[Fate of 3 H-labeled mannan in vivo. I].
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Biomedical subjects
Publications and source records attributed to H Hojo.
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We reported a new monoclonal antibody, designated FUB-1, reacting with normal and neoplastic large lymphoid cells. FUB-1 was produced using a Burkitt's lymphoma cell line (HBL-5) as an immunogen. Its immunoglobulin subtype was IgM. The determinant was not on the surface but in the cytoplasm. Western blotting analysis revealed that the molecular weight of the antigen was 52,000 dalton. In the normal lymphoid tissue, FUB-1 reacted with large lymphoid cells, but not with small or medium-sized lymphoid cells or plasma cells. In addition, the FUB-1 antigen was not found in resting cells in the peripheral blood (PB), but it was induced on mononuclear cells of PB by addition of PWM or PMA. In the B-cell lymphomas tested, FUB-1 reacted with small cleaved cell lymphomas (3/12), large cell lymphomas (7/10), Burkitt's lymphomas (4/4) and immunoblastic lymphomas (2/2), but not with small cell lymphomas (0/3) or intermediate lymphocytic lymphomas (0/8). These findings indicate that the FUB-1 antigen appears to be expressed on normal lymphoid cells during blastoid transformation and on neoplastic large lymphoid cells. FUB-1 also reacted with normal glandular epithelium and various adenocarcinomas. FUB-1 may be useful to investigate the mechanism of in vitro blastoid transformation or activation of lymphoid cells.
We investigated the expression of adhesion molecules of lymphocyte function-associated antigen-1 alpha (LFA-1 alpha) and its ligand intercellular adhesion molecule-1 (ICAM-1) on 74 well-characterized B cell lymphomas. The LFA-1 was expressed on B cell lymphomas (21/74; 28 per cent), but to a lesser degree than ICAM-1 which was highly expressed (48/74 cases; 64 per cent). From the results of bone marrow examination of 39 cases with B cell lymphomas, 13 of 16 cases with a lack of ICAM-1 molecule showed a higher incidence of marrow involvement, but nine of 23 cases with the expression of ICAM-1 molecule showed a lower incidence. These findings suggest that the lack of expression of the ICAM-1 molecule by B cell lymphomas correlates with bone marrow involvement by lymphoma cells (p < 0.05). Expression of the LFA-1 molecule appears not to correlate with marrow involvement (p < 0.05).
There have been an increasing number of reports describing a pivotal role for phosphorylation in cellular responses for cell differentiation and proliferation. We examined an immunocytochemical expression of protein kinase C(PKC) isozymes (type I, II, and III) in 22 leukemia-lymphoma cell lines. Of these cell lines, 21 expressed type II PKC and 17 showed the co-expression of both types II and III PKC in varying degree. The cell line without PKC activity showed far less [3H]-TdR uptake and no heterotransplantation in nude mice. Types II and III PKC appear to relate to cell proliferation in certain leukemia-lymphoma cell lines.
We present a unique case of a 9-month-old infant with a left adrenal neuroblastoma with sarcoid reaction, detected by mass screening. There was no clinical evidence indicating systemic sarcoidosis or pulmonary mycobacterial infection. Histological examination of the resected adrenal tumor revealed many noncaseating epithelioid granulomas with lymphocytic infiltrate, composed of epithelioid cells and few giant cells, arising in tumor parenchyma and fibrovascular stroma. Most of the lymphocytes in the granulomas were CD3- or CD45RO-positive T cells, with fewer being CD20-positive B cells. The lymphocytes in the epithelioid granulomas expressed CD4 or CD8, but not CD56 and CD57. CD4-positive cells were observed more within the granulomas (internal area) than in the surrounding area (external area) of the same granulomas, while most of the CD8-positive cells were seen consistently at the outer margin of the granulomas (marginal zone). CD45RA-positive T cells were observed predominantly in the external area. The results of immunostaining demonstrated that lymphocytes in granulomas of this case showed the same distribution pattern as that seen in systemic sarcoidosis. Although the sarcoid reaction is a phenomenon known to be associated with the region of cancer, granuloma within the primary neuroblastoma is extremely rare. The sarcoid reaction in the present case of neuroblastoma may be associated with a delayed-type hypersensitivity reaction, and its significance and relevance still remain obscure.
Rhabdomyosarcoma (RMS) is the most common soft tissue sarcoma of childhood, and 75% of such cases in the United States are reviewed at the Pathology Center for the Intergroup Rhabdomyosarcoma Study Group (IRSG). The first four generations of IRSG therapeutic trials (IRS I-IV) and supportive pathologic studies have generated a new International Classification of Rhabdomyosarcoma (ICR) that offers new morphologic concepts to the practicing pathologist. The objective of this report is to clearly define emerging histopathologic categories of RMS as defined by the ICR, and to emphasize correlative immunohistochemical or molecular studies. Emerging ICR variants of RMS place the patient in widely divergent prognostic categories (superior, botryoid or spindle cell variants; poor, solid alveolar or diffusely anaplastic variants). The cardinal histopathologic features of the ICR combined with results of studies of fusion genes seen with t(1;13) and t(2;13) will help delineate therapeutic subgroups of RMS for the fifth generation (IRS V) of IRSG studies. Consequently, it is imperative for the practicing pathologist to be familiar with the practical workup and diagnosis of RMS in childhood.
Somatosensory evoked potentials produced in response to posterior tibial nerve stimulation were studied in 42 normal infants and children, ages 4 months to 16 years. The maturation of afferent conduction from the lower limb was evaluated for the peripheral nerve, spinal cord, and central nervous system. Although the maturation of conduction in the peripheral nerve (from the ankle to the popliteal fossa and from the popliteal fossa to L3) was complete by 6 years of age, afferent conduction in the spinal cord (from L3 to C7) was not complete until 12 years of age or older. Spinal evoked potentials investigated in the thoracolumbar area revealed a phase-reversed potential located between the lower thoracic spine and upper lumbar spine in over 80% of patients. Reciprocal velocities for the major cortical positive potential P1 (corresponding to P37 in adults) and its onset, N1, steadily decreased with age and leveled off at greater than 12 years of age and by 12 years of age, respectively. The propagation velocity from L3 to the cerebral cortex also increased steadily with age, leveling off at greater than 12 years of age. Accordingly, the maturation of afferent conduction in the central nervous system was not complete until after 12 years of age.
To clarify the histogenesis of B cell chronic lymphocytic leukemia (BCLL), clinicopathological and immunophenotypic studies were performed using a large panel of monoclonal antibodies on 12 cases with BCLL including three cases with prolymphocytic/chronic lymphocytic leukemia (CLL/PL). Immunophenotypically, CD19 and CD20 were positive for all cases of this series and CD5, CD21, CD22, CD23, CD25, CD38, Leu-8, KB-61, and bcl-2 protein were expressed in variable proportion from case to case. CD10, however, did not react. No alkaline phosphatase (ALP) positive cases were found. The phenotype of BCLL was similar to that of B cells of the mantle zone (MZ) of secondary follicle in the lymph node. It is therefore postulated that the neoplastic cells of BCLL in these cases might be derived from B cells of the MZ. Moreover, the cells possibly originated from the lymphocytes located in the inner layer of the MZ, since ALP+ B cells are usually observed in the outer layer of the MZ. The pseudofollicular (PF) pattern was observed in four biopsied lymph nodes among five cases tested, but no such a pattern in an aspiration clot of bone marrow. These four cases consisted of three cases with CLL and a case with CLL/PL. The immunohistochemical study showed that there were many proliferating cells showing Ki-67+ in the PF area of the lymph nodes. In these cases, leukemic cells might have developed from the PF area of the lymph node.