotype formation.

Cytoplasm↗

[The mechanisms of persistent measles virus infection in HEp-2 cells].

Persistent infection with Edmonston strain of measles virus was established in a highly susceptible clone of HEp-2 cells. The morphological and cytogenic aspects of persistent infection are presented. Carriage of measles virus in cells persistently infected is marked by important differences between standard Edmonston strain and virus stocks isolated from time to time from the carrier state. It is especially significant that cell fusion capacity decreased in amount concordant with the drop in the yield of infectious virus. Addition of UV inactivated Sendai virus, trypsin treatment or incubation at suboptimal temperatures precipitate the cytocidal effect of measles virus. Some clinical implications of reactivation of the lytic cycle in the carrier state are suggested.

Cell Line↗

Interferon: signal molecules involved in its antiviral effect.

A major problem concerning interferon (IFN)-cell interaction is the second messenger system that transduces the IFN signal. We discuss the evidences existing in literature and our arguments which suggest that the antiviral effect of IFNs alpha and beta are mediated by a membrane mechanism including a phospholipase C dependent hydrolysis of phosphoinositides. The resulting two second messengers: diacylglycerol and inositol triphosphate and subsequent, separate but interacting, signal pathways: activation of protein kinase C and ionic events are tested in respect with the antiviral effect of IFN.

Diglycerides↗

Protein kinase C and the antiviral effect of human interferon.

Protein kinase C (PKC) inhibitors: Hidaka's compounds H-7 (10 microM) and H-8 (20 microM), palmitoyl-carnitine (10 microM) and phloretin (50 microM), did not modify the antiviral effect of human natural or recombinant interferon alpha and of natural interferon beta. The tumor promoter 12-o-tetradecanoyl-phorbol-13-acetate (TPA) (200 nM), known as activator of PKC induced an antiviral state when tested on human embryo fibroblasts challenged with the vesicular stomatitis virus. The battery of PKC inhibitors used inhibited the antiviral effect induced by TPA. Palmitoyl-carnitine (10 microM) exerted a toxic effect that was reversed by interferon treatment (2,000 IU/ml interferon alpha). These results suggest that PKC, possibly activated by interferon-receptor interaction, is not essential for inducing the antiviral effect of interferon, but, probably, mediates the antiviral effect of TPA.

Animals↗

The antiviral effect of human interferon alpha is dependent on phosphoinositide-derived messengers.

Neomycin the putative blocker of membrane polyphosphoinositide hydrolysis, inhibited the antiviral activity of human interferon alpha, when tested on human quiescent fibroblasts challenged with vesicular stomatitis virus. The anti-interferon effect of neomycin could be correlated in terms of dose dependence for both neomycin (0.05-1 mM) and interferon (100-5,000 IU/ml). The results suggest that the antiviral activity of interferon alpha depends on diacylglycerol formation. Indeed, the synthetic diacylglycerol (50 microM) was as effective as 100 IU/ml interferon in inducing the antiviral state.

Cells, Cultured↗

Intracellular distribution of calcium in smooth muscle: facts and artifacts. A correlation of cytochemical, biochemical and X-ray microanalytical findings.

Cytochemical methods, based on the use of oxalate and pyroantimonate as Ca markers, show Ca accumulation in the sarcoplasmic reticulum (SR), mitochondria and nuclei of smooth muscle cells from the guinea-pig taenia coli. A good correlation was found between the Ca concentrations measured in subcellular components in situ by X-ray microanalysis and the endogenous Ca concentrations estimated in subcellular fractions by atomic absorption spectrophotometry. Our findings suggest that the in situ Ca concentrations (mmol/kg dry weight) are: about 100 in the SR and mitochondria, and about 60 inside the nucleus, significantly higher than in cytoplasm.

Animals↗

Apoptosis, I: General considerations.

This review tried to offer a basis for properly integrating genetic, biochemical, and cellular indicators of apoptosis in order to facilitate a better understanding of the control and mechanisms of apoptosis.

Animals↗

Apoptosis II: Apoptosis in the pathogenesis and treatment of diseases.

This review presents the implications of abnormal regulation of apoptosis in the pathogenesis of a variety of diseases, some of them characterized by a failure of cells to undergo apoptosis, and the others characterized by cell loss. The new perspectives in the therapy of such diseases by developing therapeutic agents that increase or decrease the susceptibility of particular cells to apoptosis are also reviewed.

Apoptosis↗