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Biomedical subjects

Y Furukawa

Publications and source records attributed to Y Furukawa.

At least 19 recordsLinked to original sources

Denervation of dopaminergic neurons with 6-hydroxydopamine increases nerve growth factor content in rat brain.

Denervation of dopaminergic neurons by intra nigral injection of 6-hydroxydopamine (6-OHDA) increased nerve growth factor (NGF) content in the cortex and hippocampus, both of which are innervated by cholinergic neurons. The increase continued during an observation period of 0.5-28 days after the lesion. The time course of changes in NGF content was quite different from that of cholinergic neuron denervation. The decreased dopamine content produced in the striatum by 6-OHDA injection was not recovered during the observation period. These results suggest that dopaminergic neuron damage may affect NGF synthesis.

Animals

Transforming growth factor-beta inhibits phosphorylation of the retinoblastoma susceptibility gene product in human monocytic leukemia cell line JOSK-I.

Proliferation of the human monocytic leukemia cell line JOSK-I is inhibited by transforming growth factor-beta (TGF-beta). Growth inhibition by TGF-beta was not due to either a toxic effect or to induction of differentiation. TGF-beta induced a cell cycle arrest at late G1 phase and was not found to be inhibitory to JOSK-I cells in S phase or G2/M. This G1 cell cycle arrest was associated with an accumulation of the unphosphorylated form of the retinoblastoma susceptibility gene product (Rb) in good correlation with inhibition of DNA synthesis. In contrast to the effects of TGF-beta, two other agents which induced a G1 arrest of JOSK-I cells had a different effect on Rb. Aphidicolin blocked cells at G1/S but could not reduce Rb phosphorylation as great as that seen with TGF-beta. 12-O-Tetradecanoylphorbol-13-acetate, an inducer of differentiation, did reduce Rb phosphorylation, but not until 72 h, when differentiation had already occurred. The identities of the Rb kinases are unknown, but recent evidence suggests that the cdc2 gene product could participate in Rb phosphorylation. Although cdc2 mRNA and total protein levels were not affected, TGF-beta inhibited the rate of translation and kinase activity of cdc2 in JOSK-I cells. These results suggest that growth inhibition of hematopoietic cells by TGF-beta is linked to suppression of Rb phosphorylation to retain Rb in an unphosphorylated, growth-inhibitory state. The suppression of Rb phosphorylation is suggested to be mediated through inhibition of cdc2 kinase activity by TGF-beta.

Aphidicolin

Frequent clonal proliferation of human T-cell leukemia virus type 1 (HTLV-1)-infected T cells in HTLV-1-associated myelopathy (HAM-TSP).

Human T-cell leukemia virus type 1 (HTLV-1) integrates its proviruses into random sites in host chromosomal DNA. Random integration of the proviruses was observed in asymptomatic HTLV-1 carriers and patients with HTLV-1-associated myelopathy (HAM/TSP). However, clonal integration has been reported in patients with adult T-cell leukemia (ATL), including that in the smoldering, chronic, and acute states, indicating clonal expansion of infected cells. In this study, we found that about 20% of HAM/TSP patients and their seropositive family members harbored subpopulation(s) of clonally proliferated cells infected with HTLV-1, although they still maintained randomly infected cells as a major population. These clones were stable during examination periods of 4 months to 3 years. However, these carriers or HAM/TSP patients did not show any significant indication of ATL. This extremely high frequency of clonal expansion of HTLV-1-infected cells indicates that some clones of HTLV-1-infected cells have a tendency to proliferate more efficiently than the other population without malignant transformation.

Cell Division

Cardiac electrical responses to catecholamines are differentially mediated by beta 2-adrenoceptors in anesthetized dogs.

We investigated the beta 2-adrenoceptor-mediated effects of atrial and ventricular effective refractory period (ERP), SA node pacemaker activity, and AV conductivity induced by sympathetic nerve stimulation or epinephrine infusion in anesthetized dogs. A beta 2-adrenoceptor antagonist, ICI 118,551 up to 100 micrograms/kg, i.v., inhibited the positive chronotropic and dromotropic responses to sympathetic stimulation but did not shorten the atrial or ventricular ERP, ICI 118,551 also attenuated the positive chronotropic and dromotropic responses and the shortening of atrial ERP in response to epinephrine but not the shortening of ventricular ERP. A selective beta 1-adrenoceptor antagonist, atenolol, inhibited each electrical cardiac response to sympathetic stimulation and epinephrine infusion in a similar manner. These results suggest that beta 2-adrenoceptor-mediated electrical cardiac responses to endogenous catecholamines also exist in addition to the predominant beta 1-adrenoceptor-mediated responses, and that the order of the proportion of beta 2-adrenoceptor-mediated cardiac effects was SA node pacemaker activity much greater than AV conductivity = atrial ERP much greater than ventricular ERP in the dog heart.

Anesthesia

Human fibroblast cells synthesize and secrete nerve growth factor in culture.

Using our enzyme immunoassay system developed for recombinant hNGF, we examined the synthesis and secretion of human NGF (hNGF) by human fibroblast (WS-1) cells. The amount of the factor secreted by WS-1 cells increased linearly and a significant amount of NGF was detected in the conditioned medium of WS-1 cultures. WS-1 NGF showed properties identical to those of recombinant human NGF in immunoreactivity and molecular weight. An increase in cell density or the withdrawal of serum from the culture medium caused a drastic decrease in the rate of NGF secretion. These results suggest that WS-1 cells are able to synthesize and secrete hNGF in culture and that the synthesis/secretion is regulated in a growth phase-dependent manner.

Cell Division

The retinoblastoma-susceptibility gene product becomes phosphorylated in multiple stages during cell cycle entry and progression.

The retinoblastoma-susceptibility gene product (RB) undergoes cell cycle-dependent phosphorylation and dephosphorylation. We characterized RB phosphorylation after mitogenic stimulation of primary human T lymphocytes, initially arrested in the G0 state. RB is phosphorylated in at least three steps when T cells are driven into the cell cycle. The first event occurs during mid G1 phase, the second during S phase, and the third in G2/M. Tryptic phosphopeptide mapping indicates that the different phosphorylation events occur, at least in part, on different residues in RB. Given the known relationship of the RB phosphorylation state to function, it is possible that RB regulates growth at multiple points in the cell cycle.

Blotting, Western

Overexpression of an Aplysia shaker K+ channel gene modifies the electrical properties and synaptic efficacy of identified Aplysia neurons.

Although potassium channels play a variety of roles in shaping the electrical properties of neurons, little is known about how these channels are constituted in neurons. To examine the assembly and physiological function of A-type K+ channels in mature differentiated neurons, we have developed a highly efficient gene transfer method for Aplysia neurons that has allowed us to express about 10(7) copies of the cloned Aplysia Shaker (Sh) K+ channel (AK01a) in single identified cells. We find that expression of AK01a phenocopies one of the native transient K+ currents (IAdepol), suggesting that the native channel carrying IAdepol is assembled as a homooligomer of AK01a. Overexpression of AK01a has substantial effect on the action potential, shortening its duration, enhancing its hyperpolarizing afterpotential, and depressing by more than half the amount of transmitter release by the action potential from the terminals. Thus, the AK01a channel not only contributes to the firing properties within a given neuron but also can regulate the signaling between interconnected cells.

Action Potentials

Injury-induced reduction of acidic fibroblast growth factor levels in the distal parts of rat sciatic nerve.

Acidic fibroblast growth factor (aFGF) level in sciatic nerve after lesioning was measured by enzyme immunoassay to determine if aFGF functions as a neurotrophic factor like nerve growth factor (NGF). Whereas the NGF level increased in distal segments, the aFGF level there decreased after transection or crushing and recovered to the original level by 10 weeks after crushing. The amount of aFGF mRNA in the sciatic nerve was extremely low to supply the high level of protein found in the sciatic nerve. Sympathetic ganglia, dorsal root ganglia, and spinal cord, which contain neuronal cell bodies extending their axons into the sciatic nerve, showed a greater or similar level of aFGF as sciatic nerve. These results imply that aFGF is synthesized in neuronal cell bodies and distributed anterogradely into their axons. Difference of injury-induced changes in levels between aFGF and NGF suggests distinct mechanisms of the effects elicited from these factors on regeneration of the sciatic nerve.

Animals

Treatment of myeloid leukemic cells with the phosphatase inhibitor okadaic acid induces cell cycle arrest at either G1/S or G2/M depending on dose.

The phosphatase inhibitor okadaic acid was found to induce cell cycle arrest of human myeloid leukemic cell lines HL-60 and U937 in a concentration- and time-dependent manner. Exposure to low concentrations of okadaic acid (2-8nM) for 24-48 hr caused greater than 70% of cells to arrest at G2/M, with up to 40% of the cells arrested in early mitosis. Cell viability decreased rapidly after 48 hr of treatment, and morphological and DNA structure analysis indicated that this was primarily due to the induction of apoptosis. The cells arrested in mitosis by 8 nM okadaic acid could be highly enriched by density gradient centrifugation and underwent apoptosis when further cultured either with or without okadaic acid, indicating that the effects of okadaic acid were irreversible. In contrast to the effects of low concentrations of okadaic acid, high concentrations (500 nM), inhibited proliferation in less than 3 hr. Remarkably, the majority of cells also entered a mitosis-like state characterized by dissolution of the nuclear membrane and condensation and partial separation of chromosomes. However, these cells had a diploid content of DNA, indicating that the cell cycle arrest occurred at G1/S with premature chromosome condensation (PCC), rather than at G2/M. If cells were first blocked at G1/S with hydroxyurea and then treated with okadaic acid, greater than 90% developed PCC in less than 3 hr without replicating their DNA. Caffeine was not able to induce PCC in these cells, either with or without prior inhibition of DNA synthesis.(ABSTRACT TRUNCATED AT 250 WORDS)

Cell Cycle

Developmental changes in nerve growth factor level in rat serum.

In serum, nerve growth factor (NGF) forms a complex with alpha 2-macroglobulin (alpha 2M), which formation inhibits the immunoreactivity between NGF and its antibodies. For measuring the serum level of NGF, it is thus necessary to liberate NGF from the NGF-alpha 2M complex and prevent reformation of such complex. The pretreatment of rat serum with 1 M guanidine hydrochloride for a few hours and operation of the enzyme immunoassay (EIA) in the presence of guanidine hydrochloride provided a reliable means for determination of the NGF level in serum. By this procedure we followed the serum NGF level in rats developmentally. It increased from prenatal day 2 to postnatal day 5 and decreased slightly at postnatal week 3, thereafter remaining constant throughout adulthood. In pregnant rats, the NGF level in serum increased threefold to fivefold before birth and then decreased rapidly. These data suggest that serum NGF level may reflect the demand for this molecule during establishment of the peripheral nervous system.

Aging

Bone mineral density for patients with bone metastasis of prostate cancer: a preliminary report.

Patients with prostate cancer frequently have osseous metastases which are qualitatively assessed with bone scannings. We have studied the quantitative evaluation of skeletal diseases by measuring bone mineral density (BMD) in the lumbar vertebrae and radius. Forty-four patients with prostate cancer, nine with non-prostatic urogenital cancer and 90 controls were entered in this study. Among the patients with prostate cancer, the values of BMD in the lumbar vertebrae were significantly higher in patients with osseous metastasis than in those without metastasis, whereas the values of BMD in the radius were insignificantly different. Most of the patients with high levels of BMD in the lumbar vertebrae had osseous metastatic disease with no relationship between BMD in the lumbar vertebrae and the radius. The values of BMD in the lumbar vertebrae where hot spot scans were observed were related to X-ray findings. The alterations of BMD levels in the lumbar vertebrae were quantitatively evaluable as responses to androgen deprivation therapy. Measurement of BMD is useful for the accurate diagnosis of osteosclerotic lesions. BMD measurements of the lumbar vertebrae compared with those in the radius were variable in individuals.

Adenocarcinoma

Pharmacological analysis of positive chronotropic and inotropic responses to etilefrine in isolated dog heart preparations.

Positive chronotropic and inotropic responses to etilefrine (alpha-[(ethylamino)methyl]-m-hydroxybenzyl alcohol), an orally active cardiovascular agent, were investigated in isolated dog right atrial and left ventricular preparations. Intravenous administration of etilefrine to a support dog increased heart rate and mean systemic blood pressure, and increased sinus rate and atrial contractile force in the isolated right atrium perfused with blood from the support dog. Etilefrine injected intra-arterially to isolated atria and ventricles induced dose-dependent positive chronotropic and inotropic effects. Etilefrine was about 100 times less potent than isoproterenol. The effects of etilefrine in isolated atria were significantly inhibited by treatment with atenolol, but were not significantly inhibited by ICI 118,551. The effects of etilefrine were partially inhibited by imipramine. These results indicate that etilefrine is a highly selective beta-1 adrenoceptor agonist and suggest a moderate catecholamine-releasing activity by tyramine-like action in the blood-perfused dog heart.

Adrenergic beta-Antagonists

Effect of 4-methylcatechol on sciatic nerve growth factor level and motor nerve conduction velocity in experimental diabetic neuropathic process in rats.

This study examined the effects of 4-methylcatechol (4-MC), a nonamine catechol compound, on the neuropathic process of streptozotocin (STZ)-induced diabetic rats. 4-MC is one of the potent stimulators of nerve growth factor (NGF) synthesis at the cellular level and in cultured sciatic nerve segments of rats. Diabetic rats showed a statistically significant fall in sciatic motor nerve conduction velocity (MNCV) and a significantly reduced NGF content in the sciatic nerve (38.5 +/- 2.8% of control, P less than 0.01) during the experimental period of 4 weeks. 4-MC treatment of the diabetic rats for 4 weeks starting from the STZ injection elevated the NGF content (140% of untreated diabetic rats, P less than 0.05) and prevented the reduction in MNCV, but no effect on high blood glucose levels was seen. These findings suggest that decreased NGF levels in the sciatic nerve of the experimental diabetic rat may be involved in the development of the diabetic neuropathic process and that 4-MC, which can elevate endogenous NGF levels in vivo, may compensate for the inhibitory effect of STZ on the NGF level in progressive diabetic neuropathy.

Animals

Juvenile parkinsonism: ventricular CSF biopterin levels and clinical features.

Total biopterin (T-BP) levels in the ventricular cerebrospinal fluid (CSF) and clinical features of 19 patients with juvenile parkinsonism (JP: Parkinson's disease manifesting below the age of 40) were evaluated and compared with 61 patients with classical Parkinson's disease (classical PD: symptoms developing at the age of 40 or above). The JP patients were divided into two subgroups: JP-I; those with good response to levodopa followed by marked motor fluctuations and dopa-induced dyskinesias (DID), JP-II; those with milder response than JP-I with less fluctuations and DID being more similar to classical PD. Both of the mean ventricular CSF T-BP concentrations in the JP and classical PD patients were significantly lower than that in neurological controls. Moreover, the mean T-BP level in the JP-I was markedly lower than that in the JP-II or classical PD. Total biopterin levels revealed a gaussian distribution in the classical PD. However, a bimodal distribution was noted in the JP, with the lower peak consisting of only JP-I patients. These results seem to indicate that JP-II represents early-onset classical PD, while JP-I represents a distinct subgroup having a different physiopathology from classical PD.

Adult

Significance of CSF total neopterin and biopterin in inflammatory neurological diseases.

Total neopterin (T-N), a by-product in the biopterin biosynthesis and an indicator of activation of the cellular immune system, and total biopterin (T-B) levels in cerebrospinal fluid (CSF), were measured in patients with various inflammatory neurological diseases and Parkinson's disease, and the following results were obtained. (1) In patients with neuro-sarcoidosis, neuro-Behçet's disease and meningitis, CSF T-N levels were markedly elevated in the exacerbation or acute stages of their neurological symptoms and remarkably decreased in the remission or chronic stages. In the neuro-sarcoidosis and neuro-Behçet's disease patients, however, CSF T-B levels showed no substantial change. (2) There was a significant positive correlation between CSF T-N levels and CSF/serum albumin ratios only in the meningitis patients. However, increases of CSF T-N levels were not associated with those of plasma T-N levels. (3) In the Parkinson's disease patients, CSF T-N levels remained normal, although CSF T-B levels significantly decreased. (4) A gradient for the CSF T-N value (lumbar greater than ventricular CSF), being reverse to the CSF T-B value, was observed. These results indicate that the significance of CSF T-N is quite different from CSF T-B, and that CSF T-N appears to be a valuable biochemical marker for evaluating the activity of inflammation within the central nervous system. Its measurement seems useful for therapeutic monitoring, especially of patients showing the chronic exacerbating-remitting course.

Adult

Plasma concentrations of lignocaine after obturator nerve block combined with spinal anaesthesia in patients undergoing transurethral resection procedures.

Bilateral obturator nerve block has become a widely accepted technique to avoid adductor contraction during transurethral resection of prostate or bladder tumours. However, little is known about plasma lignocaine concentrations after the block. We conducted this study to assess a safe dose of lignocaine for injection in obturator nerve block. Bilateral obturator nerve block was performed with the aid of a peripheral nerve stimulator in 12 patients after spinal anaesthesia. In group I (n = 6), patients received 2% lignocaine 10 ml (200 mg) for the block; those in group II (n = 6) received 2% lignocaine 15 ml (300 mg). The block was satisfactory and no single adductor contraction was observed in either group during surgery. The peak plasma concentrations of lignocaine were 2.28 (SD 0.29) micrograms ml-1 and 3.75 (0.79) micrograms ml-1 in groups I and II, respectively. The greatest plasma concentration was 5.07 micrograms ml-1 in a patient of group II. There were no symptoms suggesting systemic toxicity. We conclude that bilateral obturator nerve block may be performed safely and effectively with 2% lignocaine 10 ml with the aid of a peripheral nerve stimulator in patients undergoing transurethral resection procedures with spinal anaesthesia.

Aged