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Biomedical subjects

C H Lin

Publications and source records attributed to C H Lin.

At least 271 records · Page 15Linked to original sources

Rapid optimization of electroporation conditions for plant cells, protoplasts, and pollen.

The optimization of electroporation conditions for maximal uptake of DNA during direct gene transfer experiments is critical to achieve high levels of gene expression in transformed plant cells. Two stains, trypan blue and fluorescein diacetate, have been applied to optimize electroporation conditions for three plant cell types, using different square wave and exponential wave electroporation devices. The different cell types included protoplasts from tobacco, a stable mixotrophic suspension cell culture from soybean with intact cell walls, and germinating pollen from alfalfa and tobacco. Successful electroporation of each of these cell types was obtained, even in the presence of an intact cell wall when conditions were optimized for the electroporation pulse. The optimal field strength for each of these cells differs, protoplasts having the lowest optimal pulse field strength, followed by suspension cells and finally germinating pollen requiring the strongest electroporation pulse. A rapid procedure is described for optimizing electroporation parameters using different types of cells from different plant sources.

Electroporation↗

Growth cone advance is inversely proportional to retrograde F-actin flow.

In a previous study, F-actin appeared to play a key role in guiding microtubules during growth cone-target interactions. Here, F-actin flow patterns were assessed to investigate the relationship among F-actin flow, microtubule/organelle protrusion, and rates of outgrowth. We first demonstrated conditions in which surface markers (beads) moved at the same rate as underlying F-actin. These beads were then positioned, using laser tweezers, to assess F-actin movements during target interactions. We found retrograde F-actin flow was attenuated specifically along the target interaction axis in direct proportion to the rate of growth cone advance. Retrograde actin flow adjacent to the interaction axis was unperturbed. Our results suggest that growth cones transduce retrograde F-actin flux into forward movement by modulating F-actin-substrate coupling efficiency.

Actins↗

CMP-KDO synthetase: overproduction and application to the synthesis of CMP-KDO and analogs.

CTP:CMP-3-deoxy-manno-octulosonate cytidylyltransferase (CMP-KDO synthetase, EC 2.7.7.38) has been cloned and overexpressed in Escherichia coli. The structure gene was amplified from the total DNA of E. coli K-235 through the primer-directed polymerase chain reaction. The gene was then cloned into lambda ZAP vector at the EcoRI and XbaI restriction sites and overexpressed in E. coli Sure strain at a level approximately 400 times as much as that produced in the host strain. Application of the enzyme to the synthesis of cytidine 5'-monophospho-3-deoxy-D-manno-2-octulosonic acid (CMP-KDO) and analogs was studied. Of several KDO analogs tested, 5-fluoro-2-keto-3,5-dideoxyoctulosonic acid (5-FKDO) was found to be a good substrate of the enzyme, and the product (CMP-5-FKDO) was prepared and characterized, representing the first stable CMP-KDO analog prepared enzymatically to date. The natural enzyme product, CMP-KDO, was however quite unstable (t1/2 = 19 min, in 50 mM MgCl2, 0.2 M Tris buffer, pH 9.0). A mechanism for the decomposition of CMP-KDO involving the hydrogen bonding interactions between the OH groups of C-5 and C-7 (and/or C-8) and the phosphate oxygens was proposed.

Base Sequence↗

Enzymatic synthesis of a sialyl Lewis X dimer from egg yolk as an inhibitor of E-selectin.

A dimeric sialyl Lewis X (SLex) glycopeptide was synthesized enzymatically in three steps from an N-linked oligosaccharide prepared from egg yolk. Treatment of delipidated hen egg yolk with the protease Orientase and neuraminidase gave a dimeric N-acetyllactosamine-containing oligosaccharide linked to asparagine. Addition of sialic acid and fucose catalyzed by alpha-2,3-sialyltransferase and alpha-1,3-fucosyltransferase provided the dimeric SLex, which was shown to be as active as monomeric SLex as an inhibitor of E-selectin with IC50 0.75 mM. The synthetic dimeric SLex of the mucin type (i.e. SLex linked to the 3- and 6-OH groups of Gal) is, however, about five times as active as the monomer. It is suggested that dimeric SLex glycopeptides of the mucin type would be effective ligands for E-selectin.

Animals↗

Droloxifene inhibits cortical bone turnover associated with estrogen deficiency in rats.

Droloxifene (DRO), an estrogen antagonist/agonist, has been shown to possess estrogen-like effects in inhibiting bone turnover leading to cancellous bone loss in ovariectomized (OVX) rats. The purpose of this study was to determine the effects of DRO on cortical bone turnover in OVX rats. Sprague-Dawley female rats at 5 months of age were sham-operated (sham, n = 8) and orally treated with vehicle, or OVX (n = 56) and orally treated with either vehicle, DRO at 0.1, 1, 5, or 10 mg/kg/day, or 17 alpha-ethynyl estradiol (EE) at 3 or 30 micrograms/kg/day for 4 weeks. Static and dynamic cortical bone histomorphometry was performed on double fluorescent labeled, undecalcified cross sections of tibial diaphyses (proximal to the tibiofibular junction). There were no significant differences in tibial diaphyseal cross sectional area, marrow cavity area, and cortical bone area between groups after 4 weeks of administration. Periosteal mineralizing surface, mineral apposition rate, and bone formation rate-surface referent and endocortical eroded surface increased significantly, while endocortical mineral apposition rate and bone formation rate-surface referent increased nonsignificantly in OVX controls compared to sham controls. Treatment with DRO at doses of 0.1 to 10 mg/kg/day dose-dependently attenuated the OVX-induced higher bone formation indices in both the periosteal and endocortical surfaces and higher bone resorption index in the endocortical surface. At the highest dose (10 mg/kg/day), DRO completely inhibited the increases in bone formation and resorption indices in OVX rats.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Early effects of prostaglandin E2 on bone formation and resorption in different bone sites of rats.

The aim of this study was to determine early effects of prostaglandin E2 (PGE2) on bone mass, formation and resorption in a growing cancellous bone site (the proximal tibial metaphysis, PTM), non-growing cancellous bone site (the distal tibial metaphysis, DTM), and cortical bone site (the tibial shaft, TX) with histomorphometric analysis. Six mg PGE2/kg/d was given s.c. to 6-month-old Sprague-Dawley female rats for 5, 10 or 16 days. Double fluorescent labels were given to 0, 10- and 16-day PGE2 treatment and 16-day control groups. Significant increase in bone mass was found after 16 days treatment in cancellous bone sites but not in the cortical bone site. Stimulated bone formation, indicated by the increase in osteoid perimeter, was observed as early as 5 days post-treatment in all 3 bone sites. Bone formation indices were increased after 10 days of treatment, however, there was no difference in selected bone formation indices between 10 and 16 days PGE2 treatments at all 3 bone sites. Significant increase in eroded surface and eroded surface covered with osteoid was observed in cancellous bone sites after 5 days, but decreased after 10 days of treatment. Although the eroded surface was not elevated in TX at the 5th day, the eroded surface covered with osteoid was increased on endocortical surface which indicated that PGE2 stimulated bone resorption on this surface prior to day 5. We concluded that PGE2 stimulated the bone formation and resorption as early as 5 days post-treatment. The levels of stimulated bone formation was TX > DTM > PTM.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Effects of cromakalim and nicorandil on intraocular pressure after topical administration in rabbit eyes.

In the study two potassium channel activators, cromakalim and nicorandil, were investigated in rabbits using three different levels of intraocular pressures (IOPs), including alpha-chymotrypsin-induced ocular hypertension, hypotension (IOP recovery method) and normal tension. Cromakalim significantly increased IOP during the initial period in normotensive and hypotensive rabbits, but in the later time, reduced IOP in the alpha-chymotrypsin-induced model. Nicorandil had a similar but less potent effect. In addition, cromakalim also affected ocular blood flows, which had a trend to reduce blood flow about 2-3 hr later, after topical administration of the eyedrop. Two possible mechanisms for increasing IOP effect of potassium channel activators were: (a) enhancing the formation of aqueous humor; (b) relaxing the trabecular meshwork to reduce the outflow of aqueous humor.

Administration, Topical↗

Unreamed interlocking nail versus external fixator for open type III tibia fractures.

We undertook a prospective study comparing the unreamed interlocking nail to Hoffmann external skeletal fixation (ESF) in the treatment of 36 consecutive patients with open type IIIA and IIIB tibia fractures. The choice of interlocking nail or Hoffmann ESF was randomized, ultimately producing four different patient groups: group 1, type IIIA fractures treated by interlocking nail; group 2, type IIIA fractures treated by ESF; group 3, type IIIB fractures with interlocking nail; and group 4, type IIIB fractures with ESF. The average length of follow-up was 20.5 months. The infection rate was highest in group 3 (3 of 8). The malrotation, malunion, and nonunion rates were highest in group 4 and lowest in group 1. These results suggest the unreamed interlocking nail is a good choice for the treatment of open type IIIA tibia fractures, but not recommended for the treatment of open type IIIB tibia fractures because of the high infection rate.

Adolescent↗

Regulation of alternative 3' splice site selection by constitutive splicing factors.

We have devised an in vitro splicing assay in which the mutually exclusive exons 2 and 3 of alpha-tropomyosin act as competing 3' splice sites for joining to exon 1. Splicing in normal HeLa cell nuclear extracts results in almost exclusive joining of exons 1 and 3. Splicing in decreased nuclear extract concentrations and decreased ionic strength results in increased 1-2 splicing. We have used this assay to determine the role of three constitutive pre-mRNA splicing factors on alternative 3' splice site selection. Polypyrimidine tract binding protein (PTB) was found to inhibit the splicing of introns containing a strong binding site for this factor. However, the inhibitory effect of PTB could be partially reversed if pre-mRNAs were preincubated with U2 auxiliary factor (U2AF) prior to splicing in PTB-supplemented extracts. For alpha-tropomyosin, regulation of splicing by PTB and U2AF primarily affected the joining of exons 1-3 with no dramatic increases in 1-2 splicing being detected. Preincubation of pre-mRNAs with SR proteins led to small increases in 1-2 splicing. However, if pre-mRNAs were preincubated with SR proteins followed by splicing in PTB-supplemented extracts, there was a nearly complete reversal of the normal 1-2 to 1-3 splicing ratios. Thus, multiple pairwise, and sometimes antagonizing, interactions between constitutive pre-mRNA splicing factors and the pre-mRNA can regulate 3' splice site selection.

Base Sequence↗

Distance from the skin to the cervical epidural space.

BACKGROUND: Cervical epidural blockade provides effective regional analgesia in clinical anesthesia and pain clinics. However, the risk for performing cervical epidural block is higher than lumber epidural anesthesia. We studied the distance from the skin to the cervical epidural space to determine whether there is any relationship between patient age, height, body weight, body mass index (BMI) and the distance from the skin to the epidural space. METHODS: The study included 34 patients who underwent cervical epidural analgesic for orthopedic or plastic surgery. Cervical epidural catheterization was performed at C7-T1 intervertebral space by a midline approach with a 18-G Touhy needle. The depth of the epidural space from the skin was measured by a standard ruler. RESULTS: The distance from the skin to the cervical epidural space at C7-T1 interspace was 4.81 +/- 0.81 cm (mean +/- SD). Linear regression analysis revealed significant correlation between body weight (r2 = 0.53, p < 0.0001), BMI (r2 = 0.58, p < 0.0001) and the depth of the cervical epidural space. CONCLUSIONS: These results indicated that body weight and BMI could be a guideline for identification of epidural space during cervical epidural anesthesia.

Adolescent↗

Characterization of gamma-crystallin from a catfish: structural characterization of one major isoform with high methionine by cDNA sequencing.

gamma-Crystallin is the major and most abundant lens protein present in the eye lens of most teleostean fishes. To facilitate structural characterization of gamma-crystallins isolated from the lens of the catfishes (Clarias fuscus), a cDNA mixture was synthesized from the poly(A)+mRNA isolated from fresh eye lenses, and amplification by polymerase chain reaction (PCR) was adopted to obtain cDNAs encoding various gamma-crystallins. Plasmids of transformed E. coli strain JM109 containing amplified gamma-crystallin cDNAs were purified and prepared for nucleotide sequencing by the dideoxynucleotide chain-termination method. Sequencing more than five clones containing DNA inserts of 0.52 kb revealed the presence of one major isoform with a complete reading frame of 534 base pairs, covering a gamma-crystallin (gamma M1) with a deduced protein sequence of 177 amino acids excluding the initiating methionine. It was of interest to find that this crystallin of pI 9.1 contains a high-methionine content of 15.3% in contrast to those gamma-crystallins of low-methionine content from most mammalian lenses. Sequence comparisons of catfish gamma M1-crystallin with those published sequences of gamma-crystallins from carp, bovine and mouse lenses indicate that there is approx. an 82% sequence homology between the catfish and the carp species of piscine class whereas only 51-58% homology is found between mammals and the catfish. Moreover the differences in the hydropathy profiles for these two groups of gamma-crystallins, i.e. one with a high-methionine content from teleostean fishes and the other with a low-methionine content from mammalian species, reflect a distinct variance in the polarity distributions of surface amino acids in these crystallins.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acid Sequence↗

Substituted (S)-phenylpiperidines and rigid congeners as preferential dopamine autoreceptor antagonists: synthesis and structure-activity relationships.

A series of (S)-phenylpiperidines in which the substituents on the aromatic ring and nitrogen have been varied has been prepared. They have been evaluated pharmacologically to explore the importance of these substituents for the interaction with central dopamine (DA) receptors. On the basis of biochemical and behavioral data in rats, several of these compounds are characterized as centrally acting DA autoreceptor antagonists. (S)-Phenylpiperidines having an aromatic substituent with a high group dipole moment in the 3-position, i.e., meta with respect to the piperidine ring, and being N-substituted with a propyl group were found to be highly active in vivo on the synthesis and turnover of dopamine. However, they do not induce strong hypoactivity or catalepsy. Interestingly, the most active compounds in vivo were found to display only low affinity for DA D2 and D3 receptors in vitro. In addition, 7-triflate-substituted octahydrobenzo[f]quinolines and 6-triflate-substituted hexahydro-1H-benz[e]indoles have been prepared and pharmacologically evaluated. The trans isomers of these rigid structures were found to display a pharmacological profile similar to that of the flexible phenylpiperidines. The corresponding cis isomers were found to be inactive in vivo.

Animals↗

Iron protoporphyrin IX (hemin) but not tin or zinc protoporphyrin IX can stimulate gene expression in K562 cells from enhancer elements containing binding sites for NF-E2.

Many genes whose transcription is erythroid-specific contain enhancer or promoter elements that bind the transcription factor NF-E2. Hemin induction increases the expression of globin genes in the human erythroleukemia cell line K562, and increases the expression of reporters gene regulated by an enhancer elements containing binding sites for NF-E2. The failure of metalloporphyrins other than hemin to stimulate the transient expression of a CAT reporter gene linked to an enhancer element containing a binding site for NF-E2 was correlated with their failure to induce benzidine-positive K562 cells and increase the steady-state level of gamma-globin mRNA. This study suggests that elevated levels of zinc protoporphyrin IX found in the anemia of chronic disease, iron deficiency, and lead poisoning may contribute to a decrease in globin gene expression by interfering with the transcriptional activity of enhancer elements containing binding sites for NF-E2.

Base Sequence↗

The relaxant action of osthole isolated from Angelica pubescens in guinea-pig trachea.

The effect of osthole, isolated from Angelica pubescens, on the contraction of guinea-pig trachea was studied. Osthole (25-100 mumol/l), theophylline (10-1000 mumol/l) and higher concentrations of nifedipine (0.1-100 mumol/l) suppressed the contraction response curves of tracheal smooth muscle caused by carbachol, prostaglandin F2 alpha (PGF2 alpha), U46619 (thromboxane A2 analogue) and leukotriene C4 (LTC4) in a concentration-dependent manner. The contraction caused by high K+ (120 mmol/l) and cumulative concentrations of CaCl2 (0.03-3 mmol/l) was also inhibited concentration-dependently by osthole (25-100 mumol/l), theophylline (10-1000 mumol/l) and lower concentrations of nifedipine (0.01-0.1 mumol/l). The relaxant actions of osthole were not affected by propranolol (1 mumol/l), glibenclamide (10 mumol/l) or removal of tracheal epithelium. Osthole (100 mumol/l) was still effective in causing tracheal relaxation in the presence of nifedipine (1 mumol/l). In Ca(2+)-free- and EGTA (0.2 mmol/l)-containing medium, the relaxing effect of osthole was more potent than in normal Krebs solution. Osthole (25 and 50 mumol/l) caused 2.9 and 6.5, or 3.0 and 5.6 fold, respectively, increase in potency of forskolin or sodium nitroprusside in causing tracheal relaxation but did not affect that by cromakalim. Osthole (50 mumol/l) enhanced the increase in tissue cAMP and cGMP levels induced by forskolin and sodium nitroprusside, respectively, and in higher concentrations (100 and 250 mumol/l), itself increased markedly tissue cAMP and cGMP contents. Osthole (10-250 mol/l) inhibited the activity of cAMP and cGMP phosphodiesterases in a concentration-dependent manner. It is concluded that osthole exerts a non-specific relaxant effect on the trachealis by inhibiting the cAMP and cGMP phosphodiesterases.

3',5'-Cyclic-AMP Phosphodiesterases↗

Ornithine decarboxylase (ODC) levels in children with reflux esophagitis.

Reflux esophagitis is a common disease in infants and can be diagnosed largely by esophageal biopsy. In adults, chronic esophagitis may lead to Barrett's esophagus, a premalignant condition for esophageal cancer development. Ornithine decarboxylase (ODC) is used as an early marker for colon cancer development. No data are available on the role of ODC in reflux esophagitis in the pediatric population. In this study we retrospectively analyzed ODC activity in esophageal biopsies of children who underwent upper endoscopy. According to the esophageal histology, patients were divided into three groups: normal mucosa, mild, and moderate/severe esophagitis. None of our patients had esophageal metaplasia or cancer. ODC level was significantly higher in the moderate/severe esophagitis group compared to mild and normal mucosa group. We conclude that ODC activity is directly proportional to the severity of the esophageal inflammation/regenerative process in children with reflux esophagitis.

Biopsy↗

Triflavin, an Arg-Gly-Asp-containing peptide, inhibits human cervical carcinoma (HeLa) cell-substratum adhesion through an RGD-dependent mechanism.

Triflavin, a 7.5-kDa cysteine-rich polypeptide purified from Trimeresurus flavoviridis snake venom, belongs to a family of RGD-containing peptides, termed disintegrins, that have been isolated from the venoms of various vipers and shown to be potent inhibitors of platelet aggregation. The interaction of tumor cells with extracellular matrices such as fibronectin, vitronectin, and collagen has been shown to be mediated through a family of cell surface receptors that specifically recognize an arginine-glycine-aspartic acid (RGD) sequence within each adhesive protein. In this study, we show that triflavin dose-dependently inhibited adhesion of human cervical carcinoma (HeLa) cells to extracellular matrices (ECMs; i.e., fibronectin, fibrinogen, and vitronectin). On the other hand, triflavin exerted a limited inhibitory effect on cell adhesion to laminin and collagen (type I and IV). On a molar basis, triflavin is approximately 800 times more potent than Gly-Arg-Gly-Asp-Ser (GRGDS) at inhibiting cell adhesion. When immobilized on plate, triflavin significantly promoted HeLa cell adhesion, and this attachment was inhibited by GRGDS. Furthermore, FITC-conjugated triflavin bound to cells in a saturable manner and its binding was inhibited by GRGDS. In addition, triflavin did not affect [3H]thymidine uptake of HeLa cells during a 3-day incubation. These results suggest that triflavin probably binds to integrin receptors expressed on HeLa cell surface via its RGD sequence within its molecule, thereby inhibiting the adhesion of extracellular matrices to HeLa cells.

Amino Acid Sequence↗

Cyclic AMP modulates fast axonal transport in Aplysia bag cell neurons by increasing the probability of single organelle movement.

Stimulation of Aplysia bag cell neurons triggers elevation of cAMP and prolonged secretion of ELH neuropeptide. Using video-enhanced microscopy to track individual organelle movements in bag cell neurons, we find that organelle translocation consists of periods of movement interrupted by stationary episodes. cAMP elevation leads to a 2- to 3-fold enhancement of the average rate of organelle transport in both anterograde and retrograde directions. This effect does not result from alteration of the instantaneous velocity of organelle transport along microtubules, but rather from an increase in the proportion of time individual organelles spend in motion. Biochemical measurements also provided evidence that cAMP elevation promotes ELH peptide translocation from the somata into axons. Enhanced transport of ELH as a result of these effects may contribute to the replenishment of neuropeptide-containing vesicles at release sites during prolonged periods of secretion.

Animals↗

Cytoskeletal reorganization underlying growth cone motility.

Recent studies have implicated cytoskeletal dynamics as an important component in directing neuronal outgrowth. By using modern imaging techniques to observe the kinetics of individual cytoskeletal elements in living cells, these results have converged upon a common theme: functional coupling between the intracellular cytoskeleton and extracellular substrates, and regulation thereof, appears to be crucial in controlling neuronal migration.

Actins↗