Search PubMedSearch

Biomedical subjects

C H Lin

Publications and source records attributed to C H Lin.

At least 19 recordsLinked to original sources

Why is CMP-ketodeoxyoctonate highly unstable?

CMP-ketodeoxyoctonate (CMP-KDO) and analogs, including CMP-5-deoxy-5-fluoro-KDO, CMP-5-deoxy-KDO, and CMP-5-epi-KDO, were prepared from CTP and the corresponding KDO sugars catalyzed by CMP-KDO synthetase. These analogs were found to be much more stable than CMP-KDO (t1/2 = 0.57 h) yet less stable than CMP-sialic acid (t1/2 = 151 h). Fluorination at the 5-position of CMP-KDO has a 200-fold enhanced stability compared to the 156-fold enhancement for the 3R-fluoro analog, probably due to the loss of H-bonding interactions (for the 5-F derivative) and the cause of remote inductive effect (for the 3- and the 5-F analogs) on the glycosidic cleavage. Hydrolysis of CMP-KDO is perhaps facilitated by an intramolecular hydrogen bond from the 5-OH group with the phosphate oxygen as demonstrated by the 3-5-fold enhanced stability of CMP-5-epi-KDO and CMP-5-deoxy-KDO compared to CMP-KDO and by molecular modeling studies of water-solvated CMP-KDO. Hydrolysis of CMP-KDO also was found to be subject to a substantial solvent isotope effect (kH/kD = 2.7), which is significantly different from the reported solvent isotope effect for the hydrolysis of sialyglycosides (kH/kD = 0.86) and dependent on both buffer and magnesium ion concentrations. Considering these results and molecular modeling studies, it is proposed that the hydrolysis of CMP-KDO under neutral conditions proceeds through a glycosidic cleavage which occurs at the electronically favorable twist-boat conformation, facilitated by intramolecular H-bonding interaction of the 4-, 5- and 7- (or 8-) OH groups and the phosphate oxygen and by the leaving group magnesium ion complexation.

Buffers

Dissection of glutathionylspermidine synthetase/amidase from Escherichia coli into autonomously folding and functional synthetase and amidase domains.

The bifunctional glutathionylspermidine synthetase/amidase from Escherichia coli catalyzes both the ATP-dependent formation of an amide bond between N1 of spermidine (N-(3-amino)propyl-1, 4-diaminobutane) and the glycine carboxylate of glutathione (gamma-Glu-Cys-Gly) and the opposing hydrolysis of this amide bond (Bollinger, J. M., Jr., Kwon, D. S., Huisman, G. W., Kolter, R., and Walsh, C. T. (1995) J. Biol. Chem. 270, 14031-14041). In our previous work describing its initial characterization, we proposed that the 619-amino acid (70 kDa) protein might possess separate amidase (N-terminal) and synthetase (C-terminal) domains. In the present study, we have confirmed this hypothesis by expression of independently folding and functional amidase and synthetase modules. A fragment containing the C-terminal 431 amino acids (50 kDa) has synthetase activity only, with steady-state kinetic parameters similar to the full-length protein. A fragment containing the N-terminal 225 amino acids (25 kDa) has amidase activity only and is significantly activated relative to the full-length protein for hydrolysis of glutathionylspermidine analogs. This observation suggests that the amidase activity in the full-length protein is negatively autoregulated. The amidase active site catalyzes hydrolysis of amide and ester derivatives of glutathione (e.g. glutathione ethyl ester and glutathione amide) but lacks activity toward acetylspermidine (N1 and N8) and acetylspermine (N1), indicating that glutathione provides the primary recognition determinants for glutathionylspermidine amide bond cleavage. No metal ion is required for the amidase activity. A tetrahedral phosphonate analogue of glutathionylspermidine, designed as a mimic of the proposed tetrahedral intermediate for either reaction, inhibits the synthetase activity (Ki approximately 10 microM) but does not inhibit the amidase activity.

Amide Synthases

Metacarpal hand: classification and guidelines for microsurgical reconstruction with toe transfers.

Metacarpal hand refers to the hand that has lost its prehensile ability through amputation of all fingers with or without amputation of the thumb. Functional restoration can be achieved by a wide variety of microvascular toe transfer techniques. When deciding which procedure should be used, careful consideration must be given to the level of amputation of the fingers as well as the functional status of the remaining thumb. In this article we propose a classification for the various patterns of the metacarpal hand along with guidelines for selection of the proper toe transfer procedure.

Adult

Sustained-release methylphenidate for cognitive impairment in HIV-1-infected drug abusers: a pilot study.

Other investigators have reported clinical improvement from psychostimulant drugs in patients with HIV-1-related cognitive impairment. However, no previous research has substantiated this claim by using a controlled study design. We examined the efficacy of sustained-release methylphenidate (MSR) in a sample of substance abusers with HIV-1-related cognitive impairment. Eight HIV-1-infected methadone patients with impaired neuropsychological test performance participated in an inpatient double-blind placebo-controlled crossover trial of MSR 20-40 mg/day. On a composite neuropsychological measure, patients improved significantly from baseline during MSR but not placebo treatment. Nevertheless, MSR performance did not differ significantly from placebo performance. Patients appeared to improve as a function of time, regardless of sequence, with somewhat more improvement during MSR than placebo treatment.

Adult

Effects of overexpressing wild-type and mutant PDGF receptors on translocation of GLUT4 in transfected rat adipose cells.

Activation of phosphatidylinositol 3-kinase (PI3K) by insulin is necessary for the effect of insulin to recruit GLUT4 to the cell surface in insulin target cells. In adipose cells, stimulation of endogenous PDGF receptors (PDGF-R) results in increased PI3K activity without causing recruitment of GLUT4. We overexpressed wild-type or mutant forms of the PDGF-R in rat adipose cells and examined their effects on PDGF- and insulin-stimulated recruitment of co-transfected epitope-tagged GLUT4. Control cells expressing only tagged GLUT4 had a 3-fold increase in cell surface GLUT4 upon insulin stimulation but no response to PDGF. Cells overexpressing wild-type PDGF-R maintained insulin responsiveness and, in addition, acquired the ability to recruit GLUT4 in response to PDGF. Surprisingly, overexpression of F740/ F751 (mutant PDGF-R unable to directly activate PI3K) led to similar results. Nevertheless, wortmannin (an inhibitor of PI3K) blocked effects of both PDGF and insulin to recruit GLUT4. Our data suggest that overexpression of PDGF-R mediates positive effects on GLUT4 translocation by a wortmannin sensitive pathway not dependent on direct interaction of the PDGF-R with PI3K.

Adipose Tissue

Gain of D-alanyl-D-lactate or D-lactyl-D-alanine synthetase activities in three active-site mutants of the Escherichia coli D-alanyl-D-alanine ligase B.

Escherichia coli D-Ala-D-Ala ligase (Ddl) and the vancomycin resistance-conferring protein VanA are homologues, but VanA has gained the ability to activate D-lactate (D-Lac) and make the depsipeptide D-Ala-D-Lac as well as D-Ala-D-Ala. This depsipeptide ligase activity of VanA is its crucial catalytic function necessary for phenotypic vancomycin resistance. We report here that three E. coli DdlB active-site mutants that we made previously based on X-ray structure/function predictions have gained interesting new ligase activities. Y216, S150, and E15 form a hydrogen-bonding triad that orients an omega-loop to close over the active site and also to orient substrate D-Ala1. Mutants Y216F and S150A have gained depsipeptide (D-Ala-D-Lac, D-Ala-D-hydroxybutyrate) ligase activity with dipeptide/depsipeptide partition ratios that mimic the pH behavior of VanA. E15Q has negligible depsipeptide synthetase activity but now uniquely activates D-Lac as the electrophilic rather than the nucleophilic partner for condensation with D-Ala to make a regioisomeric D-Lac-D-Ala, an amide rather than an ester product. These results provide insights into the active-site architecture of the ligases and the subsites for recognition of D-Ala VS D-Lac and predict the Y216F substitution will impart D-Ala-D-Lac synthetase activity to Ddls from Grampositive bacteria with intrinsic resistance to vancomycin.

Alanine

Integrin alpha v beta 3 and phospholipase C regulate prostacyclin formation of endothelial cells caused by ancrod-generated fibrin.

Ancrod-generated fibrin has been shown to stimulate prostacyclin synthesis of human umbilical vein endothelial cells (Chang et al., 1994, Biochem. Biophys. Res. Commun. 203, 1920). We further investigated its mechanism of action. The increment of 6-keto prostaglandin F1 alpha stimulated by ancrod-generated fibrin was almost completely inhibited when endothelial cells were either pretreated with 50 microM 8-(N,N'-diethylamino)octyl-3,4,5- trimethoxybenzoate (TMB-8) or preloaded with 15 microM 1,2-bis(2- aminophenoxy)ethane-N,N,N',N'-tetraacetic acid (BAPTA). 6-Keto prostaglandin F1 alpha production during 2 and 10 h incubation period was also inhibited by 1.2 mM ethyleneglycol-bis-(beta-aminoethylether)-N,N,N',N'-tetraace tic acid (EGTA) (41 +/- 12 and 53 +/- 17% inhibition, respectively). Further, ancrod-generated fibrin caused a rapid-onset increase in [3h]inositol monophosphate (IP1) formation in endothelial cells. This increase in IP1 was significantly inhibited by 1 mM Gly-Pro-Arg-Pro, 1 mM neomycin or 100 ng/ml pertussis toxin. At the same time, neomycin and pertussis toxin also significantly inhibited 6-keto prostaglandin F1 alpha synthesis of endothelial cells stimulated by ancrod-generated fibrin. Additionally, the increment of IP1 production as well as prostacyclin production were significantly inhibited by monoclonal antibodies directed against alpha v beta 3. These results suggest that intra- and extra-cellular Ca2+ participate in prostacyclin synthesis stimulated by ancrod-generated fibrin. Ancrod-generated fibrin stimulates pertussis toxin-sensitive G-protein regulated phosphoinositide breakdown, which is responsible for prostacyclin synthesis. This augmentation in prostacyclin synthesis and phosphoinositide breakdown caused by ancrod-generated fibrin area, at least in part, mediated by fibrin binding to integrin alpha v beta 3 on endothelial cells.

6-Ketoprostaglandin F1 alpha

A door-to-door survey of Parkinson's disease in a Chinese population in Kinmen.

BACKGROUND: Most published studies have shown lower prevalence rates of Parkinson's disease (PD) in Asian and black African than in Western countries, leading to the hypothesis that Asians and blacks might be protected from PD. OBJECTIVE: To investigate the prevalence of PD in a Chinese population. DESIGN: Community-based survey. SETTING: Registered residents 50 years of age or older (N = 5061) on the islet of Kinmen located off the southeastern coast of China [corrected]. METHOD: Single-phase door-to-door survey by neurologists. All participants were administered a questionnaire and received motor examinations of the Unified Parkinson's Disease Rating Scale. RESULTS: The participation rate was 96% (N = 3915) among 4158 contacted individuals. Twenty-three cases of PD were identified, including three cases with dementia. The crude prevalence rate of PD was 587 (95% confidence interval (CI), 373 to 884) per 100,000 persons 50 years of age or older. Assuming no case of PD among individuals under 50 years of age, the prevalence rate was 119 (95% CI, 80 to 169) per 100,000 for the total population. CONCLUSIONS: The prevalence rates of PD in Kinmen were much higher than those reported from mainland China, but slightly lower than those reported from more developed countries. The present findings suggest that, instead of genetic factors, differences in case-ascertainment, life expectancy, and the length of survival with PD may be more important contributors to the variations in observed PD prevalence rates.

Aged

Effects of 4-aminopyridine on saxitoxin intoxication.

Effects of 4-aminopyridine (4-AP) on neurotoxicity induced by saxitoxin (STX) are investigated in this study. In vitro, twitch tension evoked by nerve stimulation was depressed by STX (1.35 nM) in rat phrenic nerve-diaphragm preparations, and this inhibition was antagonized by 4-AP (0.1 mM). In addition, 4-AP (0.1 mM) restored the firing of membrane action potentials that were suppressed or even abolished by 0.334 nM STX in frog sartorius muscles. In vivo studies showed that 4-AP (0.3 mg/kg, iv) significantly reversed the respiratory rate, tidal volume, and blood pressure to normal values in anesthetized STX-toxicosis rats. Furthermore, 4-AP (0.75-6 mg/kg, ip) not only prolonged the survival time but also decreased the mortality of mice (71-43%) at a normally lethal dose (30 micrograms/kg, ip) of STX. The results suggest that 4-AP may be useful as an antidote for STX intoxication.

4-Aminopyridine

Analysis of upregulated cellular genes in pseudorabies virus infection: use of mRNA differential display.

Virus infection usually alters the host cell and shuts off the synthesis of cellular macromolecules. In order to screen the upregulated cellular transcripts during pseudorabies virus (PRV) infection, we employed the mRNA differential display technique. The screen is based on positive selection at the mRNA level for genes expressed in normal cells but increased in corresponding PRV-infected cells. Over 14000 species of mRNA, isolated from mock-infected and PRV-infected Madin-Darby bovine kidney cell at 1 h post infection, were screened, and 40 candidate clones were recovered. Southern blot analysis revealed that 17 out of 40 candidate clones, were enhanced in PRV-infected cells. Partial DNA sequences demonstrated that 17 clones were distinct cellular genes, including those encoding the modulators of signal transduction (saposin, 14-3-3, adenylate kinase, adenylyl cyclase, protein kinase C-alpha), those encoding the components of translation (fau, ribosomal proteins S11, L31, L36), other cellular genes (peptidase, cyclin E, rch1, oligo-C-rich single-stranded nucleic acid binding protein, rap, arginyl-tRNA synthetase), and two unknown genes. Thus, this study identifies successfully the transcriptionally regulated cellular genes which are associated with PRV infection. Furthermore, this study provides support for the use of mRNA differential display as a method to rapidly isolate differentially expressed genes in virus infection.

Animals

Absence of bacteremia after gastrointestinal procedures in children.

BACKGROUND: Transient bacteremia after certain gastrointestinal endoscopies is well documented in adult patients; however, experience in pediatric patients is very limited. We conducted a prospective study to determine the frequency of bacteremia after common endoscopic procedures in children. METHODS: A total of 108 endoscopies were performed in 95 patients (age range 8 months to 17 years; mean age 10.2 years). Procedures included 68 esophagogastroduodenoscopies (EGDs), 29 colonoscopies, and 11 flexible sigmoidoscopies. Most procedures (88) were performed with patients under conscious sedation; 20 were under general anesthesia with endotracheal intubation. Biopsy specimens were obtained from all patients. Blood samples for aerobic and anaerobic cultures were obtained prior to, and within 5 minutes of, completion of the procedure. In patients who underwent general anesthesia, a third sample was obtained 5 minutes after endotracheal intubation and before endoscopy. RESULTS: Four of the pre-endoscopic blood cultures were positive. Two cultures were positive after endotracheal intubation, but were negative after endoscopy. Four cultures were positive after endoscopy. All organisms were skin or environmental flora and were considered contaminants. All patients with positive cultures remained asymptomatic during the 72 hours after the procedure. CONCLUSION: We conclude that clinically relevant bacteremia is very infrequent following routine endoscopic procedures with biopsies in immunocompetent children.

Adolescent

Myosin drives retrograde F-actin flow in neuronal growth cones.

Actin filaments assembled at the leading edge of neuronal growth cones are centripetally transported via retrograde F-actin flow, a process fundamental to growth cone guidance and other forms of directed cell motility. Here we investigated the role of myosins in retrograde flow, using two distinct modes of myosin inhibition: microinjection of NEM inactivated myosin S1 fragments, or treatment with 2,3-butanedione-2-monoxime, and inhibitor of myosin ATPase. Both treatments resulted in dose-dependent attenuation of retrograde F-actin flow and growth of filopodia. Growth was cytochalasin sensitive and directly proportional to the degree of myosin inhibition, suggesting that retrograde flow results from superimposition of two independent processes: actin assembly and myosin-based filament retraction. These results provide the first direct evidence for myosin involvement in neuronal growth cone function.

Actins

Encapsulating an amino acid in a DNA fold.

Here we present the first solution structure of a ligand-DNA aptamer complex. Our NMR-molecular dynamics structural studies of the interaction between argininamide and a DNA stem-loop complex establishes that the hairpin loop DNA binding site undergoes an adaptive conformational transition on complex formation. The tip of the DNA loop folds down towards the stem and sandwiches the bound argininamide between reversed Hoogsteen A.C and Watson-Crick G.C base pairs. The argininamide is encapsulated within the structured DNA loop and is stabilized by an intricate set of intermolecular hydrogen bonds and stacking interactions. The structure of the complex lays out the molecular principles defining both the architecture of the internal cavity and the recognition elements that could contribute to ligand discrimination.

Arginine

The salvage of a degloved hand skin flap by arteriovenous shunting.

Nine cases of hand degloving injuries were treated successfully with arteriovenous shunting technique. Of these nine cases, four were degloved from the wrist level and one from the forearm, three were degloved at the palm and one at the dorsum of the hand. All injuries resulted in distally based skin flaps, which were either superficial to the palmar fascia or within the subcutaneous layer. Lack of active bleeding from the periphery of the avulsed flaps substantiated circulatory compromise before revascularization. Survival of the avulsed flaps was achieved by directing the proximal arterial flow into the venous channel within the avulsed skin flaps. The post-operative care and rehabilitation were straightforward, and functional results were satisfactory.

Adolescent

Aesthetic refinements in toe-to-hand transfer surgery.

Techniques for aesthetic refinement are as important as those for functional improvement in toe-to-hand transfer. The appearance of the thumb reconstructed using various types of great toe transfer can be improved by reduction of the soft tissue, bone, interphalangeal joint, and nail and by secondary pulp reduction and contouring procedures. Finger and thumb reconstructions using lesser toes can be improved aesthetically by minimal inclusion of adipofibrous tissue under the plantar skin flap especially at the metatarsophalangeal joint region, thus decreasing the anterior-posterior bulkiness. Tight extensor repair, temporary K-pin fixation of the proximal and distal interphalangeal joint in extension, followed by prolonged use of a nighttime extension splint and secondary pulp reduction help to avoid the claw and drumstick appearances of the transferred lesser toe. Adequate soft-tissue coverage, cruciate skin incisions, extensive mobilization, and thinning and trimming of the skin flaps of the digital amputation stump lead to a smooth junction between the amputated digit and the transferred toe. In the distal digital reconstruction, skeletonization of medial and lateral neurovascular bundles of the harvested toe helps primary closure of the digital wound, thus avoiding the unsightly skin graft on the sides of the reconstructed digit. Regarding the donor foot, preservation of the proximal 0.5 to 1 cm of the proximal phalangeal stump of the great toe maintains the span of the foot, thus improving donor site appearance. In single lesser toe or combined second and third toe transfer, the proximal phalanx should not be preserved but an optimal web space should be reconstructed. Primary closure without skin graft is essential for aesthetic appearance of the donor foot.

Amputation, Traumatic

Pharmacological characteristics of BDTI, a new isoquinoline-derived beta 2-adrenoceptor agonist, in canine trachea and rat heart.

The tracheal relaxing effects and beta 2-selectivity of BDTI (1-benzyl-6,7-dihydroxy-1,2,3,4-tetrahydroisoquinoline HBr) were investigated in canine trachea and rat heart by radioligand binding assay and pharmacological experiments in comparison with those of other beta-adrenoceptor agonists, salbutamol and isoprenaline. The potency of relaxing effect on carbachol-induced contraction in isolated canine trachea was in the order of isoprenaline (pD2 = 6.70 +/- 0.08) > BDTI (6.11 +/- 0.06) approximately salbutamol (6.14 +/- 0.08). ICI-118,551 (a selective beta 2-antagonist) and atenolol (a selective beta 1-antagonist) inhibited the relaxant action of BDTI with pKB values of 8.4 and 5.3, respectively, corresponding to high affinity for ICI-118,551 and low affinity for atenolol in antagonizing this response. The Kd values of radioligand ([3H]-CGP12177) were 453.3 +/- 30.8 and 563.4 +/- 96.7 pmol/l in cultured canine tracheal smooth muscle cells (TSMCs) and rat cardiomyocytes, respectively, and the Bmax values were 64.6 +/- 10.7 and 245.7 +/- 44.5 fmol/mg protein, respectively. BDTI, salbutamol and isoprenaline inhibited the binding of [3H]-CGP12177 in a concentration-dependent manner in cultured canine TSMCs (Ki 0.73 +/- 0.15, 0.75 +/- 0.21 and 0.24 +/- 0.05 mumol/l, respectively) and rat cardiomyocytes (Ki 2.76 +/- 0.36, 2.31 +/- 0.26 and 0.22 +/- 0.03 mumol/l, respectively). These results demonstrated that BDTI possessed moderate selectivity (3.8-fold) to beta 2-adrenoceptors as judged from the Ki (heart)/Ki (trachea) value (salbutamol 3.1-fold, isoprenaline 0.92-fold). BDTI and salbutamol also stimulated cAMP formation in a concentration-dependent manner in cultured canine TSMCs (EC50 0.5 +/- 0.2 and 0.4 +/- 0.1 mumol/l, respectively) and rat cardiomyocytes (EC50 6.2 +/- 0.5 and 5.7 +/- 0.6 mumol/l, respectively). The selectivity of BDTI and salbutamol for beta 2-adrenoceptors on the cAMP response were 12.4 and 14.3 times, respectively. It is concluded that BDTI is a beta 2-selective adrenoceptor agonist.

Adrenergic beta-2 Receptor Agonists

An Aplysia cell adhesion molecule associated with site-directed actin filament assembly in neuronal growth cones.

During neuronal growth cone-target interactions, a programmed sequence of cytoskeletal remodeling has been described, involving increased actin assembly at the target site and directed microtubule extension into it. The cell adhesion protein apCAM rapidly accumulates at such interaction sites, suggesting a possible role in regulating cytoskeletal remodeling. To test this hypothesis we crosslinked apCAM to varying degrees with antibodies. Secondary immunocomplexes exhibited a classical patching and capping response; in contrast, high density crosslinking of apCAM by antibody coated beads triggered localized actin assembly accompanied by formation of tail-like actin structures referred to as inductopodia. When beads were derivatized with increasing amounts of anti-apCAM they displayed three sequential dose-dependent kinetic states after binding: (1) lateral diffusion in the plane of the membrane; (2) restricted diffusion due to coupling with underlying F-actin; and (3) translocation in the plane of the membrane driven by de novo actin filament assembly local to bead binding sites, i.e. inductopodia formation. In contrast, lectin coated beads were far less efficient in triggering inductopodia formation despite demonstrated membrane protein binding. This work provides evidence that crosslinking of a diffusable membrane protein, apCAM, to threshold levels, can trigger highly localized actin filament assembly and rapid remodeling of neuronal cytoarchitecture.

Actins

Triflavin, an Arg-Gly-Asp-containing peptide, inhibits the adhesion of tumor cells to matrix proteins via binding to multiple integrin receptors expressed on human hepatoma cells.

Integrins are a superfamily of cell surface glycoproteins that promote cellular adhesion. The interaction of integrins with extracellular matrices such as fibronectin and vitronectin has been shown to be mediated through an arginine-glycine-aspartic acid (RGD) sequence within adhesive proteins. Triflavin, a 7.5-kDa cysteine-rich polypeptide purified from Trimeresurus flavoviridis snake venom, belongs to a family of RGD-containing peptides, termed disintegrins. Disintegrins have been isolated from the venom of various vipers and have been shown to be potent inhibitors of platelet aggregation. In this study, we found that human hepatoma cell adhesion to immobilized matrix proteins (i.e. fibronectin, collagen, laminin, and vitronectin) was differentially affected by various anti-integrin monoclonal antibodies (mAbs) (i.e., alpha3beta1, alpha5beta1, alpha6beta1, and alpha v beta3) as well as by the peptide GRGDS. Indirect flow cytometric analysis of hepatoma cells with anti-integrin mAbs demonstrated that alpha6beta1 was uniformly expressed at a high density, while alpha3beta1, and alpha5beta1 were moderately expressed and alpha v beta3 was expressed in small amounts on hepatoma cells, consistent with the results obtained from immunofluorescence microscopic analysis. When immobilized on plastic wells, triflavin promoted hepatoma cell attachment; this cell attachment was inhibited by either GRGDS or mAbs against integrins alpha3beta1, alpha5beta1 and alpha v beta3). In addition, the binding of FITC-conjugated triflavin to hepatoma cells was inhibited by GRGDS, anti-alpha3beta1, antialpha5beta1, and anti-alpha v beta3 mAbs. Among these mAbs, anti-alpha5beta1 exerted the most pronounced inhibitory effect (>70%) on the binding of triflavin to hepatoma cells. Taken together, these results suggest that triflavin binds via its RGD sequence to multiple integrin receptors (i.e., alpha5beta1, alpha3beta1, and alpha v beta3) expressed on the surface of hepatoma cells, resulting in inhibition of hepatoma cell adhesion to extracellular matrices (i.e., fibronectin and vitronectin).

Antibodies, Monoclonal