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Biomedical subjects

C H Li

Publications and source records attributed to C H Li.

At least 19 recordsLinked to original sources

Betamethasone activation of CTP:cholinephosphate cytidylyltransferase is mediated by fatty acids.

The purpose of the present study was to determine the mechanisms by which glucocorticoids increase the activity of CTP:cholinephosphate cytidylyltransferase, a key enzyme required for the synthesis of surfactant phosphatidylcholine. Lung cytidylyltransferase exists as an inactive, light form low in lipids (L-form) and an active, heavy form high in lipid content (H-form). In vitro, fatty acids stimulate and aggregate the inactive L-form to the active H-form. In vivo, betamethasone increases the amount of H-form while decreasing the amount of L-form in fetal lung. There is also a coordinate increase in total free fatty acids in the H-form. In the present study, we used gas chromatography-mass spectrometry to measure the fatty acid species associated with the H-forms in fetal rat lung after the mothers were treated with betamethasone (1 mg/kg). In vivo, betamethasone increased the total amount of free fatty acids associated with the H-form by 62%. Further, the hormone selectively increased the mass of myristic and oleic acids in H-form by 52 and 82%, respectively. However, betamethasone produced the greatest increase in the amount of H-form linoleic acid, which increased fourfold relative to control. In vitro, each of the fatty acids increased L-form activity in a dose-dependent manner; however, linoleic acid was the most potent. Linoleic and oleic acids also effectively increased L-form aggregations. These observations suggest that in vivo glucocorticoids elevate the level of specific fatty acids which convert cytidylyltransferase to the active form.

Animals

Tc-99m pertechnetate trapping and thyroid function in Hashimoto's thyroiditis.

Tc-99m pertechnetate thyroid imaging was studied in 52 patients with Hashimoto's thyroiditis, with special reference to the thyroid functional state and Tc-99m trapping by the gland. The most common finding was diffusely increased trapping of radioactivity, a pattern similar to Graves' disease. On the other hand, the increased trapping in Hashimoto's thyroiditis was usually associated with hypothyroidism. The degree of Tc-99m trapping did not correlate with the degree of the endogenous TSH elevation. However, increased Tc-99m trapping could predict the reversibility of hypothyroidism in just 3 months.

Adult

[Detection of serum antibody of hepatitis C virus in parturients and their newborns].

Detection of serum antibody of hepatitis C virus (anti-HCV) with ELISA kits was performed in 315 parturients and their newborns. The results indicated that some of the infants, born of mothers infected with HCV were also anti-HCV positive, and a high positive rate of abnormal maternal hepato-function harbored a markedly positive rate of anti-HCV both in mother and newborn and bore a positive correlation to the maternal age. These suggest that besides the five routine tests, anti-HCV should better be determined, especially in mothers with abnormal hepato-function. If possible, in such cases HCV-RNA should be examined by using revert nested polymerase chain reaction technique to determine whether a vertical mother-infant transmission exists.

Adult

[Clinical studies on serum glutathione S-transferase level in human breast cancer patients].

The level of serum Glutathioe S-transferase (GSTs) was first measured in 224 female patients with breast cancer and 17 patients with benign breast tumor and 96 normal female subjects. The relationship between serum GSTs and biological characteristics of breast cancer was studied. The mean serum GSTs in patients with breast cancer was 1.22 +/- 1.44 ng/ml. The positive rate was 51.8%. The level of serum GSTs in the patients with breast cancer was significantly higher than in normal subjects and patients with benign breast tumor. No correlation was found with regard to the level of serum GSTs, the size of the breast cancer, stage, lymphatic metastasis and estrogen receptor status. Serum GSTs level is thus of little value in the evaluation of response and prognosis of breast cancer.

Adult

[Chemical analysis of main medicinal species of genus Aralia].

This paper deals with the preliminary chemical analysis, thin layer chromotographic test and oleanolic acid assay of the main medicinal species of Aralia. It has been established that both herbaceous and woody species of Aralia contain saponin and beta-sitosterol. Therefore the idea "Chemical taxonomy of herbaceous taxon and woody taxon of Aralia can be based on the presence or absence of saponin and beta-sitosterol" is incorrect. An assay of different species has shown that certain species have high content of oleanolic acid and thus higher economic value. Based on the assay of samples of the same species collected in different stages of growth rational collecting periods are suggested.

Chromatography, Thin Layer

[Analgesic effect and no physical dependence of amygdalin].

Analgesic effect of amygdalin (AM) in mice was observed in hot plate and acetic acid-induced writhing tests. AM did not induce tolerance as morphine did, and did not cause morphine-characteristic tail-erecting response in mice. Mice given AM and then challenged with nalorphine showed no jumping response. AM could not substitute for morphine in morphine-addicted rats in relieving withdrawal syndrome. No antiinflammatory activity was found with AM.

Amygdalin

[Studies on semi-synthesis of cephalotaxine esters and correlation of their structures with antitumor activity].

Ten esters of cephalotaxine with amino acids possessing widely different structural features have been synthesized and tested for antitumor activity. Preliminary data showed that compound 6 is the most active one. However, it is still less potent than harringtonine. Other synthetic esters possess varying activities at 10 micrograms/ml. Preliminary structure activity relationship of these esters was discussed.

Antineoplastic Agents, Phytogenic

Uptake of I-131 by an abdominal neurilemoma mimicking metastatic thyroid carcinoma.

I-131 whole-body imaging may show characteristic findings in functioning, metastatic differentiated thyroid carcinoma. Nonthyroidal tumor uptake of I-131 is rare, but may mislead the physician to inappropriate treatment. A case is reported of a 59-year-old woman with papillary thyroid carcinoma who demonstrated strong uptake of I-131 in an abdominal cystic neurilemoma. Her serum thyroglobulin concentration at that time was low, at 3.35 ng/ml. Although the concentrating mechanism of I-131 was not clear, several clues pointed to the possibilities of nonthyroidal tumor uptake: 1) faster clearing of radioactivity than usual thyroid tissue, 2) persistent low serum thyroglobulin concentration, and 3) the presence of a cystic component in the nonthyroidal tumor.

Abdominal Neoplasms

[Immunohistochemical investigation on the expression of glutathione S-transferases (GSTS) in lung cancer].

Paraffin-embedded tissue sections from 105 cases of human lung cancer were stained for four isozymes of GSTs by immunohistochemical PAP technique. Of the 16 cases of small cell lung cancer (SCLC) examined 14 were negative for all GST individuals, whereas one undifferentiated squamous cell type and one oat cell type treated with chemotherapy before operation were positive for GST-pi. The total positive rates of GST-pi, GSTs and GST-mu in 89 cases of non-SCLC were 75.3%, 13.5% and 9.7% separatively. Among them squamous cell carcinoma were stained positively for GST-pi in 93.5%, GSTs in 9.7% and GST-mu in 6.5%, while adenocarcinoma were in 69.7%, 15.2% and 6.1% respectively. The expression of GST-pi was weakened corresponding with the decreased degree of differentiation of cancer cell. GST-alpha was not detectable in all specimens studied. Ultrastructure location of GST-pi sites in 11 cases of non-SCLC was detected mainly on lysozymes and heterochromatin in cancer cell by transmission electronic microscopy utilizing colloidal gold labelled anti-GST-pi antibody. These results suggest that GST-pi may be an useful marker for differential diagnosis in histopathology and intrinsic sensitivity to anticancer drugs of lung cancer. GST-mu was expressed in some types of lung cancer with low positive rate and its usage as a marker needs further investigation.

Adenocarcinoma

Purification and functional reconstitution of the cystic fibrosis transmembrane conductance regulator (CFTR).

Circumstantial evidence has accumulated suggesting that CFTR is a regulated low-conductance Cl- channel. To test this postulate directly, we have purified to homogeneity a recombinant CFTR protein from a high-level baculovirus-infected insect cell line. Evidence of purity included one- and two-dimensional gel electrophoresis, N-terminal peptide sequence, and quantitative amino acid analysis. Reconstitution into proteoliposomes at less than one molecule per vesicle was accomplished by established procedures. Nystatin and ergosterol were included in these vesicles, so that nystatin conductance could serve as a quantitative marker of vesicle fusion with a planar lipid bilayer. Upon incorporation, purified CFTR exhibited regulated chloride channel activity, providing evidence that the protein itself is the channel. This activity exhibited the basic biophysical and regulatory properties of the type of Cl- channel found exclusively in CFTR-expressing cell types and believed to underlie cAMP-evoked secretion in epithelial cells.

Animals

Insulin receptors prepared with iodoacetamide show enhanced autophosphorylation and receptor kinase activity.

In this study, we found that adding iodoacetamide to the homogenization buffer used in the preparation of mouse or rat liver plasma membranes resulted in an increase of insulin receptor autophosphorylation by 4-5-fold and receptor kinase activity by about 2-fold. Similar effects were obtained with iodoacetate and p-chloromercuriphenyl sulfonate. The effect of iodoacetamide was minimal when it was added to membranes prepared without the thiol reagent. The enhancing effect of iodoacetamide on insulin receptor autophosphorylation was the result of a more than 2-fold decrease in the Km and a more than 3-fold increase in Vmax for ATP. The presence of iodoacetamide in the preparation of plasma membranes also greatly increased the solubilization of the insulin receptor from the plasma membrane by Triton X-100. We propose that iodoacetamide acts to alkylate some unknown thiols released during tissue homogenization and that in its absence these thiols formed mixed disulfides with the insulin receptor, thus adversely affecting the process of receptor activation by insulin.

Animals

Pharmacological characterization of the inhibitory activity of beta h-endorphin (beta h-EP), [Arg9,19,24,28,29]-beta h-EP, [Gln8,Gly31]-beta h-EP-Gly-Gly-NH2, in the neuroeffector junction of the mouse vas deferens.

The inhibitory opioid activities of beta h-endorphin (beta h-EP), its structurally related peptide analogues [Gln8,Gly31]-beta h-EP-Gly-Gly-NH2 (Gly-Gly-beta h-EP), [Arg9,19,24,28,29]-beta h-EP (Arg-beta h-EP) and methionine enkephalin have been examined in the electrically stimulated mouse vas deferens bioassay. All four peptides behaved as full agonists; methionine enkephalin was the most potent followed by Arg-beta h-EP, beta h-EP and Gly-Gly-beta h-EP. Neither Gly-Gly-beta h-EP nor Arg-beta h-EP antagonized the inhibitory action of beta h-EP or methionine enkephalin. An hour of tissue exposure to 30 nM beta-funaltrexamine followed by thorough washing, displaced to the right, in a parallel fashion, the concentration-response curves of beta h-EP and analogues. Whereas the displacement of the concentration response curves was 8 to 10-fold for beta h-EP and Arg-beta h-EP, it was only about 3-fold for Gly-Gly-beta h-EP and methionine enkephalin. Naltrindole was the most potent antagonist of methionine enkephalin with an apparent pA2 of 9.4; its potency as an antagonist of beta h-EP and related analogues was approximately one-tenth of this with pA2 values approximately 8.5. Norbinaltorphimine also antagonized the action of the opioid peptides with pA2 values close to 7.8.

Animals

Calcium-permeable channels in rat hepatoma cells are activated by extracellular nucleotides.

Extracellular ATP is known to cause uptake of Ca2+ by rat liver cells. The specific pathway permitting influx of Ca2+ has not yet been identified. In the present investigations, we studied the properties of ATP-evoked 45Ca2+ uptake in rat hepatoma cell monolayers and then used patch-clamp electrophysiology to identify the channel that may account for this uptake. The results suggest that ATP-stimulated 45Ca2+ uptake occurs as a result of P2-purinergic receptor interaction because uptake was inhibited by Reactive Blue (100 microM), a blocker of this type of receptor. Furthermore, the ability of other adenine nucleotides to stimulate 45Ca2+ uptake was related to the selectivity sequence for binding to the P2-purinergic receptor. ATP-stimulated 45Ca2+ uptake occurs primarily through a conductance pore since it was inhibited by 70% upon dissipation of the membrane potential using the K+ ionophore valinomycin. The calcium channel blockers nifedipine and verapamil failed to inhibit 45Ca2+ uptake, but gadolinium (GdCl3) was an effective blocker. In cell-attached patch-clamp experiments, a single type of channel was activated with ATP (100 microM) addition to the bath in 18 of 32 trials. The current-voltage relationship of the ATP-activated channel is identical to that of the stretch-activated channel previously characterized in this laboratory as a calcium-permeable cation-nonselective channel [Am. J. Physiol. 258 (Cell Physiol. 27): C421-C428, 1990]. There are several lines of evidence which suggest that this cation-nonselective channel may account for ATP-stimulated 45Ca2+ uptake.(ABSTRACT TRUNCATED AT 250 WORDS)

Adenosine Triphosphate

[Diagnostic significance of the cuticular patterns on leaf surface of Sarcandra glabra].

The cuticular patterns on leaf surface of Sarcandra glabra (Thunb.) Nakai were studied with scanning electron microscope. It was found that the cuticular patterns vary not only with the district of specimen collection, but also with the developmental stage of the leaf. The characteristics of the cuticular patterns are described in detail with 2 plates of illustrations.

Medicine, Chinese Traditional

[The study of pretreatment with diphenylhydantoin or D-tubocurarine on succinylcholine-induced adverse effects].

Intravenous succinylcholine (SCh) is widely used as a muscle relaxant but it is often associated with adverse effects, including muscle fasciculations, postoperative myalgia, elevated serum potassium (K+) and creatine phosphokinase (CPK), etc. The present study was undertaken to evaluate the effects of pretreatment with Diphenylhydantoin (DPH) or d-Tubocurarine (d-TC) on SCh-induced adverse effects. 54 ASA I-II adult patients were randomly divided into 3 groups of 18 patients each. Four min before injection of SCh, group A received 1 ml of normal saline as a control group, group B DPH 2.5 mg kg-1 and group C d-TC 50 micrograms kg-1. Anesthesia was induced with thiopentone 3-4 mg kg-1 and then SCh was given to facilitate tracheal intubation. Anesthesia was maintained with isoflurane and nitrous oxide in oxygen. Muscle fasciculations, postoperative 24 hours myalgia, intubating conditions and levels of serum K+, CPK and DPH were recorded in every patient. All data were analyzed with Chi-Square and ANOVA tests. DPH and d-TC significantly decreased the incidence of fasciculations, whereas there were no differences regarding intubating condition, post-operative myalgia, and serum K+ among three groups. DPH concentration was 8.49 +/- 1.55 micrograms ml-1. Serum CPK was increased postoperatively in three groups. Pretreatment with DPH 2.5 mg kg-1 or d-TC 50 micrograms kg-1 effectively decreased SCh-induced fasciculations and did not affect intubating condition facilitated with SCh 1.5 mg kg-1. Nevertheless, these pretreatment did not improve postoperative myalgia and decrease serum CPK.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Growth-inhibition effects of oleic acid, linoleic acid, and their methyl esters on transplanted tumors in mice.

We investigated the effects of oleic acid and linoleic acid on transplanted Ehrlich ascites carcinoma and Ehrlich solid carcinoma in ACR mice. Both acids significantly prolonged the life spans of Ehrlich ascites carcinoma-bearing mice and inhibited the growth of Ehrlich solid carcinoma in mice compared with the findings in untreated control mice. Methyl esters of these acids also prolonged the survival of Ehrlich ascites carcinoma-bearing mice, but they were less effective in lengthening the survival of mice given transplants of Ehrlich ascites carcinoma. In addition, gas-chromatography analysis of tumor cell lipids showed that appreciable changes occurred in the fatty acid composition of the tumor cell grown in mice treated with oleic acid or linoleic acid. Linoleic acid caused more pronounced alterations in fatty acid composition of tumor cell lipids than did oleic acid, a feature that parallels the intensity of the cytotoxicity potential of the two free fatty acids. These results suggest that (a) the free carboxyl group of free fatty acids plays a role in killing tumor cells and (b) the modification of the fatty acid composition of tumor cells also correlates with the antitumor effects of oleic and linoleic acids. In addition, these results indicate that free fatty acids may be of tumor-oriented distribution; as a consequence, free fatty acids selectively inhibit the growth of tumor cells.

Animals

The role of selenium-dependent and selenium-independent glutathione peroxidases in the formation of prostaglandin F2 alpha.

In recent years, growing evidence suggests that glutathione peroxidases (GSH-Pxs), both selenium-dependent GSH-Px (Se-GSH-Px) and selenium-independent GSH-Px (non-Se-GSH-Px) play an important role in the biosynthesis of prostaglandins and leukotrienes and in the regulation of key enzymes associated with the arachidonic acid cascade. The precise nature of their involvement in eicosanoid metabolism, however, is not yet completely understood. In the study reported here, we have systematically determined the catalytic efficiencies of Se-GSH-Px and non-Se-GSH-Px toward prostaglandin (PG) G2 (PGG2) and PGH2. Se-GSH-Px exhibited high catalytic activity for the reduction of PGG2 as indicated by Km and Vmax values of 12 microM and 78 mumol/min/mg, respectively, whereas PGH2 was found to be a poor substrate, an indication that Se-GSH-Px reduces the hydroperoxide moiety but not the endoperoxide moiety of PGG2. The kinetic constants of Se-GSH-Px toward PGG2 were comparable to those determined for such classical substrates as H2O2 and cumene hydroperoxide. In contrast to Se-GSH-Px, non-Se-GSH-Px associated with cationic isozyme II of glutathione S-transferases (GSTs) from sheep lung cytosol was very active in the conversion of PGH2 to PGF2 alpha with a Vmax of 960 nmol/min/mg and a Km of 77 microM. This study shows that PGF2 alpha formation by non-Se-GSH-Px occurred in a GSH-dependent reduction of either PGG2 or PGH2. When PGG2 was used as the substrate for non-Se-GSH-Px, a novel intermediate compound appeared and was later identified by several methods of structural analysis as 15-hydroperoxy PGF2 alpha. Thus, the reductive cleavage of the endoperoxide occurs faster than the 15-hydroperoxide reduction allowing 15-hydroperoxy PGF2 alpha to accumulate briefly. A study of GSTs from several different tissues and species indicated that the transformation of PG endoperoxides to PGF2 alpha is catalyzed specifically by GST isozymes, which contain Ya size subunits. This specificity of GST isozymes in PG biosynthesis, coupled with their tissue-specific expression, may be a mechanism by which the body modulates the type of PGs produced in these tissues. Also, these results suggest a possible interaction of Se-GSH-Px and non-Se-GSH-Px in the biosynthesis of PGF2 alpha.

Animals