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Non-phospholipid fusogenic liposomes.

We have demonstrated the capacity of non-phospholipid liposomes composed primarily of dioxyethylene acyl ethers and cholesterol to fuse with membranes composed primarily of phospholipid. Phase-contrast microscopy, freeze-fracture electron microscopy and a macromolecular probe indicate that these non-phospholipid liposomes can fuse with the plasma membranes of erythrocytes and fibroblasts. Furthermore, fluorescence probe experiments have demonstrated fusion between phosphatidylcholine liposomes and non-phospholipid liposomes. Mixing of internal contents was shown by a terbium/dipicolinate assay. Mixing of membrane lipid components was demonstrated by measuring (i) fluorescence resonance energy transfer between N-(7-nitrobenz-2-oxa-1,3-diazol-4-yl)phosphatidylethanolamine and N-(lissamine rhodamine B sulfonyl)phosphatidylethanolamine, after phosphatidylcholine liposomes were mixed with non-phospholipid liposomes, and (ii) reduced concentration quenching of rhodaminephosphatidylethanolamine and octadecylrhodamine incorporated into phosphatidylcholine liposomes after mixing with the non-phospholipid liposomes. The degree of apparent fusion reported by the different probe techniques ranged from 25% to 64%.

3T3 Cells↗

In vitro effects of mitomycin-C on human keratocytes.

BACKGROUND: The purpose of the present study is to quantify the in vitro antiproliferative and cytotoxic effects of mitomycin-C on human keratocytes for their potential to modulate corneal stromal wound healing. METHODS: Cultured human keratocytes were exposed to various concentrations of mitomycin-C for periods of 5 minutes and 1 hour. Keratocyte proliferation and viability were assessed by phase-contrast microscopy, 3H-thymidine uptake, and electronic cell counting. RESULTS: Cytotoxic changes and inhibition of keratocyte proliferation exhibited after exposure to mitomycin-C were both dose- and time-dependent. The lowest concentrations to significantly (> 50%) inhibit keratocyte proliferation after 5-minute exposures were 0.05 mg/ml (P < .005) and after 1-hour exposures were 0.005 mg/ml (P < .001). At 5 minutes, ID50 was 0.038 mg/ml and LD50 was much higher than the greatest concentration tested (0.5 mg/ml). Mitomycin-C's median inhibitory dose (ID50) and median lethal dose (LD50) after 1 hour of exposure differed by a magnitude of 50 (0.0048 vs. 0.28 mg/ml). CONCLUSIONS: Mitomycin-C has antiproliferative effects at concentrations below those cytotoxic to human keratocytes. If used after photorefractive keratectomy, the drug should be administered at antiproliferative rather than cytotoxic concentrations.

Antibiotics, Antineoplastic↗

[In vitro and in vivo effect of thyroid hormones on the growth of neuroblastoma cells. I. The effect of triiodothyronine in vitro].

The effect of triiodothyronine (T3) on the differentiation of cultured neuroblastoma (NB) cells was studied after 9 days of treatment with a dose of 10(-4) M/10(6) cells per day. Using phase contrast microscopy, 30-50% of NB cells showed formation of neurites as a morphological sign of cellular differentiation. The initial rise of the mitosis rate was followed by a plateau. Changes in cyclic nucleotide content, in the triphosphates and in the activity of the enzyme ornithine decarboxylase (ODC) were assessed in 2 human and 2 murine cell lines to serve as biochemical parameters of the cell differentiation induced by T3. Whereas the cAMP level increased significantly (3 to 7 fold compared with its initial value), the cGMP value dropped to 30 to 50% of that of the control group. ATP and GTP increased about 200%, the ODC showed a decrease of about 50%. The present studies show a biphasic effect of T3 on neuroblastoma cells: the initial rise of mitotic activity is followed by increased cell differentiation starting from day 4 of the treatment.

Adenosine Triphosphate↗

[The neural apparatus of the small intestine of piglets after administration of a growth stimulator kormogrisein].

By means of classical neurohistological techniques, phase contrast microscopy and morphometry, a comparative investigation has been performed concerning the development of the intramural nervous apparatus in the small intestine, normal and at application of cormogrisine. The structural peculiarities of morphogenesis are considered together with signs of activation and inhibition of the neurons growth in tissue culture. A number of morphological criteria, demonstrating an increased extrusive activity and enhancing potensity of the neurons growth have been revealed. The number of nervous processes becomes greater; degree of their ramification increases; a part of neurons of Dogiel II type turns into multiprocessive neurons with some signs of Dogiel I type cells; growth cones and arcadian structures are present; giant processes appear; thick nervous fasciculi are formed; volume of the neuron bodies increases more intensively. After application of cormogrisine for 2 months a definite neurostimulatory effect is revealed; it demonstrates a more intensive morphogenesis of the small intestine nervous of Physiology, USSR, Academy of Medical Sciences, Leningrad.

Animal Feed↗

Induction of apoptosis by cerebrospinal fluid from patients with primary-progressive multiple sclerosis in cultured neurons.

We have studied the noxious effect of cerebrospinal fluids (CSF) from patients with primary-progressive multiple sclerosis (MS) on cultured neurons. Cells were exposed to CSF for 8 days and the possible neuronal damage was determined. Morphological studies with phase-contrast microscopy showed cellular shrinkage indicating apoptosis. CSF-induced apoptosis as evidenced by the fluorescent DNA-binding dye Hoechst 33342, as well as by the TUNEL-reaction, was only present in primary-progressive MS patients with a worsening disease. This neuron injury did not correlate with blood-brain barrier dysfunction nor with intrathecal IgG synthesis. On the contrary, CSF from either stable primary-progressive or other non-inflammatory neurological diseases, did not induce any culture damage. Undetectable or low similar tumor necrosis factor-alpha (TNF-alpha) levels (range to 8.7 pg/ml) were found in the CSFs tested regardless they damage cultures or not. These results suggest that soluble factors, other than TNF-alpha, molecules transudated from blood or IgG, present in the CSF of active primary-progressive patients with MS induce neuronal apoptosis.

Animals↗

Hypochlorous acid disrupts the adhesive properties of subendothelial matrix.

We have investigated whether the cell adhesion-promoting properties of the subendothelial matrix are affected by exposure to neutrophil-derived oxidants. Native subendothelial matrix was exposed to increasing doses of H2O2 in the presence of myeloperoxidase and Cl- or to reagent hypochlorous acid (HOCl). Increasing doses of either oxidant system resulted in progressive loss in the adhesive properties of the matrix, and phase contrast microscopy showed that the cells failed to attach to and spread on the oxidant-treated surface. When cells were replated on the treated matrix in the presence of 20% serum, they did attach, but showed abnormal spreading and morphology in longer-term culture. In a modified ELISA system, binding of antibodies specific to fibronectin, thrombospondin and laminin was also disrupted by prior exposure of the matrix to HOCl. Of these components, the cell-binding region of fibronectin was most affected by HOCl, thrombospondin and laminin were less sensitive, and the collagen-binding region of fibronectin was the most resistant. SDS-PAGE of 35S-labelled subendothelial matrix proteins indicated that there was no major irreversible crosslink formation or fragmentation after exposure to HOCl or the myeloperoxidase system, although formation of disulfides is quite likely.

Cell Adhesion↗

Peplomycin-induced apoptosis in oral squamous carcinoma cells depends on bleomycin sensitivity.

Oral squamous carcinoma cell line SSCKN cells were shown to be highly sensitive to bleomycin, whereas SCCTF cells were minimally sensitive to this reagent. To determine whether the anticancer drug resistance to oral squamous carcinoma cells could be related to the degree of the drug-induced apoptosis, we examined the effects of peplomycin on induction of apoptosis in these cells. After reaching subconfluence, SCCKN and SCCTF cells were exposed to various concentrations of peplomycin. Peplomycin caused cytotoxicity in both SCCKN and SCCTF cells in a dose-dependent fashion with the maximal effect at concentrations of 1 and 10 microM, respectively, as determined by phase-contrast microscopy and WST-1 cell viability assay. By using the Hoechst 33342 staining, we observed marked nuclear condensation and fragmentation of chromatin in SCCKN cells treated with 1 microM peplomycin. However, SCCTF cells treated with 1 microM peplomycin showed neither nuclear condensation nor fragmentation. DNA ladder formation was also detected in both cell lines by treatment with peplomycin. The induced DNA ladder formation in SCCKN and SCCTF cells was dose-dependent, with the maximal effect at concentrations of 5 and 50 microM, respectively. Bleomycin also induced DNA ladder formation in SCCKN and SCCTF cells with different sensitivities. Mitomycin C induced DNA laddering in both SCCKN and SCCTF cells; however, the intensity of DNA ladder formation was almost the same in both cell lines. The present results indicate that peplomycin-induced apoptosis in oral squamous carcinoma cell lines depends on the sensitivity of these cells to bleomycin.

Antibiotics, Antineoplastic↗

Characterization of a human epithelial cell line with special reference to its ultrastructure.

A commercially available cell line (NCTC 2544) originating from presumably normal human skin was chosen as an in vitro model system for subsequent studies of the effects of different agents on human epithelial cells. The cell line, therefore, was ultrastructurally and otherwise characterized at intervals by techniques which allow standardized controls of the model. The cell line was classified as epithelial both by phase contrast microscopy and transmission electron microscopy. The cells were polygonal, fully developed desmosomes were demonstrated and no extracellular filamentous material was observed. Specific epidermal markers like keratohyalin granules or keratinosomes were not demonstrated. Comparison of the nuclear morphology of cells from 1, 3 and 6 days old cultures revealed that only minor changes took place. The same was true for cytoplasmic features. Thus this cell line has a well-defined ultrastructural morphology. Flow cytometry studies showed the cell line to be tetraploid, with no sub-populations with other ploidies. Surface antigens were typed by a microcytotoxicity assay using 12 different antisera. The electrophoretic patterns of the isoenzymes lactate dehydrogenase and glutathione reductase were human. The cells did not form colonies in soft agar. Though several parameters indicate that this cell line is not a HeLa cell contaminant, this possibility cannot, however, be totally excluded.

Antigens, Surface↗

Microtubules and parental genome organisation during abnormal fertilisation in humans.

We analysed the distribution of beta-tubulins, acetylated alpha-tubulins and chromatin configuration in 113 human zygotes showing abnormal fertilisation, 16-18 h after conventional in vitro fertilisation (IVF) or intracytoplasmic sperm injection (ICSI). After a first characterisation using phase contrast microscopy, immunofluorescence staining was performed in 67 IVF and 46 ICSI zygotes that developed one, three or more pronuclei and/or subnuclei, with or without extrusion of the second polar body. Independently of the number of pronuclei found, beta-tubulins were uniformly distributed throughout the cytoplasm of the abnormal zygotes. We did not observe any kind of microtubule alteration with respect of the ploidy level and/or its origin. The most frequent abnormal fertilisation pattern found after IVF was the presence of three or four pronuclei (74.6%). On the other hand, the presence of one pronucleus (63.0%) was the main pattern found after ICSI. No differences between the two groups were seen in terms of development of subnuclei. Anamolies detected after IVF and ICSI showed different aetiologies such as parthenogenetic activation, gynogenetic or androgenetic development, as well as digynic or diandric fertilisation.

Chromatin↗

Fluorescent in situ hybridization (FISH) for the detection of bacterial community in activated sludge from textile factories.

Conventional methods used to study the bacterial community structure in activated sludge are not sufficient enough to determine the compositions of the bacterial populations responsible for biodegradation. Activated sludge samples from 3 textile factories were analyzed by fluorescent in situ hybridization (FISH) using rRNA probes and by phase-contrast microscopy. In Factory-I, the predominant groups were the beta-subclass of Proteobacteria and the cytophaga-flavobacterium (CF) cluster (33.3% and 31.0%) followed by gamma-subclass (17.1%), high G+C DNA (HGC) gram-positive (15.4%) and alpha-subclass (3.2%). Factory-II showed a similar pattern (32.7%, 31.8%, 17.5%, 16.4%, 1.6%) but with lower concentrations, while Factory-III showed predominant alpha- and beta-subclasses (25.2%, 25.0%) and CF cluster (24.8%) followed by the gamma-subclass (13.6%) and the HGC (11.4%) at much lower concentrations. The floc characteristic for factory-I and -II was normal, however factory-III had diffuse and atypical flocs. In conclusion, the FISH technique provided comprehensive information on the bacterial consortia of activated sludge samples. The compositions of the bacterial community and their concentrations together with the floc characteristics might be some of the reasons that affect the operational efficiencies among the 3 textile factories.

Animals↗

The mitotic apparatus in fungi, Ceratocystis fagacearum and Fusarium oxysporum.

Vegetative nuclei of fungi Ceratocystis fagacearum and Fusarium oxysporum were studied both in the living condition with phase-contrast microscopy and after fixation and staining by HCl-Giemsa, aceto-orcein, and acid fuchsin techniques. Nucleoli, chromosomes, centrioles, spindles, and nuclear envelopes were seen in living hyphae of both fungi. The entire division process occurred within an intact nuclear envelope. Spindles were produced between separating daughter centrioles. At metaphase the chromosomes became attached to the spindle at different points. In F. oxysporum the metaphase chromosomes were clear enough to allow counts to be made, and longitudinal splitting of the chromosomes into chromatids was observed. Anaphase was characterized in both fungi by separation of chromosomes to poles established by the centrioles, and in F. oxysporum anaphase separation of chromosomes was observed in vivo. Continued elongation of the spindles further separated the daughter nuclei. Maturing daughter nuclei of both fungi were quite motile; and in C. fagacearum the centriole preceded the bulk of the nucleus during migration. The above observations on living cells were corroborated by observations on fixed and stained material.

Ascomycota↗

Embryonic stem cell-derived cystic embryoid bodies form vascular channels: an in vitro model of blood vessel development.

Murine embryonic stem cells can differentiate in vitro to form cystic embryoid bodies (CEB) that contain different structures and cell types. The blood islands are one such structure that consist of immature hematopoietic cells surrounded by endothelial cells, the first identifiable vascular cells. CEBs differentiated in vitro developed blood islands initially, and subsequently these blood islands matured to form vascular channels containing hematopoietic cells. Phase contrast microscopy demonstrated the presence of channels in mature CEBs grown in suspension culture, and high resolution light and electron microscopy showed that the cells lining these channels were endothelial cells. The channels appeared less organized than the vasculature of the mature yolk sac. The hematopoietic cells were occasionally seen 'flowing' through the CEB channels, although their numbers were reduced relative to the yolk sac. Analysis of primary CEB cultures showed the presence of cells with two characteristics of endothelial cells: approximately 30% of the cells labelled with fluorescent acetylated low density lipoprotein and a small number of cells were positive for von Willebrand's factor by immunostaining. Thus we conclude that a primitive vasculature forms in CEBs differentiated in vitro, and that not only primary differentiation of endothelial cells but also some aspects of vascular maturation are intrinsic to this cell culture system. CEBs are therefore a useful model for the study of developmental blood vessel formation.

Animals↗

Characterization of isolated acrosomal matrices from hamster spermatozoa.

The acrosomal matrix of hamster spermatozoa was enriched and characterized. Acrosomal matrices were released from spermatozoa with shaking in a pH 5.2 buffer containing Triton X-100 and protease inhibitors, and enriched on a glass-bead column. Phase-contrast microscopy indicated that 70-80% of the acrosomal matrices were released from the spermatozoa and only minor contamination from sperm heads was detected. Transmission electron microscopy confirmed the low level of contamination in the preparation and revealed a bilaminar structure similar but not identical to that of guinea-pig acrosomal matrix. One- and two-dimensional SDS-polyacrylamide gel electrophoresis (SDS-PAGE) showed the acrosomal matrix to be a complex structure enriched for several polypeptides. Proteinase activity was demonstrated by gelatin-SDS-PAGE. The major activity corresponded to bands of relative molecular masses (Mr) of 56,000, 51,000 and 48,000 with two minor bands of Mr 30,000 and 28,000. The lectin Pisum sativum agglutinin (PSA) bound to the anterior head of spermatozoa and isolated acrosomal matrix as judged by fluorescence microscopy using FITC-PSA. Western blots of spermatozoa and acrosomal matrices followed by overlay with biotinylated PSA indicated that there are at least two PSA-binding glycoproteins of Mr 60,000 and 72,000.

Acrosin↗

In-vitro model of uterine leiomyomas: formation of ball-like aggregates.

To clarify the biological characteristics of uterine leiomyomas, cells explanted and cultured from uterine leiomyomas and from normal myometrial tissue were observed by time-lapse cinemicrography and phase-contrast microscopy. The histological characteristics were evaluated by electron microscopy and immunofluorescence microscopy, and these observations revealed significant differences. By time-lapse cinemicrography, the cells cultured from leiomyomas and myometrium differed in their behaviour. Cells from the myometrium started to grow in parallel with the cell's major axis and formed topographically uniform hills and valleys by day 21 of culture. In contrast, the cells from leiomyomas started to grow irregularly, as if having no contact inhibition, and formed ball-like aggregates of cells by day 21 of culture. The aggregates resembled the nodules of leiomyoma in vivo. Ultrastructurally, cells from both leiomyomas and myometrium had typical features of smooth muscle. Immunofluorescently, a different distribution of alpha-smooth muscle actin-positive filaments and different staining of cellular fibronectin and N-cadherin between the cells from leiomyomas and myometrium were observed, which may contribute in part of the different behaviour of the cells. Given that the explant cell culture system resembles the features of uterine leiomyomas in vivo, this suggests that it can be used as an in-vitro model.

Antibodies↗

An in vivo study of the influence of the surface roughness of implants on the microbiology of supra- and subgingival plaque.

In nine patients with fixed prostheses supported by endosseous titanium implants, 2 titanium abutments (transmucosal part of the implant) were replaced by either an unused standard abutment or a roughened titanium abutment. After 3 months of habitual oral hygiene, plaque samples were taken for differential phase-contrast microscopy, DNA probe analysis, and culturing. Supragingivally, rough abutments harbored significantly fewer coccoid micro-organisms (64 vs. 81%), which is indicative of a more mature plaque. Subgingivally, the observations depended on the sampling procedure. For plaque collected with paper points, only minor qualitative and quantitative differences between both substrata could be registered. However, when the microbiota adhering to the abutment were considered, rough surfaces harbored 25 times more bacteria, with a slightly lower density of coccoid organisms. The presence and density of periodontal pathogens subgingivally were, however, more related to the patient's dental status than to the surface characteristics of the abutments. These results justify the search for optimal surface smoothness for all intra-oral and intra-sulcular hard surfaces for reduction of bacterial colonization and of periodontal pathogens.

Bacterial Adhesion↗

Growth characteristics of cultured human macrovascular venous and arterial and microvascular endothelial cells.

The morphological and growth characteristics of human macrovascular endothelial cells (ECs) from venous and arterial umbilical cord vessels and microvascular ECs from foreskin were compared during cultivation. By means of time-lapse microcinematography and phase-contrast microscopy, differences in cell morphology and migratory activity between the different types of ECs were found. Growth characteristics were dependent on the type of EC, the nature of the substrates on which the ECs were grown and the presence of growth factors. For all types of ECs optimal growth and formation of a monolayer were observed when the ECs were cultured on fibronectin or gelatin substrates in the presence of EC growth factor and heparin. Under these conditions confluent cultures of macrovascular ECs reached maximal cell densities of 1,400-1,900 ECs/mm2, whereas microvascular ECs reached maximal cell densities of about 700-900 ECs/mm2. The cell cycle times calculated from the population-doubling time and the stathmokinetic index, respectively, amounted to 63 and 83 h for microvascular ECs, 33 and 35 h for venous macrovascular ECs, and 29 and 35 h for arterial macrovascular ECs.

Capillaries↗

New experimental model to study the bone interface of endosseous implants: an in vitro three-dimensional model of cell culture.

To set up a three-dimensional culture model of endosseous implant material-osteoblast, titanium (Ti) discs were placed onto confluent cellular layers of human fetal osteoblasts that were cultured in calcifying conditions. Follow-up observations of living cells with phase-contrast microscopy and histological observations of the cell-Ti disc interface with ordinary microscopy and transmission electron microscopy were used to monitor and verify the formation of three-dimensional cellular structures at the osteoblast-Ti disc interface. These methods were further used to study osteoblast cell behavior during the early stage of bone healing in this three-dimensional cellular model. The follow-up observation showed that, upon the placement of the Ti disc, cells migrated from the cellular layer and attached to the rim of the disc, forming cell bridges. Cells continued to attach and orient throughout the culture time. A cellular multilayer at the osteoblast-Ti interface was formed, which resulted in the three-dimensional model. Furthermore, transmission electron microscopy observation showed that there was a mineralizing process at the osteoblast-Ti disc interface just like bone, which confirms the reality of this model. Histological observations with conventional microscopy demonstrated the interfacial relation between biomaterial and cells. If osteoblasts were replaced by other types of cells, this model could be used to study the other kinds of interfaces.

Cell Adhesion↗

A comparative study of the isolation of type II epithelial cells from rat, hamster, pig and human lung tissue.

Data is reported on the reproducibility and purity of alveolar type II cell isolations from 4 species. Human and pig type II cells were isolated using a tissue slice method to remove blood and contaminating cells, whilst rat and hamster cells were isolated using the method of protease instillation. All cells were purified on Percoll gradients and by differential attachment. Cell type purity was assessed by phase contrast microscopy, electron microscopy (EM), percentage of cells alkaline phosphatase (AP) positive and percentage of cells staining strongly for NADPH dependent nitro blue tetrazolium reductase (NBT). These enzymes are considered as markers for type II and Clara cells respectively. The purity of all cell preparations was enhanced following 24 h culture on a biomatrix and whilst plating efficiency was similar for all species, the human tissue consistently yielded the highest purity of type II cells. All cells with lamellar bodies did not contain AP, and activity was variable between species. Further studies are needed to determine if NBT is equally nonspecific as a cell marker enzyme. In summary, sufficient type II cells of high purity can be isolated thus permitting interspecies comparative studies to investigate the effects of selective and non-specific pulmonary toxins, but more specific marker enzymes are required to identify Type II and Clara cells.

Alkaline Phosphatase↗