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Biomedical subjects

G Vassiliou

Publications and source records attributed to G Vassiliou.

At least 19 recordsLinked to original sources

Congenital bilateral anorchia: hormonal, molecular and imaging study of a case.

The aetiology of congenital bilateral anorchia is unknown. For many years there was speculation of an association between genetic factors and anorchia. We performed different tests in an anorchid boy, 2.5 years old, presented to us with micropenis and absence of both testes, in order to determine any possible factors contributing to the anorchia. Physical examination and hormonal, imaging, chromosomal, and molecular analyses of this case were performed. The basal FSH and LH levels were increased, and their increase in response to gonadotrophin-releasing hormone test was prolonged, while testosterone levels failed to increase after hCG administration. Ultrasonography of the pelvis and magnetic resonance of the abdomen were performed and failed to show any testicular tissue. Lastly, surgical exploration confirmed the absence of testicular structure. Chromosomal analysis revealed a normal male karyotype and molecular analysis did not reveal mutations or polymorphisms in the open reading frame of the SRY gene. Diagnostically, the lack of testosterone response to hCG stimulation is the hormonal hallmark of bilateral congenital anorchia. In addition, according to our case and previous studies, there is lack of association between genetic factors necessary for correct testicular descent and anorchia.

Child, Preschool↗

The low density lipoprotein receptor-related protein contributes to selective uptake of high density lipoprotein cholesteryl esters by SW872 liposarcoma cells and primary human adipocytes.

The concept that selective transfer of high density lipoprotein (HDL)-derived cholesteryl esters (CE) does not require lipoprotein internalization has been challenged recently by evidence that implicates HDL recycling during the selective uptake process. This has prompted us to examine the role of the low density lipoprotein receptor-related protein (LRP) in selective uptake. LRP is an endocytic receptor for lipoprotein lipase (LpL) and apolipoprotein E (apoE) ligands that are able to mediate selective uptake. We report that molecules that interfere with ligand binding to LRP, such as the receptor-associated protein (RAP), suramin, alpha(2)-macroglobulin, or lactoferrin, inhibit HDL-CE selective uptake by human primary adipocytes and SW872 liposarcoma cells by 35-50%. This partial inhibition of selective uptake from total HDL was not due to preferential inhibition of the HDL(2) or HDL(3) subfractions. Selective uptake by the scavenger receptor BI was not inhibited by RAP, excluding its involvement. Furthermore, in SW872 cells in which LRP was reduced to 14% of control levels by stable antisense expression, selective uptake was attenuated by at least 33%, confirming a role for LRP in this process. RAP, alpha(2)-macroglobulin, lactoferrin, and suramin (individually or in paired combinations) also attenuated selective uptake of HDL-CE by primary human adipocytes by about 40%. On the other hand, human skin fibroblasts express LRP abundantly but lack the capacity for selective uptake, demonstrating that other molecules are required. In SW872 cells, exogenous apoE or LpL can facilitate selective uptake but only the apoE-enhanced uptake can be inhibited by RAP, implicating apoE as a likely co-mediator. We discuss the possible mechanisms by which the endocytic receptor, LRP, can mediate selective uptake.

Adipocytes↗

Immune neutropenia associated with anti-human neutrophil antigen-2a (NB1) antibodies following unrelated donor stem cell transplantation for chronic myeloid leukaemia: perpetuation by granulocyte colony-stimulating factor.

A case of immune neutropenia following unrelated stem cell transplantation for chronic myeloid leukaemia is described. The neutropenia developed following herpes zoster viral infection and was associated with antibodies to the human neutrophil antigen (HNA)-2a (formerly known as NB1). The neutropenia was prolonged, profound and unresponsive to granulocyte colony-stimulating factor (GCSF). The neutrophil count recovered after GCSF was discontinued. HNA-2a has been reported to be upregulated following GCSF administration. In the present case, it appears that the immune neutropenia may have been perpetuated by GCSF administration.

Adult↗

Analysis of chimaerism in thalassaemic children undergoing stem cell transplantation.

We have prospectively assessed the relative contribution of host and donor to haemopoiesis following stem cell transplantation (SCT) in children with beta-thalassaemia major (n = 35), using karyotype analysis or Southern blot/polymerase chain reaction analysis of variable number tandem repeats on genomic DNA from peripheral blood. Early haemopoiesis was fully donor in origin in 24 out of 35 cases and remained so throughout the post-transplant course in all but one patient, who evolved to stable mixed chimaerism. The remaining 11 cases (31%) initially showed mixed chimaerism: four of these rejected, one eventually eradicated host haemopoiesis to become fully donor haemopoietic, and the remaining six had persistent mixed chimaerism, with 5--38% host haemopoiesis. The risk of graft rejection was high when > 15% host haemopoiesis was present at 3 months post transplant: four out of six such patients rejected their grafts; conversely, zero out of 29 patients with < 15% host haemopoiesis at 3 months rejected (P < 0.0001). There was a higher incidence of significant acute and chronic graft-versus-host disease in patients with full donor chimaerism. These studies confirm that the mixed chimaeric state is common following SCT for thalassaemia, often persists (with up to 4 years follow-up) and is compatible with long-term cure. Analysis of chimaerism in patients undergoing SCT for beta-thalassaemia enables monitoring of engraftment in the early post-transplant period, provides insight into the biology of engraftment and may be useful in identifying patients at high risk of rejection.

ABO Blood-Group System↗

Allogeneic transplantation for haemoglobinopathies.

Beta-thalassaemia major and sickle-cell disease (SCD) reduce lifespan and quality of life for >300000 children and young adults worldwide. The only cure for both disorders is allogeneic stem cell transplantation (SCT). The decision-making processes in recommending SCT for patients with thalassaemia and SCD are different. For thalassaemia, where transfusion-related iron overload is universal, SCT should be offered to all patients <17 years because long-term survival and thalassaemia-free survival are about 80 and 70% respectively. For thalassaemics unable to comply with medical treatment, SCT offers a significant survival advantage; however, for patients with optimal medical care, short-term survival after SCT is inferior to medical treatment, and SCT instead offers a life free from transfusions and iron chelation. The clinical heterogeneity of SCD means that SCT is recommended only for selected patients with severe disease, particularly sickle-related neurological problems, for whom long-term survival and SCD-free survival after SCT approach 92 and 86% respectively. We here review the evidence available to help physicians evaluate the role of SCT for individual patients with thalassaemia major or SCD.

Anemia, Sickle Cell↗

Engrafting costimulator molecules onto tumor cell surfaces with chelator lipids: a potentially convenient approach in cancer vaccine development.

The genetic modification of cells to develop cell-based vaccines and to modulate immune responses in vivo can be risky and inconvenient to perform in clinical situations. A novel chelator lipid, nitrilotriacetic acid di-tetradecylamine (NTA-DTDA) that, via the NTA group has high affinity for 6His peptide, was used to directly anchor recombinant forms of T cell costimulatory molecules containing a C-terminal 6-His sequence onto tumor cell surfaces. Initial experiments using murine P815 tumor cells established the optimum conditions for incorporating NTA-DTDA onto the membranes of cells. P815 cells with incorporated NTA-DTDAbound hexahistidine-(6His)-tagged forms of the extracellular domains of murine B7.1 and CD40 (B7.1-6H and CD40-6H) at very high levels (fluorescence 200-300-fold above background), and both proteins could be anchored onto the cells simultaneously. Significant loss of the anchored or "engrafted" protein occurred through membrane internalization following culture of the cells under physiological conditions, but P815 cells with engrafted B7.1-6H and/or CD40-6H stimulated the proliferation of allogenic and syngeneic splenic T cells in vitro, and generated cytotoxic T cells when used as vaccines in syngeneic animals. Furthermore, the immunization of syngeneic mice with P815 cells engrafted with B7.1-6H or with B7. 1-6H and CD40-6H induced protection against challenge with the native P815 tumor. The results indicate that the use of chelator lipids like NTD-DTDA to engraft costimulatory and/or other molecules onto cell membranes could provide a convenient alternative to transfection in the development of cell-based vaccines and for modulation of immune function.

Amines↗

Detection of low-affinity adhesion ligands by linking recombinant cell adhesion molecules in uniform orientation to a fluorescently labelled dextran molecule by means of hexahistidine tagging: the case of multimeric CD40.

Cell-cell interactions involve highly polyvalent associations between receptors on adjacent cells. In order to mimic this process, we have prepared a highly polyvalent form of CD40 attached to a dextran backbone. This was accomplished by engineering a hexahistidine tag on the C-terminus of the CD40 and binding, in a uniform orientation, up to 100 molecules of hexahistidine CD40 by metal chelation to a single fluorescently tagged dextran molecule. The advantage of this 'multimeric' CD40 is that it would be expected to bind to any counterstructure with a significantly higher avidity compared to monomeric CD40. The multimeric CD40 bound with high affinity to stably transfected mouse fibroblasts expressing CD40L. The multimeric ligand also bound to the activated T cell clone, D10, but did not bind to resting cells, showing that it bound to the physiological ligand. Using this system, we found no evidence to support the claim [Heath et al., 1993. Cell. Immunol. 152, 468.] that the A20 cells have a counterstructure for CD40, and propose that the high binding of CD40 observed in this study may have been due to an exposed hexahistidine tag on the molecule. This multimeric technology has considerable potential for detecting low-affinity interactions between cell adhesion receptors and ligands. The uniform orientation of the molecules on the dextran is an advantage over previous systems and permits the preparation of heterogeneous, multimeric ligands which more closely mimic the conditions at the cell surface.

3T3 Cells↗

Pharmacological concentrations of suramin inhibit the binding of alpha2-macroglobulin to its cell-surface receptor.

Suramin is a polysulfated drug used in the treatment of cancer and AIDS. High concentrations (1 mg/ml) of suramin did not affect the ability of native alpha2-macroglobulin (alpha2M) to inhibit proteinases nor did it prevent conversion of native alpha2M to the 'fast' receptor-binding form. Nevertheless, pharmacological concentrations (below 250 microg/ml) of suramin prevented the interaction between methylamine-activated alpha2M and its receptor, the low-density-lipoprotein-receptor-related protein. Inhibition was demonstrated at the molecular level and was not due to calcium sequestration by the drug, irreversible denaturation of the receptor, or a non-specific polyanion effect (since heparin and dextran sulfate did not alter the binding of alpha2M). The ability of suramin to accelerate the dissociation of pre-bound alpha2M was consistent with a non-competitive mechanism of inhibition although the possibility of a competitive component cannot be eliminated. I discuss how the inhibition of alpha2M-binding by suramin may contribute to the antiproliferative properties of this drug.

Antineoplastic Agents↗

Exogenous receptor-associated protein binds to two distinct sites on human fibroblasts but does not bind to the glycosaminoglycan residues of heparan sulfate proteoglycans.

We have investigated the proposal that the receptor-associated protein (RAP) of the low density lipoprotein receptor-related protein/alpha 2-macroglobulin receptor binds to heparan sulfate proteoglycans (HSP). 125I-RAP binds to two sites on the surface of fibroblasts as follows: a high affinity site with a Kd of 1.4 nM and a low affinity site (Kd = 188 nM) with a capacity of more than 1000-fold the maximum amount of lipoprotein receptor-related protein/alpha 2-macroglobulin receptor on the cell surface. 125I-RAP binding to the low affinity site was abolished by heparin or Suramin. However, maximal digestion of the glycosaminoglycan chains of HSP with heparinase or culturing the cells in chlorate, an inhibitor of proteoglycan sulfation, did not affect the binding of 125I-RAP or of 125I-labeled, methylamine-activated alpha 2-macroglobulin. Comparison of 125I-RAP degradation at two different concentrations suggests that the low affinity, high capacity site on the surface of human fibroblasts participates in the endocytosis of 125I-RAP. The nature of the low affinity site remains to be elucidated, but we can exclude the glycosaminoglycan chains of HSP.

Binding Sites↗

Promoting psychosocial functioning and preventing malfunctioning.

In the Greek milieu the ingroup has played the central role for psychosocial development. Under transition the ingroup becomes decreasingly effective in providing this function. If malfunctioning is to be prevented and if functioning is to spiral to higher levels of creating, producing and sharing, a training problem is required which includes extensive work along the lines of secondary and primary groups. The proposed training is based on the actualization of the dialectic between individual and group processes leading to their mutual differentiation. The development of skills for cooperation becomes possible. The program represents an effective way of promoting functioning and preventing the malfunctioning due to the currently accelerating socioeconomic and technological processes. Its effectiveness will be directly related to the degree to which the latter will be following cooperative directions also.

Child↗