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Immunohistochemical detection of CD10 with monoclonal antibody 56C6 on paraffin sections.

We tested a total of 174 paraffin-embedded hematolymphoid neoplasias to determine whether CD10 can be specifically and sensitivity detected on paraffin sections using monoclonal antibody 56C6 after epitope retrieval. For 32 cases, results of CD10 detection by immunohistochemistry were compared with flow cytometric data. In only 1 case of follicle center lymphoma, divergent staining results were found with the detection of CD10 by flow cytometry but not by immunohistochemistry. Altogether, 22 of 28 follicle center lymphomas, 2 of 6 hairy cell leukemias, 14 of 34 diffuse large B-cell lymphomas, 3 of 3 Burkitt lymphomas, 4 of 5 precursor B-lineage acute lymphoblastic leukemias, and 2 of 4 T-lymphoblastic lymphomas were CD10+. Decalcification of bone marrow biopsy specimens did not diminish the staining intensity. All other cases, including 10 acute myeloid leukemias and a range of low-grade B-cell lymphomas, were CD10-. CD10 is reliably detectable with antibody 56C6 on paraffin sections using epitope retrieval. The antibody is especially useful for the subclassification of acute leukemias and low-grade B-cell lymphomas.

Antibodies, Monoclonal↗

CD10 expression in epithelial tissues and tumors of the gynecologic tract: a useful marker in the diagnosis of mesonephric, trophoblastic, and clear cell tumors.

We tested 417 cases of formalin-fixed, paraffin-embedded normal or hyperplastic gynecologic tissues as well as neoplasms involving the gynecologic tract with a monoclonal antibody against CD10 (clone 56C6), with special emphasis on epithelial and epithelial-like structures and tumors. CD10 was always expressed in mesonephric remnants (mesonephric remnants of the uterine cervix, epoophoron, rete ovarii) and tumors (mesonephric adenocarcinoma of the uterine cervix, tumors of wolffian origin of the broad ligament and ovary). CD10 was also positive in the syncytiotrophoblast, cytotrophoblast, and intermediate trophoblast of normal gestations, partial and complete moles, choriocarcinoma, and placental site trophoblastic tumors. Finally, CD10 was positive in several metastatic neoplasms to the gynecologic tract (100% in metastatic renal clear cell and intestinal carcinomas and melanomas). In contrast, CD10 was almost invariably negative in müllerian epithelia of the female genital tract and in their corresponding tumors, with the exception of focal expression found in squamous epithelia and tumors with squamous differentiation. Thus, the expression of CD10 may be useful in the establishing the diagnosis of mesonephric and trophoblastic tumors and in the differential diagnosis between gynecologic clear cell carcinoma (always negative) and metastatic clear cell carcinoma of renal origin.

Adenocarcinoma, Clear Cell↗

The role of CD10 staining in distinguishing invasive endometrial adenocarcinoma from adenocarcinoma involving adenomyosis.

Adenomyosis may be involved by endometrial adenocarcinoma, but in contrast to true myometrial invasion, the depth of an adenomyotic focus involved by carcinoma does not alter pathologic tumor staging. Therefore, distinction from carcinoma invading myometrium is clinically relevant. We hypothesized that CD10, a marker of non-neoplastic and neoplastic endometrial stroma, would highlight the stromal component of adenomyotic foci and be useful in this distinction. Thirty-nine cases of endometrial adenocarcinoma were analyzed and divided into three groups: I, invasive endometrial adenocarcinoma (n = 14); II, endometrial adenocarcinoma involving adenomyosis but without myometrial invasion (n = 18); and III, adenomyosis involved by endometrial adenocarcinoma with concomitant invasive component (n = 7). All cases of adenomyosis involved by endometrial adenocarcinoma demonstrated CD10 expression in the stromal cells of adenomyotic foci. Eleven of 21 cases (52%) of invasive adenocarcinoma also showed CD10 expression, at least focally, in cells immediately surrounding the infiltrating glands. Of these, two cases (from Group III) also had associated adenomyotic involvement by carcinoma. The remaining cases of invasive carcinoma were negative for CD10. Therefore, presence of CD10 staining immediately surrounding neoplastic glands does not equate with involvement of adenomyosis by endometrial adenocarcinoma. In contrast, absence of CD10 expression excludes involvement of adenomyosis by adenocarcinoma.

Adenocarcinoma↗

CD10 expression in the female genital tract: does it have useful diagnostic applications?

In the female genital tract, CD10 was initially found to be expressed in endometrial stromal tumors of the uterus as well as in mesonephric remnants and related lesions and was thought to be helpful in distinguishing these tumors from their mimics. However, new studies have shown CD10 to be expressed in a wide range of tumors of the female genital tract, making this antibody of limited diagnostic value. This review discusses diagnostic applications of CD10 in the female genital tract, with emphasis on CD10 use in mesenchymal tumors of the uterus and in the differential diagnosis of mesonephric versus non-mesonephric carcinomas, where CD10 positivity alone may be misleading in the final classification of a tumor. CD10 may be useful in establishing the diagnosis of endometriosis (with the exception of the cervix), distinguishing metastatic renal clear cell carcinoma from a primary ovarian clear cell carcinoma, and distinguishing mesonephric hyperplasia from other benign glandular proliferations of the cervix.

Biomarkers, Tumor↗

A function of CD10 on bone marrow stroma.

Bone marrow (BM) stromal cells express CD10 (cALLA), a surface antigen now known to be a neutral endopeptidase (NEP-24.11). The function of CD10 in BM stroma is unknown, although purified NEP-24.11 is known to degrade different substrates including interleukin 1 beta (IL-1 beta). We have therefore employed a CD10-positive BM stromal cell line (L2AK) which proliferates in response to IL-1 beta to test the hypothesis that degradation of this cytokine is one of the functions of stromal CD10. We first showed that [3H]thymidine incorporation by L2AK cells is enhanced by IL-1 beta in a clear dose-dependent manner. Addition of the CD10 inhibitor, phosphoramidon, together with IL-1 beta resulted in a left shift in the dose-response curve which corresponded to a 10-fold potentiation of the IL-1 beta effect. These results indicate that CD10 on bone marrow stromal cells can degrade IL-1 beta and therefore provide a local control of the effects of this, and possibly other, growth factor(s).

Bone Marrow↗

CD66c antigen expression is myeloid restricted in normal bone marrow but is a common feature of CD10+ early-B-cell malignancies.

CD66c is a surface (and intracellular) molecule bound to the membrane by a glycosyl-phosphatidylinositol anchor. While its expression on peripheral granulocytes is well recognized, less is known about its distribution in early steps of normal and neoplastic hematopoiesis. We analyzed by flow cytometry cell surface expression of CD66c on bone marrow cells from 4 healthy subjects and on bone marrow or peripheral blood cells from 127 patients with newly diagnosed hematologic malignancies: 70 de novo acute myeloid leukemias (AML), 6 refractory anemias with excess of blasts in transformation, 3 myeloid and 3 lymphoid blastic phases of chronic myelogenous leukemia, 33 B-lineage and 6 T-lineage acute lymphoblastic leukemias (B- and T-ALL), and 3 B-cell and 3 T-cell non-Hodgkin's lymphomas in the leukemic phase. We found that in normal bone marrow CD66c expression was myeloid restricted, reaching its highest level on promyelocytes. As for de novo AML, slight expression of CD66c was found on 6/25 (24%) AML-M4 and only occasionally in other subgroups. In 9 out of 10 cases of acute promyelocytic leukemia, CD66c was totally absent, but antigen expression was easily detectable following in vitro exposure to all-trans retinoic acid. Among lymphoid malignancies, CD10+ early-B-ALL consistently expressed the molecule (20/23 cases, or 87%) whereas both CD10- early-B ALL and SmIg+ B-ALL completely lacked it. Finally, dual staining with CD66c and CD10 proved to be a suitable tool for distinguishing even low percentages of residual leukemic cells (CD10+/CD66c+) from normal regenerating early-B cells (CD10+/CD66c ) in CD10+ early-B-ALL induced into remission.

Antigens, CD↗

Neoplastic T cells in angioimmunoblastic T-cell lymphoma express CD10.

Angioimmunoblastic T-cell lymphoma (AITL) is a systemic disease involving lymph nodes, spleen, and bone marrow. Although the histologic features have been well described, the diagnosis is often challenging, as there are no specific phenotypic or molecular markers available. This study shows that the neoplastic cells of AITL can be identified by aberrant CD10 expression. Archival material from 30 cases of AITL, 10 cases of peripheral T-cell lymphoma unspecified (PTL), and 10 cases of reactive lymphoid hyperplasia were reviewed. Single and double immunostaining for CD3, CD4, CD8, CD20, CD21, CD10, BCL6, Ki67, and LMP-1 in situ hybridization for Epstein-Barr early region and polymerase chain reaction (PCR) for T-cell receptor gamma chain gene and immunoglobulin heavy chain gene were performed. Three overlapping histologic patterns with hyperplastic follicles, depleted follicles, or without follicles were identified in AITL. Of the 30 cases of AITL, 27 contained CD10(+) T cells. No CD10(+) T cells were present in the cases of PTL or reactive hyperplasia. PCR confirmed a monoclonal or oligoclonal T-cell population in 29 of 30 cases of AITL and a monoclonal B-cell population in 6 cases. Analysis of microdissected CD10(+) single cells showed that they belonged to the neoplastic clone. In conclusion CD10 is a phenotypic marker that specifically identifies the tumor cells in 90% of AITL, including the early cases. The presence of these cells distinguishes AITL from other PTLs. This finding provides an objective criterion for accurate and early diagnosis of AITL.

Adaptor Proteins, Signal Transducing↗

CD10 is helpful in detecting occult or inconspicuous endometrial stromal cells in cases of presumptive endometriosis.

BACKGROUND: Previous studies have shown that CD10 is a marker for normal, ectopic, and neoplastic endometrial stromal cells. However, its value in confirming a diagnosis of presumptive endometriosis has not been extensively studied. OBJECTIVE: To assess the reactivity of CD10 in a series of cases of presumptive endometriosis and to establish the potential usefulness of this antibody in confirming the diagnosis. DESIGN: We studied hematoxylin-eosin sections and immunoreactivity of CD10 in 20 cases diagnosed as "suspicious for," "suggestive of," or "compatible with" endometriosis as well as in 12 cases of lesions that may be confused with endometriosis (3 endosalpingioses, 3 mesothelial hyperplasias, 3 ovarian follicular cysts, and 3 hemorrhagic corpora lutea). RESULTS: Routine sections from cases of presumptive endometriosis showed glands lacking a distinct cuff of endometrial stromal cells because of atrophy or because of changes secondary to hemorrhage, inflammation, fibrosis, and/or cystic dilatation. In a few cases, the distinction between endometrial and ovarian stroma could not be assessed with certainty. CD10 immunostaining confirmed the diagnosis in 17 (85%) of the cases, as it strongly stained endometrial stromal cells that were not apparent on hematoxylin-eosin sections. All sections from lesions that may simulate endometriosis were CD10-. CONCLUSION: CD10 is helpful in detecting occult or inconspicuous ectopic endometrial stromal cells and in distinguishing endometriosis from its potential mimickers. We recommend its use to confirm or exclude the presence of endometrial stromal cells in cases of presumptive endometriosis and in lesions that may be mistaken for this entity.

Biomarkers, Tumor↗

Expression of renal cell carcinoma-associated markers erythropoietin, CD10, and renal cell carcinoma marker in diffuse malignant mesothelioma and metastatic renal cell carcinoma.

CONTEXT: Metastatic renal cell carcinoma (MRCC) involving the thorax can be difficult to distinguish from diffuse malignant mesothelioma (DMM) using traditional morphologic approaches. Standard panels of immunohistochemical markers are of limited benefit. OBJECTIVE: To investigate several antibodies to renal cell carcinoma-associated proteins for differentiating MRCC from DMM. DESIGN: One hundred DMMs and 20 MRCCs were evaluated for immunoexpression of erythropoietin. The same cases and an additional 45 DMMs were evaluated for CD10 and renal cell carcinoma marker (RCCMa) immunoreactivity. RESULTS: Erythropoietin was expressed in 100% of DMMs and MRCCs. Staining for CD10 was observed in 54% of DMMs and 100% of MRCCs. RCCMa stained 26% of DMMs and 55% of MRCCs. Although erythropoietin staining was similarly strong and diffuse in both DMM and MRC, patterns of staining for RCCMa and CD10 differed between MRCC and DMM. Immunoreactivity was strong and diffuse for both RCCMa and CD10 in most MRCCs. Of CD10-positive DMMs, nearly half showed staining in less than 50% of tumor cells and about one fourth of positive cases exhibited only weak to moderately intense staining. Only half of RCCMa-positive DMMs showed staining in more than 49% of tumor cells and staining was only weak to moderately intense in most cases. CONCLUSIONS: Given the overlap in the expression of renal cell carcinoma markers in MRCC and DMM, results with these markers must be interpreted cautiously and should be used in conjunction with mesothelium-associated markers. Differences in expression may potentially help distinguish MRCC from DMM inasmuch as strong and diffuse expression of RCCMa and CD10 supports a diagnosis of MRCC over DMM.

Biomarkers, Tumor↗

Purine metabolism enzyme pattern, cytochemical characteristics and clinicopathologic features of CD10-positive childhood T-cell leukemia.

Purine metabolism enzyme pattern, cytochemical markers and clinicopathologic features of common acute lymphoblastic leukemia antigen (cALLA; CD10)-positive, CD10-negative T acute lymphoblastic leukemia (ALL), and cALLA-positive non-T, non-B ALL (common ALL; C ALL) of children were compared. The results of immunophenotyping of blast cells in 61 children with ALL who were treated and followed during the last 7 years at the Second Pediatric Clinic in Bratislava are presented. The aim of our study was to determine the correlation of CD10 marker expression with purine enzyme activities and clinical course in ALL of children. Immunologic phenotype performed by a panel of monoclonal antibodies in indirect immunofluorescence assay revealed 3 main ALL groups: Common ALL (C ALL), T ALL and CD10+ T ALL (C + T ALL). An additional exact cytochemical marker analysis was performed in these three ALL immunologic subtypes. Two enzymes of purine metabolism, i.e. adenosine deaminase (ADA) and purine nucleosidephosphorylase (PNP) were investigated in blast cells by paper radiochromatography. Life-table analysis revealed significant prognostic differences with regard to event-free survival and overall survival in followed groups of ALL patients. Our results showed a rather high frequency of mixed (C + T) ALL phenotype. The characteristic T ALL enzyme pattern (high ADA, low PNP) was present not only in T, but also in CD10+ T ALL blast cells. The T cell marker showed to be dominant in the determination of clinical course and prognostic significance in children with ALL; children with T and CD10+ T ALL phenotype, in contrast to C ALL phenotype, experienced more frequent relapses and a shorter event-free survival.

Acid Phosphatase↗

Expression of the common acute lymphoblastic leukemia antigen (CD10) in mesenchymal tumors.

The expression of the CD10 antigen, formerly designated as common acute lymphoblastic leukemia antigen and recently identified as neutral endopeptidase, was examined immunohistochemically in 26 benign and in 55 malignant mesenchymal tumors. CD10 expression was found in 4 of 4 leiomyomas, 7 of 10 leiomyosarcomas, 1 of 6 rhabdomyosarcomas, 2 of 2 Triton tumors, 1 of 2 aggressive fibromatoses, 1 of 3 fibrosarcomas, 1 of 4 synovial sarcomas, 1 of 1 giant cell tumors of tendon sheath, 4 of 4 malignant fibrous histiocytomas, 3 of 3 Ewing's sarcomas, and 2 of 3 osteosarcomas. Furthermore, CD10 was expressed consistently in the myoepithelial compartment of 12 fibroadenomas and, in 7 of these cases, in a minor stromal cell population, probably of (myo-) fibroblastic origin. Tumors of adipose tissue (4 lipomas, 5 liposarcomas), tumors of autonomic ganglia (2 ganglioneuromas, 1 ganglioneuroblastoma, 2 neuroblastomas), tumors of peripheral nerves with purely schwannian differentiation (7 malignant schwannomas), and tumors of disputed origin were consistently CD10-negative, however, as were single cases of fibroma and chondrosarcoma. These findings indicate that the expression of CD10 is a frequent but not obligatory feature in some mesenchymal tumors. Therefore CD10 is of value in the differential diagnosis of mesenchymal tumors.

Antibodies, Monoclonal↗

A CD10-positive subset of malignant cells is identified in multiple myeloma using PCR with patient-specific immunoglobulin gene primers.

Immunophenotypic studies show the presence of CD10-bearing malignant cells in a small subset of multiple myeloma (MM) patients. We used a sensitive PCR-based technique in order to determine the frequency that MM patients contain a malignant subpopulation which expresses this antigen. The immunoglobulin (Ig) heavy chain variable region (VH) gene sequence expressed by the malignant clone in MM can be used as a tumor specific marker. After determining this sequence in six MM patients, patient specific VH oligonucleotide primers from complementarity determining region (CDR) sequences were generated. Bone marrow mononuclear cells from these patients were incubated with two different anti-CD10 antibodies or isotype identical murine IgG controls. Cells were then sorted by flow cytometry into the 1% brightest cells containing > 99.99% CD10-positive cells and two fractions including the 90 and 10% dimmest staining cells. PCR amplification was performed on DNA from approximately 10(4) cells (0.1 microgram) using patient specific CDR1 and CDR3 primers. Detectable PCR product was obtained in each sorted sample although the intensity of the band was much higher in cells lacking CD10 expression (the 90 and 10% dimmest fractions) than in the CD10-bearing (1% brightest) population. These results imply that there is a small population of CD10-bearing clonal cells in most, if not all patients with MM.

Base Sequence↗

Expression of membrane-bound peptidases (CD10 and CD26) on human articular chondrocytes. Possible role of neuropeptidases in the pathogenesis of osteoarthritis.

OBJECTIVE: To evaluate the cell surface expression of cell membrane-bound peptidases CD10 and CD26 on osteoarthritic (OA) chondrocytes, correlating it with the cell cycle phase and with the severity of OA lesions found in different load zones of the cartilage from human knees. METHODS: Chondrocytes freshly isolated from three different load zones of cartilage, obtained from 10 OA patients undergoing surgical knee replacement, were analyzed for the expression of CD10 and CD26 and for their cell cycle phase by flow cytometry. Statistical analysis was carried out using the multifactorial analysis of the variance with the LSD (least square difference) range test. The Chi square test was used to compare the cell cycle phases. RESULTS: Analysis of the chondrocyte cell cycle showed a significantly high proportion of cells in the S-phase in the maximum load zone in comparison with the minimum load zone (p < 0.001); the percentage of resting cells (G0/G1 phase) was significantly higher in the minimum load zone than in the maximum load zone (p < 0.001). The expression of CD10 and CD26 on chondrocytes was significantly reduced in the maximum load zone of the cartilage and was directly related to the progressive worsening of osteoarthritic lesions. CONCLUSIONS: These data demonstrate, for the first time, that articular chondrocytes express on their surface CD10 and CD26 peptidases. Neprilysin 3.4.24.11 (CD10) and dipeptidyl peptidase IV 3.4.14.15 (CD26) have been shown to play a specific role in the control of growth and differentiation of many cell types by cleaving growth factors able to promote cellular proliferation. Our results indicate that CD10 and CD26 are down-regulated in the maximum load zone of the knee OA cartilage: this condition may allow the increase of local levels of growth factors causing chondrocyte activation. Furthermore, as CD26 mediates cell binding to fibronectin and collagen, its reduction in osteoarthritic cartilage may reflect a perturbation of chondrocyte interactions with the extracellular matrix.

Aged↗

Diagnostic value of HepPar1, pCEA, CD10, and CD34 expression in separating hepatocellular carcinoma from metastatic carcinoma in fine-needle aspiration cytology.

Differentiating primary and metastatic hepatic malignancies can be diagnostically challenging in fine-needle aspiration cytology (FNAC). We compared four immunohistochemical (IHC) markers, pCEA, CD10, HepPar1, and CD34, in differentiating hepatocellular carcinoma (HCC) from metastatic carcinoma (MC) in FNAC specimens. Sixty cases of liver FNAC with their corresponding cell blocks were retrieved from the hospital computer system, including 30 HCC and 30 MC (15 colon, 10 breast, and 5 pancreas). The diagnoses were confirmed by clinical follow-up and surgical resection or core needle biopsy. The direct cytologic smears were air-dried and Diff-Quik-stained, and alcohol-fixed and Papanicolaou-stained. Cell block sections from the aspirates were immunostained for pCEA, CD10, HepPar1, and CD34. IHC on cytologic smears for HCC was performed on 10 cases and compared with the cell block results. In HCC, CD10, and pCEA demonstrated the characteristic canalicular staining in 23/30 (77%) and 24/30 (80%) of the cases, respectively; however, none of the MC showed a canalicular staining pattern. HepPar1 was positive in 26/30 (87%) of the HCC cases and one MC. CD34 stained sinusoidal endothelial cells in 27/30 (90%) cases of HCC and six MC. Our results demonstrate that the canalicular staining pattern for CD10 and sinusoidal staining pattern of CD34 are very specific, in addition to the high specificity and sensitivity of HepPar1 for HCC. Cell blocks were more informative in demonstrating the characteristic architecture and immunostaining pattern of the malignancy than the cytologic smears. An IHC panel consisting of pCEA, CD10, HepPar1, and CD34 is useful for confirming HCC in FNAC of the liver.

Antigens, CD34↗

Utility of CD10 and RCCma in the diagnosis of metastatic conventional renal-cell adenocarcinoma by fine-needle aspiration biopsy.

The cytologic diagnosis of primary conventional renal-cell adenocarcinoma (cRCC) is usually straightforward; however, metastatic cRCC must be distinguished from a variety of neoplasms with clear-cell features. CD10, a cell membrane-associated neutral endopeptidase, and renal-cell carcinoma marker (RCCma), an antibody against human proximal tubular brush border antigen, have recently been shown to be useful in the diagnosis of cRCC. We compared CD10 and RCCma in cell block material from fine-needle aspiration biopsies (FNABs) to assess their utility in the diagnosis of metastatic cRCC, in cytologic specimens. Seven primary and sixteen metastatic cRCCs were immunostained with CD10 and RCCma. The immunoreactivity results were compared with those of a variety of neoplasms originating from other sites such as the liver, lungs, breast, and the gastrointestinal tract. The sensitivity and specificity of CD10 for cRCC were 100% and 59%, respectively. The sensitivity and specificity of RCCma for cRCC were 35% and 100%, respectively. We conclude that CD10 has limited value in confirming the diagnosis of cRCC because of its low specificity. RCCma, when positive, is highly specific for cRCC, but its low sensitivity hinders its diagnostic usefulness.

Aged↗

CD10+ cell population in the bone marrow of patients with advanced neuroblastoma.

Immunocytologic analyses of bone marrow can provide clinically useful prognostic information in neuroblastoma. While analyzing the bone marrow with a panel of monoclonal antibodies, which detect neuroblasts and other defining B-, T-, and myloid lineage, we identified two infants with stage IV-S neuroblastoma whose bone marrow contained a large population of common acute lymphoblastic leukemia (ALL)-like cells. This population expressed HLA-DR, CD19(B1), CD10(CALLA), and occasionally CD20(B1). Since 1988, 17 additional patients with advanced neuroblastoma (IV-S, III, and IV) were studied by us. In 10 of the 19 patients, the bone marrow revealed an expanded CD10 population (20-70%). It appears that this group of patients has a better prognosis. Out of 9 patients who did not have an expanded CD10 population, 8 died within 9 months from diagnosis, whereas out of 10 patients with an expanded CD10 population only one died and the others are alive, 6-30 months from diagnosis (P < 0.001). An expanded CD10 population in the bone marrow of disseminated neuroblastoma patients may therefore serve as a prognostic factor. Apart from the prognostic value of this particular population in the single patient, its presence may shed light on the interrelationship between the immune system and the neuroendocrine compartment.

Adolescent↗

CD10 (endopeptidase 24.11) is a thymic peptide-degrading enzyme possibly involved in the regulation of thymocyte functions.

Human immature thymocytes express significant levels of the CD10 (endopeptidase 24.11) cell surface antigen. We report here that IOB5, an anti-CD10 mAb, as well as the phorbol ester PMA down-regulate CD10 activity at the surface of human thymocytes. The kinetics of CD10 modulation were drastically different for both effectors, indicating different regulatory mechanisms. We also demonstrated that intact human thymocytes hydrolyze thymopentin and that CD10 significantly participates in this process. Finally, we found that thymopentin and to a lesser extent phosphoramidon, a specific endopeptidase 24.11 inhibitor, induced up-regulation of CD4 and CD8 molecules at the thymocyte cell surface. In view of these results, we suggest that down-regulation of endopeptidase 24.11 at the thymocyte cell surface might reduce its activity toward thymic factors possibly involved in the regulation of thymocyte functions.

Antibodies, Monoclonal↗

CD10 antigen density in childhood common acute lymphoblastic leukaemia: comparisons of race and sex.

During the 25 month period from July 1989 until August 1991, 58 children with FAB defined acute lymphoblastic leukaemia (ALL) were referred for immunophenotypic analysis. Of these, 42 children with a common/pre-B phenotype (CD19/CD10-positive) were studied specifically to assess CD10 antigen density. A pattern of segregation was found between males and females and between black and white children. Black males, who are the worst prognostic group, had the lowest CD10 density, while white females, known to constitute the best prognostic group, had significantly higher CD10 antigen density than the other groups. Black females and white males occupied intermediate positions with respect to CD10 antigen density. A two way analysis of variance showed that although sex had contributed significantly to this variation (p = 0.0038), the contribution of race was marginal (p = 0.0530). It is hypothesized that low CD10 antigen density patterns in males and in Blacks could be causally related to poor prognosis.

Black People↗