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Characterization of the human thymic microenvironment: lymphoepithelial interaction in normal thymus and thymoma.

Recent advances in tissue culture technology and molecular biology have extended our understanding of the functional morphology of the thymus. The importance of a crosstalk between lymphoid cells and stroma has been appreciated as a prerequisite for the normal development of both. The network of direct cellular interactions and soluble factors comprising part of the microenvironment is far from being elucidated but the highly ordered thymic architecture clearly plays a pivotal role in normal thymic function. Insight into the genetic control of stroma development is only emerging while knowledge on the genetic control of the various steps in T cell development is already advanced and rapidly expanding. The present paper gives an overview on the cellular components and matrix molecules of the human thymic microenvironment and their development during ontogeny. The intrathymic cytokine network is shortly reviewed. Special emphasis is put on molecules mediating lymphoepithelial interactions that are necessary for the expansion and early selection of immature thymocytes from precursor cells and for the generation of an MHC restricted and self tolerant T cell repertoire by positive and negative selection. Considering these physiological mechanisms we summarize the molecular pathology of the microenvironment and lymphocyte/stroma interactions in thymic epithelial tumors (thymomas). Finally, a pathogenetic model for paraneoplastic myasthenia gravis is given. We suggest abnormal auto-antigen-specific positive selection of naive T cells as the essential molecular mechanism by which thymomas contribute to the autoimmunization against the acetylcholine receptor and other muscle proteins.

Apoptosis↗

Remodeling of the mammary microenvironment after lactation promotes breast tumor cell metastasis.

The mammary gland microenvironment during postlactational involution shares similarities with inflammation, including high matrix metalloproteinase activity, fibrillar collagen deposition, and release of bioactive fragments of fibronectin and laminin. Because inflammation can promote tumorigenesis, we evaluated whether the tissue microenvironment of the involuting gland is also promotional. Extracellular matrix was isolated from mammary glands of nulliparous rats or rats with mammary glands undergoing weaning-induced involution. Using these matrices as substratum, nulliparous matrix was found to promote ductal organization of normal mammary epithelial MCF-12A cells in three-dimensional culture and to suppress invasion of mammary tumor MDA-MB-231 cells in transwell filter assays. Conversely, involution matrix failed to support ductal development in normal cells and promoted invasiveness in tumor cells. To evaluate the effects of these matrices on metastasis in vivo, MDA-MB-231 cells, premixed with Matrigel, nulliparous matrix, or involution matrix, were injected into mammary fat pads of nude mice. Metastases to lung, liver, and kidney were increased in the involution matrix group, and correlated with a twofold increase in tumor vascular endothelial growth factor expression and increased angiogenesis. These data suggest that the mammary gland microenvironment becomes promotional for tumor cell dissemination during involution, thus providing a plausible mechanism to explain the high rate of metastases that occur with pregnancy-associated breast cancer.

Animals↗

The role of interleukin-8 in cancer cells and microenvironment interaction.

Abstract Interleukin (IL)-8, a cytokine of the CXC chemokine family that was originally classified as a neutrophil chemoattractant, is now reported to play an important role in tumor progression and metastasis in a variety of human cancers, including lung cancers. IL-8 biologic activity in tumors and the tumor microenvironment may contribute to tumor progression through its potential function in the regulation of angiogenesis, cancer cell growth and survival, tumor cell motion, leukocyte infiltration and modification of immune responses. Recently, infiltrating macrophages in tumor stroma have been considered to be able to stimulate cancer growth, enhance angiogenesis and promote metastasis, and has prognostic significance in several human cancers. Accumulating evidence also shows that cancer cells and stromal cell interaction can stimulate cancer cells, as well as stromal cells in the expression of IL-8 and other growth factors. Here, we summarize current information about IL-8 biology in human lung cancers and focus on its effect on tumor angiogenesis, regulation of IL-8 expression in tumors, its prognostic significances, the role of tumor infiltrating macrophages in the production of IL-8 in cancer cells and the tumor microenvironment, gene expression profiles after cancer cell-stromal cell interaction, and the effect of a variety anti- inflammatory drugs on the modification of IL-8 and other gene expressions in cancer cells and the tumor microenvironment in lung cancers.

Anti-Inflammatory Agents↗

Prostaglandins and gangliosides of tumor microenvironment: their role in angiogenesis.

In the solid tumor the microenvironment is the space limited by the basement membrane of the microvessels and the neoplastic cells membrane. It includes the stroma and a liquid phase, the tumor interstitial fluid (TIF). We developed a method to sample TIF in vivo and found it rich in prostaglandins. In the rabbit cornea PGE1 induces neovascularization and acts as an angiogenesis factor. Before angiogenesis appears the ganglioside content of the cornea doubles with sharp reduction of the GM3/GD3 ratio. These gangliosides are not angiogenic but they influence the endothelial cell behavior. In particular when the PGE1 dose is insufficient to induce angiogenesis, enrichment of corneal tissue with GD3 or GM1 stimulates angiogenesis. However, when the corneal tissue is enriched with GM3, doses of PGE1, normally angiogenic fail to do so. The same was observed when bFGF substituted PGE1 as an angiogenesis trigger. The gangliosides tested acted as modulators of the angiogenic response by promoting the angiogenic capacity of molecules, such as PGE1 or bFGF, normally present in the tissue microenvironment. Several neoplastic cells, especially melanomas, shed gangliosides in the microenvironment. Their modulatory effect on angiogenesis may influence metastatic and/or primary tumor growth.

Alprostadil↗

Angiogenic and angiostatic microenvironment in tumors--role of gangliosides.

Gangliosides are important components of the cell membrane that are usually shed in the surrounding microenvironment by neoplastic cells. Gangliosides can also modulate the angiogenic response of microvessels stimulated by angiogenic factors. The experiments reported here make a contribution to the assessment of the nature of this angiogenic modulation, by demonstrating that a) GM3 gangliosides can block the proliferation of endothelium induced by neoplastic cells from human tumors of five different origins; b) this block also occurs when the endothelial cells are preincubated with GM3 and disappears when the cells are returned to a medium poor in GM3; c) in the presence of GM3 the capacity of the endothelial cells to bind to fibronectin and to collagen types I and IV was sharply reduced; d) concentrations of GM3 able to block endothelial cell growth are counteracted by addition to the medium of GT1b ganglioside. The data suggest that the prevalence of a microenvironment rich in GM3 prevents proliferation of vascular endothelium, but the appropriate presence of another ganglioside, such as GT1b, nullifies the effect. Modulation of the angiogenic response of vascular endothelium to angiogenic factors released by tumors is probably dependent on the distribution and activity of growth factor receptors on the endothelial cell surface. The nature and concentration of the gangliosides in the endothelial microenvironment have a decisive influence on this event and possibly on the progression of tumor-induced angiogenesis.

Angiogenesis Inducing Agents↗

Lymphotoxin-alpha-dependent spleen microenvironment supports the generation of memory B cells and is required for their subsequent antigen-induced activation.

Lymphotoxin alpha-deficient (LTalpha-/-) mice show dramatically reduced IgG responses after either primary or secondary immunizations with sheep red blood cells (SRBC). When splenocytes from SRBC-primed wild-type donor mice were infused into irradiated naive wild-type recipient mice, they generated a robust memory IgG response, but not when infused into LTalpha-/- recipients, indicating that the microenvironment that develops in LTalpha-/- mice is incompetent to support the activation of this memory response. When irradiated wild-type mice were reconstituted with splenocytes from primed LTalpha-/- donors and then challenged with the same immunizing Ag, no memory response was observed, indicating further that memory cells could not be generated in the LTalpha-/- environment. To address which lymphocyte subsets were impaired in the LTalpha-/- mice, we performed reconstitution experiments using a hapten/carrier system and T cells and B cells from different primed donors. There was no detectable defect in either the generation or expression of memory T cells from LTalpha-/- donors. In contrast, B cells were not primed for memory in the microenvironment of LTalpha-/- mice. Additionally, primed wild-type memory B cells could not express a memory IgG response in the LTalpha-/- microenvironment. Thus, splenic white pulp structure, which depends on the expression of LTalpha for its development and maintenance, is needed to support the generation of memory B cells and to permit existing memory B cells to express an isotype switched memory Ig response following antigenic challenge.

Animals↗

Follicular dendritic cells catalyze hepatocyte growth factor (HGF) activation in the germinal center microenvironment by secreting the serine protease HGF activator.

Ag-specific B cell differentiation, the process that gives rise to plasma cells and memory B cells, involves the formation of germinal centers (GC). Within the GC microenvironment, multiple steps of B cell proliferation, selection, and maturation take place, which are controlled by the BCR in concert with cytokines and contact-dependent signals from follicular dendritic cells (FDCs) and T cells. Signaling by the multifunctional cytokine hepatocyte growth factor (HGF) and its receptor MET has been shown to induce integrin-mediated adhesion of B cells to VCAM-1, which is expressed by FDCs. In the present study we have examined the expression of regulatory components of the HGF/MET pathway, including HGF activator (HGFA), within the secondary lymphoid organ microenvironment. We show that MET is expressed by both centroblasts and plasma cells, and that HGFA is expressed by plasma cells. Because we have shown that HGF is a potent growth and survival factor for malignant plasma cells, HGF may also serve as a survival factor for normal plasma cells. Furthermore, we demonstrate that FDCs are the major source for HGF and its activator within the GC microenvironment. Both HGF and HGFA are expressed by FDCs in the GC dark zone (CD21high/CD23low), but not in the light zone (CD21high/CD23high). These findings suggest that HGF and HGFA provided by dark zone FDCs help to regulate the proliferation, survival, and/or adhesion of MET-positive centroblasts.

Catalysis↗

Membrane-associated TGF-beta1 inhibits human memory T cell signaling in malignant and nonmalignant inflammatory microenvironments.

TGF-beta1 is present on cells derived from the microenvironment of human lung tumors and nonmalignant inflammatory tissues. We establish that this cell-associated cytokine mediates hyporesponsiveness of the memory T cells in these microenvironments in situ by blocking TCR signaling. T cells derived from these tissues failed to translocate NF-kappaB to the nucleus in response to CD3 + CD28 cross-linking. This nonresponsiveness was reversed by an anti-TGF-beta1-neutralizing Ab. Refractoriness of the memory T cells to TCR activation was also reversed by the removal of TGF-beta1 by briefly pulsing the cells in a low pH buffer. Addition of exogenous TGF-beta1 to eluted T cells re-established their nonresponsive state. Neither TGF-beta1, anti-TGF-beta1 Ab, nor low pH affected TCR signaling potential of peripheral blood T cells. We conclude that TGF-beta1 mediates a physiologically relevant regulatory mechanism, selective for memory T cells present in the tumor microenvironment and nonmalignant chronic inflammatory tissues.

Antibodies↗

Effect of interleukin 1beta on rat thymus microenvironment.

The effect of interleukin 1beta on the thymus of control and chemically sympathectomized adult and aged rats was studied with the aim of assessing the importance of adrenergic nerve fibres (ANF) in the regulation of some immunological functions. The whole thymus was removed from normal, sympathectomized (with the neurotoxin 6-OH-dopamine) and treated (interleukin 1beta) rats. Thymic slices were stained with eosin orange (for the recognition of microanatomical details of the thymic microenvironment) and with Bodian's method for staining of nerve fibres. Histofluorescence microscopy was employed for staining ANF and immunofluorescence was used for detecting NPY-like immunoreactivity. All images were submitted to quantitative morphometrical analysis and statistical analysis of data. Moreover, the amount of proteins and noradrenaline was measured on thymic homogenates. The results indicate that in normal conditions the formation of the thymic nerve plexi in the rat is complex: the majority of ANF are destroyed after chemical sympathectomy with 6-OH-dopamine and do not change after treatment with interleukin 1beta; on the contrary, treatment with interleukin 1beta induces substantial changes in the fresh weight of the thymus, the thymic microenvironment, thymic nerve fibers, ANF, NPY-like positive nerve fibres, and on the total amount of proteins and noradrenaline in rat thymic tissue homogenates. Immunostimulation with interleukin 1beta induces substantial changes in the whole thymus, in its microenvironment and in ANF and NPY-like nerve fibres. After chemical sympathectomy, no significant immune response was evoked by interleukin 1beta, since the majority of ANF was destroyed by chemical sympathectomy.

Adrenergic Agents↗

Use of immuno-LCM to identify the in situ expression profile of cellular constituents of the tumor microenvironment.

Expression profiling using microarrays has become an essential tool for interrogating tumor biology. However, profiling of whole tumor RNA reflects both tumor and host cells, making it difficult to dissect molecular events within specific cellular compartments in the tumor microenvironment. We developed and optimized a simple, rapid technique combining immunohistochemistry and laser-capture microdissection (immuno-LCM) to purify specific cell populations from the tumor microenvironment followed by RNA isolation and amplification for microarray analysis. Using this methodology, we were able to elucidate the in situ expression profile of pure tumor cells and tumor endothelial cells from ovarian tumors with brisk immune infiltrates. This technique not only increased the specificity of profiling isolated cell populations, eliminating genes expressed by surrounding cells, but also increased the sensitivity of analysis, allowing for the detection of low expression genes that were not detected in whole tumor arrays. Pathway analysis of tumor cells in situ identified distinct activation of signaling pathways converging on NF-kappaB, as compared to pathways identified in cultured tumor cell lines, which were primarily metabolic. Profiling of tumor vascular cells revealed most known panendothelial and tumor endothelial-specific markers, and unveiled genes specific to the myeloid-monocytic lineage. We propose that immuno-LCM coupled with transcriptional profiling is a convenient tool for dissecting molecular and cellular events in complex biological systems such as the tumor microenvironment.

Computational Biology↗

Molecular biological ontogenesis of the thymic reticulo-epithelial cell network during the organization of the cellular microenvironment.

The thymus provides an optimal humoral microenvironment for the development of immunocompetent T cells. Although yolk sac derived pre-T, committed hematopoietic stem cells enter the thymus using a homing receptor, the immigration process also requires secretion of a peptide called thymotaxin by the cells of the reticulo-epithelial (RE) network of the thymic cellular microenvironment. The majority of RE cells have a round or irregular pale nucleus, which contains few, scattered, chromatin granules with a defined, spherical nucleolus, rich in basic histones. Their cytoplasm occasionally displays RNP granules, and is rich in non-histone proteins, fine phospholipid, lipid or cholesterin granules, and vacuoles filled with secreted substances. The cells of the subcapsular, endocrine RE cell layer (giant or nurse cells), characterized by PAS positive granules, express A2B5/TE4 cell surface antigens and MHC Class I (HLA A, B, C) molecules. In contrast to medullar RE cells, these subcapsular nurse cells also produce thymosins beta 3 beta 4. Thymic nurse cells (TNCs) display a neuroendocrine cell specific immunophenotype (IP): Thy-1+, A2B5+, TT+, TE4+, UJ13/A+, UJ127.11+, UJ167.11+, UJ181.4+, and presence of common leukocyte antigen (CLA+). Medullar RE cells display MHC Class II (HLA-DP, HLA-DQ, HLA-DR) molecule restriction. These cells also contain transforming growth factor-beta (TGF-beta) type II receptors and participate in the positive selection of T cells. Transmission electron-microscopic (TEM) observations have defined four functional subtypes of medullar RE cells: undifferentiated, squamous, villous, and cystic. All subtypes are connected by desmosomes. Immunocytochemical observations have shown that the secreted thymic hormones, thymosin alpha 1 and thymopoietin (and its short form, thymopentin or TP5), are produced by the same RE cells. Thymic RE cells also produce numerous cytokines including IL1, IL6, G-CSF, M-CSF, and GM-CSF that likely are important in various stages of thymocyte activation and differentiation. The co-existence of pituitary hormone and neuropeptide secretion, such as growth hormone, prolactin, adrenocorticotropic hormone, thyroid stimulating hormone, triiodothyronine, somatostatin, oxytocin, follicle stimulating hormone, luteinizing hormone, arginine vasopressin, growth hormone releasing hormone, corticotropin releasing hormone, nerve growth factor, vasoactive intestinal peptide, (pro) enkephalin, and beta-endorphin, production of a number of interleukins and growth factors, as well as the expression of receptors for all, by the same RE cell is an unique molecular biological phenomenon. These data illustrate the immensely important and diverse immuno-neuroendocrine functions of the thymic RE cellular network. Based on our systematic observations of the thymus in humans and other mammalian species, we suggest that the thymic RE cell network represents an extremely important cellular and humoral microenvironment in homeopathic regulatory mechanisms of the multicellular organism. Intrathymic T lymphocyte selection is a complex, multistep process, influenced by several functionally specialized RE cell subtypes and under constant immuno-neuroendocrine regulation, reflecting the dynamic changes of the organism.

Animals↗

Effect of costimulation and the microenvironment on antigen presentation by leukemic cells.

Costimulatory signals supplied by genetically modified tumor cells can enable T-cell recognition of tumor-associated antigens that were previously silent when presented by unmodified tumor cells. Although the mechanism of the CD80/CD28 costimulation has been studied extensively in the normal T-cell/antigen-presenting cell (APC) interactions, it is unclear how expression of CD80 by tumor cells mediates its effect. We demonstrate here that optimal CD80 expression on a leukemic cell enhances T-cell recognition of alloantigen primarily by lowering the level of T-cell receptor (TCR) stimulation required for activation. CD80 expression by leukemic cells leads to increased survival of activated T cells by inducing upregulation of the antiapoptotic protein BCL-2, but not BCL-X(L). The cytokine microenvironment in which T cells are activated is crucial in determining their differentiation and consequently the nature of the immune response generated. Many tumor cells produce immunosuppressive cytokines that may not favor the induction of cell-mediated immunity. In this study, the presence of CD80 on leukemic cells increased T-cell activation in vitro, but this did not result in the production of Th1 cytokines. We show that this is due to a leukemia-derived soluble factor that inhibits the production of Th1 cytokines. Optimal expression of a costimulatory molecule, therefore, enhances the ability of leukemic cells to present antigen by amplifying TCR signals, but the microenvironment generated by leukemic cells may suppress the immune response required for their eradication. Thus, strategies aimed at inducing antileukemic immunity by providing leukemic cells with costimulatory functions must ensure the presence of an appropriate microenvironment.

Antigen Presentation↗

[Relationships between intrahepatic metastasis of hepatocellular carcinoma and in situ microenvironment, and the abundance of nm23-H1 H-ras mRNA].

OBJECTIVE: To reveal intrahepatic metastasis of hepatocellular carcinoma (HCC) in relation to its micro-environment and nm23-H1 H-ras mRNA expression. METHODS: In HCC specimens from 25 patients, the level of nm23-H1 and H-ras mRNA was examined by quantitative reverse transcription-polymerase chain reaction(RT-PCR). Tumor microvessel density(MDV), an essential factor of microenvironment and proliferating cell nucleus antigen (PCNA), an index of tumor cell proliferation, were also studied by immunohistochemical methods using antibodies against endothelial protein factor VIII-related antigen(F8RA) and antibody PC-10. RESULTS: The MDV and PCNA index in the group with intrahepatic metastasis were remarkably higher than those in the group without it (P < 0.01), while nm23-H1 mRNA expression level was negatively correlated with PCNA index (P < 0.05). The level of H-ras mRNA expression did not correlate with intrahepatic metastasis. MDV was positively correlated with PCNA index (P < 0.01). CONCLUSION: Intrahepatic metastasis of HCC depends very much on its in situ microenvironment. The decline in nm23-H1 mRNA may implicate a preferential proliferation of nm23-negetive HCC cells with highly metastastic potential which adapt well to the microenvironment.

Carcinoma, Hepatocellular↗

[Study on the improvement of bone marrow microenvironment by ligustrazine in immune-induced aplastic anemia mice].

OBJECTIVE: To explore the effects of ligustrazine on bone marrow microenvironment and its mechanism in aplastic anemia (AA). METHODS: Each immune-induced AA mouse was gastric fed by 4 mg ligustrazine twice a day. On the 10th day, the ulnar bone marrow partial pressure of oxygen (PbO2) was determined in vivo by a PO2 sensory needle. Then the histological features, fibroblastic colony forming unit (CFU-F) yields and the adhesive function of stromal cells of the bone marrow were assayed in vitro. RESULTS: The PbO2 in ligustrazine-treated group was 10.32 +/- 1.27 kPa, while in AA group was 4.32 +/- 2.86 kPa (P < 0.001). In AA group, the microvessels were expanded, broken and being stasis. The percentage of hematopoietic tissue volume was 24.9% +/- 9.6% and the CFU-F yields was 12.5 +/- 7.3/2 x 10(6) BMNC. The microvessels in ligustrazine group were more clear and intact, not being broken and had no stasis. The percentage of hematopoietic tissue volume was 52.8% +/- 15.6% and the CFU-F yields was 31.5 +/- 10.6/2 x 10(6) BMNC. In ligustrazine group, the adhesive function of stromal cell layer cultured with bone marrow nucleated cells from normal mice was 72.7% +/- 7.8%, which was not different from that in normal group (73.4% +/- 3.4%), but much higher than that in AA group (56.2% +/- 9.8%, P < 0.01). CONCLUSION: Ligustrazine can promote the rehabilitation of bone marrow microvessels in AA mice, increasing the oxygen supply for bone marrow microenvironment, promoting the growth of stromal cells and strengthening their adhesive function. Ligustrazine enbances the bone marrow hematopoietic cells proliferation by improving their microenvironment.

Anemia, Aplastic↗

Identification of differentially expressed genes in experimental models of the tumor microenvironment using differential display.

BACKGROUND: Genes upregulated within the tumour microenvironment represent potential targets for rational drug design. Most studies to date concentrate on the effects of hypoxia, although it is likely many genes are regulated by a more physiological combination of factors. MATERIALS & METHODS: Cells under conditions analogous to the normal and tumour microenvironments were isolated from the plateau-phase system and multicellular spheroids. Gene expression was analysed by differential display and confirmed by Northern blot or semiquantitative RT-PCR. RESULTS: p21-activated kinase (PAK1), a calmodulin-related mRNA, cytochrome oxidase subunit I and an H3.3 histone were upregulated within the in vitro tumour microenvironment, the last 3 within spheroids. CONCLUSIONS: Both models exhibit a range of microenvironmental parameters, although spheroids are more physiological with respect to the presence of extreme hypoxia and the formation of 3-dimensional interactions. We have shown that it is feasible to manipulate the spheroid system by serial trypsinisation to obtain reproducible cell populations for gene expression studies.

Adenocarcinoma↗

Arsenic trioxide inhibits growth of human multiple myeloma cells in the bone marrow microenvironment.

Multiple myeloma (MM) remains incurable with current therapies, and novel biologically based therapies are urgently needed. Thalidomide and its analogues, as well as proteasome inhibitors, are examples of such novel agents that target both the myeloma cell and its microenvironment and can overcome classical drug resistance. In this study we demonstrate that arsenic trioxide (As2O3) mediates anti-MM activity both directly on tumor cells and indirectly by inhibiting production of myeloma growth and survival factors in the bone marrow (BM) microenvironment. Specifically, As2O3 at clinically achievable levels (2-5 microM) induces apoptosis even of drug-resistant MM cell lines and patient cells via caspase-9 activation, enhances the MM cell apoptosis induced by dexamethasone, and can overcome the antiapoptotic effects of interleukin 6. As2O3 also acts in the BM microenvironment to decrease MM cell binding to BM stromal cells, inhibits interleukin 6 and vascular endothelial growth factor secretion induced by MM cell adhesion, and blocks proliferation of MM cells adherent to BM stromal cells. These studies provide the rationale for clinical trials of As2O3, either alone or together with dexamethasone, to overcome classical drug resistance and improve outcome in patients with MM.

Antineoplastic Agents↗

[Influence of thalidomide on bone marrow microenvironment in refractory and relapsed multiple myeloma].

BACKGROUND & OBJECTIVE: More and more studies indicated that microenvironment plays a major role in growth, survival, and drug resistance of myeloma cells. Thalidomide is one of agents targeting the bone marrow microenvironment. This study was conducted to investigate the mechanism of thalidomide by observation of influence of thalidomide on bone marrow microenvironment in refractory and relapsed multiple myeloma. METHODS: The expression of ICAM-1 and VCAM-1 of bone marrow stromal cell (BMSC) membrane of refractory and relapsed multiple myeloma was measured using flow cytometry. The expression of IL-1beta(m)RNA, IL-6mRNA, and TNF-alpha(m)RNA in myeloma BMSC was measured by semiquantitative RT-PCR. The serum levels of vascular endothelial growth factor (VEGF) and basic fibroblast growth factor(bFGF) were measured by ELISA. RESULTS: The average values of fluorescence of ICAM-1 and VCAM-1 on the myeloma BMSC membrane were 13.28+/-4.26 and 10.35+/-2.47, respectively; while the average values of fluorescence after treatment effectively with thalidomide were both lower (4.29+/-0.98 and 3.54+/-0.62) (P< 0.01, P< 0.05). The ratios of IL-1beta(m)RNA, IL-6(m)RNA, and TNF-alpha mRNA to beta-actin of the myeloma BMSC were 1.83+/-0.64, 24.52+/-11.46, and 3.42+/-1.83, respectively; while the ratios after treatment effectively with thalidomide were all lower (0.58+/-0.11, 13.47+/-14.31, and 1.25+/-0.76)(P< 0.05,P< 0.05,P< 0.01). There was no significant difference between the values of ICAM-1 and VCAM-1 or among the ratios of IL-1beta(m)RNA, IL-6(m)RNA, and TNF-amRNA to beta-actin of the myeloma BMSC before and after treatment ineffectively with thalidomide (all P >0.05). The serum levels of VEGF and bFGF of the patients were (150.26+/-19.33) ng/L and (23.78+/-13.63) ng/L, respectively. The serum levels of VEGF and bFGF were higher after treatment (effectively and ineffectively) than those before treatment (P< 0.002, P< 0.005). CONCLUSION: Thalidomide can not only inhibit angiogenesis, but also abrogate the adhesion of multiple myeloma cells to bone marrow stromal cells.

Aged↗

Regulation of multiple tumor microenvironment markers by overexpression of single or paired combinations of ErbB receptors.

The progression of primary tumors to an invasive phenotype requires dynamic changes in multiple cellular and local tumor microenvironment markers. In this study, we report a genomic approach to assess gene transcriptional changes upon overexpression of ErbB receptors, in vitro and in vivo, focusing on markers involved in the regulation of the tumor microenvironment. ErbB receptors (ErbB-1/epidermal growth factor receptor, ErbB-2, ErbB-3, and ErbB-4) were stably overexpressed in a polyclonal cell population as single or paired combinations using murine and human breast cell models. The overall numbers of known genes that are up- or down-regulated was significantly higher in cells and tumors overexpressing paired combinations of receptors compared with cells and tumors overexpressing single ErbB receptors. Genes encoding components of cell-cell structures, extracellular matrix, coagulation factors, and angiogenesis were predominantly affected by the most active ErbB receptor combinations and were predictive of the aggressive in vivo tumorigenicity, a feature that was not always seen in vitro. Among ErbB-regulated tumor microenvironment markers detected by the genomic analysis, thrombospondin 1, an endogenous inhibitor of angiogenesis, was additionally validated in relation to tumor growth phenotype. Thrombospondin 1 mRNA and protein were down-regulated by specific ErbB receptors, in vitro and in both rodent and human ErbB-induced tumors, consistent with the extent of tumor growth and tumor vascularization associated with specific ErbB receptors. In summary, our genomic results highlight the broad diversity of ErbB-regulated cancer-associated genes and revealed several novel targets that may have potential therapeutic applications for targeting tumor progression involving aberrations of ErbB receptors.

3T3 Cells↗