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Julia Almeida

Publications and source records attributed to Julia Almeida.

At least 19 recordsLinked to original sources

Tonic signaling of the B-cell antigen-specific receptor is a common functional hallmark in chronic lymphocytic leukemia cell phosphoproteomes at early disease stages.

B-cell chronic lymphocytic leukemia (B-CLL) is characterized by highly heterogeneous genomic alterations and altered signaling pathways, with limited studies on its proteome. Our study presents a comprehensive analysis of the proteome and phosphoproteome in B-CLL and CLL-like monoclonal B-cell lymphocytosis (MBL) primary cells. Using high-resolution mass spectrometry, we identified 2970 proteins and 316 phosphoproteins across five tumor samples, including 55 newly identified phosphopeptides (ProteomeXchange-PXD005997). Our multifaceted approach also integrated protein microarrays and western blotting for further data validation in a new patient cohort of 14 patients. Despite sharing 73% of their proteomes, the phosphoproteomes varied significantly among samples, independent of cytogenetic alterations and immunoglobulin heavy variable cluster (IGHV) mutational status. We identified common functional hallmarks in B-CLL and MBL phosphoproteomes, notably tonic signaling (low-level, constitutive signaling) of the B-cell antigen-specific receptor (BCR) and nuclear factor NF-kappa-B (NF-kβ)/signal transducer and activator of transcription 3 (STAT3) pathways. Nine phosphoproteins involved in BCR signaling were further validated, showing a high correlation with early disease stages. Our study advances the field by providing a detailed perspective on the proteome and phosphoproteome of B-CLL cells, revealing signaling pathways crucial for disease development and progression. Integrating diverse proteomics techniques and identifying novel phosphopeptides offers new insights into CLL biology, potentially informing future therapeutic strategies and biomarker development for early diagnosis and personalized treatment.

Humans↗

Quantitative analysis of the expression of glycosylphosphatidylinositol-anchored proteins during the maturation of different hematopoietic cell compartments of normal bone marrow.

BACKGROUND: Glycosylphosphatidylinositol-anchored proteins (GPI-AP) are a heterogeneous group of proteins deficiently expressed in patients with paroxysmal nocturnal hemoglobinuria. Up till now, no study has been reported in which the exact patterns of expression of a large number of GPI-AP are quantitatively evaluated in normal bone marrow (BM) cells classified according to their lineage and maturation stage. METHODS: In the present study, we have quantitatively analyzed the expression of eleven different GPI-AP (CD14, CD16, CD24, CD48, CD52, CD58, CD59, CD66b, CD87, CD109 and CD157) during maturation of the neutrophil, monocytic, erythroid, lymphoid, basophil and plasmacytoid dendritic cells (DC) lineages in normal BM as a frame of reference for the understanding of the abnormal patterns of expression of GPI-AP observed in the BM of PNH patients. RESULTS: Our results show that expression of most GPI-AP varies during normal BM maturation, different profiles being frequently observed depending on the cell lineage or the GPI-AP analyzed. CONCLUSION: Overall, these results provide a detailed map GPI-AP expression during normal hematopoietic differentiation, which could serve as a basis for the identification and characterization of changes occurring in PNH.

Adult↗

Relationship between CD38 expression on peripheral blood T-cells and monocytes, and response to antiretroviral therapy: a one-year longitudinal study of a cohort of chronically infected ART-naive HIV-1+ patients.

BACKGROUND: HIV-1 infection has been associated with high expression of CD38 on peripheral blood (PB) CD8+ and CD4+ T-cells, which has been related with poor prognosis in untreated HIV-1+ patients. In turn, CD38 expression on PB monocytes from HIV-1+ individuals and its behavior after starting antiretroviral therapy (ART) have been poorly studied. METHODS: CD38 expression on PB CD8+ and CD4+ T-lymphocytes and monocytes was prospectively analyzed in 30 ART-naive HIV-1+ patients, using a quantitative multiparameter flow cytometry approach. Patients were tested prior to therapy, and at weeks +2, +4, +8, +12, and +52 after ART. RESULTS: Prior to ART, CD38 expression was significantly increased on PB CD8+ and CD4+ T-cells and monocytes; despite a significant decrease after ART, CD38 expression remained abnormally high on PB CD8+ T-cells and monocytes, even after one year of therapy, in the absence of detectable plasma viral load. The ART-induced early changes on CD38 expression by PB T-cells and monocytes differed among the cell subsets analyzed and patient groups, probably reflecting an interaction between the direct effects of therapy and a redistribution of the PB compartments of T-cells and monocytes. Hierarchical clustering analysis showed that the overall pattern of changes in CD38 expression observed early after starting ART was predictive of a better response to therapy, not only for PB CD8+ T-cells, but also for CD4+ T-cells and monocytes. Accordingly, those HIV-1+ patients, who experienced a more pronounced increase in CD38 expression on both PB CD4+ T-cells and monocytes after 2 weeks of ART, showed a more rapid viral clearance, which might reflect decreased HIV-1 replication in lymph nodes and other tissues, and a partial restoration of hematopoiesis. CONCLUSIONS: Combined quantitative measurement of CD38 expression on PB monocytes, and CD8+ and CD4+ T-cells is a more useful tool for monitoring HIV-1+ patients under ART, rather than quantitation of CD38 expression on PB CD8+ T-lymphocytes alone.

ADP-ribosyl Cyclase 1↗

KIT mutation in mast cells and other bone marrow hematopoietic cell lineages in systemic mast cell disorders: a prospective study of the Spanish Network on Mastocytosis (REMA) in a series of 113 patients.

Despite the relevance of the c-kit/stem cell factor (SCF) signaling pathway in mast cell (MC) diseases, the exact frequency of KIT mutations in different compartments of bone marrow (BM) hematopoietic cells of individuals with systemic mastocytosis (SM), and its different diagnostic categories, remains unknown. In this study, we prospectively analyzed the presence of KIT mutations in fluorescence-activated cell-sorting (FACS)- purified populations of BM MCs (n = 113) and other BM cell compartments (n = 67) from adults with SM. Our results show the presence of D816V KIT mutation in virtually all adults (93%) with indolent and aggressive forms of SM, except well-differentiated SM (29%), while other KIT mutations were rarely (< 3%) detected. In around one-third of patients with mutated MCs, the KIT mutation was also detected in CD34+ hematopoietic cells and eosinophils, and, to a lesser extent, in monocytic, neutrophil-lineage BM precursor cells and lymphocytes. Most patient with poor-prognosis SM (81%) carried the KIT mutation in 2 or more BM myeloid cell populations, while this was detected in a smaller proportion (27%) of indolent cases. These results would support the notion that KIT mutation is a hallmark of adult SM where it targets a pluripotent hematopoietic stem cell, and may contribute to explaining previously observed discrepancies in the literature.

Adolescent↗

Persistent abnormalities in peripheral blood dendritic cells and monocytes from HIV-1-positive patients after 1 year of antiretroviral therapy.

Antiretroviral therapy (ART) has led to marked decreases in morbidity and mortality rates among HIV-1-positive patients; however, immune recovery is not complete. Although dendritic cells (DCs) were shown to be involved in HIV-1 pathogenesis, few studies have investigated the effect of ART on DCs. We have analyzed the effect of ART on numerical distribution, expression of chemokine receptors, and ex vivo production of inflammatory cytokines by peripheral blood (PB) monocytes and DCs in a cohort of chronically infected HIV-1-positive patients. Patients were tested before therapy and at weeks +2, +4, +8, +12, and +52 after starting ART.Our results show an incomplete T-cell immune reconstitution in chronically infected patients who had undetectable plasma viremia while taking ART for 1 year. This was associated with persistent abnormalities at week +52 of ART, corresponding to increased numbers of CD16 DCs and monocytes, as well as altered expression of CXC chemokine receptors, in the form of increased CXCR1 expression on monocytes and decreased reactivity for CXCR2 and/or CXCR4 on myeloid and plasmacytoid DCs. In addition, an abnormally high spontaneous ex vivo secretion of inflammatory cytokines by CD16 DCs and monocytes was still detected after 1 year of ART. These abnormalities were especially pronounced in patients with less than 200 CD4 T cells/microL, which could be related to the persistence of undetected viral replication and sustained immune activation.

Adult↗

Characterization of bone marrow T cells in monoclonal gammopathy of undetermined significance, multiple myeloma, and plasma cell leukemia demonstrates increased infiltration by cytotoxic/Th1 T cells demonstrating a squed TCR-Vbeta repertoire.

BACKGROUND: The majority of studies published to date regarding the role of the bone marrow (BM) microenvironment in the pathogenesis of monoclonal gammopathies (MG) have focused on the interaction between stroma cells and plasma cells, whereas information concerning the lymphocytes infiltrating the tumor microenvironment is scanty. METHODS: The authors measured the distribution, TCR-Vbeta repertoire, immunophenotype, and functional characteristics of different subsets of BM T lymphocytes from 61 nontreated patients with MG (30 patients with MG of undetermined significance [MGUS], 27 patients with multiple myeloma [MM], and 4 patients with plasma cell leukemia [PCL]). RESULTS: The authors found a significantly increased rate of BM infiltration by T cells in all patient groups, at the expense of CD4+CD8- and CD4-CD8- T lymphocytes and both CD4+CD28- and CD8+CD28- cytotoxic/effector T cell subsets, and associated with TCR-Vbeta expansions in both CD4+ and CD8+ BM T cells in the majority of patients with MGUS, MM, and PCL. Moreover, the percentage of T cells secreting interferon (IFN)-gamma was found to be increased (P < or = 0.05) both in CD4+ and CD8+ T cells in MGUS and MM patients, and a higher plasma concentration of IFN-gamma was found in patients with MM. It is interesting to note that a positive correlation was noted between the proportion of CD28- and both the percentage of IFN-gamma-secreting cells and the proportion of expanded TCR-Vbeta lymphocytes within the total BM CD4+ T cells. CONCLUSIONS: The results of the current study demonstrated an increased infiltration of BM by T cells associated with frequent TCR-Vbeta expansions and a more prominent cytotoxic/Th1 phenotype in all the patient groups studied.

Aged↗

Normal patterns of expression of glycosylphosphatidylinositol-anchored proteins on different subsets of peripheral blood cells: a frame of reference for the diagnosis of paroxysmal nocturnal hemoglobinuria.

BACKGROUND: Evaluation of the expression of glycosylphosphatidylinositol-anchored membrane proteins (GPI-AP) is currently used for the diagnosis of paroxysmal nocturnal hemoglobinuria (PNH). In this study, we analyzed the amount of expression of a wide variety of GPI-AP in different subsets of hematopoietic cells present in normal peripheral blood (PB), to establish their normal patterns of expression and provide a frame of reference for the definition of the best combination of GPI-AP and PB cell subsets to be applied in the diagnosis and monitoring of PNH. RESULTS: Our results show variable patterns of expression of different GPI-AP in distinct subsets of normal PB cells. Combined use of CD55 and CD59 represented the most useful dual-marker combination; however, its utility remained suboptimal for several subsets of leukocytes and for platelets. CONCLUSIONS: For some cell subsets such as the neutrophils additional useful markers could be selected from a relatively broad panel (CD16/CD24/CD55/CD59/CD66b/CD157), whereas for other cell subsets the number of useful antigens was either restricted (monocytes: CD14/CD55/CD157; B cells: CD24/CD48/CD52/CD55; CD4+ T cells: CD48/CD52/CD55; eosinophils: CD55/CD59; CD8+ T cells: CD48/CD55) or limited to a single marker (CD48 on CD56low NK cells, CD55 on BDCA3- dendritic cells and CD56high NK cells, and CD59 for red cells), from all antigens analyzed.

Antigens, CD↗

Combined vaccination with idiotype-pulsed allogeneic dendritic cells and soluble protein idiotype for multiple myeloma patients relapsing after reduced-intensity conditioning allogeneic stem cell transplantation.

BACKGROUND AND OBJECTIVE: To combine the use of idiotype-pulsed allogeneic dendritic cells (alloDC) and soluble protein Id conjugated with KLH (Id-KLH) in a vaccine strategy for multiple myeloma (MM). DESIGN AND METHODS: Four MM patients received the combined vaccine after having experienced disease relapse/progression following reduced intensity conditioning (RIC) allogeneic stem cell transplantation (alloSCT) and failure to rescue therapy with donor lymphocyte infusion or chemotherapy (CHT). RESULTS: Vaccination was well tolerated and induced an anti-KLH antibody response in all 4 patients as well as substantial cell proliferation. In contrast, no case showed similar effects against either tumor-specific Id or irrelevant isotype control immunoglobulins (Ig). In turn, vaccination was associated with modulation of biological responses linked to both inflammatory and T-cell activation, with secretion of effector Th1 cytokines. In particular, an important increase in the spontaneous ex vivo secretion of TNFalpha, IL-6 and IFNgamma as well as IL-2 and IL-10 was frequently observed prior to the fourth vaccination. Moreover, in vitro stimulation with Id-KLH and Id-KLH plus alloDC, but not with alloDC alone was associated with an enhanced number of TNF-alpha+ T-cells and an increased secretion of IFNgamma and IL-2 before the third and fourth vaccination. From a clinical standpoint, 2 patients had a transient response and 1 has stable disease after stopping vaccination, while 3 of them ultimately progressed. INTERPRETATION AND CONCLUSIONS: The results show for the first time that the use of Id-pulsed alloDC following RIC alloSCT is safe and feasible. However, crucial strategy improvements are warranted to possibly achieve clinical benefit.

Cancer Vaccines↗

Heterogeneity of neoplastic cells in B-cell chronic lymphoproliferative disorders: biclonality versus intraclonal evolution of a single tumor cell clone.

BACKGROUND AND OBJECTIVES: B-cell chronic lymphoproliferative disorders (B-CLPD) are usually monoclonal expansions of a single B-cell clone. However in some cases, two unrelated B-cell clones co-exist. Additionally, cases with two B-cell subpopulations displaying a similar phenotype but distinct DNA contents exist, the exact nature of these cases remaining unknown. In order to gain insight into the characteristics of these complex B-CLPD we examined two cohorts of patients. MATERIAL AND METHODS: One cohort had two phenotypically distinct B-cell populations (group A; n= 9) and the other, two B-cell subsets showing different DNA contents and/or light scatter properties, but a similar immunophenotype (group B; n= 7). RESULTS: Fluorescent in situ hybridization studies revealed the presence of genetic abnormalities in six cases from group A, either in one (n=5) or the two co-existing B-cell populations (n=1); in all these cases the two B-cell populations showed unrelated IgH gene rearrangements. In all seven cases from group B, the B-cell population showing higher DNA contents had additional chromosomal abnormalities as compared to the other subset; molecular analysis confirmed the monoclonal nature of these cases. INTERPRETATION AND CONCLUSIONS: In summary, we show that in group A, two phenotypically/cytogenetically distinct, unrelated B-cell clones co-exist, while the two B-cell populations from group B appear to represent different stages of evolution of a single clone.

Base Sequence↗

Different subsets of peripheral blood dendritic cells show distinct phenotypic and functional abnormalities in HIV-1 infection.

OBJECTIVES: To analyse the distribution, expression of chemokine receptors and ex vivo production of inflammatory cytokines by peripheral blood (PB) monocytes and DC in HIV-1+ individuals. DESIGN: Dendritic cells (DC) play an important role in the establishment and dissemination of HIV infection. DC interaction with HIV depends on expression of HIV receptors and co-receptors. Accumulating evidence supports the notion that DC functionality is impaired in HIV-1+ patients. METHODS: PB samples from 30 naive-treated HIV-1+ progressors were studied. Additionally, 10 adult healthy volunteers (AHV), seven Hepatitis C virus positive (HCV+)/HIV-1- patients and five long-term non-progressor HIV-1+ patients (HIV-1+LTNP) were included as controls. Flow cytometry immunophenotyping was used for the identification, enumeration and characterization of monocytes and DC. RESULTS: PB myeloid DC (mDC) and plasmacytoid DC (pDC) were significantly decreased in HIV-1+ progressors, while unaltered in HIV-1+LTNP. The expression of CXCR2 and CXCR4 and of CXCR4 and CCR5 were severely altered on PB mDC and pDC from HIV-1+ progressors, respectively. By contrast, both the expression of the chemokine receptors analysed and the numbers of CD16+ DC in HIV-1+ progressors were not different from AHV, while altered in HCV+/HIV-1- and HIV-1+LTNP. Furthermore, PB monocytes and DC from HIV-1+ progressors spontaneously produced inflammatory cytokines, in contrast with AHV. CONCLUSIONS: These results support the existence of a selective interaction between HIV-1 and both mDC and pDC, associated with HCV co-infection-independent spontaneous production of inflammatory cytokines, reflecting the occurrence of in vivo activation of the immune system, which might further contribute to the impaired DC functionality.

Adult↗

Immunophenotypic analysis of mast cells in mastocytosis: When and how to do it. Proposals of the Spanish Network on Mastocytosis (REMA).

BACKGROUND: Mastocytosis is a term used for a heterogeneous group of disorders characterized by an abnormal proliferation and accumulation of mast cells (MCs) in one or multiple tissues including skin, bone marrow, liver, spleen, and lymph nodes, among others. METHODS: In recent years, multiparameter flow cytometric studies have shown that pathologic MCs from patients with mastocytosis display unique aberrant immunophenotypic characteristics as compared with normal MCs. RESULTS: Among other features, pathologic MCs show aberrant expression of CD25 and CD2 antigens and abnormally high levels of the CD11c and CD35 complement receptors, the CD59 complement regulatory molecule, the CD63 lysosomal membrane antigen, and the CD69 early-activation antigen. In addition, MCs from mastocytosis express abnormally low levels of CD117 and unexpectedly high light scatter and autofluorescence characteristics. CONCLUSIONS: These aberrant immunophenotypic features are of great relevance for the assessment of tissue involvement in mastocytosis with consequences in the diagnosis, classification, and follow-up of the disease and in its differential diagnosis with other entities. In this paper we provide the reader with information for the objective and reproducible identification of pathologic MCs by using quantitative multiparametric flow cytometry, information for their phenotypic characterization, and the criteria currently used for a correct interpretation of the immunophenotypic results obtained.

Antibodies, Monoclonal↗

Systemic mastocytosis associated with acute myeloid leukemia: case report and implications for disease pathogenesis.

Mastocytosis may be associated with clonal nonmast cell lineage hematologic diseases, including myelodysplastic syndromes, myeloproliferative disorders, and acute myeloid leukemia. Here we present a patient with the simultaneous diagnosis of mastocytosis and an acute myeloid leukemia, M2 subtype in the French-American-British classification, with t(8;21) carrying a population of immature mast cell precursors, and discuss this presentation in the context of a potential pathogenetic cellular link between this leukemia and mastocytosis.

Aged↗

Clinicobiological, immunophenotypic, and molecular characteristics of monoclonal CD56-/+dim chronic natural killer cell large granular lymphocytosis.

Indolent natural killer (NK) cell lymphoproliferative disorders include a heterogeneous group of patients in whom persistent expansions of mature, typically CD56(+), NK cells in the absence of any clonal marker are present in the peripheral blood. In the present study we report on the clinical, hematological, immunophenotypic, serological, and molecular features of a series of 26 patients with chronic large granular NK cell lymphocytosis, whose NK cells were either CD56(-) or expressed very low levels of CD56 (CD56(-/+dim) NK cells), in the context of an aberrant activation-related mature phenotype and proved to be monoclonal using the human androgen receptor gene polymerase chain reaction-based assay. As normal CD56(+) NK cells, CD56(-/+dim) NK cells were granzyme B(+), CD3(-), TCRalphabeta/gammadelta(-), CD5(-), CD28(-), CD11a(+bright), CD45RA(+bright), CD122(+), and CD25(-) and they showed variable and heterogeneous expression of both CD8 and CD57. Nevertheless, they displayed several unusual immunophenotypic features. Accordingly, besides being CD56(-/+dim), they were CD11b(-/+dim) (heterogeneous), CD7(-/+dim) (heterogeneous), CD2(+) (homogeneous), CD11c(+bright) (homogeneous), and CD38(-/+dim) (heterogeneous). Moreover, CD56(-/+dim) NK cells heterogeneously expressed HLA-DR. In that concerning the expression of killer receptors, CD56(-/+dim) NK cells showed bright and homogeneous CD94 expression, and dim and heterogeneous reactivity for CD161, whereas CD158a and NKB1 expression was variable. From the functional point of view, CD56(-/+dim) showed a typical Th1 pattern of cytokine production (interferon-gamma(+), tumor necrosis factor-alpha(+)). From the clinical point of view, these patients usually had an indolent clinical course, progression into a massive lymphocytosis with lung infiltration leading to death being observed in only one case. Despite this, they frequently had associated cytopenias as well as neoplastic diseases and/or viral infections. In summary, we describe a unique and homogeneous group of monoclonal chronic large granular NK cell lymphocytosis with an aberrant activation-related CD56(-/+dim)/CD11b(-/+dim) phenotype and an indolent clinical course, whose main clinical features are related to concomitant diseases.

Adult↗

A new simple whole blood flow cytometry-based method for simultaneous identification of activated cells and quantitative evaluation of cytokines released during activation.

The multiple cellular and soluble elements of the immune system respond in a coordinated way, orchestrated by cytokines, to preserve the integrity of the organism. In this study, we describe a new and unique whole blood method that, with minimal sample manipulation, allows an overall evaluation of immune responses by simultaneously measuring cell activation and cytokine secretion. The identification of cells actively secreting cytokines is based on the stabilization of tumor necrosis factor alpha (TNFalpha) at the cell surface through the use of a specific inhibitor of the TNFalpha-converting enzyme. This inhibitor does not affect the release of cytokines other than TNFalpha and makes it possible to assess, in the same measurement, the phenotype of TNFalpha(+)-secreting cells and quantify multiple secreted cytokines by using a specific and highly sensitive flow cytometry-based bead immunoassay. Upon stimulation of normal peripheral blood samples with either phorbol 12-myristate 13 acetate (PMA) plus ionomycin or lipopolysaccharide (LPS), both the number of TNFalpha+ cells and the amount of secreted cytokines progressively increased, the former becoming detectable first. After stimulation for 3 h with PMA plus ionomycin, cellular responses were associated with surface TNFalpha expression on the majority of CD3+ T cells and secretion of Th1-associated cytokines: interferon gamma, interleukin (IL)-2, and to a lesser extent IL4. In turn, stimulation with LPS induced a response mainly by inflammatory cells. After 4 h of LPS-stimulation, the majority of CD14+ monocytes showed surface TNFalpha expression; in parallel, high amounts of soluble IL1beta, IL6, and IL8 became detectable. Likewise, stimulation of blood samples with cytomegalovirus (CMV) lysates induced viral-specific immune responses detectable in seropositive but not seronegative volunteers; such responses were associated with the detection of increased numbers of TNFalpha+ monocytes, TNFalpha+/CD8+ T cells and TNFalpha+/CD8- T lymphocytes in association with an increased secretion of IFNgamma, IL6 and TNFalpha.

Adult↗

Atopic dermatitis-like non-erythrodermic leukemic variant of CD3(-/+dim) CD4(+) cutaneous T-cell lymphoma preceded by cutaneous papular xanthomatosis.

We report a patient with cutaneous papular xanthomatosis who 4 years later developed a CD3(-/+dim)/CD4(+) T-cell lymphoma. Pruritic xerotic non-erythrodermic skin, eosinophilia and hyper-IgE were present and erroneously classified as atopic dermatitis. Flow cytometry and DNA ploidy analysis of both blood and skin lymphocytes, skin histology and blood T-cell receptor gene rearrangement studies confirmed diagnosis of T-cell lymphoma. Monoclonal CD3(-/+dim)/CD4(+) T-cells were especially prone to the synthesis of IL-13, a cytokine that is involved in IgE-secretion, and comprised both a medium (diploid) and large (hyperploid) sized T-cell populations with a similar immunophenotype. The majority of the normal residual T-cells were large granular lymphocytes, expressed activation-related and natural-killer-associated markers and secreted high levels of interferon gamma, suggesting that they might correspond to active cytotoxic cells directed against the neoplastic T-lymphocytes.

Adult↗

Incidence and characteristics of CD4(+)/HLA DRhi dendritic cell malignancies.

BACKGROUND AND OBJECTIVES: Recent reports suggest that CD4(+)/CD56(+)/lineage(-) hematopoietic neoplasias are aggressive types of malignancies involving lymphoplasmacytoid/DC2 dendritic cells (DC). Here, we report on the incidence of DC malignancies and their clinical, biological, phenotypic and cytogenetic characteristics. DESIGN AND METHODS: From a large series of 392 patients with acute myeloblastic leukemia (AML) and 739 with non-Hodgkin's lymphoma (NHL), five cases (three presenting as acute leukemia and two as NHL) showed clinical, morphologic and phenotypic features compatible with a DC malignancy. RESULTS: The overall incidence of DC malignancies among all AML and NHL cases was 0.76% and 0.27%, respectively. At presentation, these patients displayed cutaneous nodules, splenomegaly and lymph node involvement with variable levels of peripheral blood (PB) and/or bone marrow (BM) infiltration in association with anemia and thrombocytopenia. Cytologic studies showed immature appearing blast cells with negative cytochemistry reactions for both myeloperoxidase and esterases. A highly suggestive DC phenotype based on co-expression of CD123(hi)/HLADR(+)/lin(-)/CD56(+)/CD45(dim) associated with a germline configuration of both the IgH and TCRgamma genes was found in all except one patient who was CD56(-). Expression of other markers compatible with a DC origin was found in all cases. INTERPRETATION AND CONCLUSIONS: We show that DC-derived malignancies can present as either cutaneous lymphoma or acute leukemia, although their incidence is extremely low (<< >1%). While most of these DC neoplasias probably correspond to the malignant counterpart of DC2/lymphoplasmacytoid DC, neoplasias of myeloid DC might also exist, chemotherapy followed by consolidation with ASCT is apparently the most effective strategy for achieving a durable remission in these individuals.

Acute Disease↗

Mesenchymal stem cells are present in peripheral blood and can engraft after allogeneic hematopoietic stem cell transplantation.

BACKGROUND AND OBJECTIVES: Whether human mesenchymal stem cells (MSC) can be transplanted is controversial and their presence in peripheral blood is not fully accepted. In the present study we have analyzed whether, within the allogeneic transplantation setting, MSC are of host or donor origin. DESIGN AND METHODS: Bone marrow MSC from 19 patients who had undergone allogeneic transplantation were expanded and identified using immunophenotypic markers. After that, chimerism studies were performed using reverse transcription polymerase chain reaction of short tandem repeat (STR) loci. Analyses were carried out at different time-points after transplantation, with a total of 44 samples studied. Bone marrow was used as the source of stem cells for transplantation in 4 cases and peripheral blood in 15 cases. The conditioning regimen was standard in 9 patients and non-myeloablative in 10 patients. RESULTS: Our results show that in the great majority of cases analyzed (17 out 19), MSC were of host origin. However, in 2 patients with multiple myeloma who had received a reduced intensity transplantation using peripheral blood stem cells, MSC were partially of donor origin (60.17% and 26.13% of total MSC). INTERPRETATION AND CONCLUSIONS: These findings indicate that after allogeneic transplantation MSC from the donor can engraft in bone marrow. Moreover, since the stem cells were obtained from peripheral blood, it can be concluded that MSC circulate among mobilized peripheral blood stem cells and can engraft in bone marrow after allogeneic transplantation.

Adipocytes↗

Incidence and clinicobiologic characteristics of leukemic B-cell chronic lymphoproliferative disorders with more than one B-cell clone.

Leukemic B-chronic lymphoproliferative disorders (B-CLPDs) are generally believed to derive from a monoclonal B cell; biclonality has only occasionally been reported. In this study, we have explored the incidence of B-CLPD cases with 2 or more B-cell clones and established both the phenotypic differences between the coexisting clones and the clinicobiologic features of these patients. In total, 53 B-CLPD cases with 2 or more B-cell clones were studied. Presence of 2 or more B-cell clones was suspected by immunophenotype and confirmed by molecular/genetic techniques in leukemic samples (n = 42) and purified B-cell subpopulations (n = 10). Overall, 4.8% of 477 consecutive B-CLPDs had 2 or more B-cell clones, their incidence being especially higher among hairy cell leukemia (3 of 13), large cell lymphoma (2 of 10), and atypical chronic lymphocytic leukemia (CLL) (4 of 29). In most cases the 2 B-cell subsets displayed either different surface immunoglobulin (sIg) light chain (n = 37 of 53) or different levels of the same sIg (n = 9 of 53), usually associated with other phenotypic differences. Compared with monoclonal cases, B-CLL patients with 2 or more clones had lower white blood cell (WBC) and lymphocyte counts, more frequently displayed splenomegaly, and required early treatment. Among these, the cases in which a CLL clone coexisted with a non-CLL clone were older and more often displayed B symptoms, a monoclonal component, and diffuse infiltration of bone marrow and required early treatment more frequently than cases with monoclonal CLL or 2 CLL clones.

Antibodies, Monoclonal↗