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Biomedical subjects

J L Ascensão

Publications and source records attributed to J L Ascensão.

5 recordsLinked to original sources

Human natural killer cells.

Human natural killer (NK) cells comprise 10 to 15% of peripheral blood lymphocytes, characterized by their morphologic appearance of large granular lymphocytes (LGLs) and phenotype CD3- CD56+ CD16+ or CD16-. Functionally, these cells are defined by their ability to lyse target cells without prior sensitization and without restriction by major histocompatibility (MHC) antigens. These cells play an important role in immune defenses, especially after hematopoietic transplantation. They contribute to the defenses against virus-infected cells, graft rejection, and neoplasias; they also participate in the regulation of hematopoiesis through cytokine production and cell to cell interaction. In this mini-review we attempt to summarize the most relevant findings about these cells in terms of their origin and differentiation, their cell surface characteristics including activation and their cytolytic pathways. We have also provided a brief approach of their potential clinical use. Increased knowledge of NK cell differentiation, ontogeny and regulatory mechanisms may be of use for the planning of immunotherapeutic strategies.

Animals↗

Altered production of GM-CSF and IL-8 in cytomegalovirus-infected, IL-1-primed umbilical cord endothelial cells.

The human cytomegaloviruses (HCMVs) appear to have the potential to disrupt production of hematopoietic cytokines. We examined the production of granulocyte/macrophage colony-stimulating factor (GM-CSF) and interleukin (IL)-8 by cultured and CMV-infected human umbilical vein endothelial cells (HUVECs) and compared this production with that of uninfected cells. Endothelial cells are, among other things, an integral component of human bone marrow stroma, and are responsible for production of factors that modulate the proliferation and differentiation of human hematopoietic progenitors. HCMV infection increased the production of GM-CSF in IL-1-primed HUVECs without altering GM-CSF levels in infected but unprimed HUVECs. However, this same virus was capable of causing increased production of the inhibitory cytokine IL-8. Both the viral pellet and the cleared viral supernatant appeared to contribute equally to the increased IL-8 and GM-CSF production, because each of these preparations alone was capable of exerting only half the effect seen with whole virus preparations. That both live virus and soluble protein factors within the viral stock contributed to the enhancement in GM-CSF and IL-8 production was further confirmed by inactivation with either ultraviolet or heat treatment of the viral stocks. Although the identity of the factor within the HCMV stock that contributes to this effect remains unknown, studies conducted in the presence of neutralizing antibodies or polymyxin B ruled out a role for tumor necrosis factor-alpha, IL-6, or endotoxin, all known inducers of GM-CSF. These studies indicate that HCMVs can exert both direct and indirect effects on the production of the hematopoietic factor GM-CSF and the inflammatory/inhibitory cytokine IL-8.

Cells, Cultured↗

Isolation, characterization, and biologic features of bone marrow endothelial cells.

Bone marrow endothelial cells (BMECs) are an integral part of the bone marrow microenvironment and are likely to play an important role in the regulation of hematopoiesis, either by producing growth factors or inhibitory cytokines or by displaying adhesion molecules that can interact with hematopoietic progenitors. In the present study we demonstrate the isolation, propagation, and characterization of BMECs with regard to morphology, growth characteristics, phenotype, and production of cytokines. Furthermore, we report the creation of a cell line with "BMEC-like" characteristics and compare the characteristics of primary BMEC cultures to those of the immortalized cell line. In addition, we demonstrate that BMECs are susceptible to infection by a laboratory strain of human cytomegalovirus (CMV), suggesting that CMV infection of endothelial cells in vivo could potentially play a role in the hematologic abnormalities observed during CMV infection.

Antigens, Polyomavirus Transforming↗

Natural killer cell numbers and activity in mobilized peripheral blood stem cell grafts: conditions for in vitro expansion.

Peripheral blood stem cells (PBSC) are increasingly being used as an alternative to autologous bone marrow (BM) for hematologic rescue after high-dose chemoradiotherapy in the treatment of hematologic and nonhematologic malignancies. Mobilization procedures such as chemotherapy and/or hematopoietic growth factor administration are employed to allow for the graft enrichment in hematopoietic stem cells and progenitors and to accelerate trilineage recovery after transplant. The influence of these mobilization procedures on the lymphoid populations in the graft and on immunologic recovery after transplant remains to be determined. We studied six consecutive patients undergoing PBSC high-volume collections after cyclophosphamide (Cyc) and granulocyte colony-stimulating factor (G-CSF) administration and observed that NK cell numbers (phenotypically defined as CD3-CD56+ by flow cytometry) and activity (evaluated by a 51Cr release assay) fully recovered after 4-5 weeks; high numbers of functionally active NK cells (42.1-212.1 x 10(6)/kg b.w.) were present in the grafts, and their percentage and cytotoxic activity rose from the beginning to the end of the harvesting procedure in most cases. CD3-CD56+ and CD34+ cell numbers peaked at the same time point during harvesting, which differed from one patient to another. T (CD3+) cells were always present during harvest, and CD4 and CD8 numbers showed interdonor variability. When we cultured leukapheresed PBSC in the presence of interleukin-2 (IL-2) (10-1000 U/mL) for 6-8 days, we were able to expand the NK population three- to 5.4-fold; 100 U/mL appears to be the best concentration to generate high numbers of cytotoxic NK cells. Pilot studies also suggest that this short exposure to IL-2 does not affect the CD34+ cells. We conclude that PBSC grafts mobilized by combined Cyc and G-CSF and harvested through high-volume leukapheresis contain high numbers of cytotoxic NK cells that can be expanded in vitro by exposure to IL-2. In the setting of PBSC transplant, ex vivo immunomodulation aimed at increasing the NK cell numbers and activity is feasible and may prove to be useful in inducing a graft-vs.-tumor effect, thereby decreasing the relapse rate after transplant.

Adult↗

Cellular interactions in hemopoiesis.

The role of immunocompetent cells in hemopoiesis remains controversial. We used an autologous system in which activated peripheral blood mononuclear cells (LAK) and interleukin-2 (IL-2) are administered to patients with cancer. We found little change in the numbers of circulating erythroid progenitors. Cocultures of these progenitors with LAK or supernatants lead to a decrease in the numbers of detectable burst forming units-erythroid (BFU-E) in culture. However, using an assay for burst promoting activity (BPA) we noted production of this hemopoietin by these LAK cells. We could not detect circulating levels of gamma interferon (IF). Variable levels were found in the LAK supernatants. We could not detect circulating eosinophil progenitors (CFU-Eo), but we did find evidence of production of a colony stimulating factor (CSF), which gave rise to a high number of eosinophil colonies in cultures of bone marrow. These results suggest that administration of LAK/IL-2 has potent effects on hemopoiesis and that these effects may emphasize the anemia and eosinophilia seen in patients receiving this therapy.

Anemia↗