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Thomas Rüdiger

Publications and source records attributed to Thomas Rüdiger.

23 records · Page 2Linked to original sources

Cytomorphologic, immunohistochemical, and cytogenetic profiles of follicular lymphoma: 2 types of follicular lymphoma grade 3.

Follicular lymphoma (FL) grades 1 and 2 are regarded as a distinct disease entity, whereas data suggest that FL grade 3 might be an inhomogeneous tumor category. To define the biologic spectrum of FL, 89 follicular lymphomas were studied for their cytologic composition, antigen expression, mitotic and proliferation indices, cytogenetics, and clinical data. In contrast to the homogeneous appearance of FL grades 1 and 2 (29 and 33 cases, respectively), 2 types of FL grade 3 were recognized. Eleven cases of FL 3a displayed structural features similar to those of FL 1 and 2 and were composed of centroblasts and centrocytes, whereas 16 cases of FL 3b, with (n = 4) or without (n = 12) a diffuse large B-cell lymphoma component (DLBL) (FL 3b +/- DLBL), consisted exclusively of blasts. In contrast to FL 3a, FL 3b +/- DLBL were CD10(+) in only 50% of cases and displayed plasmacytoid differentiation in 44% of cases. Although FL3a was t(14;18)+ in 8 of 11 (73%) cases, only 2 of 16 (13%) FL3b +/- DLBLs harbored this translocation. In contrast, chromosomal breaks at 3q27 were encountered in 7 of 16 (44%) FL 3b +/- DLBL in contrast to only 2 of 11 (18%) FL 3a, and the spectrum of secondary aberrations in FL 3b +/- DLBL was similar to that of diffuse large B-cell lymphoma. We conclude, therefore, that FL grade 3 is a heterogeneous disease group and that the distinction proposed in the new World Health Organization classification between FL 3a (with centrocytes) and FL3b (without centrocytes) is of biologic, and possibly clinical, importance.

Cell Differentiation↗

Inter-laboratory and inter-observer reproducibility of immunohistochemical assessment of the Ki-67 labelling index in a large multi-centre trial.

Proliferative activity of tumour cells, as assessed by the Ki-67 labelling index, has been suggested as a potential prognostic indicator in many neoplastic diseases. Meaningful application of the immunohistochemically determined tumour cell growth fraction in clinical decision-making requires information about its inter-laboratory reproducibility. To assess the reproducibility of Ki-67 determined growth fraction, a multi-centre immunohistochemical trial was performed with 172 participating laboratories, each testing 30 different tissue samples. Evaluating 5160 Ki-67 labelling indices with a newly developed tissue microarray, good inter-observer reproducibility but high inter-laboratory variability was found. Reassessment of all stainings revealed considerable inter-laboratory differences in the intensity and frequency of labelled nuclei, suggesting that antigen retrieval or staining techniques are predominantly responsible for the inter-laboratory variability found in this trial. Consequently, cut-off levels for Ki-67, suggested to distinguish prognostic subgroups in tumours, appear to have limited reproducibility in a multi-centre approach. It is concluded that there is a need to standardize the immunohistochemical determination of the Ki-67 labelling index when it is used as a prognostic indicator in surgical pathology.

Biomarkers, Tumor↗

Quality assurance in immunohistochemistry: results of an interlaboratory trial involving 172 pathologists.

The practicability of quality assurance in immunohistochemistry and its integration into the diagnostic process were both tested in this Germany-wide interlaboratory trial. One hundred seventy-two pathologists received one hematoxylin and eosin and five unstained slides from five cases; all cases were selected by a panel because immunohistochemistry was required for their final diagnosis. Participants rendered a morphologic diagnosis and then substantiated it immunohistochemically. Stained slides and evaluation sheets were reviewed by the panel, and the diagnostic process was analyzed in individual steps: morphologic diagnosis, selection of antibodies, staining quality, interpretation of stained slides, conclusions, and final diagnosis. Diagnosis-independent immunohistochemical performance was tested using a multisample tissue block (30 samples) that was stained and evaluated for six common antigens. For individual cases, corresponding to their difficulty, 21-89% of the final diagnoses (altogether 57% from 828 diagnoses) were correct. In a statistical analysis, the tentative diagnosis, the interpretation of stains and conclusions drawn from immunohistochemistry, were independent factors in reaching the diagnosis. Sensitivity to detect estrogen receptors on the multisample tissue block was only 48%. However, 24% of the stains were interpreted as falsely negative. The low staining sensitivity was not correlated to the number of correct diagnoses. The major problem of applying immunohistochemistry in surgical pathology appears to be its integration into the diagnostic process and not the staining quality. Both future quality control projects and training will have to regard these integrative requirements. Multisample tissue blocks provide a promising tool to standardize quantitative immunohistochemical parameters, such as receptor or proliferation scores.

Coloring Agents↗

Epstein-Barr virus-associated B-cell lymphoproliferative disorders in angloimmunoblastic T-cell lymphoma and peripheral T-cell lymphoma, unspecified.

Various patterns of Epstein-Barr virus (EBV)-associated B-cell lymphoproliferation occur in patients with immunodeficiency. We studied 17 cases of T-cell lymphoma displaying extensive EBV-driven B-cell lymphoproliferation or simultaneous/subsequent EBV-associated B-cell lymphoma. In 10 cases of angioimmunoblastic T-cell lymphoma, an uncommonly prominent population of EBV+ atypical, activated, focally confluent large transformed B cells was found in the background of T-cell lymphoma. In 4 cases, an EBV-associated B-cell neoplasm (3 diffuse large B-cell lymphomas, 1 plasmacytoma) occurred in patients with T-cell lymphoma. Three cases were composite lymphomas of a peripheral T-cell lymphoma, unspecified, combined with EBV-associated diffuse large B-cell lymphoma. The transformed B-cell population displayed EBV latency types 2 and 3. Monoclonal and oligoclonal B-cell populations were detected in 5 and 6 cases, respectively. Similar to other states of immunodeficiency, disease-related and therapy-induced immunosuppression in T-cell lymphoma may lead to a prominent EBV-associated B-cell lymphoproliferation and to EBV+ B-cell neoplasms.

Aged↗

Tissue array technology for testing interlaboratory and interobserver reproducibility of immunohistochemical estrogen receptor analysis in a large multicenter trial.

Semiquantitative immunohistochemical assessment of estrogen receptor (ER) is used to predict the likelihood of response to antiestrogen therapy in breast carcinoma. If semiquantitative immunohistochemical analysis leads to therapeutic decisions, the importance of standardization and quality control increases. ER assessment reproducibility was studied among 172 laboratories using tissue microarray slides with 20 tissue spots negative and 10 tissue spots expressing ER at low, medium, or high levels. More than 80% of the laboratories demonstrated ER positivity in the medium- and high-expressing tissue spots, but only about 43% succeeded with tissue spots with low expression. Poor interlaboratory agreement was based on insufficient retrieval efficacy as shown by additional tests using autoclave pretreatment. The immunohistochemical scores used to quantify therapeutic target molecules remain inconclusive as long as progress toward standardized immunohistochemical procedures and evaluation is not achieved. Tissue microarray technology has proved its suitability for large-scale immunohistochemical trials, giving rise to new dimensions in control assessment.

Female↗