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Biomedical subjects

F Hong

Publications and source records attributed to F Hong.

At least 37 records · Page 2Linked to original sources

KIF3C and KIF3A form a novel neuronal heteromeric kinesin that associates with membrane vesicles.

We have cloned from rat brain the cDNA encoding an 89,828-Da kinesin-related polypeptide KIF3C that is enriched in brain, retina, and lung. Immunocytochemistry of hippocampal neurons in culture shows that KIF3C is localized to cell bodies, dendrites, and, in lesser amounts, to axons. In subcellular fractionation experiments, KIF3C cofractionates with a distinct population of membrane vesicles. Native KIF3C binds to microtubules in a kinesin-like, nucleotide-dependent manner. KIF3C is most similar to mouse KIF3B and KIF3A, two closely related kinesins that are normally present as a heteromer. In sucrose density gradients, KIF3C sediments at two distinct densities, suggesting that it may be part of two different multimolecular complexes. Immunoprecipitation experiments show that KIF3C is in part associated with KIF3A, but not with KIF3B. Unlike KIF3B, a significant portion of KIF3C is not associated with KIF3A. Consistent with these biochemical properties, the distribution of KIF3C in the CNS has both similarities and differences compared with KIF3A and KIF3B. These results suggest that KIF3C is a vesicle-associated motor that functions both independently and in association with KIF3A.

Amino Acid Sequence↗

Differential modulation of human (Caco-2) colon cancer cell line phenotype by short chain fatty acids.

Fermentation of dietary fiber within the colonic lumen yields short chain fatty acids (SCFA) such as butyrate, which may modulate colonic mucosal biology and inhibit the development of a malignant phenotype. However, different fibers yield varying proportions of various SCFA. We studied the effects of the three most common SCFA, acetate, butyrate, and propionate, on the proliferation, adhesion, and motility of the human intestinal Caco-2 cell line, as well as the effects of these SCFA on alkaline phosphatase and dipeptidyl dipeptidase specific activity (common laboratory markers of differentiation). In addition, we examined the modulation of c-myc protein and the tyrosine phosphorylation of cellular proteins by these SCFA in order to determine whether the variations in the potency of these three SCFA for phenotypic change extended to variations in effects on intracellular signaling and protooncogene expression. All three SCFA tended to slow proliferation, promote brush border enzyme activity, and inhibit both adhesion to and motility across a type I collagen matrix substrate. However, we observed substantial differences in the potency of these three SCFA with regard to these effects. In particular, butyrate was uniformly more potent than an equimolar concentration of acetate whereas equimolar propionate achieved comparable effects with regard to proliferation and brush border enzyme activity but was intermediate between butyrate and acetate with regard to modulation of cell-matrix interactions. Similarly, the SCFA downregulated c-myc protein levels and modulated the phosphorylation of several intracellular tyrosine phosphoproteins, but the effects of the three SCFA varied substantially for these parameters. These results suggest that the common short chain fatty acids are not equipotent in their effects on human Caco-2 colon cancer cell biology. Such differences in potency could contribute to the observed differences in effects of different dietary fibers in vivo.

Acetates↗

Safety profile of WinRho anti-D.

WinRho anti-D is manufactured with multiple processes to minimize the risk of transmitting blood-borne diseases such as viruses. These safety features include donor selection, plasma testing, solvent-detergent viral inactivation, and nanofiltration. To date, there has not been any case of viral transmission in association with use of WinRho anti-D. Adverse drug reactions are infrequent and generally mild; the most common are headache, fever, and chills. Some degree of hemolysis is inevitable due to the mechanism of action of WinRho anti-D, but this is predictable and transient. A few cases of intravascular hemolysis have been reported; hypersensitivity reactions are very rare. WinRho anti-D has been shown in both clinical trials and postmarketing surveillance to be safe and effective in the treatment of idiopathic thrombocytopenic purpura (ITP) and in the prevention of Rh isoimmunization.

Drug Hypersensitivity↗

Highly potent, selective, and low cost bis-tetrahydroaminacrine inhibitors of acetylcholinesterase. Steps toward novel drugs for treating Alzheimer's disease.

We report highly potent, selective, and low cost bifunctional acetylcholinesterase (AChE) inhibitors developed by our two-step prototype optimization strategy utilizing computer modeling of ligand docking with target proteins: 1) identify low affinity sites normally missed by x-ray crystallography; and 2) design bifunctional analogs capable of simultaneous binding at the computer-determined low affinity site and the x-ray-identified high affinity site. Applying this strategy to 9-amino-1,2,3,4-tetrahydroacridine (THA), a drug for Alzheimer's disease, we obtained alkylene linked bis-THA analogs. These analogs were up to 10,000-fold more selective and 1,000-fold more potent than THA in inhibiting rat AChE and yet required one simple reaction to synthesize. Additionally, alkylene linked benzyl-THA analogs were developed to examine the specificity of the docking-derived low affinity THA peripheral site in AChE. The present work and our previous computational studies strongly suggest that a low affinity THA peripheral site exists in AChE. This peripheral site provides a structural basis for design of improved cholinesterase ligands for treating Alzheimer's disease and for other health-related purposes.

Acetylcholinesterase↗

Regulation of human Caco-2 intestinal epithelial brush border enzyme activity by cyclic nucleotides.

Regulation of intestinal epithelial differentiation is critical to normal function, malignant transformation, and healing. However, the intracellular regulation of intestinal epithelial differentiation is incompletely understood. We studied the effects of intracellular cyclic AMP and cyclic GMP on brush border enzyme activity in the human Caco-2 intestinal epithelial cell using pharmacologic agonists and antagonists of cAMP and cGMP mediated pathways as probes. The stable cyclic nucleotide analogs dibutyryl cAMP and dibutyryl cGMP selectively decreased Caco-2 dipeptidyl dipeptidase specific activity while increasing alkaline phosphatase. The inhibitors of adenylate and guanylate cyclase KT5720 and KT5823 each exerted the opposite effects. Combinations of dibutyryl cAMP and dibutyryl cGMP demonstrated synergistic effects on each brush border enzyme but KT5720 and KT5823 were less than additive. Thus, cAMP and CGMP may regulate human intestinal epithelial differentiation by interacting pathways.

Adenylyl Cyclase Inhibitors↗

Amplitude-dependent modulation of brush border enzymes and proliferation by cyclic strain in human intestinal Caco-2 monolayers.

Little is known about the effects of repetitive deformation during peristaltic distension and contraction or repetitive villus shortening on the proliferation and differentiation of the intestinal epithelium. We sought to characterize the effects of repetitive deformation of a physiologically relevant magnitude and frequency on the proliferation and differentiation of human intestinal epithelial Caco-2 cells, a common cell culture model for intestinal epithelial biology. Human intestinal epithelial Caco-2 cells were cultured on collagen-coated membranes deformed by -20 kPa vacuum at 10 cycles/minute, producing an average 10% strain on the adherent cells. Proliferation was assessed by cell counting and 3H-thymidine incorporation. Alkaline phosphatase and dipeptidyl dipeptidase specific activity were measured in cell lysates. Since cells at the membrane periphery experience higher strain than cells in the center, the topography of brush border enzyme histochemical and immunohistochemical staining was analyzed for strain-dependence. Cyclic strain stimulated proliferation compared to static cells. Proliferation was highest in the membrane periphery where strain was maximal. Strain also modulated differentiation independently of its mitogenic effects, selectively stimulating dipeptidyl dipeptidase while inhibiting alkaline phosphatase. Strain-associated enzyme changes were also maximal in areas of greatest strain. The PKC inhibitors staurosporine and calphostin C ablated strain mitogenic effects while intracellular PKC activity was increased by strain. The strain-associated brush border enzyme changes were attenuated but not blocked by PKC inhibition. Thus, strain of a physiologically relevant frequency and magnitude promotes proliferation and modulates the differentiation of a well-differentiated human intestinal epithelial cell line in an amplitude-dependent fashion. PKC may be involved in coupling strain to increased proliferation.

Alkaline Phosphatase↗

Regulation of human colonic cell line proliferation and phenotype by sodium butyrate.

Colonic butyrate may maintain mucosal differentiation and oppose carcinogenesis. We characterized butyrate effects on differentiation, proliferation, and matrix interactions in Caco-2 and SW620 human colonic cells. Differentiation was assessed by brush border enzyme activity and doubling time by serial cell counts. Motility across matrix proteins was quantitated by monolayer expansion and correlated with adhesiveness to matrix. Integrin subunit surface pools were measured by immunoprecipitation. Butyrate-stimulated differentiation inhibited proliferation and was significantly more potent than acetate in this regard. Butyrate also inhibited motility across collagen I, collagen IV, and laminin, as well as decreasing adhesiveness to these matrices and beta 1, alpha 1, and alpha 2 integrin subunit surface expression. Butyrate acts in cultured cells at clinically relevant concentrations to oppose classical malignant behavior, inhibiting proliferation and motility while promoting differentiation. Since butyrate is derived from fermentation of dietary fiber, such mechanisms may contribute to the apparent protective action of fiber against colon carcinogenesis.

Butyrates↗

[Clinical study of zhinu-I,-II in treating 61 patients with idiopathic thrombocytopenic purpura].

The article studied 61 patients with idiopathic thrombocytopenic purpura, they were classified and treated with Chinese herbal medicine Zhinu (ZN) -I, -II, in comparison with 30 cases of patients treated with prednisone. The results showed that the effect of prednisone was more effective than ZN- I, -II in four weeks (P < 0.05). On the contrary, follow up for 12 months, the effect of ZN-I, -II were more effective than prednisone (P < 0.05) and the possibility of recurrence was lower (P < 0.01). In addition, blood platelet counts of the patients treated with ZN-I, -II increased slower, but lasting for longer term. The conclusion indicated that the ZN-I, -II were safe and effective. There was no obvious side effects.

Adolescent↗

Modulation of human CACO-2 intestinal epithelial cell phenotype by protein kinase C inhibitors.

Protein kinase C (PKC) isoforms are altered in colon tumors and upon exposure of intestinal mucosa to nutrients. We evaluated the effects of the PKC inhibitors staurosporine and calphostin C on human Caco-2 intestinal epithelial proliferation, motility, and differentiation. Motility was quantitated by monolayer expansion and the brush border enzymes dipeptidyl dipeptidase (DPDD) and alkaline phosphatase (AP) by synthetic substrate digestion. Staurosporine (0.03-1.0 ng/ml) and calphostin C (10(-12) M-10(-4) M) dose-dependently inhibited monolayer expansion and AP but stimulated DPDD. Proliferation was also inhibited but the effects of each inhibitor on motility, AP, and DPDD were preserved after mitomycin C proliferative blockade, suggesting that these effects were proliferation-independent. PKC inhibitors independently inhibit motility, AP and proliferation in human intestinal Caco-2 epithelial cells, but selectively stimulate the small intestinal differentiation marker DPDD. PKC may regulate small intestinal epithelial differentiation.

Caco-2 Cells↗

Specific modulation of intestinal epithelial brush border enzyme expression by a phorbol ester.

Much is known about intestinal epithelial regulation by growth factors and nutrients but the intracellular signals governing cell phenotype are less well understood. In an initial attempt to evaluate the role of protein kinase C in these events, we studied the effects of protein kinase C modulation by the phorbol ester TPA upon the differentiation, motility, and doubling time of the human intestinal epithelial Caco-2 cell line, a common model for enterocytic brush border enzyme expression. We also compared the effects of TPA to those of 4 alpha-phorbol 12,13-didecanoate, which does not modulate protein kinase C activity. Differentiation was studied by quantitating brush order dipeptidyl peptidase (DPDD)-specific activity in protein-matched Caco-2 lysates via synthetic substrate digestion. Alkaline phosphatase (AP) was studied for comparison. Doubling time was assessed by log transformation of serial cell counts and motility by monolayer expansion across type I collagen. TPA (0.03-0.7 micrograms/ml) dose-dependently stimulated DPDD, with a maximal 455 +/- 26% increase at 0.7 micrograms/ml (P < 0.01, n = 5). However, TPA dose-dependently inhibited AP to a maximal 91.6 +/- 0.3% decrease (P < 0.01, n = 5). TPA also dose-dependently prolonged the cell doubling time from 26.5 +/- 0.4 to 64.5 +/- 8.8 hr (n = 20, P < 0.01) with a maximal effect at 1.0 micrograms/ml and inhibited migration with essentially complete ablation of cell motility at 0.1 micrograms/ml (n = 10, P < 0.001).(ABSTRACT TRUNCATED AT 250 WORDS)

Alkaline Phosphatase↗

Improved survival with preoperative chemotherapy followed by resection uncompromised by tumor response for advanced squamous cell carcinoma of the head and neck.

BACKGROUND: A total of 93 patients were treated with one of two preoperative chemotherapy regimens over a 15-year period. The study supports the importance of strict adherence to guidelines for ablative surgery. METHODS: A single surgeon performed the surgery and evaluated each patient prior to treatment. The extent of the planned operation was documented. RESULTS: The 5-year absolute survival of 88 patients who completed the protocol was estimated at 55%. The 40 cisplatin/5-fluorouracil-treated patients exhibited a significantly better outcome than the 48 cisplatin/bleomycin-treated patients (76% versus 43%, respectively). Comparison of a subset of 37 patients with a matched group from the standard control arm of the Head and Neck Contracts Program demonstrated a statistically significant improvement in overall survival over standard treatment. CONCLUSIONS: These data suggest that strict adherence to preoperative chemotherapy planning of ablative uncompromised surgery contribute to improved survival. Selective rather than routine postoperative radiotherapy may be advantageous.

Antibiotics, Antineoplastic↗

Glutamine modulates phenotype and stimulates proliferation in human colon cancer cell lines.

Glutamine supplementation has been advocated for patients requiring parenteral nutritional support. However, the direct effect of glutamine on neoplastic cells is poorly understood. We therefore investigated the effects of glutamine on the proliferation, differentiation, and cell-matrix interactions of two human colon carcinoma cell lines (Caco-2 and SW620) adapted to glutamine-free media. Doubling times were calculated by logarithmic transformation of serial cell counts. Alkaline phosphatase, cathepsin C (dipeptidyl peptidase), lactase, and isomaltase expression (markers of differentiation) were assayed by digestion of synthetic substrates. Adhesion to matrix proteins was assessed by colorimetric quantitation of toluidine blue staining of adherent cells. Surface expression of Caco-2 receptors for matrix proteins (integrins) was studied by biotinylation and immunoprecipitation with specific antibodies. Glutamine (1-10 mM) dose-dependently stimulated Caco-2 proliferation on all matrices studied with maximal effect at 7 mM. For instance, Caco-2 doubling time on collagen IV decreased by 57 +/- 0.2% (SE) (P < 0.001). Glutamine inhibited the expression of all four digestive enzymes with maximal inhibition ranging from 10 to 40% (P < 0.05 for all). Adhesion to matrix proteins was markedly diminished (51 +/- 1%, P < 0.01) by glutamine (5 mM) treatment, correlating with decreased alpha 2 and beta 1 integrin subunit surface expression. Glutamine had similar effects on SW620 cells, stimulating proliferation, inhibiting digestive enzyme expression, and diminishing both adhesion and integrin surface expression. Glutamine supplementation modulates the phenotype of at least two human colon carcinoma cell lines, increasing proliferation, decreasing differentiation, and decreasing adhesion to matrix proteins in association with decreased integrin expression. Although the mechanisms of these effects await elucidation, such characteristics would appear to predict more aggressive tumor behavior and raise the possibility that nutritional supplementation with glutamine may be deleterious in patients with cancer.

Alkaline Phosphatase↗

Identification of discrete structural domains in the retinoblastoma protein. Amino-terminal domain is required for its oligomerization.

To characterize the protein product of the retinoblastoma tumor suppressor gene biochemically, a recombinant human protein was produced in an Escherichia coli expression system. The full-length protein, p110RB, and an amino-terminal truncated form, p56RB, were expressed and purified to near homogeneity by conventional chromatographic procedures. To probe the structural organization of the retinoblastoma protein the purified proteins were subjected to partial proteolysis by trypsin, chymotrypsin, and subtilisin. Four discrete structural domains were revealed in p110RB by this method. Two of these structural domains, found in both p56RB and p110RB, were mapped to the carboxyl-terminal half of the protein and corresponded to the SV40 large T binding domains defined previously by genetic methods. In addition two distinct domains in the amino-terminal half of the protein were also defined. A potential role for these newly defined amino-terminal domains was uncovered upon analysis of the purified proteins by nondenaturing polyacrylamide gel electrophoresis. p110RB revealed multiple bands by this method, suggesting the formation of oligomeric structures by the protein, while this property was not observed for p56RB. Electron microscopy of p110RB revealed linearly extended, macromolecular structures, further supporting the formation of homologous higher order structures by the full-length retinoblastoma protein. Analysis of the interactions between retinoblastoma protein molecules using the yeast two-hybrid system confirmed that the retinoblastoma protein could self-associate and that this association was mediated by interactions between the amino- and carboxyl-terminal ends of the protein. These observations suggest that the retinoblastoma protein contains multiple structural domains with the amino-terminal domains being required for oligomerization of the full-length protein.

Amino Acid Sequence↗

Sequence similarity between part of human retinoblastoma susceptibility gene product and a neurofilament protein subunit.

Retinoblastoma, is a highly malignant but readily treatable cancer of the retina, which occurs at an incidence of 1 in 20,000 live births in young children. The retinoblastoma gene that determines susceptibility to this cancer encodes a nuclear phosphoprotein which has been extensively characterized. Yet, to this date, its function remains unknown. We report here that RB amino acids 307-435 shows similarity to the rod domain of the neurofilament L-type subunit (NF-L).

Amino Acid Sequence↗

Complement activation by artificial blood substitute Fluosol: in vitro and in vivo studies.

A perfluorocarbon blood substitute, Fluosol, is undergoing clinical trials as an adjunct to chemotherapy. The adverse effects associated with its administration have been postulated to result from complement activation. When gel electrophoresis and Western blotting of Fluosol are used after its incubation with serum, activated C3 and factors Bb and H are bound to the Fluosol particles in a time-dependent fashion, which suggests that complement activation with Fluosol, as does that with zymosan, occurs on the surface of the particles. Paradoxically, it is found, both by the measurement of Fluosol-bound C3d and by fluid-phase C5a, that lower concentrations of Fluosol cause greater amounts of complement activation, which suggests a complex interaction of activators and inhibitors that changes as the available surface area is decreased. Studies performed with bystander red cell-bound C3d demonstrated in vivo complement activation occurring in six patients receiving Fluosol as an adjunct to chemotherapy for colon cancer. In two patients, there was a marked increase in red cell-bound C3d after Fluosol infusion; these two patients also developed adverse reactions during Fluosol infusion. These studies suggest that the Fluosol surface plays a major role in the initiation and regulation of complement activation that is seen during Fluosol infusion.

Adenocarcinoma↗