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[Intrinsic UV-fluorescence of lysozyme and microenvironment of its tryptophan residues].

The localization of tryptophan residues in hen egg-white lysozyme macromolecule was studied on the basis of the known 3D structure. The polarity and packing density of their microenvironments were evaluated. All residues that can affect the tryptophan fluorescence were revealed. It was shown that the orientation of these active groups relative to the indole ring of tryptophan plays a dramatic role in the efficiency of their influence. Tryptophan--tryptophan nonradiative energy transfer was evaluated from distances between tryptophan residues and their mutual orientation. The conformation of the side chains of tryptophan residues was determined. Special attention was paid to microenvironment of Trp108 responsible for the minor absorption band at 305 nm.

Animals↗

Transendothelial function of human metastatic melanoma cells: role of the microenvironment in cell-fate determination.

On the basis of the ability of aggressive melanoma cells to participate in vasculogenic mimicry, particularly their expression of endothelial-associated genes, we examined the plasticity of human metastatic cutaneous melanoma cells with respect to vascular function. Fluorescently labeled metastatic melanoma cells were challenged to an ischemic microenvironment surgically induced in the hind limbs of nude mice. The data reveal the capability of these melanoma cells to express cell-fate determination molecules, normally expressed during embryonic vasculogenesis, and to participate in the neovascularization of circulation-deficient muscle. These results demonstrate the powerful influence of the microenvironment on the transendothelial differentiation of aggressive melanoma cells, and may provide new perspectives on tumor cell plasticity that could be exploited for novel therapeutic strategies.

Animals↗

Role of host microenvironment in angiogenesis and microvascular functions in human breast cancer xenografts: mammary fat pad versus cranial tumors.

PURPOSE: The host microenvironment differs between primary and metastatic sites, affecting gene expression and various physiological functions. Here we show the differences in the physiological parameters between orthotopic primary and metastatic breast tumor xenografts using intravital microscopy and reveal the relationship between angiogenic gene expression and microvascular functions in vivo. EXPERIMENTAL DESIGN: ZR75-1, a human estrogen-dependent mammary carcinoma, was implanted into the mammary fat pad (primary site) of ovariectomized SCID female mice carrying estrogen pellets. The same tumor line was also grown in the cranial window (metastasis site). When tumors reached the diameter of 2.5 mm, angiogenesis, hemodynamics, and vascular permeability were measured by intravital microscopy, and expression of angiogenic growth factors was determined by quantitative reverse transcription-PCR. RESULTS: ZR75-1 tumors grown in the mammary fat pad had higher microvascular permeability but lower vascular density than the same tumors grown in the cranial window (2.5- and 0.7-fold, respectively). There was no significant difference in RBC velocity, vessel diameter, blood flow rate, and shear rate between two sites. The levels of vascular endothelial growth factor (VEGF), its receptors VEGFR1 and VEGFR2, and angiopoietin-1 mRNA tended to be higher in the mammary fat pad tumors than in the cranial tumors (1.5-, 1.5-, 3-, and 2-fold, respectively). CONCLUSIONS: The primary breast cancer exhibited higher vascular permeability, but the cranial tumor showed more angiogenesis, suggesting that the cranial environment is leakage resistant but proangiogenic. Collectively, host microenvironment is an important determinant of tumor gene expression and microvascular functions, and, thus, orthotopic breast tumor models should be useful for obtaining clinically relevant information.

Angiopoietin-1↗

Immunosuppression with cyclosporin A alters the thymic microenvironment.

The effect of cyclosporin A (CyA) immunosuppression on the murine thymic microenvironment and T lymphocyte development has been analysed using monoclonal antibodies to epithelial and lymphocyte subpopulations, macrophages and major histocompatibility complex (MHC) class II antigens in immunohistochemistry and flow cytometry. The major microenvironmental target for CyA-induced damage was the thymic medulla, where a reduction in all epithelial cell subsets, dendritic cells and macrophages was observed. In contrast, the thymic cortex appeared essentially normal. CyA had no detectable effect on the intensity of microenvironmental expression of MHC class II molecules in either cortex or medulla, although the number of MHC class II positive medullary cells was reduced after CyA treatment. CyA also had a differential effect on the thymic lymphocyte populations where there was little change in the Thy-1 bright, CD5 dull, CD4+, CD8+ cortical thymocytes but a depletion of the Thy-1 dull, CD5 bright, CD4 or CD8 single-positive medullary cells. This lymphocyte loss may be due partly to increased migration from thymus to spleen and other peripheral lymphoid organs, and partly to a block in the differentiation stage from cortical to medullary lymphocyte. The thymic microenvironment and lymphocyte subpopulations recover rapidly after cessation of CyA treatment, although there may be longer term functional defects resulting from the CyA-induced injury.

Animals↗

Impact of Room Ventilation Rates on Mouse Cage Ventilation and Microenvironment.

To assess the impact of room ventilation on animal cage microenvironment, intracage ventilation rate, temperature, humidity, and concentrations of carbon dioxide and ammonia were monitored in nonpressurized, bonnet-topped mouse cages. Cages on the top, middle, and bottom rows of a mouse rack were monitored at room ventilation rates of 0, 5, 10, and 20 air changes/h (ACH). Ventilation inside the animal cage increased somewhat from 12.8 to 18.9 ACH as room ventilation rate in- creased from 0 to 20 ACH, but the differences were not statistically significant, and most of the increase occurred in cages in the top row nearest to the fresh air supply. Cages containing mice had ventilation rate between 10 and 15 ACH even when room ventilation was reduced to 0 ACH; this ventilation is a result of the thermal heat load of the mice. After 6 days of soiled bedding, intracage ammonia concentration was c 3 ppm at all room ventilation rates and was not affected by increasing room ventilation. Temperature inside cages did not change with increasing ventilation. Humidity inside cages significantly decreased with increasing ventilation, from 55% relative humidity at 5 ACH to 36% relative humidity at 20 ACH. Carbon dioxide concentration decreased from 2,500 ppm to 1,900 ppm when ventilation rate increased from 5 ACH to 10 ACH, but no further significant decrease was observed at 20 ACH. In conclusion, increasing the room ventilation rate higher than 5 ACH did not result in significant improvements in the cage microenvironment.

Journal Article↗

Targeting the tumor microenvironment with chemically modified tetracyclines: inhibition of laminin 5 gamma2 chain promigratory fragments and vasculogenic mimicry.

The laminin 5 (Ln-5) gamma2 chain and matrix metalloproteinases (MMPs) MMP-2 and membrane type 1 (MT1)-MMP act cooperatively and are required for highly aggressive melanoma cells to engage in vasculogenic mimicry when cultured on a three-dimensional matrix. Furthermore, generation of Ln-5 gamma2 chain promigratory fragments by MMP-2 and MT1-MMP proteolysis is necessary for an aggressive tumor cell-preconditioned matrix to induce vasculogenic mimicry in poorly aggressive tumor cells. These observations suggest that treatment regimes that specifically target aggressive tumor cells may fail to take into account changes in the extracellular microenvironment that persist after removal or destruction of an aggressive tumor and could result in a recurrence or continuance of the tumor. As a potential therapeutic approach to address this concern, the work presented here measured the molecular consequences of adding a chemically modified tetracycline (CMT-3; COL-3) that inhibits MMP activity to aggressive metastatic melanoma cells in three-dimensional culture. COL-3 inhibited vasculogenic mimicry and the expression of vasculogenic mimicry-associated genes in aggressive cells, as well as the induction of vasculogenic mimicry in poorly aggressive cells seeded onto an aggressive cell-preconditioned matrix. Furthermore, molecular analysis revealed that COL-3 not only inhibited the generation of Ln-5 gamma2 chain promigratory fragments in the aggressive cell-preconditioned matrix but also inhibited the induction of Ln-5 gamma2 chain gene expression in poorly aggressive cells by the aggressive cell-preconditioned matrix. These results suggest that COL-3 (and related chemically modified tetracyclines) may be useful in targeting molecular cues in the microenvironment of aggressive tumors and could potentially be used in a combinatorial manner with other therapies that specifically target and kill aggressive tumor cells.

Blotting, Western↗

[Initial division behavior of cord blood hematopoietic stem cells depends on microenvironment].

OBJECTIVE: The influence of the mimic hematopoietic microenvironment and adhesion factor on the initial divisional behavior of human cord blood hematopoietic progenitors was studied in the culture system with certain cytokines. METHODS: (1) CD(34)(+) CD(38)(-) single cell was sorted by FACS. (2) The stem cell supporting stromal feeder layer AFT024 and single adhesive factor fibronectin (Fn) were used in the culture system and their influence on the initial division was observed. RESULTS: (1) In the presence of the combined cytokines, the CD(34)(+) CD(38)(-) human cord blood cells displayed fixed fraction of quiescent, slow and fast division, and asymmetric division. (2) There was no influence of adhesive factor itself on initial division of CD(34)(+) CD(38)(-) cells. (3) The hematopoietic microenvironment mimicked by AFT024 promoted CD(34)(+) CD(38)(-) cells to proliferate extensively and undergo more asymmetric division. CONCLUSIONS: (1) CD(34)(+) CD(38)(-) cells are heterogeneous and composed of various subpopulations with different initial proliferative behavior, including asymmetric division. (2) The hematopoietic microenvironmental mimicked by AFT024 supports the hematopoietic progenitors better than cytokines and single adhesion factor do, for their proliferation extensively and preservation the self-renewal capacity.

ADP-ribosyl Cyclase↗

[Protection from oxidant injury on airway epithelial cells and the local microenvironment modulation].

An cellular injury model of primary cultured rabbit bronchial epithelial cells (BEC) exposed to ozone was established in this study and cytoprotective effects of factors in local microenvironment of airway such as vasoactive intestinal peptide (VIP), epidermal growth factor (EGF) and heat stress were observed. These factors could lighten damage in cell and elevate the level of glutashione(GSH), which depended upon phosphorylation modulation by protein kinases and gene transcription. A low level of bcl-2 gene expression could be detected in BEC at basic state, and either VIP or EGF stimulated the transcription of bcl-2, which improved the capability of BEC to resist oxidant injury. Otherwise, EGF and heat stress increased VIP autocrine from BEC and upregulated the expression of VIP receptor on BEC, so that the protective effect of VIP can be amplified in local sites. This study confirmed that there is an anti-injury protection on airway epithelium and the protection can be adaptively modulated by the regulatory peptides in local microenvironment and exogenous stimulus.

Animals↗

CFU-S and haematopoietic microenvironment in mice after fractionated irradiation. A study on spleen colonies.

The paper is aimed at evaluating the quantity and quality of the haematopoietic stem cells, CFU-S, in the bone marrow and the functional effectiveness of the haematopoietic microenvironment of the spleen in two time intervals after repeated exposure of mice to doses of 0.5 Gy gamma-rays once a week (total doses of 12 and 24 Gy). After irradiation, bone marrow was cross-transplanted between fractionatedly irradiated and control mice. The parameter evaluated were numbers of spleen colonies classified into size categories. The data obtained provide evidence for a significant damage to the CFU-S, concerning both their number and proliferation ability, after both total doses used. The functional effectiveness of the haematopoietic microenvironment of the spleen was impaired only in bone marrow recipients receiving a transplant after having been exposed to a total dose of 24 Gy; this dose combined with subsequent pre-transplantation irradiation resulted in a marked suppression of cell production within the spleen colonies formed from a normal bone marrow on the spleens of fractionatedly irradiated mice.

Animals↗

Ontogeny of reticulum cells in the rat intestine and their possible role in the development of the lymphoid microenvironment.

Ontogeny of reticulum cells (RC) in the rat intestine in relation to the development of the gut-associated lymphoid tissue (GALT) was studied using a panel of monoclonal antibodies (mab) directed against RC in peripheral lymphoid organs, ED10-ED15. The mab ED10 specific for RC in the spleen T cell area, recognized an epitope on gut RC, which cells seem to be involved in the influx and accumulation of lymphocytes in the lamina propria and in Peyer's patches (PP) and proximal colonic lymphoid tissue (PCLT). The mab ED11 which recognizes RC in the T cell area and B cell follicles of spleen, stained follicular dendritic cells (FEC) in the B cell area of the mesenteric lymph node (MLN), PP and PCLT. The ED11 expression occurs earlier and reveals stronger staining in MLN as compared to those in PP and PCLT, suggesting the prominent role of MLN in the generation and proliferation of B cells in the gut mucosal immune system. The mab ED13 specific for RC in the B cell area of the lymph nodes, stained the basement membrane of the epithelium overlying PP and PCLT, and high endothelial venules (HEV), suggesting that this might be involved in providing the microenvironment for the development and differentiation of follicle-associated epithelium, and facilitating lymphocyte traffic. The mab ED12 specific for RC in the paracortex of peripheral lymph nodes, gave a diffuse nonspecific staining in the gut, whereas mab ED14 and ED15 are markers for common connective tissue cells. We conclude that the gut RC are morphologically and phenotypically heterogenous. ED10+, ED11+, and ED13+ RC are probably involved in the development of the gut lymphoid microenvironment.

Aging↗

Nuclear microenvironments: an architectural platform for the convergence and integration of transcriptional regulatory signals.

Functional interrelationships between the intranuclear organization of nucleic acids and regulatory proteins are obligatory for fidelity of transcriptional activation and repression. In this article, using the Runx/AML/Cbfa transcription factors as a paradigm for linkage between nuclear structure and gene expression we present an overview of growing insight into the dynamic organization and assembly of regulatory machinery for gene expression at microenvironments within the nucleus. We address contributions of nuclear microenvironments to the convergence and integration of regulatory signals that mediate transcription by supporting the combinatorial assembly of regulatory complexes.

Active Transport, Cell Nucleus↗

Gene therapy model for stromal precursor cells of hematopoietic microenvironment.

Marker bacterial Neor gene was transduced by retroviral gene transfer into stromal precursor cells making up the hematopoietic microenvironment in murine long-term bone marrow cultures (LTBMC). Cultures were infected six times during the first 3 weeks of cultivation. At 4 weeks, the adherent cell layers (ACLs) were implanted under the renal capsule of syngeneic unirradiated and irradiated mice. Cells from newly formed ectopic foci were explanted into secondary LTBMC. ACLs containing the marker gene were detected by polymerase chain reaction. About 74% of stromal cells in ACLs contained Neor gene. The possibility of stable gene transduction into stromal precursor cells competent to transfer the hematopoietic microenvironment was established.

Animals↗

[The in situ analysis of cytokine mRNA expression in immunological microenvironment about non-small cell lung cancer].

AIM: Using Non-small cell lung cancer (NSCLC) as subject, to explore the characteristics of immune response in immunological microenvironment at the tumor site and its effect on anti-tumor immunity. METHODS: Using in situ hybridization (ISH), the expressions of IL-2, INF-gamma, IL-12 (p40), IL-18, IL-4, IL-10, TGF-beta1, IL-1, IL-3, IL-8, GM-CSF, TNF-alpha and TGF-alpha mRNAs in lymphocytes and tumor cells from five fresh pleural effusion samples and 18 tumor tissue samples of NSCLC patients were detected by in situ hybridization with digoxin end-labeled oligonucleotide probe, using 5 tuberculous pleurisy patients as control. RESULTS: In pleural effusion and tumor tissue of NSCLC patients, the expression levels of IL-4, IL-10, TGF-alpha, and TGF-beta1 mRNAs were significantly higher than those of IL-2, IL-12, IL-18 and INF-gamma mRNAs. In contrast, the analysis of tuberculous pleural effusion samples revealed lower levels of above-mentioned cytokine mRNA. There was no significant difference among expression levels of these cytokine mRNAs. CONCLUSION: The expressions of type II cytokine mRNAs and immunosuppressive cytokine mRNAs in pleural effusion and tumor tissue of NSCLC patients occupied a dominant position, suggesting that the immunological microenvironment about tumor be in an immunosuppressive state. The present study has contributed to a better understanding the mechanisms of tumor escape and provides important experimental basis for working out the scheme for an effective immunomodulatory treatment of NSCLC patients.

Carcinoma, Non-Small-Cell Lung↗

Tumor-microenvironment interactions: the selectin-selectin ligand axis in tumor-endothelium cross talk.

Interactions of cancer cells with components of their microenvironment are crucial determinants in the decision making process which determines whether the cancer cells will progress towards a highly malignant phenotype or whether they will stay dormant or disappear altogether. The tumor microenvironment is composed of a plethora of soluble and cellular components. Many of these components deliver signals to tumor cells and thus modulate their phenotype thereby driving tumor progression. This chapter focuses on the interaction of tumor cells with endothelial cells through endothelial selectins and their fucosylated ligands expressed by the tumor cells. Comparisons are drawn between the utilization of this interaction axis by inflammatory leukocytes and by tumor cells.

Cell Communication↗

Role of the tumor microenvironment in the activity and expression of the p-glycoprotein in human colon carcinoma cells.

The metabolic microenvironment of solid tumors is characterized by an oxygen deficiency and increased anaerobic glycolysis leading to extracellular acidosis and ATP depletion, which in turn may affect other energy-dependent cellular pathways. Since many tumors overexpress active drug transporters (e.g. the p-glycoprotein) leading to a multidrug-resistant phenotype, this study analyzes the impact of the different aspects of the extracellular microenvironment (hypoxia and acidosis) on the activity and expression of the p-glycoprotein (pGP) in the human colon carcinoma cell line LS513. For up to 24 h cells were exposed to hypoxia (pO2<0.5 mmHg), an acidic extracellular environment (pH 6.6), or the combination of hypoxia and acidosis. Under hypoxic conditions (at a normal pH), the pGP activity (measured by the daunorubicin efflux) and the pGP expression were not markedly altered. Under acidic conditions, however, the pGP-mediated drug efflux was increased, an effect which was even more pronounced when the cells were exposed to hypoxia and acidosis simultaneously (increasing the pGP-activity by 70%). The cellular pGP expression remained almost constant under these conditions, indicating that the increased transport rate results from a functional modulation. The findings of the present study indicate that the parameters of the tumor microenviroment (especially extracellular acidosis) can increase the pGP-mediated drug efflux, an effect which may explain the reduced cytotoxicity of chemotherapeutic agents in hypoxic/acidic tumors.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

The preference for switching to IgA expression by Peyer's patch germinal center B cells is likely due to the intrinsic influence of their microenvironment.

This study was aimed at determining whether the chronically activated physiologic state of Peyer's patch (PP) tissue is primarily responsible for the IgA isotype preference expressed by PP germinal centers (GC) and memory B cells. We have used reovirus type 1/Lang to stimulate acute, de novo GC reactions in lymph nodes (LN) or PP to test the possibility that the surface (s)IgA component of enteric responses is peculiar to the local gut microenvironment whether or not PP are in a state of chronic activation. GC were raised in PP of germ-free mice by oral administration of virus and in lymph nodes (LN) of conventionally reared mice by local parenteral infection. Transient GC reactions were found to develop with similar time courses in both PP and LN after both primary and secondary local infections with reovirus. sIgA+ B cells, which were the major non-sIgM+/sIgD+ population found to arise in GC of PP, were not found in the LN. In LN, sIgG1+ B cells comprised the predominant non-IgM/IgD bearing population that arise after local infection. Lymphoid fragment cultures of PP initiated in vitro as early as 5 days after in vivo infection contained detectable secreted reovirus-specific IgA, whereas IgG1 but no IgA was found in LN cultures. Northern blot analysis to detect C alpha and C gamma 1 germline transcripts further substantiated a site-related bias in the expression of non-IgM/IgD isotypes that was manifest within a few days after infection. In summation, these observations taken together suggest that the preference for generating sIgA+ B cells in PP may be the result of intrinsic features of their gut microenvironment.

Animals↗

[Regeneration of bone marrow tissue. Growth and differentiation of hematopoietic stem cells and the role of bone marrow microenvironment on hematopoiesis].

Hematopoietic stem cell proliferation and differentiation is regulated by a multistep process involving stem cell self-renewal, commitment, differentiation and maturation. Each process is controlled by a variety of humoral factors and cell-cell interactions, i.e., (i) growth factor and growth inhibitor acting toward the cascade of stem cell proliferation and differentiation, (ii) cytokine network involving cytokine-producing hematopoietic cells and stromal cells, (iii) interaction between hematopoietic cells and bone marrow microenvironment that is consisted of stromal cells and extracellular matrix. Recent advances in cell biology and cell physiology enabled us to understand the roles of these marrow microenvironments on hematopoiesis in molecular basis. We here discuss the complexities of hematopoietic system and the mechanism of the regeneration of hematopoietic tissues in special reference to bone marrow transplantation.

Animals↗

[Transduction of a marker gene (Neor) into precursor cells of the hematopoietic microenvironment].

The attempt of retroviral transfer of the bacterial Neor gene into stromal precursor cells able to transfer haemopoietic microenvironment and to long-term support of haemopoiesis in vitro and in vivo was made. The existence of marker gene in stromal cells was established by the method of polymerase chain reaction. The transduced stromal precursor cells create normal haemopoietic microenvironment. The data obtained would be important for the further investigation of proliferation and differentiation of stromal precursor cells.

Animals↗