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Shinichi Nakatsuka

Publications and source records attributed to Shinichi Nakatsuka.

3 recordsLinked to original sources

Frequent mutations of Fas gene in nasal NK/T cell lymphoma.

Fas (Apo-1/CD95) is a cell-surface receptor involved in cell death signaling through binding of Fas ligand. Mutation of Fas gene in lymphoid cells results in accumulation of these cells, which might thus contribute to lymphomagenesis. We examined the open reading frame of Fas cDNA in 14 cases of nasal NK/T-cell lymphoma. Mutations of Fas gene were detected in seven (50%) of 14 cases which comprised four frameshift, two missense, and one silent mutations. Frameshift mutations were caused by insertion of 1 bp (A) at nucleotide 1095 in two cases and by deletion of 1 bp at nucleotide 597 and at 704, respectively, in one each. Mouse T-cell lymphoma cells transfected with two missense mutated genes and frameshift mutations caused by insertion of 1 bp (A) at nucleotide 1095 were resistant to apoptosis induced by the anti-Fas antibody. These findings suggested that accumulation of lymphoid cells with Fas mutations provides a basis for the development of nasal NK/T-cell lymphoma.

Apoptosis↗

Polymerase chain reaction-based clonality analysis in thyroid lymphoma.

A previous patho-epidemiological study indicated that thyroid lymphoma (TL) evolves among active lymphoid cells into chronic lymphocytic thyroiditis (CLTH), a thyroid-specific autoimmune disease. In this study, clonality of B-cells in the CLTH and TL lesions was analyzed using polymerase chain reaction (PCR)-based method on surgically resected samples from 10 cases of TL; 7 mucosa-associated lymphoid tissue (MALT) lymphoma and 3 diffuse large B-cell lymphoma (DLBCL). CLTH lesions coexisted in all the cases with MALT lymphoma, but not in the three DLBCL cases. In cases of MALT lymphoma, the lymphomatous and CLTH areas were separately microdissected from each section and analyzed for clonality. In the cases of DLBCL, the whole specimens were used for clonality analysis. CLTH lesions showed smear in 6 samples, two bands in one, and more than three (oligoclonal pattern) in 2. MALT lymphoma lesions showed single or two bands (monoclonal pattern) in 4, oligoclonal pattern in 4, and smear in one. DLBCL showed monoclonal pattern in two and oligoclonal pattern in one. One common band was present among two separate MALT lesions in one case, but no common bands were found in the remaining six cases. These findings suggested the clonal evolution of B-cell from polyclonal to monoclonal proliferation to take place in the continuum of lymphoproliferative lesions into autoimmune thyroiditis.

Aged↗

Clonality analysis of follicular lymphoma using laser capture microdissection method.

Whether a common and a single clone present, or not, among follicles of follicular lymphoma (FL) was examined in 12 cases with FL. Histologic grade was I in 6 cases, II in 3, and III in 3. DNA was selectively extracted from the neoplastic follicles of paraffin-embedded samples with use of laser capture microdissection method, and used for PCR-based analysis of rearrangement of immunoglobulin heavy chain variable region gene. Three different follicles in each case of FL were microdissected. Semi-nested PCR was performed using two sets of primers (Fr2A and Fr3A). In PCR with Fr2A primers, nine of 12 cases showed a common band among neoplastic follicles. The remaining three cases showed no PCR products. With Fr3A primers, eight of 12 cases showed a common band among follicles of the same case. The other four cases showed oligoclonal bands, among them presence of a common band was difficult to assess. Oligoclonal bands were more frequently observed in PCR with Fr3A than that with Fr2A and in grade I or II than in grade III cases. In total, 11 of 12 cases showed a common band in PCR with either Fr2A or Fr3A primers. In two cases, DNA extracted from whole section was amplified with both Fr2A and Fr3A or only Fr3A primers, showing smear or oligoclonal bands. These results showed the presence of a single clone of cells in neoplastic follicles of FL and the usefulness of PCR-based rearrangement analysis of immunoglobulin heavy chain gene combined with microdissection methods for differential diagnosis of FL from follicular hyperplasia.

Adult↗