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Biomedical subjects

H Shiku

Publications and source records attributed to H Shiku.

At least 235 records · Page 13Linked to original sources

Differential involvement of CD4+ cells in mediating skin graft rejection against different amounts of transgenic H-2K(b) antigen.

Differential involvement of CD4+ cells in mediating class I-disparate skin graft rejection was investigated using quantitatively different Kb transgenic mice as donors under conditions in which CD8+ cells were blocked in vivo by administration of anti-CD8 monoclonal antibody (mAb). Tg.H-2Kb-1 and -2 are C3H transgenic mice with 14 and 4 copies, respectively, of the H-2Kb gene. Cell surface expression of Kb antigen and the Kb antigenicity of skin for eliciting graft rejection with homozygous and heterozygous transgenic mice were correlated with the copy number. In vivo administration of anti-Lyt-2.1 (CD8) mAb markedly prolonged survival of heterozygous and homozygous C3H Tg.H-2Kb-2 skin grafted onto C3H mice, but prolonged survival of heterozygous Tg.H-2Kb-1 skin grafts much less and did not prolong survival of homozygous Tg.H-2Kb-1 grafts. Administration of anti-L3T4 (CD4) mAb alone did not have any effect on skin graft rejection. Administration of anti-L3T4 (CD4) mAb with anti-Lyt-2.1 (CD8) mAb blocked rejection in all combinations. These findings indicate that a quantitative difference of class I antigen caused differential activation of CD4+ cells under conditions in which CD8+ cells were blocked.

Animals↗

IL-2-dependent ATL cell lines with phenotypes differing from the original leukemia cells.

Adult T-cell leukemia (ATL) cells have been shown to express the receptor for IL-2 by studies using anti-CD25 monoclonal antibody, but these cells usually show no or only a weak proliferative response to IL-2. In the present study, we established thirteen IL-2-dependent T-cell lines from four ATL patients. Examination of the clonalities of these cell lines by the rearrangement profiles of the TCR beta-chain gene and the integration sites of the HTLV-I proviral genome, revealed that two cell lines (KK-1 and KK-5) were of real ATL cell origin. The others were of normal T-cell origin and had been established by infection with HTLV-I. The KK-1 and KK-5 cell lines were derived from a single ATL patient (KK). Interestingly, these cells showed different phenotypic features from the majority of original leukemia cells (CD3 +/- CD4+ CD8-). The KK-1 cell line acquired CD8 antigen expression and became double-positive (CD3 +/- CD4+ CD8+), while the KK-5 cell line prominently expressed CD3 antigen (CD3+ CD4+ CD8-). These results indicate that the phenotypic feature of ATL cells are not fixed, but can change in vitro as has occasionally been observed in vivo.

Antigens, Differentiation, T-Lymphocyte↗

Cytogenetic and cellular characteristics of a human embryonal rhabdomyosarcoma cell line, RMS-YM.

A human tumour cell line, designated RMS-YM, was established from a childhood rhabdomyosarcoma. The monolayer cells were polygonal, round or spindle-shaped. The cells became multilayered and formed many focal piles when confluent. RMS-YM became stable with a doubling time of about 30 h and has been maintained for 104 passages to date. Tumourigenicity of the cells was confirmed by heterotransplantation into nude mice. Morphological features were similar to those of the primary tumour, and myofibrils were found by electron microscopy. The expression of desmin and human myoglobin, and high levels of striated muscle system specific enzymes were recognised. Chromosomal analysis revealed possible gene amplification in the form of homogeneously staining regions. Oncogene analysis was performed on the primary tumour and the cell line, but neither N-myc nor N-ras genes were amplified, nor were Ki-ras, Ha-ras or N-ras genes mutated at the 12th, 13th and 61st codons. The RMS-YM cell line may provide a system to identify novel genes which are amplified in rhabdomyosarcoma.

Animals↗

V(D)J recombinase activity in primary and secondary murine lymphoid organs: assessment by a PCR assay with extrachromosomal plasmids.

We developed a highly specific and sensitive polymerase chain reaction (PCR) assay to measure V(D)J recombinase activity using extrachromosomal plasmids and PCR. Extrachromosomal plasmids were prepared by eukaryotic replication origin, and a combination of the DQ52 and JH2 regions of the murine IgH gene, or of the D beta 2-1 and J beta 2.6 regions of the murine TCR beta gene, both with recombination signal sequences. Plasmids, transfected into cells to be examined and recovered after 48 h, were processed to detect recombined molecules by PCR with primers for the expected sequences produced by the precise signal joint. The PCR assay, when compared with a Camr assay that we prepared with the DQ52 and JH2 regions of the murine IgH gene, seems to have the following advantages. It detects only the recombined products produced by V(D)J recombinase activity and is therefore highly specific. It detects V(D)J recombinase activity in cells, including those with low replication frequency, which our Camr assay failed to do. This also enables detection of the recombinase activity not only in murine cell lines, but also in cells of murine lymphoid organs. The assay detects V(D)J recombinase activity in cell lines of human origin by replacing the eukaryotic replication origin of plasmids. High V(D)J recombinase activity was detected in bone marrow cells followed by thymic cells, and apparently lower activity was detected in cells of the lymph node and spleen of normal mice.

Animals↗

Distinguishing pancreatic carcinoma from other periampullary carcinomas by analysis of mutations in the Kirsten-ras oncogene.

The prevalence of Kirsten (Ki)-ras gene mutations was studied in 105 paraffin-embedded tissues obtained from 40 patients with pancreatic cancer, 48 with bile duct carcinoma (19 distal, 6 middle, and 23 proximal), 16 with ampullary carcinoma and 1 with duodenal cancer, by in vitro amplification of target sequences by the polymerase chain reaction (PCR). With regard to pancreatic cancers, the authors' data confirm the very high frequency (88.6%) of Ki-ras gene mutations occurring at codon 12. Five pancreatic carcinomas did not contain the Ki-ras mutation and included rare types of histopathology. By histologic review after the examination of Ki-ras mutations through PCR, the diagnosis of four patients could be legitimately revised from other periampullary carcinoma to pancreatic carcinoma. In the ampullary carcinoma, the prevalence of mutations in Ki-ras codon 12 was 13.3%. Although there was a large difference in incidence of mutations between distal and middle or proximal bile duct carcinoma, the prevalence of mutations in bile duct carcinoma was limited to 19.6%. Unlike other approaches to diagnose periampullary carcinoma, detection of a mutation in Ki-ras codon 12 by PCR may distinguish pancreatic carcinoma from other periampullary carcinomas that have better prognoses.

Aged↗

Expression of c-myc gene product in gastric carcinoma.

The expression of c-myc oncogene product was studied in 213 cases with gastric carcinoma by an immunoperoxidase method using a monoclonal antibody (MYC-1). Fifty (23.5%) of 213 tumors showed immunoreactivity to MYC-1. The distribution of c-myc-product-positive cells was observed mainly at the marginal area of the tumor. Excess reactivity to c-myc product occurred more frequently in invasive cancers than in localized cancers, and c-myc production expression in cancer tissue correlated well with peritoneal dissemination. Patients with c-myc-protein-positive tumor had significantly poorer prognosis than those with c-myc-protein-negative tumor in invasive gastric carcinomas, and the c-myc product status correlated well with the recurrence of cancer by peritoneal dissemination. These results suggest that the expression of c-myc gene product might be related to the proliferative activity of gastric carcinoma and serve as a new biologically relevant tumor marker for determining the prognosis.

Animals↗

Mutations in the Kirsten-ras oncogene are common but lack correlation with prognosis and tumor stage in human pancreatic carcinoma.

Utilizing the polymerase chain reaction (PCR), we studied the presence and pattern of mutations in the Kirsten (Ki)-ras oncogene, using paraffin-embedded sections of pancreatic carcinoma tissue from 53 patients. Mutations in the Ki-ras oncogene were evident in 46 of the 53 patients (87%) in codon 12. The predominant mutation was from glycine (GGT) to aspartic acid (GAT). Among the 46, one had an additional mutation in Ki-ras codon 13, and no mutation was found in codon 61. These oncogenetic mutations were observed even in early stage pancreatic carcinoma, and there was no statistically significant difference in the rate or positivity of mutations among the stages of the disease. With regard to patient survival, statistical analysis comparing 37 patients with mutations in the Ki-ras oncogene and four patients without mutations revealed no significant difference. These results suggest that mutations in the Ki-ras oncogene may be related to the initiation of carcinogenesis, but are not linked to malignant potential or promotion of human pancreatic cancer.

Adenocarcinoma↗

Roles of CD4+ and CD8+ cells, and the effect of administration of recombinant murine interferon gamma in listerial infection.

Studies were made on the effects of in vivo administration of anti-CD4 mAb, anti-CD8 mAb, or a combination of both mAbs on multiplication of bacteria, the levels of serum transaminases, and mortality in mice infected with Listeria monocytogenes. Results showed that in sublethal infection, CD8+ cells enhanced the peak of bacterial multiplication and liver cell necrosis, and CD4+ cells suppressed CD8+ cell-mediated enhancement. Results also showed that either CD4+ or CD8+ cells were necessary for, and capable of, mediating clearance of the bacteria. CD8+ cells were more efficient than CD4+ cells, but for optimal clearance both were necessary. In lethal listeriosis, treatment of mice with anti-CD8 mAb or a combination of both anti-CD4 and anti-CD8 mAbs, but not anti-CD4 mAb only, protected mice from death by decreasing multiplication of bacteria in the liver and spleen after a peak of approximately 10(8) CFU, and lowering the elevated serum levels of transaminases. These findings indicated that CD8+ cells were responsible for causing irreversible systemic Listeria infection and severe liver necrosis. In lethal listeriosis, administration of rMuIFN-gamma markedly prolonged survival by decreasing multiplication of bacteria and promoting recovery from liver necrosis.

Alanine Transaminase↗

Glycine to aspartic acid mutations at codon 13 of the c-Ki-ras gene in human gastrointestinal cancers.

Point mutations of c-ras genes were analyzed in human gastrointestinal cancers. DNA obtained from the tissues was amplified by polymerase chain reaction and then analyzed by dot blot hybridization assay with oligonucleotide probes to detect mutations at codons 12, 13, and 61 of c-Ki-ras, c-Ha-ras, and c-N-ras. In two of 25 cases of stomach cancer point mutations at codon 13 of c-Ki-ras were found. In colorectal cancer, eight of 30 cases showed mutations: four cases of codon 12 and one case at codon 13 of c-Ki-ras and two cases at codon 61 and one case at codon 13 of c-N-ras. These results may indicate involvement of a wide variety of c-ras gene point mutations, in addition to those at codon 12 of c-Ki-ras, in oncogenesis of human gastrointestinal cancers. In all three mutations of c-Ki-ras at codon 13 which had been seldom found in human cancers, glycine to aspartic acid mutations due to identical G to A transition at the second nucleotide were observed.

Aspartic Acid↗

The role of CD8+ and CD4+ cells in islet allograft rejection.

The requirements of CD8+ and CD4+ cells for islet graft rejection in combinations with different histoincompatibilities were investigated by in vivo administration of anti-Lyt-2.2 (CD8) mAb, anti-L3T4 (CD4) mAb, or both to recipient mice. In B10.AQR----B10.A (H-2K-incompatible) and B10.A(5R)----B10.A (H-2K- and IA-incompatible) combinations, administration of either anti-Lyt-2.2 (CD8) or anti-L3T4 (CD4) mAb completely blocked islet graft rejection, indicating that neither CD8+ cells nor CD4+ cells alone were capable of mediating rejection, and that collaboration of CD8+ cells and CD4+ cells was necessary. On the other hand, in the BALB/c----B6 (H-2- and non-H-2-incompatible) combination, administration of anti-Lyt-2.2 (CD8) or anti-L3T4 (CD4) mAb resulted in rejection of most of the grafts, although survival was prolonged significantly, and administration of both anti-Lyt-2.2 (CD8) and anti-L3T4 (CD4) mAb together completely blocked rejection. These results suggested that either CD8+ or CD4+ cells were capable of mediating rejection, but that rejection was maximal in the presence of both T cell subsets. Immunohistochemical analyses showed marked depletion of CD8+ cells and CD4+ cells in grafted islets as well as spleens when anti-Lyt-2.2 (CD8) and anti-L3T4 (CD4) mAb, respectively, were injected.

Animals↗

Point mutations of c-ras genes in human bladder cancer and kidney cancer.

Point mutations of c-ras genes at codons 12, 13 and 61 were analyzed in 26 cases of bladder cancer and 16 cases of kidney cancer. DNA prepared from either frozen tissues or 10% formalin-fixed, paraffin-embedded tissues were amplified by means of polymerase chain reaction methods, and mutations were analyzed by dot blot hybridization assays with oligonucleotide probes. In three cases of bladder cancer c-ras mutations were found, at codons 13 and 61 of c-Ha-ras and at codon 61 of c-Ki-ras, while no mutation was found in kidney cancer. No mutation was found in normal bladder epithelial tissues from the same patients. Our findings, taken together, may indicate relative scarcity of c-ras mutations in these types of human cancer. The results of dot blot hybridization assays and DNA sequencing showed a G-to-C transition of the first nucleotide at codon 13 c-Ha-ras. This is the first time that such a point mutation has been detected in human cancer tissues.

Aged↗

Frequent glycine-to-aspartic acid mutations at codon 12 of c-Ki-ras gene in human pancreatic cancer in Japanese.

Point mutations at codons 12 and 13 of c-Ki-ras gene were analyzed in human pancreatic cancer. DNAs obtained from sample tissues were amplified by means of polymerase chain reaction and were analyzed by dot blot hybridization assays with oligonucleotide probes appropriate for detecting mutations at these codons. Out of 38 evaluated cases, point mutations at codon 12 were found in 35 cases; these mutations resulted in changes of the coded amino acid to aspartic acid in 24 cases, to valine in 9 cases, to arginine in 2 cases and to cysteine in one case. In one case, a glycine-to-aspartic acid mutation was found at codon 13. In two cases, two distinct mutations were simultaneously present. The frequency pattern of mutations at codon 12 was somewhat different from those given in two previous reports on the similar analysis of pancreatic cancers in European countries. This may indicate the presence of possible genetic or non-genetic factors in determining preferential mutational patterns at these particular codons.

Adult↗

Detection of the c-myc gene product in urinary bladder cancer.

Expression of the c-myc gene product in urinary bladder cancer was investigated by immunohistochemical staining with anti-c-myc monoclonal antibody (mAb) MYC-1. Positive staining was observed in the cytoplasm, but not in the nucleus in tissues fixed with 10% formalin. On the other hand, positive staining was localized in the nucleus in cryopreserved tissues. Of 34 cryopreserved specimens examined, positive staining with MYC-1 mAb was observed in 1 of 12 (8.3%) of grade 1 (G1), 12 of 15 (80%) of G2 and 6 of 7 (86%) of G3. Positive staining with Ki-67 mAb was observed in 2 of 12 (17%) of G1, 12 of 15 (80%) of G2, and 6 of 7 (86%) of G3. These results suggest that tumors with higher nuclear pleomorphism contain more proliferating cells.

Carcinoma, Transitional Cell↗

Expression of ras p21 in mammary and extramammary Paget's disease.

With the use of immunohistochemical techniques, we examined the expression of ras oncogene product p21 in 4 cases of mammary and 13 cases of extramammary Paget's disease. In every mammary case, positive immunostaining was observed in Paget's cells and the underlying tumor (in the 3 cases where a tumor was present). Among the extramammary cases, the cells in 6 cases were immunoreactive. In 4 of these positive extramammary cases, dermal invasion and metastases of regional lymph nodes were observed. Another 2 extramammary cases were weakly reactive. An enhanced expression of ras p21 therefore seems to depend on the region of the tumor or on the biologic behavior. This work suggested that an enhanced expression of ras p21 in Paget's cells may represent a new clinical marker for tumors in cases of mammary and extramammary Paget's disease.

Aged↗

Autoantibodies to c-myc nuclear protein products in autoimmune disease.

This report describes the identification of autoantibodies that react with c-myc proteins in the sera of some patients with autoimmune diseases. Sera from nine to 30 patients, including six with systemic lupus erythematosus, one with mixed connective tissue disease, one with dermatomyositis and one with autoimmune haemolytic anaemia, reacted in immunoblotting assays against a truncated human c-myc protein p42 produced by Escherichia coli. Furthermore, these sera exhibited double bands of 58,000 and 60,000 MW in the nuclear fraction of HL-60 cells with the amplified c-myc gene. These bands were the same as those detected by the anti-human c-myc protein monoclonal antibody (MYC-1) by immunoblotting assay. The binding activities to 58,000 and 60,000 MW were not reduced by DNase I digestion with the sera and could be absorbed by a p42-bound affinity column and recovered after elution.

Antibodies, Antinuclear↗

Immunoscintigraphy of human tumors transplanted in nude mice with radiolabeled anti-ras p21 monoclonal antibodies.

Anti-ras p21 monoclonal antibody (RASK-3) was used for immunoscintigraphy of human cancer cell lines in nude mice. Iodine-125-labeled RASK-3 was injected into nude mice with either human colon cancers (FCC-1 or BM-314) or lung cancer (KNS-62). Clear images were obtained in all three cancers 7 days after the injection of antibody. No localization of 125I-labeled control monoclonal antibody was observed. The ratio of tissue/blood radioactivity and % ID/g in the tumor were significantly higher than other organs by Day 8. The specific localization index examined by 131I-RASK-3 and 125I-control monoclonal antibody was also higher in the tumor than in other tissues. In the in vitro study, binding of RASK-3 to tumor cells increased significantly by treatment of cells with either lysolecithin or periodate-lysine-paraformaldehyde, which confirmed the intracellular localization of ras p21. The mechanism by which anti-ras p21 antibodies accumulate in tumor sites could be the necrotic changes in tumor cells or changes in membrane permeability of non-necrotic cells. These results provide a strong rationale for the utilization of ras p21 as a target antigen in the imaging of a variety of human cancers.

Animals↗