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Biomedical subjects

X Kong

Publications and source records attributed to X Kong.

At least 91 records · Page 5Linked to original sources

An adenosine deaminase (ADA) allele contains two newly identified deleterious mutations (Y97C and L106V) that interact to abolish enzyme activity.

Genetic deficiency of the purine salvage enzyme adenosine deaminase (ADA) results in varying degrees of immunodeficiency, ranging from neonatal onset Severe Combined Immunodeficiency (SCID) to an adult onset immunodeficiency disorder. Multiple different mutations have now been identified in these immunodeficient patients. Additional mutations, initially identified in healthy individuals, abolish ADA in erythrocytes but retain 10-80% of activity in non-erythroid cells ('partial deficiency mutations'). In general, severity of disease correlates inversely with the amount of residual ADA expressed by the mutant enzymes and directly with the accumulation of the toxic metabolites deoxyATP and deoxyadenosine. We report two newly identified mutations (Y97C and L106V), both carried on the same allele of an immunodeficient patient who was diagnosed prenatally and successfully transplanted with haploidentical bone marrow. Based on the ability of mutant cDNAs to express ADA in vitro , the L106V mutation resulted in activity similar to 'partial' mutations (30% of normal) while the Y97C mutation resulted in detectable but markedly reduced activity (1.5% of normal). However, the presence of both mutations on the same allele virtually abolished detectable enzyme activity. Analysis of the crystallographic structure of ADA to understand the marked deleterious effect of the Y97C mutation suggested a previously unappreciated role of salt bridges in the catalytic mechanism of ADA. The patient was also heteroallelic for a previously described deletion of the promoter and exon 1. Testing of additional patients in whom we had not identified a mutation on the second allele revealed presence of this deletion in three of four patients tested. This deletion is therefore relatively common, accounting for 10% of almost 100 chromosomes studied by this and other laboratories, but is easily missed by currently used methods of mutation detection. Lastly, the finding of two mutations on the same allele that interact to reduce residual enzyme function emphasizes hazards in evaluating potential genotype-phenotype correlations in individuals analyzed only for the presence of single specific mutations.

Adenosine Deaminase↗

[Drug resistance and its mechanism of intrinsic drug-resistant cell line GRC-1].

In order to probe the characteristics of drug resistance and its mechanisms of renal cell carcinoma, drug-resistant spectrum of renal cell carcinoma cell line GRC-1 was detected by in vitro MTT colorimetric assay, the mechanism of drug resistance in GRC-1 was also studied by the methods of both immunocytochemistry assay and flow fluorescence cytometry. The results demonstrated that GRC-1 was cross-resistant to adriamycin, vincrinstine, etoposide and carboplatinium, both mdr1 gene product P-glycoprotein and GST-pi which was an isozyme of glutathione S-transferases were expressed in GRC-1. The accumulation of net intracellular drugs of GRC-1 was less than that of drug sensitive breast cancer cell line MCF7, and the ability of pumping drugs out of cells was higher than that of MCF7. The results suggested that there is an intrinsic multidrug resistance in GRC-1 cell line, and both P-glycoprotein and glutathione systems play a role in the development of drug resistance for GRC-1. GRC-1 is an ideal target cell line for the study of drug resistance.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Clinical significance of serum 7S collagen and type VI collagen levels for the diagnosis of hepatic fibrosis.

OBJECTIVE: To measure serum 7S collagen (7S-C) and type VI collagen (VI-C) levels by radioimmunoassay (RIA) in Chinese patients with various liver disorders and in CCl4-treated SD rats, and to investigate the significance of the elevated levels of serum 7S-C and VI-C. METHODS: Serum 7S-C and VI-C levels were measured in 40 healthy control subjects, 168 patients with various liver disorders and non-hepatic diseases, and 52 CCl4-treated SD rats by using RIA which was developed in our hospital. RESULTS: Serum 7S-C and VI-C were significantly elevated in patients with chronic active hepatitis (CAH), liver cirrhosis (LC), hepatic cellular carcinoma (HCC) (P < 0.01 respectively), chronic persistent hepatitis (CPH), and some with non-hepatic diseases (P < 0.05). Serum 7S-C, serum laminin and hyaluronic acid were well correlated. Serum 7S-C and VI-C were not closely correlated. Both collagens were correlated with serum albumin/globulin ratio, aminotransferase and total bilirubin, not with alkaline phosphatase. In CCl4-treated SD rats, serum 7S collagen and type VI collagen levels were correlated with the degree of hepatic fibrosis. CONCLUSIONS: Serum 7S collagen and type VI collagen are useful markers for diagnosing liver fibrosis. And the combined measurement of IV-C, VI-C and other markers of connective tissue metabolism or biochemical data seems to provide additional information to predict progressive hepatic fibrosis.

Animals↗

[Effects of zinc deficiency in fodder on brain development, learning and memory in rats].

Zinc deficiency (ZD) model was established in young rats starting from their lactation period. Effects of ZD in fodder on brain development and learning and memory were observed with electron microscopy and neurobiochemical and electroneurophysiological methods, and its mechanism was studied. Results showed that 1. brain weight, hippocampal weight, and serum and hippocampal zinc concentrations were significantly lower in ZD group than those in controls; 2. proportion of induced long-term potentiation (LTP) was zero in ZD group and proportion of active avoidance response decreased profoundly in ZD group, significantly lower than that in normal controls whose LTP proportion was 100%; 3. concentrations of excitatory and inhibitory amino acids, glutamic acid, gamma-aminobutyric acid in cerebral cortex and hippocampus and nitrous oxide in hippocampus were significantly higher in ZD group than those in normal one, and content of somatostatin in hippocampus and DNA in pyramidocytes were significantly lower in ZD group than those in normal one; and 4. number of synaptic vesicles in pyramidocytes of hippocampus decreased obviously in ZD group. It suggests that brain development and function are obviously affected by fodder zinc deficiency in rats.

Animals↗

Increasing hepatic cholesterol 7alpha-hydroxylase reduces plasma cholesterol concentrations in normocholesterolemic and hypercholesterolemic rabbits.

The effect of bile acid depletion and replacement with glycodeoxycholic acid on plasma cholesterol concentrations, hepatic low-density lipoprotein (LDL) receptor binding and messenger RNA (mRNA) levels, and hepatic activities and mRNA levels for 3-hydroxy-3-methylglutaryl coenzyme A (HMG-CoA) reductase and cholesterol 7alpha-hydroxylase was investigated in 19 New Zealand white (NZW) and 15 Watanabe heritable hyperlipidemic (WHHL) rabbits. Bile acid depletion was produced by external bile drainage for 5 days, which maximized cholic acid synthesis. Replacement was achieved by infusing glycodeoxycholic acid intraduodenally for 24 hours so that the hepatic bile acid flux reached prefistula levels. Plasma and liver cholesterol concentrations were 13 times and 50% greater, respectively, hepatic LDL receptor-mediated binding was 26% less, and cholesterol 7alpha-hydroxylase activity and mRNA levels were 62% and 86% less in WHHL than NZW rabbits. After bile drainage, plasma cholesterol concentrations decreased 29% in NZW rabbits and 40% in WHHL rabbits and were associated with a 2.1-fold increase in hepatic LDL receptor-mediated binding in the NZW rabbits, but there was no change in the WHHL rabbits. Cholesterol 7alpha-hydroxylase activity and mRNA levels increased three and four times in NZW and WHHL rabbits, respectively, although liver cholesterol levels remained unchanged. Replacement with exogenous glycodeoxycholic acid increased plasma cholesterol concentrations 1.7 times in NZW rabbits and decreased enhanced cholesterol 7alpha-hydroxylase activity 54%, mRNA levels 86%, cholic acid synthesis 38%, and hepatic LDL receptor-mediated binding 57% in NZW rabbits. Bile acid depletion stimulated cholic acid synthesis by up-regulating cholesterol 7alpha-hydroxylase to use cholesterol and reduce plasma concentrations substantially in both NZW and WHHL rabbits, although LDL receptors did not function in WHHL rabbits. Glycodeoxycholic acid replacement inhibited elevated cholesterol 7alpha-hydroxylase, cholic acid synthesis, and hepatic LDL receptor binding to reestablish baseline plasma cholesterol levels in NZW rabbits. Hypercholesterolemia in WHHL rabbits was related to the combination of dysfunctional LDL receptors and inhibited cholesterol 7alpha-hydroxylase. Plasma cholesterol concentrations were reduced significantly when cholesterol 7alpha-hydroxylase was stimulated even in the absence of LDL receptor function.

Animals↗

Adaptive estimation of latency changes in evoked potentials.

Changes in latency of evoked potentials (EP) may indicate clinically and diagnostically important changes in the status of the nervous system. A low signal-to-noise ratio of the EP signal makes it difficult to estimate small, transient, time-varying changes in latency, or delays. Here, we present an adaptive algorithm that estimates small delay (latency change) values even when EP signal amplitudes are time-varying. When the delay is time invariant, the adaptive algorithm produces an unbiased estimate with delay estimation error less than half of the sampling interval. A lower estimation error variance is obtained when, in a pair of signals, the adaptive algorithm delays the signal with the higher SNR. The adaptive algorithm delays the signal with the higher SNR. The adaptive delay estimation algorithm was tested on intra-operative recordings of somatosensory EP, and analysis of those recordings reveals that the anesthetic etomidate produces a step change in the amplitude and latency of the EP signals.

Algorithms↗

[The application of high molecular weight cytokeratin in differential diagnosis of prostate adenocarcinoma].

In order to understand the characteristics of proliferative and malignant prostate lesions and to improve the differential diagnosis, immunohistochemical methods using high molecular weight cytokeratin monoclonal antibody 34BE12 to stain the basal cells and to differentiate prostate cancer from hyperplasia in 82 prostate biopsies and specimens, which included 21 adenocarcinoma, 30 intraepithelial neoplasia, 5 atypical adenomatous hyperplasia, 8 basal cell hyperplasia, 11 atrophy of prostate, 4 postatrophic hyperplasia and 3 cribriform hyperplasia. It was demonstrated that the basal cell layer was lost in all prostate adenocarcinomas, but existed in most of the proliferative lesions except for atypical adenomatous hyperplasia and grade 3 intra-epithelial neoplasia in which the basal layer was disrupted in some cases. The study showed that the 34BE12 antibody was useful in the differential diagnosis of prostate adenocarcinoma.

Adenocarcinoma↗

[Expression of basic fibroblast growth factor and its receptor in renal cell carcinoma].

Basic fibroblast growth factor (bFGF) is a pluripotent polypeptide which plays an important role in tumor progression and angiogensis. We determined the expression and localization patterns of bFGF and one of its receptor (FGFR-1) in normal renal as well as in renal cancers. The results were compared with clinicopathologic features. Using bFGF and FGFR-1 antibody, the repairing method of antigen with microwave oven heating and LSAB immunohistochemistry we used in 36 cases of paraffin-embedded renal cell carcinoma (RCC) and their paired normal renal tissues. The expression of bFGF and FGFR-1 was nearly consistent. The normal renal tissues and ECM of 29 cases of renal cancer tissues showed heterogenous immunoreactivities. Renal cancer cell cytoplasm of 12 primary tumors and 2 metastatic tumors, as in the cytoplasmic bFGF of cultured GRC-1 cells, were positively homogenous stained. The bFGF and FGFR-1 can be consistently expressed in normal renal and renal cancer tissues, reflecting that the expression and function of these substances were closely associated. The cytoplasmic bFGF expression of renal cancer was related to tumor stages, suggesting that b bFGF plays an important role in the progression of renal cell carcinoma.

Adenocarcinoma, Clear Cell↗

Control of PHAS-I by insulin in 3T3-L1 adipocytes. Synthesis, degradation, and phosphorylation by a rapamycin-sensitive and mitogen-activated protein kinase-independent pathway.

PHAS-I levels increased 8-fold as 3T3-L1 fibroblasts differentiated into adipocytes and acquired sensitivity to insulin. Insulin increased PHAS-I protein (3.3-fold after 2 days), the rate of PHAS-I synthesis (3-fold after 1 h), and the half-life of the protein (from 1.5 to 2.5 days). Insulin also increased the phosphorylation of PHAS-I and promoted dissociation of the PHAS-I eukaryotic initiation factor-4E (eIF-4E) complex, effects that were maximal within 10 min. With recombinant [H6]PHAS-I as substrate, mitogen-activated protein (MAP) kinase was the only insulin-stimulated PHAS-I kinase detected after fractionation of extracts by Mono Q chromatography; however, MAP kinase did not readily phosphorylate [H6]PHAS-I when the [H6]PHAS-I.eIF-4E complex was the substrate. Thus, while MAP kinase may phosphorylate free PHAS-I, it is not sufficient to dissociate the complex. Moreover, rapamycin attenuated the stimulation of PHAS-I phosphorylation by insulin and markedly inhibited dissociation of PHAS-I.eIF-4E, without decreasing MAP kinase activity. Rapamycin abolished the effects of insulin on increasing phosphorylation of ribosomal protein S6 and on activating p70S6K. The MAP kinase kinase inhibitor, PD 098059, markedly decreased MAP kinase activation by insulin, but it did not change PHAS-I phosphorylation or the association of PHAS-I with eIF-4E. In summary, insulin increases the expression of PHAS-I and promotes phosphorylation of multiple sites in the protein via multiple transduction pathways, one of which is rapamycin-sensitive and independent of MAP kinase. Rapamycin may inhibit translation initiation by increasing PHAS-I binding to eIF-4E.

3T3 Cells↗

cAMP- and rapamycin-sensitive regulation of the association of eukaryotic initiation factor 4E and the translational regulator PHAS-I in aortic smooth muscle cells.

Incubating rat aortic smooth muscle cells with either platelet-derived growth factor BB (PDGF) or insulin-like growth factor I (IGF-I) increased the phosphorylation of PHAS-I, an inhibitor of the mRNA cap binding protein, eukaryotic initiation factor (eIF) 4E. Phosphorylation of PHAS-I promoted dissociation of the PHAS-I-eIF-4E complex, an effect that could partly explain the stimulation of protein synthesis by the two growth factors. Increasing cAMP with forskolin decreased PHAS-I phosphorylation and markedly increased the amount of eIF-4E bound to PHAS-I, effects consistent with an action of cAMP to inhibit protein synthesis. Both PDGF and IGF-I activated p70S6K, but only PDGF increased mitogen-activated protein kinase activity. Forskolin decreased by 50% the effect of PDGF on increasing p70S6K, and forskolin abolished the effect of IGF-I on the kinase. The effects of PDGF and IGF-I on increasing PHAS-I phosphorylation, on dissociating the PHAS-I-eIF-4E complex, and on increasing p70S6K were abolished by rapamycin. The results indicate that IGF-I and PDGF increase PHAS-I phosphorylation in smooth muscle cells by the same rapamycin-sensitive pathway that leads to activation of p70S6K.

3T3 Cells↗

Treatment of human hepatocellular carcinoma by fibroblast-mediated human interferon alpha gene therapy in combination with adoptive chemoimmunotherapy.

The therapeutic effect of the fibroblast-mediated human interferon (IFN alpha) gene therapy in combination with interleukin-2 (IL-2) activated killer cells (AK)/doxorubicin (i.e., adoptive chemoimmunotherapy) on nude mice bearing the human hepatocellular carcinoma (HCC) was investigated. A fibroblast cell clone (NIH3T3-IFN alpha+) secreting 1024 U/ml human IFN alpha was obtained from 14 positive clones by BMGNeo-IFN alpha DNA transfection, G418-resistant selection, limiting dilution and assay of IFN alpha activity. After i.p. implantation of NIH3T3-IFN alpha+ encapsulated into collagen, serum human IFN alpha activity could be detected from 12 h to day 15 with a peak at 72 h. AK were prepared from human peripheral mononuclear cells costimulated in vitro by IL-2 and inactivated human SMMC 7721 HCC cells. When the NIH3T3-IFN alpha+ cells were i.p. implanted into the HCC-bearing nude mice, the grown of HCC was inhibited and the survival time of the mice was extended. The growth of HCC was inhibited more obviously when AK was i.v. injected and IL-2 was i.p. injected after the NIH3T3-IFN alpha+ cells had been implanted. The best therapeutic effect was achieved when NIH3T3-IFN alpha+ cells were used in combination with IL-2/AK/doxorubicin. All these results suggested that the fibroblast-mediated human IFN alpha gene therapy could be used to treat the human hepatocellular carcinoma effectively and that when used in combination with IL-2-based adoptive chemoimmunotherapy, the therapeutic effect would be better.

3T3 Cells↗

Arresting amyloidosis in vivo using small-molecule anionic sulphonates or sulphates: implications for Alzheimer's disease.

Amyloid is a term for extracellular protein fibril deposits that have characteristic tinctorial and structural properties. Heparan sulphate, or the heparan sulphate proteoglycan perlecan, has been identified in all amyloids and implicated in the earliest stages of inflammation-associated (AA) amyloid induction. Heparan sulphate interacts with the AA amyloid precursor and the beta-peptide of Alzheimer's amyloid, imparting characteristic secondary and tertiary amyloid structural features. These observations suggest that molecules that interfere with this interaction may prevent or arrest amyloidogenesis. We synthesized low-molecular-weight (135-1,000) anionic sulphonate or sulphate compounds. When administered orally, these compounds substantially reduced murine splenic AA amyloid progression. They also interfered with heparan sulphate-stimulated beta-peptide fibril aggregation in vitro.

Acute Disease↗

Nonlinear changes in brain's response in the event of injury as detected by adaptive coherence estimation of evoked potentials.

Injury-related changes in evoked potentials are studied with the aid of the coherence function, which effectively measures the degree of linear association between a pair of signals recorded during normal and abnormal states of the brain. The performance of an adaptive algorithm for estimating coherence function is studied, and the effects of additive noise on the estimated coherence function is discussed. Further, a linearity index is formulated and, through analysis and simulations, the index is shown to respond in a predictable manner to increasing nonlinearity while maintaining the robustness to the observation noise. Somatosensory evoked potentials are shown to be sensitive to injury resulting from acute cerebral hypoxia. We analyze the somatosensory evoked potentials recorded from anesthetized cats during inhalation of 8-9% oxygen gas mixtures and during recovery with 100% oxygen. Analyses of the experimental data show a very sharp drop in the magnitude coherence estimates during hypoxic injury and a corresponding rapid decline in the linearity index at the very early stages of the hypoxic injury. Thus, injury may lead to nonlinearities in the electrical response of the brain, and such measurements analyzed by the adaptive coherence estimation method may be used for diagnostic purposes.

Algorithms↗

[Experimental study on the treatment of human hepatocellular carcinoma by fibroblast-mediated human IFN-alpha gene therapy in combination with adoptive chemoimmunotherapy].

In the present study, we observed the therapeutic effect of the fibroblast-mediated human IFN alpha gene therapy in combination with IL-2/AK/DOX adoptive chemoimmunotherapy on human hepatocellular carcinoma-bearing nude mice. Activated killer cells (AK) were prepared from human peripheral mononuclear cells co-stimulated in vitro with IL-2 and inactivated human hepatocellular carcinoma SMMC 7721 cells. The results demonstrated that (1) When the NIH3T3-IFN-alpha+ cells were implanted i.p. to the tumor-bearing nude mice, the growth of tumor was inhibited and the survival time of the mice was prolonged; (2) The growth of tumor was significantly inhibited when AK was injected i.v. and IL-2 was injected i.p. after the NIH3T3-IFN-alpha+ cells had been implanted; (3) The best therapeutic results could be achieved when NIH3T3-IFN-alpha+ cells were used in combination with IL-2/AK/DOX. All these results suggeste that the fibroblast-mediated human IFN-alpha gene therapy could be used to treat human hepatocellular carcinoma but better results can be obtained when used in combination with IL-2-based immunotherapy.

3T3 Cells↗

PHAS-I as a link between mitogen-activated protein kinase and translation initiation.

PHAS-I is a heat-stable protein (relative molecular mass approximately 12,400) found in many tissues. It is rapidly phosphorylated in rat adipocytes incubated with insulin or growth factors. Nonphosphorylated PHAS-I bound to initiation factor 4E (eIF-4E) and inhibited protein synthesis. Serine-64 in PHAS-I was rapidly phosphorylated by mitogen-activated (MAP) kinase, the major insulin-stimulated PHAS-I kinase in adipocyte extracts. Results obtained with antibodies, immobilized PHAS-I, and a messenger RNA cap affinity resin indicated that PHAS-I did not bind eIF-4E when serine-64 was phosphorylated. Thus, PHAS-I may be a key mediator of the stimulation of protein synthesis by the diverse group of agents and stimuli that activate MAP kinase.

3T3 Cells↗

Ras signaling in the activation of glucose transport by insulin.

An approach involving microinjection and microanalysis has been developed to investigate signal-transduction pathways involved in the hormonal control of metabolism. We have applied this strategy to investigate the role of Ras signaling in the acute activation of glucose transport by insulin in cardiac myocytes. Glucose transport activity was assessed by measuring the initial rate of accumulation of 2-deoxyglucose 6-phosphate (dGlc6P) in individual cells after incubation in 2-deoxyglucose. Insulin increased accumulation of dGlc6P by 3- to 4-fold, consistent with its stimulatory effect on glucose transport. Accumulation of dGlc6P was increased severalfold by microinjecting the nonhydrolyzable GTP analogue, guanosine 5'-[gamma-thio]triphosphate, which activates members of the Ras superfamily of GTP-binding proteins. Injecting activated Ha-Ras protein also mimicked insulin by increasing dGlc6P; whereas, injecting a Ras protein lacking the COOH-terminal site of fatty acylation required for Ras function was without effect. Introducing the neutralizing Ras antibody Y13-259 into cells attenuated the effect of insulin. These findings implicate Ras in the acute regulation of metabolism by insulin.

Animals↗