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Biomedical subjects

J Cai

Publications and source records attributed to J Cai.

At least 217 records · Page 12Linked to original sources

[Recovery of motor function of spinal cord with embryonic spinal cord graft in adult rat].

The capacity of embryonic spinal cord tissue in the repair of injured structure of spinal cord has been noted for years. In order to investigate the embryonic spinal cord graft in the repair of motor function of injured spinal cord, the embryonic spinal cord tissue was transplanted to the hemisection cavity in spinal cord in adult rat. One hundred adult Wistar Rats were used to simulate the hemisectional injury of spinal cord by drilling 2-3 mm cavity in lumbar enlargement. Sixty rats were treated with rat embryonic spinal cord tissue grafting while the other forty were chosen as control. The outcome was evaluated according the combined behavioural score (CBS) and motor evoked potential (MEP) in the 1, 2, 4 and 12 weeks. The grafting group was superior to the control as assessed by CBS (P < 0.05), especially within 4 weeks. (P < 0.01). The restoration of the latent peak of early wave(P1, N1) was better in the grafting group, too. This suggested that embryonic spinal cord graft could improve the recovery of motor function of injured spinal cord in adult rat. The effect of the embryonic spinal cord tissue graft might be concerned with its secretion of several kinds of neurotrophic factors, nerve growth factor, nerve transmitted factor, or adjustment of hormone.

Animals↗

Iloperidone binding to human and rat dopamine and 5-HT receptors.

Iloperidone (HP 873; 1-[4-[3-[4-(6-fluoro-1,2-benzisoxazol-3-yl)-1-piperidinyl]propoxy] -3- methoxyphenyl]ethanone) is a compound currently in clinical trials for the treatment of schizophrenia. Iloperidone displays affinity for dopamine D2 receptors and for 5-HT2A receptors and has a variety of in vivo activities suggestive of an atypical antipsychotic. Here we present an examination of the affinity of iloperidone to a variety of human and rat homologs of dopamine and 5-HT receptor subtypes. We employed receptor binding assays using membranes from cells stably expressing human dopamine D1, D2S, D2L, D3, D4 and D5 and 5-HT2A and 5-HT2C receptors and rat 5-HT6 and 5-HT7 receptors. Iloperidone displayed higher affinity for the dopamine D3 receptor (Ki = 7.1 nM) than for the dopamine D4 receptor (Ki = 25 nM). Iloperidone displayed high affinity for the 5-HT6 and 5-HT7 receptors (Ki = 42.7 and 21.6 nM, respectively), and was found to have higher affinity for the 5-HT2A (Ki = 5.6 nM) than for the 5-HT2C receptor (Ki = 42.8 nM). The potential implications of this receptor binding profile are discussed in comparison with data for other antipsychotic compounds.

Animals↗

Tamoxifen inhibits nitrobenzylthioinosine-sensitive equilibrative uridine transport in human MCF-7 breast cancer cells.

Tamoxifen inhibits the binding of [3H]nitrobenzylthioinosine ([3H]NBMPR) to human MCF-7 breast cancer cells with an IC50 of 8 microM. Tamoxifen at 30 microM changed the apparent Kd for [3H]NBMPR binding from 0.63 +/- 0.12 to 4.75 +/- 0.58 nM, with little effect on the Bmax (311000 +/- 76000 and 263000 +/- 46000 sites per cell for untreated and tamoxifen-treated cells respectively). Corresponding to this decrease in binding of [3H]NBMPR in the presence of tamoxifen was an inhibition of NBMPR-sensitive equilibrative transport of 50 microM [3H]uridine (IC50 7-10 microM). In the presence of 15 microM tamoxifen, the apparent K(m) for [3H]uridine transport was increased from 390 +/- 30 to 1500 +/- 250 microM, with no change in Vmax (12.0 +/- 0.1 and 11.3 +/- 4.3 microM/s for untreated and tamoxifen-treated cells respectively). The inhibitory effect of tamoxifen on NBMPR-sensitive equilibrative uridine transport was specific, as similar results were also observed in HL-60 leukaemia and EL4 lymphoma cells. Furthermore a similar concentration of tamoxifen had no effect on the NBMPR-insensitive equilibrative transport of uridine in MCF-7, HL-60 and Morris 7777 hepatoma cells, and on the Na(+)-dependent transport of uridine in murine splenocytes. In this paper we demonstrate that tamoxifen by itself might have some antiproliferative effects through inhibition of DNA synthesis by blocking the nucleoside salvage pathway.

Animals↗

Reconstitution of human replication factor C from its five subunits in baculovirus-infected insect cells.

Human replication factor C (RFC, also called activator 1) is a five-subunit protein complex (p140, p40, p38, p37, and p36) required for proliferating cell nuclear antigen (PCNA)-dependent processive DNA synthesis catalyzed by DNA polymerase delta or epsilon. Here we report the reconstitution of the RFC complex from its five subunits simultaneously overexpressed in baculovirus-infected insect cells. The purified baculovirus-produced RFC appears to contain equimolar levels of each subunit and was shown to be functionally identical to its native counterpart in (i) supporting DNA polymerase delta-catalyzed PCNA-dependent DNA chain elongation; (ii) catalyzing DNA-dependent ATP hydrolysis that was stimulated by PCNA and human single-stranded DNA binding protein; (iii) binding preferentially to DNA primer ends; and (iv) catalytically loading PCNA onto singly nicked circular DNA and catalytically removing PCNA from these DNA molecules.

Adenosine Triphosphatases↗

Identification of vascular endothelial genes differentially responsive to fluid mechanical stimuli: cyclooxygenase-2, manganese superoxide dismutase, and endothelial cell nitric oxide synthase are selectively up-regulated by steady laminar shear stress.

Early atherosclerotic lesions develop in a topographical pattern that strongly suggests involvement of hemodynamic forces in their pathogenesis. We hypothesized that certain endothelial genes, which exhibit differential responsiveness to distinct fluid mechanical stimuli, may participate in the atherogenic process by modulating, on a local level within the arterial wall, the effects of systemic risk factors. A differential display strategy using cultured human endothelial cells has identified two genes, manganese superoxide dismutase and cyclooxygenase-2, that exhibit selective and sustained up-regulation by steady laminar shear stress (LSS). Turbulent shear stress, a nonlaminar fluid mechanical stimulus, does not induce these genes. The endothelial form of nitric oxide synthase also demonstrates a similar LSS-selective pattern of induction. Thus, three genes with potential atheroprotective (antioxidant, antithrombotic, and antiadhesive) activities manifest a differential response to distinct fluid mechanical stimuli, providing a possible mechanistic link between endothelial gene expression and early events in atherogenesis. The activities of these and other LSS-responsive genes may have important implications for the pathogenesis and prevention of atherosclerosis.

Blotting, Western↗

Fast purification and kinetic studies of the glycerol-3-phosphate dehydrogenase from the yeast Saccharomyces cerevisiae.

The glycerol-3-phosphate dehydrogenase has been purified from Saccharomyces cerevisiae 140-fold to electrophoretic homogeneity by a simple procedure involving affinity and ion exchange chromatography. The purified enzyme was most active at pH 6.8 and 51 degrees C. Its molecular mass was determined to be 45000 +/- 2000 Da by SDS-polyacrylamide gel electrophoresis. At physiological pH values the thermodynamic equilibrium constant was determined to be 3.5 x 10(-3) (M-1). Product inhibition as well as competitive inhibition patterns were found which clearly indicate that the kinetic mechanism of the glycerol-3-phosphate dehydrogenase is random bi-bi with the formation of dead-end complexes. In vivo concentrations of selected metabolites and kinetic expression for G3P-DH were used to explain regulatory properties of this enzyme under conditions of short-term glucose effect in Saccharomyces cerevisiae.

Binding, Competitive↗

In vitro reconstitution of human replication factor C from its five subunits.

Replication factor C (RFC, also called Activator I) is part of the processive eukaryotic DNA polymerase holoenzymes. The processive elongation of DNA chains requires that DNA polymerases are tethered to template DNA at primer ends. In eukaryotes the ring-shaped homotrimeric protein, proliferating cell nuclear antigen (PCNA), ensures tight template-polymerase interaction by encircling the DNA strand. Proliferating cell nuclear antigen is loaded onto DNA through the action of RFC in an ATP-dependent reaction. Human RFC is a protein complex consisting of five distinct subunits that migrate through SDS/polyacrylamide gels as protein bands of 140, 40, 38, 37, and 36 kDa. All five genes encoding the RFC subunits have been cloned and sequenced. A functionally identical RFC complex has been isolated from Saccharomyces cerevisiae and the deduced amino acid sequences among the corresponding human and yeast subunits are homologous. Here we report the expression of the five cloned human genes using an in vitro coupled transcription/translation system and show that the gene products form a complex resembling native RFC that is active in supporting an RFC-dependent replication reaction. Studies on the interactions between the five subunits suggest a cooperative mechanism in the assembly of the RFC complex. A three-subunit core complex, consisting of p36, p37, and p40, was identified and evidence is presented that p38 is essential for the interaction between this core complex and the large p140 subunit.

DNA Replication↗

Hydroxylforms of p-boronophenylalanine as potential boron carriers on boron neutron capture therapy for malignant brain tumors.

Hydroxylforms of boronophenylalanine (BPA) were synthesized by conjugation with a cascade of polyols to decrease the BPA uptake of normal parenchyma without affecting uptake into the tumor. We determined their tumor cell killing effect on boron neutron capture therapy (BNCT) against BPA using the human glioma cell line T98G. The thermal neutron doses yielding the D37 (dose used to inhibit 63% colony formation) values of dl-p-BPA(OH)n were 1.45 x 10(12)nvt (n = 1), 1.33 x 10(12)nvt (n = 2), 3.37 x 10(12)nvt (n = 4), and 1.72 x 10(12)nvt (n = 0). The relative tumor cell killing effect on BNCT of dl-p-BPA(OH)n against dl-p-BPA, which was defined as the ratio of D37-BPA to D37-BPA(OH)n, was 1.18 (n = 1) 1.29 (n = 2), and 0.51 (n = 4). The tumor:normal brain ratio of dl-p-BPA(OH)n in 9L rat brain tumor models was improved 1.2- (n = 1) and 1.4-fold (n = 2) against that of dl-p-BPA without a decrease of its uptake into the tumor. The water solubility of BPA(OH)n increased against BPA, and the toxicity represented as the IC50 value of dl-p-BPA(OH)2 was nearly one half that of dl-p-BPA, being established in our previous works. Hydroxylforms of BPA, especially dl-p-BPA(OH)2, might be more suitable boron carriers of BNCT to malignant brain tumors since the radiation injury to the normal parenchyma surrounding the tumor is reduced.

Animals↗

Ibogaine-like effects of noribogaine in rats.

Ibogaine is a naturally occurring alkaloid that has been claimed to be effective in treating addiction to opioids and stimulants; a single dose is claimed to be effective for 6 months. Analogously, studies in rats have demonstrated prolonged (one or more days) effects of ibogaine on morphine and cocaine self-administration even though ibogaine is mostly eliminated from the body in several hours. These observations have suggested that a metabolite may mediate some of the effects of ibogaine. Recently, noribogaine was identified as a metabolite of ibogaine. Accordingly, the present study sought to determine, in rats, whether noribogaine had pharmacological effects mimicking those of ibogaine. Noribogaine (40 mg/kg) was found to decrease morphine and cocaine self-administration, reduce the locomotor stimulant effect of morphine, and decrease extracellular levels of dopamine in the nucleus accumbens and striatum. All of these effects were similar to effects previously observed with ibogaine (40 mg/kg); however, noribogaine did not induce any ibogaine-like tremors. The results suggest that noribogaine may be a mediator of ibogaine's putative anti-addictive effects.

Animals↗

On-line immunoaffinity extraction-coupled column capillary liquid chromatography/tandem mass spectrometry: trace analysis of LSD analogs and metabolites in human urine.

An on-line immunoaffinity extraction-coupled column capillary liquid chromatography/tandem mass spectrometry (IAE/LC/LC/MS/MS) method is described. The system involves three columns, a 2.1-mm-i.d. protein G immunoaffinity column with noncovalently immobilized antibody specific to the analytes of interest, a packed capillary trapping column, and a packed capillary analytical column. With use of a short packed capillary trapping column, the protein G column could be operated at flow rates of 2.5-4 mL/min while the packed capillary analytical column was maintained at a flow rate of 3.5 microL/min. Human urine diluted 1:1 with phosphate-buffered saline was pumped directly onto the immunoaffinity column without pretreatment and was analyzed by electrospray mass spectrometry following the column switching process. Sample handling and transfer procedures were eliminated. The system was optimized and evaluated for the determination of LSD, its analogs, and metabolites in spiked human urine at low part-per-trillion (ppt) levels using mass spectrometric detection. LSD-positive human urine specimens from LSD users were also analyzed. Concentrations as low as 2.5 ppt of LSD and several of its analogs were detected in spiked human urine using IAE/LC/LC/MS/MS/. This is 20-fold below our previous limit of detection using solid phase extraction and LC/MS/MS.

Chromatography, Liquid↗

Avulsive amputations of the thumb: comparison of replantation techniques.

Twenty-five cases of avulsive amputation of the thumb are reported. Twenty-one of the 25 cases were categorized as Grade I avulsions (little or no skin defect) and four were categorized as Grade II avulsions complicated by a large skin defect. Three different replantation techniques were used and compared: (1) direct vessel anastomosis, (2) arterial anastomosis between the superficial branch of the radial artery and distal end of the thumb, and (3) arterial anastomosis after artery transfer from other digits. The authors concluded that direct vessel anastomosis was not the preferred method and that technique 2 could be used in any case but was especially suited to Grade II reconstructions. Technique 3 is mainly used in Grade I avulsions.

Amputation, Traumatic↗

Alterations in glutathione homeostasis in mutant Eisai hyperbilirubinemic rats.

Eisai hyperbilirubinemic rats (EHBR) are mutant Sprague-Dawley rats that exhibit impaired biliary organic anion and reduced glutathione (GSH) secretion. In addition, liver GSH levels are twice that of age-matched controls. The mechanisms for the defect in biliary GSH secretion and the increase in cell GSH are not fully understood. We previously showed that canalicular membrane-enriched vesicles isolated from EHBR livers exhibited normal GSH transport. In the present study, we examined the steady-state rat canalicular reduced glutathione transporter (RcGshT) messenger RNA (mRNA) and protein levels, as well as the mechanisms for the increase in cell GSH. Both Northern and Western blot analyses of EHBR livers showed nearly identical RcGshT mRNA and polypeptide levels, respectively, as compared with controls. Treatment with phenobarbital, which increased steady-state RcGshT mRNA by five- to sixfold, RcGshT polypeptide, and biliary GSH secretion by onefold in controls, had a smaller effect on steady-state RcGshT-mRNA level in EHBR (by 1.5-fold) and did not increase RcGshT polypeptide or biliary GSH secretion. In examining possible mechanisms for increased liver GSH, both cysteine level and gamma-glutamylcysteine synthetase (GCS) activity were significantly higher than controls, while the activity of GSH synthetase was unchanged. Northern and Western blot analyses also showed increased steady-state GCS heavy subunit (GCS-HS) mRNA and polypeptide levels, respectively. In addition to liver, GSH levels in kidney, duodenal, jejunal, and ileal mucosa of EHBR were 200% to 300% of age-matched control rats. GCS activity was also increased in kidney cytosol of EHBR. Thus, the defect in biliary GSH secretion in EHBR most likely is either at the posttranslational level of RcGshT or in the inhibition exerted by retained endogenous organic anions. In addition, there is a widespread up-regulation of GSH synthesis capacity in the tissues of EHBR.

Analysis of Variance↗

Changes in S-adenosylmethionine synthetase in human liver cancer: molecular characterization and significance.

S-adenosylmethionine synthetase (SAMS) catalyzes the formation of S-adenosylmethionine (SAM) and is essential to normal cell function. There are two forms of SAMS, liver-specific and nonliver-specific (often referred to as "kidney"), which are products of two different genes. SAMS isoenzymes differ greatly in kinetic parameters and sensitivity to inhibition by methionine analogs. The current work studied changes in SAMS and their significance in liver cancer. Northern blot analysis showed that while normal liver expresses only liver-specific SAMS, both HepG2 and HuH-7 cells express only nonliver-specific SAMS. Absence of liver-specific SAMS messenger RNA (mRNA) was not because of gene deletion or rearrangement but complete lack of gene transcription. Reverse-transcription polymerase chain reaction (RT-PCR) with liver- and kidney-specific SAMS primers showed that liver-specific SAMS mRNA was absent with only kidney SAMS mRNA present in HepG2, HuH-7, Hep3B, and HuH-1 cells, and four consecutive hepatocellular carcinoma (HCC) specimens. Normal liver tissues from the same patients express both forms of SAMS mRNA. As a result of the change in SAMS expression, SAMS activity was higher in HepG2 and HuH-7 cells at physiologically relevant methionine concentrations but lower at high (mmol/L) methionine concentrations than rat hepatocytes. Treatment with ethionine and seleno-D,L-ethionine, two inhibitors known to have I50 values 50 to 60 times lower against SAMS purified from Novikoff hepatoma cells as compared with SAMS purified from normal rat liver, resulted in increased cell lysis in HepG2 and HuH-7 cells but not cultured rat hepatocytes. These agents did not affect cellular adenosine triphosphate (ATP) levels but inhibited SAMS activity in HepG2 and HuH-7 cells when added to their protein extracts. In summary, expression of SAMS is altered in human liver cancer. This occurrence may provide a potentially exploitable target for cancer chemotherapy.

Animals↗

The observation of complement activation and polymorphonuclear neutrocytopenia during cardiopulmonary bypass.

By determining the plasma levels of C2, C4, factor B and polymorphonuclear neutrophils (PMNs) of the patients who received CPB, the path of complement activation and changes of PMNs were studied. The results suggest that complement system was activated through alternative pathway during CPB and was activated through classic pathway after CPB. The anaphylatoxin, the products of complement activation may be responsible for the polymorphonuclear neutrocytopenia.

Adolescent↗

Effect of aminoguanidine and cyclosporine on lung allograft rejection.

BACKGROUND: Aminoguanidine, a nitric oxide synthase inhibitor, has been shown to reduce the inflammatory allogeneic response. Here we used it in combination with cyclosporine to evaluate its effect on a clinically relevant immunosuppressive protocol. METHODS: Orthotopic left lung transplantation was performed in 120 rats, of which 24 were syngeneic Lewis to Lewis controls, and allogeneic transplantations were performed across major histoincompatibility barriers (ACI to Lewis). We studied synchronous histologic changes accompanying cytokines and nitric oxide synthase messenger RNA by reverse transcriptase polymerase chain reaction in the grafted lungs. Nitrate/nitrite, oxidized degradation products of nitric oxide, were measured in the whole blood, as were concentrations of cyclosporine. Lung tissue was immunohistochemically stained for nitric oxide synthase protein. Rats receiving allografts were either untreated (24) or received low-dose cyclosporine (232 +/- 105 ng/mL blood by high-performance liquid chromatography), high-dose cyclosporine (2,046 +/- 664 ng/mL), aminoguanidine alone (800 mg. kg-1. day-1 intraperitoneally), or aminoguanidine plus low-dose cyclosporine. RESULTS: The results suggest that aminoguanidine combined with low doses of cyclosporine can reduce the allogeneic response across major histoincompatibilities in rodent lung transplantation. Its biologic effect may not exclusively depend on the inhibition of nitric oxide synthase and may, by other means, reduce proinflammatory cytokines. CONCLUSIONS: Aminoguanidine may be an effective adjuvant to conventional immunosuppression.

Animals↗

Reproducibility of extracranial carotid atherosclerotic lesions assessed by B-mode ultrasound: the Atherosclerosis Risk in Communities Study.

The reproducibility in the identification of carotid artery lesions using B-mode ultrasound was studied in a large random sample selected from the Atherosclerosis Risk in Communities (ARIC) Study. Carotid lesions were defined as plaque with or without acoustic shadowing (indicative of mineralization). A weighted kappa (kappa w) statistic was used as a chance-adjusted measure of repeatability. In the ARIC baseline survey, the kappa w values for the assessment of lesions on repeat reading were 0.47, 0.60 and 0.69 in the left common carotid artery, the carotid bifurcation and the internal carotid artery, respectively. In a repeat scanning, the kappa w values ranged from 0.59 to 0.79 in the left carotid segments. The results were similar in the left and right carotid arteries. Covariates (age, race, gender, body mass index, study center) did not influence the reproducibility. Similar results were also found in both the baseline survey and the first follow-up examination. In conclusion, reproducibility in the assessment of carotid lesions by B-mode ultrasound can be achieved in multicenter studies at fair to good levels of agreement.

Aged↗

Association of cardiac autonomic function and the development of hypertension: the ARIC study.

To relate cardiac autonomic function measured by heart rate variability (HRV) with prevalent and incident hypertension at the population level, the authors examined a stratified random sample of 2,061 examinees from the biracial Atherosclerosis Risk in Communities (ARIC) cohort. Baseline, supine, resting beat-to-beat heart rate data were collected. High frequency (HF, 0.15 to 0.35 Hz), low frequency (LF, 0.025 to 0.15 Hz) spectral powers, and LF/HF ratio, estimated from spectral analysis, and standard deviation of all normal RR intervals (SDNN), calculated from time domain analysis, were used as the conventional indices of cardiac autonomic function. From this sample, 650 prevalent hypertensives were identified. Of those normotensive at baseline (n = 1,338), 64 participants developed hypertension during 3 years of follow-up. In the cross-sectional analysis, the adjusted geometric means of HF were 1.26, 1.20, and 1.00 (beat/min)2 for normotensives, untreated hypertensives, and treated hypertensives, respectively; means of LF were 3.24, 3.26, and 2.58; means of LF/HF ratio were 2.57, 2.70, and 2.56; and means of SDNN were 39, 34, and 35 (ms) respectively. In the prospective analysis, a statistically significant, graded inverse association between baseline HF and the risk of incident hypertension was observed: the adjusted incident odds ratios (95% CI) were 1.00, 1.46 (0.61, 3.46), 1.50 (0.65, 3.50) and 2.44 (1.15, 5.20) from the highest to the lowest quartile of HF. No clear pattern of association was observed for LF. Significant trends of association for LF/HF and SDNN and incident hypertension were also found. These results suggest that cardiac autonomic function is associated with prevalent hypertension, and that reduced vagal function and the imbalance of sympatho-vagal function are associated with the risk of developing hypertension.

Adult↗