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Biomedical subjects

K Adachi

Publications and source records attributed to K Adachi.

At least 289 records · Page 16Linked to original sources

Changes in epidermal growth factor receptor and the levels of its ligands during menstrual cycle in human endometrium.

We examined menstrual cycle-dependent changes in the expression of human endometrial epidermal growth factor (EGF), transforming growth factor alpha (TGF alpha), and epidermal growth factor receptor (EGFR) and their mRNA using immunoblot analysis, 125I-EGF binding, and competitive reverse transcription and polymerase chain reaction (RT-PCR). We also studied their localization in the endometrial tissue by immunohistochemistry. Endometrial samples were obtained at three stages of menstruation: the early follicular stage, which exhibits low serum estradiol (E2) and progesterone (P) levels; the late follicular stage, which exhibits high E2 and low P levels; and the luteal stage, which exhibits high E2 and P levels. Immunohistochemical examination showed that EGF, TGF alpha, and EGFR were localized to the endometrial epithelium. Immunoblot analysis revealed that endometrial EGF, TGF alpha, and EGFR levels were significantly (p < 0.01) increased at the late follicular and luteal stages compared to the early follicular stage. 125I-EGF-specific binding levels at the late follicular and luteal stages were significantly (p < 0.01) higher than at the early follicular stage, consistent with the results of immunoblot analysis. Competitive RT-PCR revealed that EGF, TGF alpha, and EGFR mRNA levels were significantly (p < 0.01) higher at the late follicular and luteal stages than at the early follicular stage. Changes in EGF, TGF alpha, and EGFR mRNA levels were consistent with changes in protein levels. These findings suggest that synthesis and expression of human endometrial EGF, TGF alpha, and EGFR vary with the stage of the menstrual cycle and that their expression in the human endometrium is associated with the increase in the serum E2 but not with the increase in P levels.

Binding, Competitive↗

23Na NMR spectroscopy of free Na+ in the halotolerant bacterium Brevibacterium sp. and Escherichia coli.

23Na NMR spectroscopy was used to determine free Na+ concentrations in a halotolerant bacterium, Brevibacterium sp., and Escherichia coli. The internal Na+ concentration of both strains depended little on the growth phases and was unchanged after 5 d storage at 2 degrees C. In Brevibacterium sp. the level of intracellular sodium increased gradually at higher extracellular NaCl concentrations in both the presence and absence of yeast extract in the growth medium. E. coli cells accumulated a higher concentration of free Na+ than those of Brevibacterium sp. The change of Na+ concentration in both strains was inverse to that of growth rate. When appropriate amounts of osmoprotectants (proline, glycine betaine, or gamma-aminobutyrate) were added with the NaCl, internal free Na+ levels in Brevibacterium sp. were lowered, but those of E. coli were unchanged. While addition of KCl to medium containing NaCl increased the intracellular level of free Na+, the total sodium concentration in the cells remained unchanged, indicating that sodium that had been bound or attached was made free in the cytosol. In Brevibacterium sp. grown in the presence of 0.5 M NaCl, free and bound sodium concentrations in the cytosol were estimated to be 0.14 and 0.23 mumol (mg protein)-1, respectively. As a result, visibility by 23Na NMR was 38%.

Brevibacterium↗

Limitations of the severe combined immunodeficiency (SCID) mouse model for study of human B-cell responses.

Mice lacking functional T and B lymphocytes offer an in vivo animal model for the study of human immune functions. We have attempted to optimize the reconstitution of severe combined immunodeficiency (SCID) mice with human peripheral blood lymphocytes (PBL) using radiation, anti-asialo GM1 antibody or cyclophosphamide (Cy) treatment of the mice and in vitro stimulation of human PBL with interleukin (IL)-2 prior to their transfer to the mice. Total human IgG and tetanus-toxoid (TT)-specific human IgG responses of the mice were used as parameters of successful reconstitution. Treatment of the mice with anti-asialo GM1 antibody significantly enhanced total human IgG levels, but not TT-specific antibody responses, whereas irradiation or Cy treatment of the mice had no effect on human antibody production. In vitro treatment of human PBL with IL-2 prior to engraftment significantly decreased total human IgG responses of human PBL-grafted SCID mice. The immune responses of individual mice within a group were highly variable, which constitutes a major disadvantage of this model.

Animals↗

Adhalin gene mutations in patients with autosomal recessive childhood onset muscular dystrophy with adhalin deficiency.

Homozygous adhalin gene mutations were found in three patients from two consanguineous families with autosomal recessive childhood onset muscular dystrophy. Muscle biopsies from patients in each family showed complete absence of adhalin. Sequencing of adhalin cDNA prepared from skeletal muscle by reverse transcription PCR demonstrated a cytosine to thymidine substitution at nt 229 in the patient in family 1 and an adenine to guanine substitution at nt 410 and a 15-base insertion between nt 408 and 409 in the two patients in family 2. Sequencing of genomic DNA prepared from peripheral blood leukocytes by PCR confirmed these mutations. The parents in each family were found to be heterozygous for the respective mutations. These adhalin gene mutations are presumed to be responsible for the absence of adhalin in the skeletal muscle. Adhalin deficiency likely causes disruption of the muscle cell membrane, resulting in dystrophic changes in the skeletal muscle similar to dystrophin deficiency in Duchenne muscular dystrophy.

Adult↗

Estrogen induces epidermal growth factor (EGF) receptor and its ligands in human fallopian tube: involvement of EGF but not transforming growth factor-alpha in estrogen-induced tubal cell growth in vitro.

We studied the estrogen-dependent expression of epidermal growth factor (EGF), transforming growth factor (TGF) alpha, and EGF receptor gene transcripts in human fallopian tubes in vivo and in vitro. Competitive polymerase chain reaction (PCR) was performed on the fallopian tube RNA samples from the postmenopausal women with or without estrogen replacement. Amounts of EGF, TGF alpha, and EGF receptors gene transcripts in the estrogen-treated group (n = 3) were significantly (P < 0.01) more than those in the untreated group (n = 3). Competitive PCR also showed that EGF, TGF alpha, and EGF receptor gene transcripts level in tubal cells were increased by estrogen in vitro: messenger RNA levels of these factors were significantly (P < 0.01, n = 3) increased in cells incubated with 10(-8) M estrogen compared with those in cells without estrogen treatment. We studied whether EGF and/or TGF alpha is involved in the estrogen-induced tubal cell growth in vitro. Estrogen enhanced the [3H]-thymidine incorporation into the cell in dose- and time-dependent manners in culture: estrogen treatment for more than 12 h significantly (P < 0.05) enhanced the [3H]-thymidine incorporation into the cell at 10(-8) M. The estrogen-induced cell growth was observed in association with the increase in EGF, TGF alpha, and EGF receptor messenger RNA levels by estrogen. If the EGF and/or TGF alpha is involved in the cell growth, then the estrogen-induced cell growth should be suppressed by blocking the action of EGF and/or TGF alpha. Therefore, we examined the effects of neutralizing monoclonal antibodies against EGF, TGF alpha, and EGF receptors. Anti-EGF antibody significantly reduced the estrogen-induced increase in [3H]-thymidine incorporation, whereas anti-TGF alpha antibody failed to show the effect. Anti-EGF receptor antibody showed a significant suppressive effect on the estrogen-induced increase in [3H]-thymidine incorporation. Moreover, the growth inhibitory effect by 1 microgram/ml anti-EGF was restored by 10(-8) M EGF but not by TGF alpha even at 10(-6) M. All these data suggest that estrogen induces EGF and TGF alpha/EGF receptors in the human fallopian tube and that EGF but not TGF alpha may be involved in the estrogen-induced human tubal cell growth in vitro.

Antibodies, Monoclonal↗

Expression of messenger ribonucleic acid for epidermal growth factor (EGF), transforming growth factor-alpha (TGF alpha), and EGF receptor in human amnion cells: possible role of TGF alpha in prostaglandin E2 synthesis and cell proliferation.

The amnion plays important structural and functional roles in the maintenance of pregnancy and the initiation of parturition. Recently, we reported that epidermal growth factor (EGF) activates prostaglandin (PG) production and cell growth in cultured amnion cells. In this study, we showed the expression of EGF, transforming growth factor-alpha (TGF alpha), and EGF receptor protein and messenger ribonucleic acid in amnion cells, using an immunofluorescence technique and the reverse transcription-polymerase chain reaction. Next, we studied the effect of TGF alpha on intracellular Ca2+ mobilization and PGE2 production in amnion cells. TGF alpha induced an increase in the intracellular Ca2+ concentration in amnion cells, and this increase was significantly reduced when the cells were incubated with cobalt chloride (a Ca2+ channel blocker; 2.5 mmol/L) or EGTA (a Ca2+ chelator; 5 mmol/L). TGF alpha enhanced PGE2 production, and this increase was significantly inhibited when the cells were incubated with indomethacin (a cyclooxygenase inhibitor; 10 mumol/L), cobalt chloride (2.5 mmol/L), or EGTA (5 mmol/L). We also investigated the effect of TGF alpha on the growth of cultured human amnion cells by using flow cytometric analysis of the DNA content. TGF alpha induced DNA synthesis by human amnion cells, and indomethacin inhibited the TGF alpha-induced DNA synthesis. These results suggest that 1) EGF/TGF alpha are expressed and produced in amnion cells; 2) these endogenous factors may regulate the proliferation of amnion cells in an autocrine or paracrine manner; and 3) these growth factors may exert their effects via intracellular Ca2+ mobilization and PGE2 production.

Amnion↗

Oxytocin-induced natriuresis mediated by the renal kallikrein-kinin system in anesthetized male rats.

Intravenous infusion of oxytocin (OT) (10-100 nmol/kg/30 min) to 8-week-old anesthetized male rats resulted in a dose-dependent increase in urine volume, which showed a peak value 30-45 min after the start of OT-infusion. Urinary excretions of sodium, chloride and potassium were also increased by OT, showing peak values at 30-45 min, without any increase in the creatinine level. The natriuresis by OT was accompanied by increased excretion of urinary active kallikrein, which showed a peak value 15 min after the start of OT-infusion. The urinary kinin level was also increased. Intravenous infusion of a kallikrein inhibitor, aprotinin (15 mg/kg/90 min), when started 30 min before the OT-infusion, significantly inhibited the OT-induced increase in urine volume and urinary excretion of sodium, chloride and potassium. Intravenous infusion of a bradykinin B2 antagonist, Hoe 140 (D-Arg[Hyp3,Thi5,D-Tic7,Oic8]BK, 4.5 mg/kg/90 min), when started 30 min before the OT-infusion, significantly inhibited the OT-induced increases in urine volume and urinary excretion of sodium and chloride, but not that of potassium. These results indicate that the OT-infusion induces natriuresis in male rats, and more than half of the natriuresis is mediated by a concomitant increase in excretion of urinary active kallikrein and the kinin generated.

Anesthesia↗

Increase in vascular sensitivity to angiotensin II and norepinephrine after four-day infusion of 0.3 M sodium chloride in conscious kininogen-deficient brown Norway Katholiek rats.

Kininogen-deficient Brown Norway Katholiek (deficient BN-Ka) rats excreted a small amount of kinin in their urine, compared with normal BN Kitasato (normal BN-Ki) rats from the same strain. Intraarterial (i.a.) infusion (6 ml/kg/hr) of conscious deficient BN-Ka rats with 0.15 M NaCl did not increase mean arterial blood pressure (MBP) [from 103 +/- 2 (pre) to 93 +/- 6 mmHg (day 4)] and did not cause sodium accumulation in the serum, cerebrospinal fluid or erythrocytes, but 0.3 M NaCl infusion significantly increased MBP from 104 +/- 3 (pre) to 130 +/- 5 mmHg (day 4) with increased sodium levels in the serum, cerebrospinal fluid and erythrocytes. Infusion of 0.3 M NaCl in normal BN-Ki rats neither increased MBP nor accumulated sodium. The dose-response curve of the increase in MBP for angiotensin II injection (i.a., bolus, 1-1000 pmol/kg) in 0.3 M NaCl-infused deficient BN-Ka rats shifted to the left by a factor of 10 compared with that in 0.15 M NaCl-infused deficient BN-Ka rats, and that for norepinephrine injection shifted to the left by a factor of 30. Normal BN-Ki rats did not show any enhancement in MBP elevation with 0.3 M NaCl. These results suggest that the sodium accumulation attributable to a lack of kinin generation may be related to increased vascular reactivity to angiotensin II and norepinephrine.

Angiotensin II↗

Immunologic characteristics of anti-erythrocyte membrane antibody produced in dogs during Babesia gibsoni infection.

Serum anti-erythrocyte membrane (RBCm) antibodies and anti-RBCm antibodies eluted from erythrocytes of Babesia gibsoni-infected dogs were examined for immunologic characteristics by immunoblotting analysis. Serum anti-RBCm antibodies of the dogs before and after the experimental inoculation with parasitized erythrocytes reacted with cytoskeletal (bands 1, 2, 2.1, 4.1, 4.2 and 5) and transmembrane structural (band 3) proteins of either self or non-self RBCm. Anti-RBCm antibodies eluted from erythrocytes of B. gibsoni-infected dogs reacted with bands 3 and 4.2 of self and non-self RBCm.

Animals↗

Involvement of epidermal growth factor in inducing adiposity of age female mice.

Aged mice exhibit an increase in their body weight (BW), which is associated with fat deposit increase. Epidermal growth factor (EGF) concentration in the submandibular gland also increases with aging. We examined the effects of elevated EGF on the adiposity of aged female mice. Studies were started in two groups of animals consisting of sham-operated (n = 10) and sialoadenectomized (n = 10, Sx; surgical removal of the submandibular glands) mice at 8 weeks of age. Body weight gain and food intake were measured throughout 78 weeks of age in these two groups. Body weight was significantly less in the Sx group throughout 78 weeks, while food intake was not changed by Sx after 12 weeks of age. To examine further if EGF plays a role in the induction of adiposity in aged female mice, sham-operated animals were given 100 microliters anti-EGF rabbit antiserum (anti-EGF group, n = 5) or normal rabbit serum (control group, n = 5) every 3 days, and Sx animals were given 5 micrograms/day EGF (Sx+EGF group, n = 5) or saline (Sx group, n = 5) from 78 weeks of age for 3 weeks. At 81 weeks of age, all animals of these four groups were killed, and carcass fat deposition and fat cell sizes were measured. Although the relative weights (weight ratio to BW) of the liver and kidney were not changed by Sx and anti-EGF treatment, the relative weights of mesenteric and subcutaneous fat tissues and adipocyte weights were significantly decreased in Sx and anti-EGF groups compared with the control group. Moreover, both acyl-CoA synthetase (ACS) and lipoprotein lipase (LPL) mRNA levels were significantly decreased by Sx or anti-EGF administration in mesenteric and subcutaneous fat tissues. On the other hand, EGF administration to Sx animals had no effect on BW, fat tissues and adipocyte weights, and ACS and LPL mRNA levels. The results, however, were consistent with the fact that adipose tissue EGF receptors were down regulated in Sx mice. These findings suggest that EGF may play a role in the induction of adiposity in aged female mice.

Adipose Tissue↗

Inhibition of mouse placental lactogen-II release from placental cells by interleukin-1 after mid-pregnancy.

The effects of interleukin (IL)-1 and granulocyte-macrophage colony stimulating factor (GM-CSF), which are present in the mouse placenta, on the secretion of mouse placental lactogen (mPL)-1 and mPL-II by placental cells were tested in vitro. IL-1 alpha and IL-1 beta, 2.5 nmol/l each, significantly inhibited mPL-II secretion by cells from days 9 and 12 of pregnancy, but did not affect mPL-II secretion by cells from day 7 of pregnancy or mPL-I secretion by cells from days 7, 9 or 12 of pregnancy. GM-CSF had no effect on mPL-I and mPL-II secretion by cells from days 7, 9 or 12 of pregnancy. The inhibitory effects of IL-1 alpha and IL-1 beta on mPL-II secretion were completely eliminated by the addition of antibodies to IL-1 alpha and IL-1 beta respectively. Western blot analysis for mPL-II indicated that IL-1 alpha significantly reduced the intensity of the mPL-II band. Steady-state levels of mPL-II mRNA, assessed by Northern blot analysis, were reduced by incubation of placental cells from day 12 of pregnancy with 2.5 nmol/l IL-1 alpha for 5 days. Co-incubation of 0.25 pmol/l IL-1 alpha, 25 pmol/l IL-6, and 25 pmol/l tumor necrosis factor-alpha, each of which did not significantly inhibit mPL-II secretion by itself, together inhibited mPL-II secretion. These results suggest that IL-1, but not GM-CSF, is a potent inhibitor of mPL-II secretion after mid-pregnancy, and that the combined action of cytokines can inhibit mPL-II secretion.

Animals↗

Menstrual cycle specific expression of epidermal growth factor receptors in human fallopian tube epithelium.

We studied the expression of epidermal growth factor (EGF) receptor protein and messenger RNA (mRNA) in human fallopian tubes at three stages of the menstrual cycle: early follicular (n = 3), late follicular (n = 3) and luteal (n = 3). Immunohistochemical studies in the ampullary portion of the tubes showed that specific staining was localized to the epithelium and the vascular endothelium. Staining of the epithelium was intense at the late follicular and luteal stages, while it was weak at the early follicular stage. 125I-EGF binding study in the tubal plasma membranes revealed a class of high-affinity EGF receptors. Although dissociation constants were similar between the stages, numbers of binding sites at the late follicular and luteal stages were significantly (P < 0.01) greater than those at the early follicular stage. Western blotting showed that tubal plasma membranes contain M(r) 170,000 EGF receptor protein. The amounts were significantly (P < 0.01, n = 3) greater at the late follicular and luteal stages than those at the early follicular stage. Reverse transcription and polymerase chain reaction (RT-PCR) revealed that EGF receptor mRNA was expressed in all the 9 RNA samples (n = 3 for each stage) from the tubal ampullary portion. The amounts were significantly (P < 0.01, n = 3) greater at the late follicular and luteal stages than those at the early follicular stage (by a competitive PCR). Increase in the amounts of EGF receptor protein and mRNA occurred in association with an increase in serum oestradiol but not progesterone levels. Next we examined whether EGF receptor and its ligands (EGF and transforming growth factor alpha) are directly induced by oestrogen. We found that specific staining for EGF receptor and its ligands in the tubal epithelium was detected (by immunohistochemistry) in postmenopausal women with oestrogen replacement (n = 3), but not in subjects without oestrogen replacement (n = 3). These results suggested that EGF receptors in the human tubal epithelium are expressed in relation to specific stages of the menstrual cycle and that the expression may be induced by oestrogen.

Base Sequence↗

Mitochondrial encephalomyopathy with A to G transition of mitochondrial transfer RNA(Leu(UUR)) 3,243 presenting hypertrophic cardiomyopathy.

In a 24-year-old woman with mitochondrial encephalomyopathy presenting hypertrophic cardiomyopathy, microscopical examination of myocardial biopsy specimen disclosed severe vacuolar degeneration of myocardium and aggregates of enlarged mitochondria with proliferated cristae. Limb muscle biopsy specimen showed "ragged-red fibers" light microscopically and enlarged abnormal mitochondria with markedly increased cristae ultrastructurally. Mitochondrial DNA analysis by polymerase chain reaction (PCR) revealed an A-to-G transition in the mitochondrial transfer RNA(Leu)(UUR) gene at nucleotide position 3,243 which is reported to be associated with mitochondrial myopathy, encephalopathy, lactic acidosis, and stroke-like episodes (MELAS). However, the clinical features of this case, presenting mainly cardiac abnormalities, were not consistent with the typical MELAS.

Adult↗

Herbimycin A inhibits phorbol ester-induced morphologic changes, adhesion, and megakaryocytic differentiation of the leukemia cell line, MEG-01.

12-O-Tetradecanoylphorbol 13-acetate (TPA) induces rapid changes in the morphology of the human megakaryoblastic leukemia cell line, MEG-01, as well as changes in adhesion and megakaryocytic differentiation. To investigate the signal transduction pathway of these three phenomena, we studied the effect of herbimycin A, an inhibitor of tyrosine kinase (TK) and the effects of calphostin C, a specific inhibitor protein kinase C (PKC) on TPA treated MEG-01 cells. Both herbimycin A and calphostin C inhibited all three TPA-induced phenomena, suggesting that both pathways are required for these phenomena. Herbimycin A but not calphostin C blocked the tyrosine phosphorylation of cellular proteins. Immunohistochemical staining of PKC using an anti-PKC monoclonal antibody showed that herbimycin A did not interfere with the translocation and subsequent down regulation of PKC induced by TPA, suggesting that the TPA-induced effect on PKC (translocation and probably its activation) is not dependent on TK. Induction of c-fos and c-jun expression by TPA was inhibited by both herbimycin A and calphostin C, suggesting that both PKC and TK pathways are necessary for the induction of the TPA-induced transcription factor AP1, which is a known TPA-inducible early immediate gene product. Taken together, our results show that the tyrosine kinase signal transduction system as well as the PKC pathway is indispensable for the TPA-induced phenomena of morphologic change, cell attachment, early immediate gene expression, and lineage-specific phenotypic expression in the MEG-01 cell line.

Benzoquinones↗

[An unfolding model for confusion matrices].

An unfolding model is proposed for analyzing the confusion matrices obtained from stimulus identification experiments. In the model, row and column stimuli in the matrices are represented as two sets of points in a multidimensional space, and confusion probabilities are expressed as a function of the distances between the row and the column points. The coordinates of the points are estimated by the maximum likelihood method under a constraint. The proposed model enables us to explore interesting aspects of the perceptual representations of the stimuli, as illustrated by two examples. Some advantages of the proposed model are discussed in regard to its psychological implication.

Choice Behavior↗

Distribution of thyrotropin releasing hormone receptor in rats: an immunohistochemical study.

Thyrotropin releasing hormone (TRH) receptor was identified immunohistochemically in the rat tissues using anti-peptide antiserum. Anti-TRH receptor antiserum was raised in New Zealand white rabbits immunized with a conjugate of synthetic TRH-receptor peptide (15-28) to bovine serum albumin. Immunohistochemical analysis was performed by the avidin-biotin complex method. TRH-receptor immunoreactivity was visualized in the central nervous system and anterior pituitary thus supporting previous investigations of TRH receptor distribution using in vitro autoradiographic ligand binding. Significant stain was detected in neural perikarya, axons and dendrites as well as in many cells of the retina, adrenal medulla, stomach mucosa, Auerbach's nervous branch and Mysner's nervous branch of the stomach, small intestine and colon. When using antiserum preincubated with synthetic TRH-receptor peptide (15-28) or rat anterior pituitary homogenate which contains TRH-receptor peptide, no significant stain of the anterior pituitary cells or neurons in the hypothalamus was detected. These findings suggest that TRH-receptor is widely distributed and that this method is valuable in studying the distribution of TRH-receptor in rats.

Journal Article↗

Distribution of somatostatin receptor type 1 in the rat. An immunohistochemical study.

Somatostatin receptor type 1 (SSTR-1) was identified immunohistochemically in the rat tissues using anti-peptide antiserum. Anti-somatostatin receptor antiserum was raised in New Zealand white rabbits immunized with a conjugate of synthetic SSTR-1 peptide (41-52) with bovine serum albumin. Immunohistochemical analysis was performed by the ABC method. SSTR-1 immunoreactivity was visualized in the central nervous system, anterior pituitary, mucosa of stomach and duodenum, Auerbach's nervous branch and Mysner's nervous branch of gastrointestinal tract and pancreas. Significant staining was detected in neural perikarya, axon and dendrite. When using antiserum preincubated with synthetic SSTR-1 peptide (41-52) or rat anterior pituitary homogenated which contains SSTR-1, no significantly stained anterior pituitary cells or neurons in the hypothalamus were detected. These findings suggest that SSTR-1 is widely distributed and that this method is valuable in studying the distribution of somatostatin receptor in rats.

Journal Article↗

Establishment and characterization of an immature human megakaryoblastic cell line, MEG-A2.

We have established a novel human megakaryoblastic cell line, designated as MEG-A2, from a patient with megakaryoblastic crisis of Philadelphia (Ph) chromosome positive chronic myelogenous leukemia. MEG-A2 cells showed positive phenotypes for periodic acid Schiff and alpha-naphthylbutyrate esterase reactions, but were negative for myeloperoxidase and naphthol ASD chloroacetate esterase reactions. Flow cytometric analyses of cell surface markers revealed that MEG-A2 cells had a low level of GP IIb/IIIa expression as well as apparent expressions of CD4, CD7, CD13, CD33 and CD34 antigens, but no expression of GP Ib nor glycophorin A. Stimulation with phorbol 12-myristate 13-acetate (PMA) dramatically increased the expression of megakaryocyte-related markers such as HPL-3, J15, Pit-1, Y2/51 and AN51 in MEG-A2 cells. The PMA-stimulation also induced expression of platelet peroxidase (PPO) in MEG-A2 cells on electromicroscopic observation. Proliferative responses to granulocyte-macrophage colony-stimulating factor (GM-CSF), interleukin-3 (IL-3) or erythropoietin were observed, and the expression of GP IIb/IIIa was increased by stimulation with GM-CSF, IL-3, erythropoietin and interleukin-6 (IL-6). Protein S mRNA expression was seen in cultured cells on Northern blot analysis. Expression of platelet factor 4 mRNA was induced in PMA-stimulated cells, and a marked accumulation of protein was observed in the culture medium. In conclusion, a new cell line, MEG-A2, belongs to the relatively immature megakaryocytic lineage and has markedly increased megakaryocytic characteristics with PMA stimulation.

Adult↗