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Biomedical subjects

M Adachi

Publications and source records attributed to M Adachi.

At least 217 records · Page 12Linked to original sources

MRI anatomy of white matter layers around the trigone of the lateral ventricle.

MRI was obtained in eight normal volunteers and seven patients with brain oedema around the trigone. In addition to the conventional sequences, diffusion-weighted and intravoxel-incoherent-motion images using motion-proving anteroposterior and/or lateral direction gradients were obtained to show the white matter pathways better. Coronal proton-density-weighted images showed three thin relatively high-intensity layers in addition to the tapetum and the internal and external sagittal strata. Although they have not been confirmed anatomically, the thin layer between the internal and the external sagittal strata was corroborated by diffusion-weighted and intravoxel-incoherent-motion images, and by characteristics of the spread of oedema into the sagittal stratum. We propose that this layer be named the central sagittal lamina. The other two layers medial and lateral to the sagittal stratum were outside, but in contact with the medial and lateral parts of the sagittal stratum, respectively. We provisionally named them medial and lateral sagittal laminae; they were not evident on any other images. The low-intensity layer on T2-weighting was the internal sagittal stratum. The optic radiation, comprising the external sagittal stratum, appeared as an intermediate to slightly high-intensity layer on T2-weighted images and a low-intensity layer on T1-weighted images as did the corticospinal tract in the posterior internal capsule.

Adult↗

Clinical characteristics of children with hypoparathyroidism due to 22q11.2 microdeletion.

UNLABELLED: The phenotypes of chromosomal 22q11.2 microdeletion are quite variable among individuals and hypoparathyroidism (HP) constitutes a definite portion of the clinical spectrum. For the correct diagnosis and pertinent follow up of the HP children due to del22q11.2, we tried to delineate the clinical characteristics of such patients. By employing fluorescence in situ hybridization (FISH) to all the patients diagnosed as HP in our clinic, ten possessed the 22q11.2 microdeletion. Among them, the incidence of cardiac defect (5/10), recurrent infection (1/10) and cleft palate (1/10) was modest. Additionally, seven of them had been diagnosed as HP during the infantile period, when their facial abnormality and intellectual problem had not become evident. Notably, two patients were complicated by Graves disease, while the association of idiopathic thrombocytopenic purpura was also observed in two girls. CONCLUSION: HP due to del22q11.2 may be misdiagnosed as idiopathic, especially in an infant who lacks apparent complications like cardiac anomaly. They should be closely followed up for auto-immune complications.

Child↗

Enhancement of reactivity of anti-MUC1 core protein antibody and killing activity of anti-MUC1 cytotoxic T cells by deglycosylation of target tissues or cells.

MUC1 mucin core protein contains an important tumor-associated peptide antigen that can induce cytotoxic T cells (CTLs) in vivo, although this antigen is generally masked by mucin-type glycans. To reveal the precise expression pattern of MUC1 protein in normal and neoplastic gastric tissues, we performed immunohistochemical staining of periodic acid-treated tissue sections with an anti-MUC1 core protein monoclonal antibody (mAb), MUSE11. In non-cancerous tissues, the deep portion of fundic glands and the luminal surface were predominantly immunostained in normal and metaplastic glands, respectively. In cancerous tissues, the incidence of positivity for MUC1 protein varied from 67% to 88%, depending on histological type. This frequent expression of MUC1 protein in cancer tissues after periodic acid treatment suggested that deglycosylation may be of use for exposing the target antigen of anti-MUC1 CTLs. Accordingly, we then examined the effect of benzyl-alpha-GalNAc, an inhibitor of O-glycan biosynthesis, on the expression of MUC1 protein and sensitivity to an anti-MUC1 CTL line, designated TS, in gastric cancer JRST cells. After incubation with benzyl-alpha-GalNAc, the reactivity of mAb MUSE11 with JRST cells and their sensitivity of TS were clearly increased. These findings suggest that deglycosylation may offer an important strategy for enhancing anti-tumor immunity in patients with gastric cancer.

Acetylgalactosamine↗

Correlation of reduction in MRP-1/CD9 and KAI1/CD82 expression with recurrences in breast cancer patients.

MRP-1/CD9, KAI1/CD82, and ME491/CD63, have been reported to be associated with the metastatic potential of solid tumors. The aim of this study was to determine whether their expression in tumor tissues is a useful indicator for prognosis in breast cancer patients. We studied 109 breast cancer patients who underwent surgery. Quantitative reverse transcription-polymerase chain reaction analysis was performed to evaluate the expression of these genes. The results were confirmed with immunohistochemistry. All of the carcinomas were ME491/CD63 positive. Thirty-six tumors were MRP-1/CD9 negative. The disease-free survival rate and the 5-year survival rate of patients with MRP-1/CD9-negative tumors were both significantly lower than that in patients with MRP-1/ CD9-positive tumors (P = 0.0005 and P = 0.0380, respectively). Sixty-five tumors were KAI1/CD82 negative. The disease-free survival rate of patients with KAI1/CD82-negative tumors was significantly lower than that of patients with KAI1/CD82-positive tumors (P = 0.0065). Cox regression analysis demonstrated that MRP-1/CD9 status (P = 0.0016) and KAI1/CD82 status (P = 0.0234) were useful indicators for the disease-free survival of breast cancer patients. The disease-free survival rate and 5-year survival rate of patients with either MRP-1/CD9-negative or KAI1/CD82-negative tumors were both significantly lower than patients who were positive for both genes (P = 0.0003 and P = 0.0292, respectively). The expression of MRP-1/CD9 and KAI1/CD82 genes are useful indicators of a poor prognosis in breast cancer patients.

Aged↗

High prevalence of small dense LDL in diabetic nephropathy is not directly associated with kidney damage: a possible role of postprandial lipemia.

To determine whether high prevalence of small dense low-density lipoprotein (LDL) in non-insulin-dependent diabetes (NIDDM) with nephropathy is directly associated with kidney damage, we measured LDL particle size by non-denaturing 2-16% gradient polyacrylamide gel electrophoresis in non-diabetic patients with primary renal disease and compared the results to particle size in NIDDM patients with diabetic nephropathy. The average LDL particle diameter was significantly smaller in patients with diabetic nephropathy (245+/-3 A mean +/- SEM) compared to the controls (263+/-1 A), diabetics without nephropathy (257+/-2 A), patients with primary renal disease (254+/-2 A) or non-diabetic patients treated with hemodialysis (HD) (260+/-1 A). The incidence of small LDL (mean diameter is < or =255 A) was remarkably increased in diabetic nephropathy (67%) compared to diabetes without nephropathy (27%), patients with renal disease (24%), HD patients (15%) and controls (10%). LDL size in patients with primary renal disease was significantly smaller than those in controls. However, because there was an excellent correlation between LDL size and plasma triglyceride (TG) levels, when hypertriglyceridemic subjects (TG >1.7 mM) were excluded, no difference of LDL size was observed between the renal disease group (260+/-2 A) and the control group (264+/-1 A). On the other hand, even when hypertriglyceridemic subjects were excluded, LDL size was still smaller in diabetic nephropathy (250+/-4 A). We performed an oral fat load test in normotriglyceridemic subjects (fasting TG <1.7 mM) of control, diabetes with and without nephropathy and primary renal disease. The TG responses in plasma and TG-rich-lipoprotein (TRL) (d <1.006) after the oral fat load were significantly greater in NIDDMs with nephropathy compared to controls or NIDDMs without nephropathy, while such a marked postprandial lipemia was not observed in patients with primary renal disease. In these fasting normotriglyceridemic subjects, LDL size was significantly inversely correlated with postprandial TG responses, which is totally independent from fasting TG levels. These results suggest that high prevalence of small dense LDL in NIDDM patients with nephropathy is not directly associated with kidney damage. Postprandial lipemia may play an important role in reducing LDL particle size in these patients.

Aged↗

Adenosine 5'-diphosphate as a factor in platelet aggregation induced by human plasma remnant lipoproteins.

The action of lipoprotein lipase on chylomicrons (CM) and very low density lipoproteins (VLDL) produces remnant lipoproteins (RLP) which are rich in triglycerides, cholesterol and apolipoprotein E (apo E). Apo E serves as a ligand for uptake of RLP by macrophages, platelets, endothelial cells and other cells expressing the LDL-receptor or the remnant receptor, thus having a major role in the clearance of plasma cholesterol and triglycerides, but at the same time, uptake of apo E-bearing RLP can profoundly alter the physiology of these cells and promote atherosclerosis. Like RLP, blood platelets also have roles in atherosclerosis and thrombosis, hence it is likely that RLP influence platelet activity as well. RLP derived from normal human plasma VLDL and CM were prepared using two monoclonal antibodies, anti-apo B-100 (JI-H) and anti-apo A-I (H-12) coupled to Sepharose 4B gel to form an immunoaffinity column. Lipoproteins containing apo B-100 including VLDL and LDL adsorb to (JI-H)-gel, while CM and HDL with apo A-I adsorb to (H-12)-gel. The particles in the unbound fraction (RLP) are rich in apo B-48, apo E and apo B-100 containing particles with multiple molecules of apo E. The RLP fraction with a total triglyceride of 14+/-3.2 mg/ml; cholesterol, 0.39+/-0.1 mg/ml and protein, 0.78+/-0.24 mg/ml (n=19) was added to aliquots of blood of man, rabbits, guinea pigs, mice, and rats at protein equivalents of 0.98 to 78 microg/ml blood and agitated gently at 37 degrees C for 40 sec. Platelet aggregation was measured as a fall in single platelet count. RLP induced aggregation of platelets in man (p<0.005) rabbit (p<0.0005), guinea pig (p<0.002) and mouse (p<0.0001), but no RLP induced platelet aggregation was observed in the rat blood. Scanning electron microscopy revealed that in the presence of RLP, platelets had adhered to and formed aggregates on red cells. The platelet response to RLP was inhibited by apyrase known to scavenge ADP, by 5 microM 2-chloroadenosine, a platelet ADP receptor antagonist and by 3.4 microM cilostazol, a phosphodiesterase type III inhibitor known to raise cyclic AMP level in platelets. It is thought that RLP cause leakage of ADP from red cells which then mediates platelet aggregation.

2-Chloroadenosine↗

Effect of rush immunotherapy on airway inflammation and airway hyperresponsiveness after bronchoprovocation with allergen in asthma.

BACKGROUND: Rush immunotherapy (RIT) has been shown to be effective in allergic asthma. OBJECTIVE: We investigated the mechanisms of RIT on the basis of cytokine production by T-cell lines and airway inflammation and responsiveness. METHODS: Subjects were 8 patients with house dust mite-allergic asthma treated with dust mite extract RIT for 6 months and 6 RIT-untreated control patients. IL-5 production by Dermatophagoides farinae -specific T-cell lines, eosinophil percentages, and eosinophil cationic protein (ECP) in induced sputum and airway responsiveness to allergen and histamine were evaluated before and after treatment. Changes in eosinophil percentages and ECP in induced sputum and responsiveness to histamine 24 hours after allergen inhalation were also studied. RESULTS: After 6 months of RIT, percentages of total eosinophils (43. 0% +/- 6.90% to 16.8% +/- 2.48%; P <.01), percentages of EG2(+ ) eosinophils (32.6% +/- 6.39% to 19.7% +/- 4.68%; P <.01) and ECP (362.7 +/- 125.3 ng/mL to 26.2 +/- 5.15 ng/mL; P <.05) decreased in induced sputum, and IL-5 production by T-cell lines decreased (617 +/- 93.2 pg/mL to 200.0 +/- 34.1 pg/mL; P <.01). RIT decreased both early- and late-phase bronchoconstriction (early phase: 33.2% +/- 3. 46% to 25.4% +/- 1.42%; P <.03; late phase: 16.2% +/- 3.52% to 6.2% +/- 1.96%; P <.03) and suppressed increases in the percentages of total (61.8% +/- 4.89% to 42.0% +/- 4.67%; P <.01) and EG2-positive eosinophils (55.54% +/- 7.21% to 36.5% +/- 6.43%; P <.01) and ECP (685.6 +/- 217.0 ng/mL to 85.4 +/- 23.4 ng/mL; P <.05) in induced sputum after allergen inhalation. RIT also decreased airway responsiveness to dust mite (1:303.7 +/- 123.7 wt/vol to 1:65.0 +/- 13.2 wt/vol; P <.03) and to histamine before (397.1 +/- 206.9 microgra/mL to 1391.3 +/- 283.3 microgram/mL; P <.03) and after allergen inhalation (139.2 +/- 36.5 microgram/mL to 629.1 +/- 196.3 microgram/mL; P <.03). CONCLUSION: RIT decreases airway inflammation and airway hyperresponsiveness before and after bronchial provocation with allergen, possibly by inhibiting both allergen-specific T-cell- and mast cell-dependent pathways. RIT is an effective antiinflammatory treatment in allergic asthma.

Adult↗

A calnaktin-like inhibitor of Na,K-ATPase in rat brain: regulation of alpha 1 and alpha 2 isozymes.

This study was designed to determine if a Ca(2+)-dependent, calnaktin-like inhibitor of Na,K-ATPase existed in rat brain and to compare the inhibition of different Na,K-ATPase isozymes in brain, heart and kidney. Based on the size and characteristics of human red blood cell calnaktin, a soluble protein fraction was obtained from rat brain and subjected to ultrafiltration and gel filtration to restrict the proteins to an appropriate molecular range of 6-50 kDa (6/50 fraction) for a crude calnaktin preparation. The 6/50 fraction was reconstituted with semipurified rat brain Na,K-ATPase and resulted in Ca(2+)-dependent inhibition of Na,K-ATPase activity. A 6/50 fraction was also prepared from rat heart ventricles, and, in its presence, Ca(2+)-dependent inhibition of cardiac Na,K-ATPase activity was observed. With brain preparations, the threshold for inhibition was approximately 100 nM free Ca2+, and inhibition was half maximal at 3-10 microM free Ca2+. Different isozymes of Na,K-ATPase were examined using differential sensitivity to ouabain and differential tissue distribution in brain, heart and kidney. The alpha 1 activity was inhibited in all three tissues. The alpha 2 activity of heart and the alpha 2 and/or alpha 3 activity of brain were also inhibited by the brain 6/50 fraction. In synaptosomal preparations from rat forebrain, resting intracellular (intrasynaptosomal) free Ca2+ was close to the threshold for calnaktin-like inhibition. The results are consistent with the presence of a calnaktin-like inhibitor of Na,K-ATPase in rat brain and indicate that calnaktin could be a widespread regulator of the alpha 1 isozyme. In addition, this study provides the first evidence that calnaktin also inhibits the alpha 2 activity of heart and the alpha 2 and/or alpha 3 isozymes of brain.

Animals↗

A novel method for determination of alpha1,6fucosyltransferase activity using a reducing oligosaccharide from egg yolk as a specific acceptor.

A new method for determination of alpha1,6fucosyltransferase activity has been described. Recently, the disialyl-biantennary undecasaccharide was prepared in high yield from egg yolk [(1996), Carbohydr Lett 2: 137-42]. By treatment of this oligosaccharide with neuraminidase and beta-galactosidase, we readily obtained an asialo-agalacto-biantennary heptasaccharide (GlcNAcbeta 1,2Manalpha1,6[GlcNAcbeta1,2Manalpha1,3]Manbeta1 ,4GlcNAcbeta1,4GlcNAc). Using this asialo-agalacto-oligosaccharide as an acceptor, fucosyltransferases from human plasma and extracts of various human hepatoma cell lines were assayed in the presence of GDP-[3H]fucose. The reaction mixture was applied to a column of GlcNAc-binding, Psathyrella velutina lectin coupled gel. All the fucosylated acceptor were bound to the column which was eluted with 50 mM GlcNAc. Structural analyses revealed that only the innermost GlcNAc residue of the acceptor was fucosylated through an alpha1,6-linkage, and the oligosaccharide prepared could be used as a specific acceptor for alpha1,6fucosyltransferase. The present method was used to screen plasma alpha1,6fucosyltransferase in several patient groups, and significantly elevated activities were found in samples from patients with liver diseases, including chronic hepatitis, liver cirrhosis, and hepatocellular carcinoma.

Acetylglucosamine↗

Downregulation of Fas ligand by shedding.

Apoptosis-inducing Fas ligand (FasL) is a type II membrane protein, predominantly expressed in the activated T cells. FasL is cleaved by a putative metalloproteinase to produce a soluble form. Here, we blocked the shedding of human FasL by deleting its cleavage site. Although human Jurkat cells and mouse primary hepatocytes that express a low level of Fas were resistant to the soluble form of FasL, they were efficiently killed by membrane-bound FasL. Furthermore, soluble FasL inhibited cytotoxicity of the membrane-bound FasL. These results indicate that the membrane-bound form of FasL is the functional form and suggest that shedding of FasL is to prevent the killing of the healthy bystander cells by cytotoxic T cells.

Animals↗

Antisense sequences of the nbl gene induce apoptosis in the human promyelocytic leukemia cell line HL-60.

Apoptosis is induced by the transcriptional inhibitor actinomycin D (Act D) in various cell types, particularly many leukemic cell lines such as HL-60. A common feature of these cell lines is their high constitutive expression level of the nbl gene, which was originally isolated by virtue of its abundance in a Namalwa Burkitt lymphoma cDNA library. In contrast, cell lines which constitutively express nbl at low levels appear not to undergo typical apoptotic death in response to Act D. Apoptotic induction by Act D in cells which normally express nbl at high levels was found in this study to be closely associated with a decline in nbl mRNA levels, raising the possibility that apoptosis could be induced by lowering nbl expression levels in such cells. Transient expression of nbl antisense sequences in HL-60 cells decreased cell viability, and induced typical apoptotic morphology such as cell shrinkage, chromatin condensation and nuclear fragmentation. Incubation with nbl antisense oligomers also induced similar features in HL-60 cells and in another high nb-expressing cell line, Jurkat, but had little effect in HepG2 cells which constitutively express nbl at low levels. These findings suggest that lowering constitutively high levels of nbl expression can induce apoptosis.

Antineoplastic Agents, Hormonal↗

Suppression of invasive properties of colon cancer cells by a metastasis suppressor KAI1 gene.

KAI1 is a potential metastatic suppressor gene for prostate cancer. We found by Northern blot analysis that six of ten (60%) gastric and colon cancer cell lines exhibited undetectable or very low expression level of KAI1 mRNA. The effects of KAI1 on the adhesion, motility and invasiveness of colon cancer cells was therefore investigated by using two kinds of stable transfectants, i.e., antisense transfectants of BM314 cells whose KAI1 mRNA expression was suppressed by transfer of antisense KAI1 cDNA and sense transfectants of DLD-1 cells with the enhanced KAI1 mRNA by sense cDNA transfer. The following results were obtained: (1) KAI1 gene expression had no significant effect on in vitro cell growth rate of colon cancer BM314 and DLD-1 cells; (2) Cell aggregation assay showed that KAI1 enhanced the Ca++-independent aggregatability of those colon cancer cells; (3) It was revealed by cell motility and invasion assays that KAI1 suppressed both the motility and in vitro invasiveness of those cells and (4) Furthermore, both the binding to fibronectin and the migration on fibronectin-coated plates of those cells were inhibited by KAI1 expression. These suggest that reduced KAI1 gene expression may contribute to the invasiveness and metastatic ability of colon cancer cells.

Antigens, CD↗

Prolonged cell survival enhances peritoneal dissemination of gastric cancer cells.

Bcl-2 and a Bcl-2-binding protein BAG-1 function in protection from apoptosis induced by a variety of stimuli. Deregulated expression of Bcl-2 leads to inhibition of apoptosis and is correlated with development of various cancers. Here, we provide evidence that prolonged cell survival introduced by overproduction of Bcl-2 or BAG-1 strongly enhances peritoneal dissemination of human gastric cancer MKN74 cells. Gene transfer-mediated overexpression of Bcl-2 or BAG-1 led to prolonged cell survival of MKN74 cells against serum-starved apoptosis and anoikis. When the viable transfectants were inoculated into the intraperitoneal cavity of BALB/c nude mice, the Bcl-2-expressing MKN74 cells and the BAG-1-expressing MKN74 cells exhibited strongly enhanced peritoneal dissemination in BALB/c nude mice and whole disseminated tumor weights were increased by 4-fold and 3.3-fold, respectively, compared with the control transfectants. The enhanced peritoneal dissemination of MKN74-Bcl-2 and MKN74-BAG-1 transfectants correlated well with resistance to cell death induced by serum-starvation and anoikis. However, the overexpression of Bcl-2 or BAG-1 caused no significant difference among the transfectants in cell growth rates, either in vitro or in vivo. Taken together, these studies demonstrate that resistance to apoptosis is a crucial factor for development of peritoneal dissemination of human gastric cancer cells.

Adenocarcinoma↗

Expression of chemokines and induction of rapid cell death in human blood neutrophils by Mycobacterium tuberculosis.

To elucidate the role of neutrophils in the early inflammatory response to mycobacterial infection, expression of chemokines interleukin (IL)-8 and macrophage inflammatory protein-1alpha (MIP-1alpha) was examined in human blood neutrophils in response to the lipopolysaccharide (LPS) of Escherichia coli, which induces acute inflammation, or to Mycobacterium tuberculosis or purified protein derivative (PPD), which induce chronic mycobacterial inflammation. Neutrophils stimulated with LPS, M. tuberculosis, or PPD expressed both IL-8 and MIP-1alpha. Expression of IL-8 and MIP-1alpha was lower after stimulation with M. tuberculosis or PPD than after stimulation with LPS, but the kinetics of expression did not differ significantly. In contrast, both M. tuberculosis and PPD with tumor necrosis factor-alpha induced neutrophils to undergo rapid cell death, which might remove neutrophils and activate macrophages at sites of mycobacterial inflammation. The findings suggest that neutrophils play important roles in the host defense against mycobacterial infection.

Apoptosis↗

Reduced invasive and metastatic potentials of KAI1-transfected melanoma cells.

KAI1 is a metastasis suppressor gene for human prostate cancer. To reveal the effect of KAI1 on the in vivo metastasis of tumors other than prostatic cancer, we transfected a human KAI1 cDNA into highly metastatic B16-BL6 murine melanoma cells and established stable transfectant clones with different expression levels of KAI1 message. The following results were obtained with the use of those transfectants. (1) Cell aggregation assay revealed a significantly enhanced Ca(2+)-independent aggregation of B16-BL6 cells by KAI1 cDNA transfection compared with mock transfectants (P < 0.01). (2) The in vivo phagokinetic activity and invasive ability of KAI1 transfectants were clearly decreased as compared with those of mock transfectants (P < 0.01). There was no significant effect of KAI1 expression on the in vitro or in vivo proliferation of B16-BL6 cells. (3) Lung colony formation of intravenously injected KAI1 transfectants in nude mice was significantly reduced as compared with mock transfectants or parental B16-BL6 cells (P < 0.01). These data suggest that KAI1 expression gives rise to the suppression of invasive and metastatic potentials of B16-BL6 cells.

Animals↗

Novel point mutations and allele loss at the RET locus in sporadic medullary thyroid carcinomas.

Germline mutations in the RET proto-oncogene have been shown to be the underlying cause of multiple endocrine neoplasia type 2 (MEN 2A and 2B) and familial medullary thyroid carcinoma (FMTC). Some cases of sporadic medullary thyroid carcinoma (sporadic MTC) are reported to have specific codon 918, 883 and 768 mutations of the RET gene in tumor tissues. We examined RET gene mutations in 40 Japanese cases who had previously undergone surgery for sporadic MTC. DNA extracted from formalin-fixed tumor tissues and corresponding normal thyroid tissues or peripheral blood leukocytes was analyzed for mutations of exon 10, 11, 13, 14 and 16 of the RET gene by DNA sequencing and by mutation-specific restriction enzyme analysis. Germline RET point mutations were found in six of 40 cases (15%), cysteine residues at codon 618 in two, codon 634 in three and valine residue at codon 804 in one, and were newly identified as heritable MTC. Of the remaining 34 sporadic MTC cases, four (12%) had tumor-specific RET point mutations. Two were found in exon 16; one case showed an ATG to ACG (Met to Thr) mutation at codon 918, and the other showed two point mutations, ATG to ACG (Met to Thr) at codon 918 and GCA to GTA (Ala to Val) at codon 919 with loss of the wild-type allele, suggesting that both alleles at the RET locus were altered. The other two were found in exon 13; one case showed a CCG to TCG (Pro to Ser) mutation at codon 766 and the other showed a silent mutation, GTC to GTT (Val) at codon 778 with loss of the wild-type allele. There was no association of sporadic mutations with recurrence or prognosis in patients with sporadic MTC. The low rate of somatic RET mutation at codon 918 in our sporadic MTC suggests that as yet unknown factors may be involved. Genetic alterations in both alleles may have an important role in small fraction of sporadic MTCs.

Adult↗

Human tumor growth suppression by apoptosis induced with anti-ErbB-2 chimeric monoclonal antibody.

We established an anti-ErbB-2 mouse-human chimeric monoclonal antibody (MoAb), CH401, which was able to kill cancer cells overexpressing the ErbB-2 protein in vitro. The analysis of the killing mechanism indicated that MoAb CH401 might be the first anti-erbB-2 mouse-human chimeric MoAb which can induce the apoptosis of cancer cells, since morphological changes and DNA fragmentation were recognized in MoAb CH401-treated cells. The ErbB-2 receptor appears to have two opposing functions: acting as a receptor both for a growth factor and for an apoptotic factor. Our results indicate that MoAb CH401 treatment may prove to be very useful for cancer therapy.

Animals↗