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Biomedical subjects

G Chen

Publications and source records attributed to G Chen.

At least 19 recordsLinked to original sources

Pharmacological distinction of the hyperpolarization response to caffeine and acetylcholine in guinea-pig coronary endothelial cells.

Membrane potential changes in endothelial cells in response to caffeine and acetylcholine (ACh) were recorded with microelectrodes from an intact endothelium preparation from the guinea-pig coronary artery. Caffeine induced a transient hyperpolarization of the membrane in a concentration-dependent manner. The hyperpolarization was inhibited by removal of Ca2+ from the bathing medium and by ryanodine (20 microM). It was not affected by 3,4,5-trimethoxybenzoic acid 8-(diethylamino) octyl ester hydrochloride (TMB-8, 10 microM) or neomycin (5 mM). ACh induced a sustained hyperpolarization in endothelial cells. At concentrations that caused no significant effects on the caffeine response, TMB-8 and neomycin inhibited hyperpolarization induced by ACh. Ryanodine did not inhibit the response to ACh. The ACh-induced hyperpolarization was also inhibited by caffeine in a concentration-dependent manner. Results from the present study suggest that hyperpolarizations induced by caffeine and ACh are mediated by separate Ca2+ pools.

Acetylcholine

Idazoxan down-regulates beta-adrenoceptors on C6 glioma cells in vitro.

Incubation of the C6 cells with 10 microM idazoxan (an alpha 2-adrenoceptor antagonist and putative antidepressant) for 5 days in vitro resulted in a 23% reduction of beta-adrenoceptor number and a 37% decrease in isoproterenol-induced cyclic AMP accumulation. In contrast, post-receptor stimulated cyclic AMP accumulation (by the use of forskolin or cholera toxin) was unaffected. The desensitization of the beta-adrenoceptor was accompanied by an increase in the KL/KH ratio for this receptor. Chronic in vitro treatment of C6 glioma cells with idazoxan did not significantly affect cholera or pertussis toxin catalyzed ribosylation of Gs and Gi/Go in these cells. Similarly, idazoxan did not alter either the basal levels of protein kinase C (PKC) alpha, or its cytoplasm to membrane translocation. These results suggest that idazoxan may have direct postsynaptic effects, the site of which may be at the level of receptor/G protein interaction.

Adrenergic alpha-Antagonists

Multiple effects of 3-aminobenzamide on DNA damage induced by cisplatin (DDP) in DDP-sensitive and -resistant rat ovarian tumor cell lines.

To investigate the mechanisms by which 3-aminobenzamide (3AB) reverses cisplatin (DDP) resistance in a rat ovarian tumor cell line, the effects of 3AB on DDP-induced DNA damage and repair were kinetically determined over a post-exposure period of 48 h. DNA single strand breaks (SSB) occurred maximally 12 h and 24 h following DDP exposure in DDP-resistant (O-342/DDP) and -sensitive (O-342) rat ovarian tumor cells, respectively. 3AB, present during and after the exposure, significantly increased SSB formation by DDP at 24 h (P < 0.02) and 48 h (P < 0.01) in O-342/DDP cells. To a lesser extent (P > 0.05), a similar tendency was also observed in O-342 cells. Formation of DNA interstrand cross-links (ISCL) by DDP reached a maximum by 12 h in either O-342 or O-342/DDP cells, but in the resistant cells they were both much lower and more rapidly removed. 3AB decreased ISCL in the sensitive cells at 12 h and thereafter with a maximum at 24 h (P < 0.05), while in the resistant cells the same treatment decreased ISCL at 12 h, had no effect at 24 h and increased ISCL at 48 h following DDP treatment. Therefore, it is concluded that 3AB has multiple effects on DNA damage and repair induced by DDP in both cell lines and increase of DNA-ISCL by 3AB at 48 h after the exposure in O-342/DDP cells might be related to its chemosensitizing effect in this line.

Animals

Inhibitory actions of MCI-154 on guinea-pig femoral artery and vein preparations.

In guinea-pig femoral artery and vein preparations, the effects of MCI-154 were investigated on: (1) membrane depolarizations produced by 29.6 mM [K+]0 (high-K) solution and noradrenaline (NA) and on e.j.p.s produced by perivascular nerve stimulation; (2) contractions produced by NA, high-K and perivascular nerve stimulation; and, (3) endothelium-dependent relaxation produced by acetylcholine (ACh). In both femoral artery and vein preparations, MCI-154 (up to 10(-5) M) did not change the resting membrane potential or the depolarization produced by high-K. In preparations of femoral vein but not femoral artery, MCI-154 reduced NA-induced depolarization. The contractions produced by NA and high-K were reduced by MCI-154, the former more than the latter. The actions of MCI-154 were more pronounced in the vein than in the artery. The excitatory junction potential and contractions produced by perivascular nerve stimulation in guinea-pig saphenous artery preparations were inhibited by MCI-154 (greater than 10(-7) M). ACh-induced relaxations of guinea-pig femoral artery preparations precontracted with high-K were not affected by MCI-154. It was concluded that MCI-154 is an antagonist at postjunctional alpha 2-adrenoceptors, and, at high concentrations, inhibits voltage-dependent Ca2+ influx in vascular smooth muscle cells. These actions may contribute to the hypotensive effect of this drug.

Animals

Mutations in the bovine leukemia virus Tax protein can abrogate the long terminal repeat-directed transactivating activity without concomitant loss of transforming potential.

The bovine leukemia virus Tax protein transactivates gene expression directed by the viral long terminal repeat (LTR) and contributes to immortalization of primary cells. Theoretical analysis of the protein sequence revealed the presence of a putative zinc finger structure at its amino end. Selected mutations in that region completely abolished transactivation, demonstrating its importance for LTR-directed gene regulation. However, these mutations did not interfere with the ability of tax to bind zinc or to contribute to immortalization of primary cells. Thus, transactivation of bovine leukemia virus LTR and target cell transformation are independent functions of Tax and involve different functional domains of the protein.

Animals

Antitumor activity of thaliblastine (NSC-68075) in experimental ovarian tumor cell lines sensitive and resistant to cisplatin.

Cytotoxicity of thaliblastine (thalicarpine, TBL; NSC-68075) and/or cisplatin (DDP) in DDP-sensitive (O-342) and-resistant (O-342/DDP) rat ovarian tumor cell lines was comparatively determined using the MTT assay. The 50% inhibitory dose (ID50) of DDP was found to be 6.2 microM in O-342 cells and 23.4 microM in O-342/DDP cells, while, vice versa, the ID50 of TBL was 39.3 micrograms/ml in the sensitive line and 27.3 micrograms/ml in the resistant line. Furthermore, simultaneous exposure of cells to DDP and TBL showed a significant superiority over DDP alone in O-342 cells, as evaluated with variance analysis (P less than 0.001). This enhancing effect of TBL on DDP cytotoxicity, however, was not observed in the resistant cells.

Animals

Partial characterization of skeletal myoblast mitogens in mouse crushed muscle extract.

We have utilized a model system to investigate myotrophic factors released by normal adult mouse muscles following a crush injury. We found that saline extracts from gently crushed mouse muscles (CME) contain potent mitogenic activities which act on primary newborn mouse myoblast cultures, as well as on mouse C2 cells, a mouse myoblast cell line. We compared the activity of CME on mouse myoblasts with that of basic fibroblast growth factor (bFGF) and insulin-like growth factor I (IGF-I), two growth factors known to be mitogenic for primary myoblasts (Allen, Dodson, and Lutein: Exp. Cell. Res., 152:154-160, 1984; DiMario and Strohman: Differentiation, 39:42-49, 1988; Allen and Boxhorn: J. Cell. Physiol., 138:311-315, 1989; Dodson, Allen, and Hossner: Endocrinology, 117:2357-2363, 1985; Florini and Magri: Am. J. Physiol., 256:C701-C711, 1989). We found that CME could act in an additive fashion to saturating doses of bFGF to increase proliferation in myoblast cultures. Additionally, CME acted additively to the combination of saturating amounts of bFGF and IGF-I on both C2 and primary myoblast cultures. We also examined additivity of CME with the combination of saturating doses of bFGF, IGF-I, transferrin (Tf), platelet-derived growth factor (PDGF), epidermal growth factor (EGF), adrenocorticotrophin (ACTH), and macrophage colony-stimulating factor (M-CSF). Our data indicate that CME contains Tf, as well as one or more uncharacterized mitogens for myoblasts which are distinct from Tf, the IGFs, bFGF, EGF, PDGF, M-CSF, and ACTH. These uncharacterized mitogens may act independently of known growth factors to stimulate myoblast proliferation, or may act through modulation of known growth factor activities.

Animals

Effect of cigarette smoking on hypoxic pulmonary vasoconstriction and its relation to animal species and period of smoking.

The alteration in hypoxic pulmonary vasoconstriction (HPV) induced by cigarette smoking was studied in Wistar rats, piglets and in humans. The percentage change of pulmonary vascular resistance (delta PVR%) and the amplitude of the systolic wave in impedance pneumorheogram (delta H%) were used to estimate the strength of HPV. It was observed that immediately after acute cigarette smoking, HPV in rats increased (delta PVR% from 55.0 +/- 15.6% to 102.3 +/- 12.4%), which is mainly mediated by leukotrienes (LTs); whereas HPV in piglets decreased (delta PVR% from 65.2 +/- 12.5% to 55.9 +/- 9.8%), which is mainly mediated by beta-adrenergic receptors, and HPV in humans also increased (delta H% from 20.6 +/- 2.6% to 31.1 +/- 4.1%), in which prostaglandins and leukotrienes may play the role of mediators. However, after one-month cigarette smoking, the HPV in rats fell significantly (delta PVR% 11.4 +/- 1.6%). An increase in synthesis of vasodilative prostaglandins and a decrease in leukotrienes synthesis may be the contributing factors to this alteration in HPV.

Adolescent

In vivo transfection of bovine leukemia provirus into sheep.

Bovine leukemia virus is horizontally transmitted mainly through infected cells by direct blood transfer. In this report, a cloned bovine leukemia virus (BLV) provirus was examined for its infectivity by direct inoculation into sheep. One hundred micrograms of plasmid DNA containing a complete provirus was mixed with a cationic liposome solution and injected intradermally into five sheep at three different locations. Seroconversion occurred 1 to 2 months after injection as demonstrated by immunodiffusion, indirect ELISA (for the gp51 envelope protein), and blocking ELISA (for gp51 and the major capsid protein, p24). These results demonstrate that BLV infection can be efficiently initiated by direct transfection into sheep. This approach should thus facilitate investigation of the involvement of BLV genetic determinants in the induction of leukemia in ruminants.

Animals

Cocaine-induced suppression of interferon-gamma secretion in leukocytes from young and old C57BL/6 mice.

The effects of cocaine (0.1-100 micrograms/ml) were studied on interferon-gamma (IFN) secretion in Con A-stimulated splenocytes from young (4 months) and old (18 months) C57BL/6 mice. IFN secretion was significantly suppressed by cocaine in a concentration-dependent manner. Suppression was observed in splenocytes from both young and old mice. Splenocytes from young mice released higher amounts of IFN (23.40 +/- 1.47 ng/ml) than those from old mice (6.10 +/- 0.35 ng/ml) after 24 h in culture. The concentration of Con A used to stimulate IFN secretion significantly affected the suppressive effect of cocaine. Pretreatment of splenocytes with cocaine followed by culture in the absence of cocaine did not affect IFN secretion in old mice, while splenocytes from young mice showed a sustained depression in IFN release. This suggests that cocaine suppresses IFN release in vitro and the susceptibility to this inhibitory effect may be age related.

Age Factors

Practical applications of Beam's Eye View-based treatment planning to head and neck sites.

Because of the complex anatomy of the structures involved by tumor as well as of the critical normal structures, treatment planning for advanced or spatially irregular cancers of head and neck sites is often extremely challenging. Computerized axial tomographic scanning is frequently invaluable in delineating tumor extension into areas inaccessible to physical examination. Our Beam's Eye View Planning (BEVP) capability allows us to incorporate this radiographic information accurately into actual plans used in the clinic. Over the past 2 1/2 years, we have applied this technique to 31 selected head and neck cancer patients at Michael Reese/University of Chicago Center for Radiation Therapy. Tumors were chosen on the basis of anatomical complexity: most involved multiple head and neck sites including orbit, skull base, paranasal sinuses and cavernous sinus. In all cases, radiation tolerance of critical normal structures including spinal cord, brain stem, optic chiasm, and eye had to be considered. With careful use of rigid immobilization devices and the outlining of several normal structures for purposes of alignment, we had no difficulty applying our BEVP technique to clinical simulations. Oblique field blocking was especially facilitated by BEVP. We found the BEVP technique very useful to assure that tumor coverage was adequate and tolerance of normal tissues not exceeded.

Computer Simulation

The contraction of stunned myocardium: isovolumetric bulging and wasted ejection shortening in dog heart.

OBJECTIVE: The aim of the study was to assess the contraction of myocardium stunned by repetitive brief coronary occlusions by examining the response to alterations in loading and inotropy of systolic contraction on isovolumetric and ejection phase shortening. METHODS: Fourteen open chest anaesthetised dogs were used for the studies. After destruction of the sinus node, the heart was atrially paced and atrial extrasystoles were introduced followed by a short (400 ms) or long (700 ms) postextrasystole. The left anterior descending coronary artery was occluded for 5 min and reperfused for 10 min a total of eight times to produce stunned myocardium, followed by a final 60 min of reflow. Regional function was assessed with segment length sonomicrometers. RESULTS: With successive periods of occlusion there was an increase in the end diastolic segment length and a progressive decrease in total percent systolic shortening (baseline 22.3%, 1st reflow 14.5%, 8th reflow 7.9%) with some recovery after 60 min of reflow (12.0%). This was predominantly due to the development of bulging during isovolumetric systole (4.5%, -4.9%, and -8.3%, respectively) which diminished during 60 min recovery to -3.1%. Ejection shortening was relatively constant (17.8%, 19.4%, 16.3%, and 15.1%, respectively). Postextrasystolic potentiation resulted in an increased in total percent systolic shortening, but not to the baseline value, as slight isovolumetric bulging persisted. Similar changes were seen with the short and long postextrasystoles although the latter had a greater increase in ejection shortening. CONCLUSIONS: The decrease in function after repetitive occlusion and reflow is predominantly due to bulging during isovolumetric systole which persists after postextrasystolic potentiation in our model of stunned myocardium.

Animals

Calcium activation of hyperpolarization response to acetylcholine in coronary endothelial cells.

Hyperpolarization response to acetylcholine (ACh) in endothelial cells was studied by intracellular recording of an intact endothelium preparation of guinea pig coronary artery. The hyperpolarization requires the presence of extracellular Ca2+ and the response was progressively blocked by MnCl2 or by removal of extracellular Ca2+. The intracellular Ca2+ antagonist, 3,4,5-trimethoxybenzoic acid 8-(diethylamino)octyl ester hydrochloride (TMB-8, 10 microM), was also effective in abolishing the hyperpolarization. Cyclopiazonic acid, an inhibitor of the sarcoplasmic reticulum Ca2+ pump, potentiated the hyperpolarization to ACh but inhibited caffeine-induced hyperpolarization. These findings suggest that ACh-induced hyperpolarization is mediated by an increase in cytosolic Ca2+ due to influx of extracellular Ca2+ and release of Ca2+ from an internal IP3-sensitive store. The rise in cytosolic Ca2+ level was modulated by a caffeine-sensitive pool that is inhibited by cyclopiazonic acid.

Acetylcholine

Permeability and Mg2+ blockade of histamine-operated cation channel in endothelial cells of rat intrapulmonary artery.

1. In the cell-attached and inside-out patch-clamp experiments using undispersed endothelial cells of the rat intrapulmonary artery, the majority of channels were cation selective. 2. Under physiological ionic conditions, the I-V relationship for the inward currents fell to -80 mV and the slope conductance was 22.5 pS. There was an inward rectification and the outward currents were smaller than the inward currents. 3. Under symmetric high-K+ conditions, the slope conductance for the inward currents was 26.4 pS and the inward rectification was observed when the high-K+ solution contained 1 mM-Mg2+. The channel activity was weakly voltage dependent at negative membrane potentials, while it was much enhanced at positive potentials. 4. The channel activity did not depend on intracellular Ca2+ concentrations. 5. Mg2+ was not only impermeant, it also blocked this channel in a voltage-dependent manner and rectifications appeared in the I-V relationship. Mg2+ blocked the channel from both sides of the membrane. 6. Ca2+ permeated this channel and the permeability ratios calculated from the reversal potentials using the constant-field theory were; PK:PNa:PCa = 1:1:15.7. 7. Histamine but not acetylcholine applied to the pipette activated this channel. Guanosine 5'-O-(3-thiotriphosphate) (GTP gamma S) applied to the intracellular surface of the patch did not mimic the effect of histamine. 8. Thus, in the endothelial cell membrane of the rat intrapulmonary artery, there exists a cation channel which is selective to Ca2+ but also permeable to Na+ and K+. This channel has inward rectifying properties, possibly due to intracellular Mg2+. Histamine, but not acetylcholine, activates this cation channel to elevate endothelial [Ca2+]i.

Acetylcholine

A cyclic AMP-responsive DNA-binding protein (CREB2) is a cellular transactivator of the bovine leukemia virus long terminal repeat.

To gain insight into the cellular regulation of bovine leukemia virus (BLV) trans activation, a lambda-gt11 cDNA library was constructed with mRNA isolated from a BLV-induced tumor and the recombinant proteins were screened with an oligonucleotide corresponding to the tax activation-responsive element (TAR). Two clones (called TAR-binding protein) were isolated from 750,000 lambda-gt11 plaques. The binding specificity was confirmed by Southwestern (DNA-protein) and gel retardation assays. Nucleotide sequence analysis revealed that TAR-binding protein is very similar to the CREB2 protein. It contains a leucine zipper structure required for dimerization, a basic amino acid domain, and multiple potential phosphorylation sites. A vector expressing CREB2 was transfected into D17 osteosarcoma cells. In the absence of the tax transactivator, the CREB2 protein and the cyclic AMP-dependent protein kinase A activate the BLV long terminal repeat at a basal expression level: trans activation reached 10% of the values obtained in the presence of tax alone. These data demonstrate that CREB2 is a cellular factor able to induce BLV long terminal repeat expression in the absence of tax protein and could thus be involved in the early stages of viral infection. In addition, we observed that in vitro tax-induced trans activation can be activated or inhibited by CREB2 depending on the presence or absence of protein kinase A. These data suggest that the cyclic AMP pathway plays a role in the regulation of viral expression in BLV-infected animals.

Animals

Aging of FRTL-5 rat thyroid cells causes sensitivity to cytotoxicity induced by tumor necrosis factor-alpha.

While investigating the modulation of the growth and function of the FRTL-5 rat thyroid cell line by recombinant human tumor necrosis factor-alpha (TNF alpha), we noticed that pronounced changes in several response parameters occurred with increasing passage number. For young cells (passage less than 20), TNF alpha by itself slightly increased [3H]thymidine incorporation and DNA content, and had a minimal effect on basal 125I uptake. When combined with TSH, TNF alpha had no influence on TSH-stimulated [3H]thymidine incorporation, but significantly inhibited TSH-stimulated 125I uptake. Compared with young cells, aged cells (passage greater than 40), in contrast, developed a high sensitivity to TNF alpha. TNF alpha markedly stimulated [3H]thymidine incorporation into DNA, inhibited TSH-stimulated 125I uptake per micrograms DNA, but dramatically decreased the total DNA content and cell number. TSH augmented the TNF alpha effect in aged cells, resulting in a further reduction of DNA content. Aphidicolin, a specific inhibitor of DNA polymerase-alpha which is associated with DNA replication, dramatically inhibited TNF alpha-induced [3H]thymidine incorporation in both young and aged cells; this suggested that the effect of TNF alpha on FRTL-5 cell growth is related to DNA replication, rather than DNA repair. 51Cr release from FRTL-5 cells, a measure of cytotoxicity, increased 2-fold over baseline in aged cells at a dose of 400 ng/ml TNF alpha and decreased to 70% of baseline in young cells at this same dose. The protein kinase-A (PKA) and protein kinase-C (PKC) signal transduction mechanisms of TNF alpha in aged cells (passage greater than 40) were also studied. TNF alpha increased cAMP and also increased relative PKA and PKC activity in 1-40 min. Phorbol myristate acetate (PMA), an activator of PKC, increased [3H]thymidine incorporation and DNA content. PMA did not affect the TNF alpha-induced increase in [3H]thymidine incorporation or its reduction of DNA content. When the cells were pretreated with a high concentration of PMA (1 microM/24 h) to down-regulate PKC, the TNF alpha dose-dependent increase in [3H]thymidine incorporation and decrease in DNA content were only slightly inhibited, suggesting that the main effects of TNF alpha are independent of PKC. We conclude that the sensitivity of FRTL-5 cells to the cytotoxic effect of TNF alpha increases with aging.

Animals

Two FGF receptor genes are differentially expressed in epithelial and mesenchymal tissues during limb formation and organogenesis in the mouse.

Fibroblast growth factors (FGFs) can influence the growth and differentiation of cultured cells derived from neuroectoderm, ectoderm or mesenchyme. The FGFs interact with a family of at least four closely related receptor tyrosine kinases that are products of individual genes. To investigate the role of FGFs in the growth and differentiation of embryonic tissues and to determine whether the individual FGF receptor genes might have specific functions, we compared the localization of mRNA for two FGF receptor genes, FGFR1 (the flg gene product) and FGFR2 (the bek gene product), during limb formation and organogenesis in mouse embryos (E9.5-E16.5). Although the two genes were coexpressed in some tissues, the differential expression of FGFR1 and FGFR2 in most embryonic tissues was striking. FGFR1 was expressed diffusely in mesenchyme of limb buds, somites and organ rudiments. In contrast, FGFR2 was expressed predominantly in the epithelial cells of embryonic skin and of developing organs. The differential expression of FGFR1 and FGFR2 in mesenchyme and epithelium respectively, suggests the receptor genes are independently regulated and that they mediate different functions of FGFs during development.

Animals