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Vascular endothelial growth factor isoforms display distinct activities in promoting tumor angiogenesis at different anatomic sites.

The gene for the major angiogenic factor, vascular endothelial growth factor (VEGF), encodes several spliced isoforms. We reported previously that overexpression of two VEGF isoforms, VEGF(121) and VEGF(165), by human glioma U87 MG cells induced tumor-associated intracerebral hemorrhage, whereas expression of a third form, VEGF(189), did not cause vessel rupture. Here, we test whether these VEGF isoforms have distinct activities for enhancing vascularization and growth of gliomas in mice. U87 MG cells that overexpressed VEGF(165) or VEGF(189) grew more rapidly than the parental cells in both s.c. and intracranial (i.c.) locations. However, cells that overexpressed VEGF(121) only showed enhancement of i.c. tumor growth but had a minimal effect on s.c. glioma progression. At both anatomical sties, VEGF(165) and VEGF(189) strongly augmented neovascularization, whereas VEGF(121) only increased vessel density in brain tumors. In each type of glioma, expression of VEGF receptors -1 and -2 largely phenocopied the tumor vasculature, because increased VEGF/VEGF receptor-activated microvessel densities were strongly correlated with the angiogenicity and tumorigenicity elicited by the VEGF isoforms at both anatomical sites. One notable difference between the sites was the expression of vitronectin, a prototypic ligand of alpha(v)beta(3) and alpha(v)beta(5) integrins, detected in i.c. but not in s.c., gliomas. Endothelial cell migration stimulated by VEGF(121) was potentiated by vitronectin to a greater extent than that stimulated by VEGF(165). This data demonstrates that VEGF isoforms have distinct activities at different anatomical sites and suggest that the microenvironment of different tissues affects the function of VEGF isoforms.

Animals↗

[Intrinsic angiotensin II-generating system in human pancreatic cancer tissues].

To clarify whether an intrinsic angiotensin II-generating system exists in human advanced pancreatic cancer tissues, we measured angiotensin II concentration and angiotensin converting enzyme (ACE) activity in tissues of normal pancreas, pancreatic cancers, colon cancers and hepatocellular carcinomas. After the surgically resected specimens were homogenized, angiotensin II concentration and ACE activity in tissues were measured using the florisil method and Kasahara's method, respectively. Tissue angiotensin II levels in pancreatic cancers (n = 13) were significantly higher than those of normal pancreas (n = 7), colon cancers (n = 7), or hepatocellular carcinomas (n = 7). However, there was no significant difference in tissue ACE activity between them. This study provides in vivo evidence of ACE-independent angiotensin II-generating system in human pancreatic cancer tissues and suggests that this locally-formed angiotensin II influences the microenvironment of pancreatic cancer tissues in a paracrine fashion.

Adult↗

[Biomolecules suppressing myelopoiesis].

Hematopoietic stem cells are capable of self-replication and differentiation to lineage-committed progenitor cells. The progenitors proliferate and differentiate to lineage-specific, morphologically recognizable precursors and, finally, to terminal circulating blood cells. These homeostatic mechanisms are regulated by a complex set of interacting growth stimulatory and inhibitory factors that are produced by, or in collaboration with, the tissue's regulatory microenvironment. A number of well-characterized cytokines have been implicated in the negative regulation of hematopoiesis: ferritin H-subunit (HF), lactoferrin (Lf), prostaglandin E (PGE), tumor necrosis factor (TNF), interferon (IFN), transforming growth factor-beta (TGF beta), acetyl-N-Ser-Asp-Lys-Pro (AcSDKP) or thymosin-beta 4, pyroGlu-Glu-Asp-Cys-Lys (pEEDCK), macrophage inflammatory protein-1 alpha (MIP-1 alpha), inhibin, superoxide dismutase (SOD), glutathione (GSH) and others not well-known yet. The role of inhibitors in restraining stem cells from entering the cell cycle and protecting them from the toxic side effects of chemotherapeutic drugs is opening an alternate strategy for the treatment of cancer patients.

Amino Acid Sequence↗

Tumor-associated macrophages: foe or accomplice of tumors?

Macrophages are predominantly involved in the immune and inflammatory processes of solid tumors. Macrophages infiltrated into a tumor have an ambivalent relationship with the tumor, because they are innately very flexible and adaptable depending on the microenvironment of the tissue and the tissue-derived factors. The relationship between tumor-associated macrophages (TAMs) and a tumor is extremely complicated and has not yet been clearly elucidated. Now, the reintegration of biological knowledge including immunology, pathology and oncology is indispensable for the clinical application of TAMs to cancer therapy. In this review, we focus on the range of pro- and anti-tumor functions performed by TAMs and outline a new class of cancer therapies that aims at controlling the complex functions of TAMs.

Animals↗

The degree of macrophage infiltration into the cancer cell nest is a significant predictor of survival in gastric cancer patients.

BACKGROUND: Tumor-associated macrophages (TAMs) have varying functions depending on the microenvironment of tumor tissue. We studied the biological role of TAMs in gastric cancer on the basis of their spatial distribution in the cancer tissue. MATERIALS AND METHODS: Tissue specimens from 84 advanced gastric carcinoma (pT2; 41 cases, pT3; 43 cases) patients who had undergone a curative resection were stained for TAM (CD68+ cells), incidence of tumor cell apoptosis (TUNEL) and host immune status (CD8+ T cells). CD68+ and CD8+ T cells infiltrated into the cancer cell nests or in close contact with cancer cells were considered as nest TAMs and nest CD8, respectively. RESULTS: Nest TAMs had a very strong direct correlation with frequency of tumor cell apoptosis (p < 0.0001) and degree of nest CD8 (p = 0.0004). The 5-year disease-free survival rate in the high-nest TAM category (87%) was significantly higher than in the low-nest TAM group (44%) (p = 0.0002). Among the several prognostic factors, nest TAM, nest CD8 and pT stage became independent predictors of patient survival (p = 0.016, p = 0.001 and p = 0.029, respectively) in Cox's multivariate analysis. CONCLUSION: These results suggested that the aggregation of TAMs within tumor nest had a beneficial effect on host in terms of augmented cytotoxicity and antigen presentation.

Adenocarcinoma↗

[Effect of Spatholobus suberectus on the bone marrow cells and related cytokines of mice].

OBJECTIVE: To study the effect of Spatholobus suberectus on proliferation and the hematonic mechanism. METHOD: The techniques of culture of hematopoietic cell and hematopoietic growth factor (HGF) assay were used. RESULT: Spatholobus suberectus could obviously promote the proliferation of bone marrow cells in healthy and anaemic mice. The culture media of spleen cell, macrophage, lung and skeletal muscle treated with S. suberectus had much stronger stimulating effects on hematopoietic cells. CONCLUSION: S. suberectus may enhance hematopoiesis by directly or indirectly stimulating stroma cell in hematopoietic inductive microenvironment and muscle tissue to secrete some HGF (Epo, GM-CSF, IL, and MK-CSF). This is one of the biological mechanisms for hematonic effect of S. suberectus.

Anemia↗

Augmentation of interleukin-2 immunotherapeutic effects by lymphokine-activated killer cells and allogeneic stimulation in murine tumor cells.

Interleukin-2 (IL-2) and lymphokine-activated killer (LAK) cells were used in intraperitoneal and pulmonary tumor models in C57BL/6 mice. To maintain the immunotherapeutic effects of IL-2 plus LAK treatment but reduce its toxicity, ways were sought to augment IL-2 effects. The investigation showed that the adoptive transfer of LAK cells was a prerequisite for successful therapy of intraperitoneal cancer. When LAK cells were given on consecutive days within one course of immunotherapy, antitumor efficacy was augmented with additional doses of LAK cells. However, with the reduction of 1 complete cycle of IL-2 + LAK cells, no further reduction in intraperitoneal tumor was observed as compared to the reduction after 2 or 4 cycles. LAK cells generated from splenocytes of mice that had received an allogeneic tumor challenge 1 week earlier exerted a highly increased cytotoxicity as compared to normal LAK cells. Furthermore, the potentiation effect of an allogeneic response of the host at the tumor site was demonstrated by decreased numbers of lung implants and improved survival in mice given mixtures of syngeneic and allogeneic tumor cell suspensions. An alloimmune response within the microenvironment of tumor tissue markedly enhanced the antitumor effect of IL-2 against the syngeneic tumor. It was concluded that there is a fundamental need to improve the recruitment of adoptively transferred LAK cells or LAK precursors into tumor tissue. This may be the next step required in the further development of IL-2 and LAK immunotherapy.

Animals↗

[Lymphocyte migration in syngeneic lymph node implants].

Lymph nodes implanted subcutaneously to syngeneic recipients were shown to regenerate after mass cell destruction. Regenerated lymphoid tissue has a resemblance to the cortical zone of intact lymph nodes. Microenvironment of regenerated lymphoid tissue provides homing of lymphocytes. However, migration of 51Cr-labelled lymphocytes to implants declined drastically, as compared to lymphocyte migration to intact lymph nodes. Attenuation of proliferative activity and the data of morphological analysis indicate a more prolonged retention of lymphocytes in implanted lymph nodes. The results obtained could be attributable to only partial recovery of sinus and vessel systems regulating the inflow and outflow of lymphocytes in lymph nodes.

Animals↗

Microheterogeneities, non-equivalance, and embryonic induction.

The thrust of this report is to stress the importance of microheterogeneities in the microenvironment of differentiating tissues as a possible inducer or regulator of differentiation. During chondrogenesis both qualitative and quantitative changes occur in the proteoglycan population. Using molecular sieve chromatography, these changes can be characterized and used as indices of differentiation. Microheterogeneities of the extracellular matrix may be an example of "non-equivalence" as a regulatory device for differentiation.

Animals↗

Insulin-like growth factor binding proteins in bone cell regulation.

Recent studies emphasize that 1) IGFs are important local regulators of bone formation and 2) IGFBPs are important regulators of the biological actions of IGFs in bone. The importance of IGFs is shown by the finding that 40-50% of basal bone cell proliferation could be blocked by inhibiting the actions of IGFs produced endogenously by bone cells in serum free culture. In addition, IGFs are the most abundant growth factors stored in bone and are produced by bone cells. Recent studies suggest that IGFs are fixed in bone by means of IGFBP-5 which binds with high affinity to both hydroxyapatite and IGFs. Upon release from this storage depot, IGFs and IGFBP-5 are thought to act in the coupling of bone formation to bone resorption in a delayed paracrine manner (i.e. previously fixed IGF+IGFBP-5 complex is released in a bioactive form during bone resorption to stimulate new bone formation). In addition to IGFBP-5, human bone cells in culture have also been shown to produce other IGFBPs, some of which modulate IGF actions in either positive or negative manner. In addition, recent studies also demonstrate that local and systemic effectors of bone formation may regulate the actions of acutely synthesized IGFs (autocrine/paracrine actions) in bone cell microenvironment in a tissue specific manner by modulating the type and amount of IGFBPs produced by bone cells at a local site of bone.

Animals↗

[Transplantation of pedicled gastric wall flaps to the intestines in Wistar rats].

The pedicled gastric wall flaps of Wistar rats were transplanted to their duodenum, jejunum and colon respectively. After the operation the rats were killed at the 3rd, 6th, 9th and 12th month respectively. Intestinal metaplasia (IM) was observed in all the gastric grafts transplanted to the intestines under photomicroscope, TEM and SEM. Alkaline phosphatase positive IM was seen in the gastric graft mucosa transplanted to the duodenum and jejunum. The results showed that the formation of IM of the gastric mucosa may be related to a change of the microenvironment around the tissues and that gastric mucosa may differentiate into intestinal mucosa by the increase of pH value.

Animals↗

IFN-gamma influences the migration of thoracic duct B and T lymphocyte subsets in vivo. Random increase in disappearance from the blood and differential decrease in reappearance in the lymph.

Thoracic duct lymphocytes (TDL) continuously patrol through the body, facilitating immune responses at most sites. IFN-gamma might regulate immune responses by influencing the migration of TDL. Therefore, it was investigated in vivo whether IFN-gamma affects the migration of thoracic duct B, T, CD4+, and CD8+ lymphocytes from blood to lymph. Labeled TDL were injected i.v. into rats continuously receiving IFN-gamma via a central venous catheter. The numbers of B, T, CD4+, and CD8+ lymphocytes were determined in blood and thoracic duct lymph for 120 h. IFN-gamma increased the disappearance of TDL from the blood to a similar extent in all subsets. In contrast, the reappearance of B and T lymphocyte subsets in the lymph was decreased: B lymphocytes were affected significantly more than T lymphocytes, whereas CD4+ and CD8+ lymphocytes were affected to a similar extent. Our study suggests that differential retention within the tissue rather than preferential immigration into the tissue creates a microenvironment with a distinct composition of lymphocyte subsets.

Animals↗

Gangliosides are potent immunosuppressors of IL-2-mediated T-cell proliferation in a low protein environment.

Gangliosides are immunosuppressive to many classes of immune cells, and shedding of these glycosphingolipids by tumour cells may regulate immune responses in cancer, and protect tumours from host immune destruction. One mechanism of immunosuppression by gangliosides in vitro involves competition with interleukin-2 receptors (IL-2R) for binding of IL-2. Previous studies on inhibition of IL-2-mediated events by gangliosides have been conducted in the presence of high levels of fetal bovine serum (FBS). However, gangliosides shed by tumours in vivo will encounter immune cells in the low protein microenvironment of the tissue fluid. In order to better mimic physiological conditions, we have examined immunosuppression by gangliosides towards IL-2-dependent HT-2 cells in a low serum-low protein medium. The ability of gangliosides to inhibit IL-2-stimulated DNA synthesis in HT-2 increased dramatically as the serum concentration in the culture medium was decreased; the 50% inhibitory concentration (IC50) value for GM1 was 13 microM under low serum conditions, 14-fold lower than the value obtained in 10% FBS. Further investigation revealed that the mechanism of immunosuppression by gangliosides in low serum-low protein medium involved interference with the IL-2/IL-2R system. Ganglioside-mediated inhibition was dependent on the continued presence of the glycolipids during the first few hours after IL-2 stimulation, and could be reversed by increasing levels of IL-2. Receptor binding experiments demonstrated that gangliosides blocked the interaction of IL-2 with high-affinity IL-2 receptors on HT-2. Taken together, these results support the view that gangliosides will act as much more potent suppressors of IL-2-dependent processes in vivo in the vicinity of a tumour.

Animals↗

Histological and electron-microscopic observations on the mucosa of pediculate gastric wall graft transplanted to the intestines in Wistar rats.

OBJECTIVE: To study the machanism of the development of intestinal metaplasia through the transplantation of a flap of gastric wall with vascular pedicle to the intestines. METHODS: The pedicled gastric wall flaps of Wistar rats were transplanted to their duodenum, jejunum and colon respectively. After the operation the rats were killed at the 3th, 6th, 9th and 12th month respectively, and histological change of the gastric grafts was observed with optical and electron microscopy. RESULTS: Intestinal metaplasia was found in all the gastric grafts transplanted to the intestines and the alkaline phosphatase positive intestinal metaplasia was seen in the gastric graft mucosa transplanted to the duodenum and jejunum. CONCLUSIONS: The formation of intestinal metaplasia in the gastric mucosa may be related to a change of the microenvironment around the tissues, and gastric mucosa may differentiate into intestinal mucosa by the increase of pH value. The possible mechanism of the development of intestinal metaplasia was discussed.

Anastomosis, Surgical↗

[The effect of angelica polysaccharide on proliferation and differentiation of hematopoietic progenitor cell].

OBJECTIVE: To study the effect of angelica polysaccharide (AP) on proliferation and differentiation of hematopoietic progenitor cells for clarifying the hematonic mechanism of angelica sinensis. METHODS: The techniques of culture of hematopoietic progenitor cell and hematopoietic growth factor (HGF) assay were used. RESULTS: AP could obviously promote the proliferation and differentiation of BFU-E, CFU-E, CFU-GM and CFU-MK in healthy and aniemic mice. The culture media of splenocyte, macrophage, fibroblast and skeletal muscle treated with AP had much stronger stimulating effects on hematopoietic progenitor cells. CONCLUSIONS: AP may enhance hematopoiesis by stimulating directly and/or indirectly macrophages, fibroblasts, lymphocytes in hematopoietic inductive microenvironment and muscle tissue to secrete some HGF (Epo, GM-CSF, IL, and MK-CSF). This is one of the biological mechanisms for hematonic effect of angelica sinensis.

Animals↗

[Defective generation of NK1.1+ T cells in aly/aly mice associated with thymic architecture].

It has been reported that positive selection of natural killer antigen 1.1+ (NK1.1+) T cell antigen receptor (TCR) alpha beta+ thymocytes recently identified among CD4+8- and CD4-8- subpopulations is attributable to major histocompatibility complex (MHC) class Ib ligands expressed on bone marrow (BM) derived components in the thymus. This selection pattern is quite different from NK1.1-T cells of main stream. In the present study, we investigated generation of NK1.1+ TCR alpha beta+ cells in the thymus of aly/aly mouse which lacks lymph nodes and Peyer's patches and shows abnormalities of thymic and splenic structure. We found that the proportion of the NK1.1+ TCR alpha beta+ thymocytes was extremely low in these mice as compared with aly/aly+ and normal C57BL/6 mice. Thymic reconstitution by BM cells from aly/aly+ mice which possess a normal population of NK1.1+ TCR alpha beta+ thymocytes did not restore the NK1.1+ TCR alpha beta+ cell population in the thymus of lethally irradiated aly/aly mouse. When deoxy-guanosine (dGuo)-treated fetal thymi from (B6 x B10.G) F1 mice were transplanted to aly/aly mice which had been thymectomized and reconstituted with BM cells of aly/aly mice, normal proportions of the NK1.1+ TCR alpha beta+ thymocytes were observed in the thymus grafts. Furthermore it was demonstrated that NK1.1+ T cells in aly/aly mice were unable to produce efficiently IL-4 upon in vivo stimulation with anti-CD3. These findings demonstrate that the development of NK1.1+ TCR alpha beta+ cells is accomplished under the influence of not only BM derived components but also in intact microenvironment of lymphoid tissues.

Animals↗

[Changes of the cornea induced by lipopolysaccharide in Lewis rats].

PURPOSE: To investigate changes of the cornea induced by lipopolysaccharide (LPS). METHODS: Immunohistochemical study using monoclonal antibodies to monocytes, macrophages (ED1, ED2) and MHC class II antigen (OX6) was performed on the corneal wholemounts obtained from normal lewis rats and those after LPS injection. RESULTS: Macrophages were noted to be present in whole cornea with a gradually decreased cell density from limbus to central part in normal lewis rats. However, major histocompatibility complex class II antigen (MHC class II)-positive cells were only distributed at limbus. Footpad injection of LPS induced an increase of monocytes and macrophages in whole cornea and a dramatical changes of these cells morphologically. MHC class II-positive cells were only and shortly noted on the surface of the cornea endothelium at early stage after LPS injection. CONCLUSION: LPS-induced increase of macrophages in the cornea may be an important defense mechanism in response to LPS challenge. On the other hand, the absence of MHC class II-positive cells both in the normal and in the inflamed cornea may be contributed to the stability of immunological microenvironment within this tissue.

Animals↗

The importance of the microenvironment in breast cancer progression: recapitulation of mammary tumorigenesis using a unique human mammary epithelial cell model and a three-dimensional culture assay.

The extracellular matrix (ECM) is a dominant regulator of tissue development and homeostasis. "Designer microenvironments" in culture and in vivo model systems have shown that the ECM regulates growth, differentiation, and apoptosis in murine and human mammary epithelial cells (MEC) through a hierarchy of transcriptional events involving the intricate interplay between soluble and physical signaling pathways. Furthermore, these studies have shown that these pathways direct and in turn are influenced by the tissue structure. Tissue structure is directed by the cooperative interactions of the cell-cell and cell-ECM pathways and can be modified by stromal factors. Not surprisingly then, loss of tissue structure and alterations in ECM components are associated with the appearance and dissemination of breast tumors, and malignancy is associated with perturbations in cell adhesion, changes in adhesion molecules, and a stromal reaction. Several lines of evidence now support the contention that the pathogenesis of breast cancer is determined (at least in part) by the dynamic interplay between the ductal epithelial cells, the microenvironment, and the tissue structure (acini). Thus, to understand the mechanisms involved in carcinogenesis, the role of the microenvironment (ECM as well as the stromal cells) with respect to tissue structure should be considered and studied. Towards this goal, we have established a unique human MEC model of tumorigenesis, which in concert with a three-dimensional assay, recapitulates many of the genetic and morphological changes observed in breast in cancer in vivo. We are currently using this system to understand the role of the microenvironment and tissue structure in breast cancer progression.

Animals↗