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At least 613 records · Page 34Linked to original sources

Resident bone marrow macrophages in idiopathic (primary) myelofibrosis (IMF): a histochemical and morphometric study on sequential trephine biopsies.

A histochemical and morphometric study was performed on sequential bone marrow biopsies in 65 patients with idiopathic (primary) myelofibrosis (IMF) to quantify the resident-mature CD68+ macrophages and a peculiar, so-called activated subpopulation. Statistical analysis revealed no significant correlations between number of macrophages, density of argyrophilic fibers and degree of myeloid metaplasia. Our results are reflecting in vitro findings on cytokine release, macrophage activation and their complex functional associations with myelofibrotic matrix formation. Macrophage growth is assumed to be related to a number of putative pathomechanisms including abnormal (upregulated) cytokine expression (PDGF, TGF-beta, IL-1), enhancement and activation by CSF-1 (M-CSF) and possibly also phagocytic stimulation. The latter feature may be triggered by increased degradation of senescent megakaryocytes, frequently occurring as endstages of growth factors-releasing fibrogenetic megakaryopoiesis.

Antigens, CD↗

The diagnosis of low-grade peripheral B-cell neoplasms in bone marrow trephines.

The aim of this study was to establish how effective is the use of immunohistochemistry on formalin-fixed bone marrow in diagnosing low-grade B-cell neoplasms. We investigated a series of 41 consecutive patients with bone marrow involvement for whom no other diagnostic tissues were available. The sections were stained with the following antibodies: CD3, CD20, CD79a, CD5, CD10, CD23, anti-cyclin D1 and kappa and lambda light chains. Antigen retrieval was performed using either a microwave oven or a pressure cooker. Labelling was performed with an avidin-biotin-peroxidase labelling system. A final diagnosis was reached in 37 out of 41 cases (90%): B-chronic lymphocytic leukaemia (15 cases), follicular lymphoma (10 cases), mantle-cell lymphoma (eight cases) and lymphoplasmacytoid lymphoma/immunocytoma (four cases). In the remaining four cases, a generic diagnosis of low-grade B-cell neoplasm was made. The immunophenotyping of formalin-fixed marrow is a useful technique for diagnosing most of the low-grade B-cell neoplasms.

Antigens, CD↗

Bone marrow manifestations of infections and systemic diseases observed in bone marrow trephine biopsy review.

Bone marrow modifications resulting from infections and systemic diseases can be studied by analysis of morphology and aetiology. Two types of lesions or modifications can be observed, those occurring in the connective tissue comprising inflammatory processes, acute and chronic, as well as immune reactions, and those involving the normal haematopoietic cell lines, with possible hyperplastic or aplastic changes in one or more cell lines. The main lesions are described (oedema, haemorrhage, necrosis, suppuration, granulomas, lymphoid nodules and hyperplasia, immunoblastic or plasmacytic hyperplasia), as well as the main aetiologies. In association, the three main haematopoietic cell lines show hyperplasia, hypoplasia, aplasia of one or all of the cell lines, sometimes with dysmyelopoiesis. The stroma and vessel reactions comprise myelofibrosis, gelatinous transformation or amyloid deposits. The methods for identifying aetiological agents are emphasized. It should also be stressed that malignant neoplasias of different types involving the bone marrow can be responsible for such inflammatory or immune reactions.

Bacterial Infections↗

Therapy-related changes of CD34+ progenitor cells in chronic myeloid leukemia: a morphometric study on sequential trephine biopsies.

In chronic myeloid leukemia (CML), it has been assumed that the number of CD34(+) progenitor cells (PGCs) provides useful diagnostic and prognostic information regarding the evolution of accelerated phase and blastic crisis. However, until now no information is available about changes of this peculiar precursor cell population during therapy or possible associations with the other bone marrow constituents. For this reason, a retrospective clinicopathological study was performed on 83 patients with CML including 209 sequential bone marrow biopsies (intervals ranging between 6 and 143 months) and immunohistological staining of CD34(+) cells (QBEND10), megakaryocyte precursors (CD61), and erythropoiesis (Ret 40f). According to treatment modalities, three different groups of patients could be distinguished that received either monotherapy by interferon-alpha2b (IFN-alpha2b) or hydroxyurea (HU) and a combination of both. In comparison with a control group, morphometry revealed a significant increase in the quantity of CD34(+) PGCs per hematopoiesis (cellularity) in the CML bone marrow before treatment. Independently of treatment modalities and presentation of clinical findings nonresponding patients were generally characterized by a higher amount of progenitors in the initial biopsy specimens. Furthermore, calculation of the CD34(+) cell growth index showed a significant and rapid progression in nonresponding patients and in those developing an accelerated or blastic phase during therapy. This feature was prominently expressed following IFN treatment and related to a failing regeneration of nucleated erythroid precursors. In patients with a myelofibrotic bone marrow at onset no differences in the number of CD34(+) PGCs were recognizable in the pretreatment biopsies. This finding contrasted a significant and gradual change in progenitor cell frequency under treatment and evolving myelofibrosis. Opposed to HU therapy, the latter feature was explicitly detectable in the IFN group. In conclusion, the incidence of CD34(+) PGCs in the CML bone marrow reflects therapeutic efficacy. By demonstrating a significant relationship between fiber content and quantity of CD34(+) cells during treatment, experimental findings concerning the complex functional interactions between the fibrous stroma compartment and progenitor cell differentiation and proliferation are elucidated.

Antigens, CD34↗

Application of the immunoperoxidase technic to bone marrow trephine biopsies in the classification of patients with monoclonal gammopathies.

This study evaluated the utility of the immunoperoxidase method as applied to bone marrow sections in the diagnosis of patients with monoclonal gammopathies. Intracellular immunoglobulin light chains were identified in fixed, decalcified bone marrow biopsy sections from 66 patients with monoclonal proteins, using an avidin-biotin-peroxidase complex immunoperoxidase method. In all cases the predominant light chain identified in the bone marrow biopsy correlated with the monoclonal light chain identified in the serum. In addition, a light chain ratio was defined that correlated with the clinical diagnoses. The light chain ratios were highest in patients with multiple myeloma and were significantly different from those with monoclonal gammopathy of undetermined significance. There was no correlation between level of serum monoclonal protein and light chain ratios. The ratios were also high in patients with macroglobulinemia, primary amyloidosis, and renal disease secondary to monoclonal proteins but without overt myeloma. Determination of light chain ratios differentiated patients with multiple myeloma from those with monoclonal gammopathy of undetermined significance and helped identify patients with end organ damage secondary to monoclonal proteins but without overt myeloma.

Biopsy↗

Ultrasonic decalcification offers new perspectives for rapid FISH, DNA, and RT-PCR analysis in bone marrow trephines.

The requisite analyses on bone marrow biopsies are increasing: Molecular analyses such as fluorescence in situ hybridization (FISH), polymerase chain reaction (PCR), and reverse transcriptase (RT)-PCR are demanded in addition to morphology and immunohistochemistry to improve diagnostic accuracy. Moreover, analysis of certain molecular prognostic or predictive biomarkers is increasingly mandatory in the assessment of hematologic diseases. In some circumstances, only formalin fixed, bone-containing tissue is available for molecular analysis. Because various fixation and decalcification procedures can impair DNA and RNA quality, there is an urgent need for standardized decalcification protocols which allow FISH and PCR analysis. In this study we developed a routinely applicable decalcification protocol to optimize the molecular analysis method although preserving morphology and immunohistochemical results. Therefore, we compared 2 different approaches including ultrasonic decalcification versus nonultrasonic procedures and ethylenediaminetetraacetate-based reagents versus acid-based ones. In our hands, the combined use of ultrasound and ethylenediaminetetraacetate-based reagents permits successful interphase FISH, PCR, and RT-PCR analysis whereas concomitantly preserving morphology and antigeneicity.

Biopsy↗