PubMed Health⌕ Search

Biomedical subjects

C Plank

Publications and source records attributed to C Plank.

At least 37 records · Page 2Linked to original sources

Towards gene therapy of cystic fibrosis.

Numerous gene mutations associated with hereditary disorders have been identified. In cystic fibrosis the hereditary defect is attributed to mutations in one single gene, the gene coding for the cystic fibrosis transmembrane conductance regulator (CFTR). Conventional therapies of CF have dramatically increased the life expectancy of afflicted individuals. However, the ultimate incurability of this disease calls for novel and better therapeutic strategies. As cystic fibrosis is believed to be caused by mutations in one single gene, it has appeared to be the ideal candidate for one of the most tempting approaches in clinical therapy, namely gene therapy. Laboratory protocols for the introduction of genes into various tissues have been developed and applied over the last 15 years. The ease of gene transfer under laboratory conditions gave rise to the hope that rapid advances in gene transfer protocols under clinical settings could be achieved as well. 20 clinical trials of gene therapy for cystic fibrosis have been initiated using viral and non-viral vectors for gene transfer (Marcel and David Grausz 1997). The outcome of the CF gene therapy studies as well as of those for other diseases have clearly demonstrated that gene transfer and gene therapy in humans is a much more complex and challenging task than originally thought. Still, the encouraging results achieved in animal models and the rapid progress in vector technology justify the hope that the novel genetic therapies will be applied successfully to the benefit of patients suffering from cystic fibrosis.

Cystic Fibrosis↗

Design, synthesis, and characterization of a cationic peptide that binds to nucleic acids and permeabilizes bilayers.

We have designed a cationic amphipathic peptide, KALA (WEAKLAKALAKALAKHLAKALAKALKACEA), that binds to DNA, destabilizes membranes, and mediates DNA transfection. KALA undergoes a pH-dependent random coil to amphipathic alpha-helical conformational change as the pH is increased from 5.0 to 7.5. One face displays hydrophobic leucine residues, and the opposite face displays hydrophilic lysine residues. KALA-mediated release of entrapped aqueous contents from neutral and negatively charged liposomes increases with increasing helical content. KALA binds to oligonucleotides or plasmid DNA and retards their migration in gel electrophoresis. It displaces 50% of ethidium bromide from DNA at a charge ratio (+/-) of 0.9/1. In cultured cells, KALA assists oligonucleotide nuclear delivery when complexes are prepared at a 10/1 (+/-) charge ratio. KALA/DNA (10/1)(+/-) complexes mediate transfection of a variety of cell lines. The KALA sequence provides a starting point for a family of peptides that incorporate other functions to improve DNA delivery systems.

Amino Acid Sequence↗

Activation of the complement system by synthetic DNA complexes: a potential barrier for intravenous gene delivery.

We have examined the complement-activating properties of synthetic cationic molecules and their complexes with DNA. Commonly used gene delivery vehicles include complexes of DNA with polylysine of various chain lengths, transferrin-polylysine, a fifth-generation poly(amidoamine) (PAMAM) dendrimer, poly(ethyleneimine), and several cationic lipids (DOTAP, DC-Chol/DOPE, DOGS/DOPE, and DOTMA/DOPE). These agents activate the complement system to varying extents. Strong complement activation is seen with long-chain polylysines, the dendrimer, poly(ethyleneimine), and DOGS (half-maximal at about 3 microM amine content in the assay used). Compared to these compounds, the other cationic lipids (in liposome formulations) are weak activators of the complement system (half-maximal approximately 50-100 microM positive charge in assay). Complement activation by polylysine is strongly dependent on the chain length. Short-chain oligolysines are comparable to cationic lipids in their activation of complement. Incubation of these compounds with DNA to form complexes reduces complement activation in virtually all cases. The degree of complement activation by DNA complexes is strongly dependent on the ratio of polycation and DNA (expressed as the charge ratio) for polylysine, dendrimer, poly(ethyleneimine), and DOGS. To a lesser degree, charge ratio also influences complement activation by monovalent cationic lipid-DNA complexes. For polylysine-DNA complexes, complement activation can be considerably reduced by modifying the surface of preformed DNA complexes with polyethyleneglycol (half-maximal approximately 20 microM amine content). The data suggests that, by appropriate formulation of DNA complexes, complement activation can be minimized or even avoided. These findings should facilitate the search for DNA complex formulations appropriate for reproducible intravenous gene delivery.

Animals↗

Developmental and cell cycle regulation of alfalfa nucMs1, a plant homolog of the yeast Nsr1 and mammalian nucleolin.

We report here the isolation and characterization of the nucMs1 alfalfa cDNA, whose predicted amino acid sequence structurally resembles the yeast Nsr1 protein and animal nucleolins. These proteins consist of an N-terminal acidic domain, centrally located RNA recognition motifs (RRMs), and a C-terminal glycine- and arginine-rich domain. In comparison with animal nucleolins that contain four RRMs, NucMs1 more closely resembles the yeast Nsr1 protein, which contains only two RRMs. A NucMs1 C-terminal peptide antibody specifically recognized a 95-kD nucleolar protein in alfalfa cells that changed its localization in a cell cycle-dependent manner. The nucMs1 transcript and p95nucMs1 protein levels correlated with cell proliferation, and nucMs1 gene expression was found to be induced in the G1 phase upon mitogenic stimulation of G0-arrested leaf cells. In situ hybridization analysis of different alfalfa organs during various developmental stages showed that nucMs1 gene expression is highest in root meristematic cells, but it is also found in other meristematic cells of the plant body. nucMs1 expression is tightly linked to cell proliferation but does not depend on a particular cell cycle phase. No nucMs1 expression was observed in cells that had exited the cell cycle and were undergoing differentiation or polar growth, indicating that nucMs1 may not be necessary for processes other than cell proliferation.

Animals↗

Virus-mediated release of endosomal content in vitro: different behavior of adenovirus and rhinovirus serotype 2.

Endosomal penetration by nonenveloped viruses might be accomplished by either local breakdown of the endosomal membrane (e.g., adenovirus) or formation of a membrane-spanning pore by capsid proteins. Uncoating of the nonenveloped virus human rhinovirus serotype 2 (HRV2) has been shown to occur from late endosomes and to be entirely dependent on the acidic pH in this compartment (Prchla, E., E. Kuechler, D. Blaas, and R. Fuchs. 1994. J. Virol. 68: 3713-3723). To investigate further the mechanism of uncoating of HRV2, an in vitro assay was established to test viruses or virus-derived peptides for their capacity to release cointernalized biotin-dextran of different molecular mass (10 and 70 kD) from isolated endosomes. The suitability of the assay was demonstrated by use of a fusogenic peptide derived from influenza virus hemagglutinin (GALA-INF3). Whereas adenovirus induced a low pH-dependent release of up to 46% of the internalized biotin-dextran and did not show any significant size selectivity (as expected for endosome disruption), HRV2 mediated release of 27% of the 10 kD dextran and only traces of the 70-kD dextran. Similarly, GALA-INF3-induced release of biotin-dextran was also size dependent. The potential role of the capsid protein VP1 in HRV2 uncoating in vivo was also substantiated in our in vitro system using an amphipathic, NH2-terminal peptide of VP1. Taken together, these data favor the model of a specific pore-forming mechanism for HRV2 uncoating which is in contrast to the membrane-disrupting mechanism of adenovirus.

Adenoviridae↗

The influence of endosome-disruptive peptides on gene transfer using synthetic virus-like gene transfer systems.

The process by which viruses destabilize endosomal membranes in an acidification-dependent manner has been mimicked with synthetic peptides that are able to disrupt liposomes, erythrocytes, or endosomes of cultured cells. Peptides containing the 20 amino-terminal amino acid sequence of influenza virus hemagglutinin as well as acidic derivatives showed erythrocyte lysis activity only when peptides were elongated by an amphipathic helix or by carboxyl-terminal dimerization. Interestingly, peptides consisting of the 23 amino-terminal amino acids of influenza virus hemagglutinin were also active in erythrocyte lysis. When peptides were incorporated into DNA complexes that utilize a receptor-mediated endocytosis pathway for uptake into cultured cells, either by ionic interaction with positively charged polylysine-DNA complexes or by a streptavidin-biotin bridge, a strong correlation between pH-specific erythrocyte disruption activity and gene transfer was observed. A high-level expression of luciferase or interleukin-2 was obtained with optimized gene transfer complexes in human melanoma cells and several cell lines.

Amino Acid Sequence↗

Fragrance compounds and essential oils with sedative effects upon inhalation.

Fragrance compounds and essential oils with sedative effects influence the motility of mice in inhalation studies under standardized conditions. A significant drop in the motility of mice was registered following exposure to these fragrances. The same results were achieved when the mice were artificially induced into overagitation by intraperitoneal application of caffeine and subsequently subjected to inhalation of fragrance compounds and essential oils. These results proved the sedative effects of these fragrants via inhalative exposure in low concentrations. Blood samples were taken from the mice after a 1-h inhalation period. Chromatographic and spectroscopic methods were used to detect and characterize the actual effective compounds after solid-phase extraction. Serum concentrations of 42 different substances, including fragrance compounds, were found in low ranges (ng/mL serum). The results contribute to the correct interpretation of the term aromatherapy (i.e., a stimulating or sedative effect on the behaviour of individuals only upon inhalation of fragrance compounds).

Administration, Inhalation↗

Ectopic expression of a conditional GATA-2/estrogen receptor chimera arrests erythroid differentiation in a hormone-dependent manner.

The GATA factors are a family of transcriptional regulatory proteins in eukaryotes that share extensive homology in their DNA-binding domains. One enigmatic aspect of GATA factor expression is that several GATA proteins, which ostensibly share the same DNA-binding site specificity, are coexpressed in erythroid cells. To elucidate the roles of individual GATA factors in erythropoiesis, conditional alleles of GATA-1, GATA-2, and GATA-3 were prepared by fusing each of the factors to the hormone-binding domain of the human estrogen receptor (ER). These GATA/ER chimeric factors were shown to be hormone-inducible trans-activating proteins in transient transfection assays. When stably introduced into primary erythroblasts or conditionally transformed erythroid progenitors cells, exogenous GATA-2/ER promoted proliferation and inhibited terminal differentiation in an estrogen-dependent manner. These phenotypic effects are specifically attributable to the action of ectopically expressed GATA-2/ER because erythroblasts expressing exogenous GATA-2 are constitutively arrested in differentiation and because erythroid progenitors expressing either Gal/ER or GATA-3/ER do not display a hormone-responsive block in differentiation. Thus, the GATA-2 transcription factor appears to play a role in regulating the self-renewal capacity of early erythroid progenitor cells.

Amino Acid Sequence↗

Influenza virus hemagglutinin HA-2 N-terminal fusogenic peptides augment gene transfer by transferrin-polylysine-DNA complexes: toward a synthetic virus-like gene-transfer vehicle.

Complexes containing plasmid DNA, transferrin-polylysine conjugates, and polylysine-conjugated peptides derived from the N-terminal sequence of the influenza virus hemagglutinin subunit HA-2 have been used for the transfer of luciferase or beta-galactosidase marker genes to K562 cells, HeLa cells, and BNL CL.2 hepatocytes. These DNA complexes mimic the entry of viruses into cells, as they contain functions for (i) the packaging of the nucleic acid with polylysine, (ii) the attachment to the cell and receptor-mediated endocytosis with transferrin as a ligand, and (iii) the release from endosomes by using membrane-disrupting influenza peptides. The presence of these influenza peptide conjugates in the DNA complexes renders the complexes active in membrane disruption in a liposome leakage assay and results in a substantial augmentation of the transferrin-polylysine-mediated gene transfer.

Amino Acid Sequence↗

Quantitative MRI studies for assessment of multiple sclerosis.

Although magnetic resonance imaging (MRI) is a valuable aid in the initial diagnosis of multiple sclerosis (MS), quantitatively MRI has been disappointing in staging and evaluating therapy protocols by means of serial examinations. In this study, image processing algorithms were developed for the global analysis of MR images of the cerebrum. Limited three-dimensional segmentation was achieved through histogram analysis by these algorithms, which are essentially operator independent. The effects of coil response and tip angles, patient positioning, and interslice gap thicknesses were examined for 10 MS patients with repeated examinations for a total of 72 images. Effects of technique and instrumentation errors were approximately 6%, and agreement between two independent operators for measuring the total MR pixel sum from periventricular effusions and intense MS plaques was better than 97% with a standard deviation of 2.9%.

Adipose Tissue↗

Intravenous and oral zidovudine pharmacokinetics and coagulation effects in asymptomatic human immunodeficiency virus-infected hemophilia patients.

Pharmacokinetic and coagulation studies were carried out over a 12-week period with 11 asymptomatic hemophilia patients with human immunodeficiency virus infection receiving zidovudine (ZDV). The patients received 300 mg every 4 h while awake (the accepted dose at the time of this study); consecutive 24-h intravenous (i.v.) and 12-h oral pharmacokinetic studies were conducted at weeks 1, 6, and 12. Coagulation studies were conducted at weeks 0, 4, 8, and 12. The numbers of units of factors VIII and IX and cryoprecipitate transfused during the 12-week periods before, during, and after ZDV treatment were recorded. Following i.v. and oral ZDV administration, the concentration in plasma declined rapidly over the first 4 h, and in some patients, ZDV was still detectable at 4 to 10 h. The i.v. total clearances (means +/- standard deviations) were 14.9 +/- 7.3, 11.2 +/- 3.7, and 15.1 +/- 4.7 ml/min/kg of body weight. The i.v. distribution volumes were 1.08 +/- 0.5, 1.0 +/- 0.4, and 1.65 +/- 1.4 liters/kg. The bioavailabilities were 0.54 +/- 0.22, 0.46 +/- 0.19, and 0.59 +/- 0.13 at weeks 1, 6, and 12, respectively. The pattern of ZDV-glucuronide (GZDV) disposition was similar to that of ZDV, and the peak plasma GZDV-to-ZDV ratio was higher after oral dosing, consistent with first-pass metabolism. In some individuals, up to 33% of an i.v. dose was excreted unchanged. At weeks 6 and 12, greater than 300 mg of total ZDV (GZDV plus ZDV) was recovered in the urine of some patients, suggesting tissue redistribution. Concentration in plasma after oral ZDV administration were variable, both within and between patients. The von Willebrand antigen level consistently decreased throughout the study but was not accompanied by a parallel change in ristocetin cofactor A activity, and no clinical adverse effects on coagulation were noted. This study demonstrates that ZDV can be used in hemophilia patients without worsening of their bleeding tendencies. The clinical significance of decreased ZDV clearance and the prolonged terminal elimination phase of ZDV will require further study with patients receiving chronic ZDV.

Administration, Oral↗

Multiple-dose pharmacokinetics of oral zidovudine in hemophilia patients with human immunodeficiency virus infection.

The disposition of zidovudine (ZDV) was examined during chronic oral dosing (300 mg every 4 h while awake) for 12 weeks in eight asymptomatic patients with hemophilia who were infected with the human immunodeficiency virus. Pharmacokinetic studies were conducted at the initiation of drug administration and after 6 and 12 weeks. Baseline liver function tests indicated normal values for bilirubin, albumin, and prothrombin time, while hepatic enzyme levels ranged from one to three times the normal levels. Initially, the mean peak ZDV concentration in plasma was 2,052 ng/ml with a range of 1,033 to 3,907 ng/ml, while during chronic dosing the peaks were 1,619 +/- 1,062 ng/ml and 1,711 +/- 786 ng/ml at weeks 6 and 12, respectively. ZDV concentrations at 4 h declined to 77 +/- 53 ng/ml, 110 +/- 43 ng/ml, and 101 +/- 49 ng/ml at weeks 1, 6, and 12, respectively. Initially, the plasma concentration-versus-time decay in three patients was linear, with a mean half-life (t1/2) of 1.3 +/- 0.5 h, while five patients had detectable concentrations in plasma after 4 h with an apparent delayed terminal-phase t1/2 of 4.8 +/- 2.8 h. At week 6 the prolonged elimination pattern was noted in all patients (terminal t1/2 = 4.1 +/- 2.0 h). No correlation between hepatic enzyme levels and t1/2 was noted. These findings suggest that ZDV may display a prolonged elimination phase during multiple dosing. Further studies utilizing a more sensitive assay may help to further define this later phase of ZDV elimination.

Administration, Oral↗

Pharmacokinetics of orally administered zidovudine among patients with hemophilia and asymptomatic human immunodeficiency virus (HIV) infection.

Zidovudine (formerly azidothymidine, AZT) is used to treat certain patients infected with the human immunodeficiency virus (HIV). However, the clinical use of zidovudine (ZDV) in hemophilia patients may be complicated by the high incidence of chronic hepatitis in this patient population. To examine the pharmacokinetics of ZDV eight asymptomatic HIV-infected hemophilia patients received a single oral dose (300 mg). ZDV and its glucuronide metabolite (GZDV) were measured in serum by HPLC. ZDV was rapidly absorbed with a wide range of peak serum concentrations (2052 +/- 970 ng/ml) at 0.5 h. Peak GZDV serum concentrations were 4751 +/- 2269 ng/ml at 1 h. Both ZDV and GZDV declined in a biexponential manner over 4 h. After 4 h, the ZDV serum concentration decay in three patients continued a log-linear decline, while five patients demonstrated a tri-exponential curve which had a mean terminal elimination half-life of 4.8 +/- 2.8 h. No relationship between ZDV or GZDV kinetics and the degree of hepatic enzyme elevation was observed. Although a therapeutic window for ZDV has yet to be described, the wide range of serum concentrations that result from a standard dose suggests that clinical monitoring of ZDV levels may be of value in certain patients. In addition, the prolonged elimination half-life of ZDV in the present study may provide a rationale for less frequent dosing in certain patients.

Administration, Oral↗

T-cell subsets in multiple sclerosis: lack of correlation between helper and suppressor T cells and the clinical state.

Peripheral blood T-lymphocyte subsets were investigated in a group of 26 multiple sclerosis (MS) patients of different clinical categories and compared to those of 15 normal controls and 7 other patients with known immunoregulatory disorders. In addition 17 well-documented acute relapses in 11 MS patients were also studied, some of whom were tested serially prior to, during, and after the acute attack. Using three different commercial preparations of monoclonal antibodies directed against human T3, T4, and T8 lymphocyte markers, none of the MS patients irrespective of disease category exhibited any changes in the absolute numbers of T-cell subsets or ratios thereof; this was true during either quiescent or active stages of the disease. In contrast, several patients with known immunoregulatory disorders exhibited clear changes in T4/T8 ratios. Factors such as type of patient studied, sampling error, and methods of isolation of mononuclear cells, as well as source of monoclonal antibody, failed to explain the lack of change in T-cell subsets in these patients. Thus, our data fail to confirm the previous reports of a decrease in the absolute numbers of T8 cells or the increase in the T4/T8 ratios in active or quiescent MS patients. These negative findings underscore the need for further studies relating these markers to meaningful functional properties of these cells and their interaction with the relevant target organs.

Adult↗

Language disorder in a right-hander after occlusion of the right anterior cerebral artery.

A right-handed woman developed left hemiparesis and a language disturbance. At autopsy, there was infarction in the territory of the right anterior cerebral artery, involving, among other structures, the supplementary motor area. This brain region has been considered to play a role in speech, but whether the language disorder that follows its destruction is truly aphasic is controversial. Our patient does not answer that question, but if her disturbed language is viewed as aphasic, she represents the fourth autopsy case of "crossed aphasia in a dextral" and the first, with or without autopsy, after right anterior cerebral artery occlusion.

Aged↗

Interaction of liposomal and polycationic transfection complexes with pulmonary surfactant.

BACKGROUND: The delivery of genes to the airways holds promise for the treatment of lung diseases such as cystic fibrosis and asthma. Current non-viral gene delivery systems lack sufficient transfection efficiency. Pulmonary surfactant has been reported to be a barrier to gene transfer into the airways. Here we analyze the interaction of liposomal and polycationic transfection complexes with pulmonary surfactant. METHODS: The efficiency of non-viral transfection of cultured human airway epithelial cells (16HBE14o-), COS7 cells and porcine primary airway epithelial cells was studied in the presence of various surfactant preparations in order to model the conditions prevailing in the airways during transfection. RESULTS: The natural pulmonary surfactant, Alveofact, an extract from bovine lung lavage, was found to inhibit lipofection with lipofectAMINE for all cell lines investigated. Dendrimer meditated polyfection was unaffected for pulmonary cell lines and was weakly affected for COS7 cells. PEI-mediated polyfection was unaffected for all cell lines tested. The synthetic surfactant preparation Exosurf containing L-alpha-phosphatidylcholine-dipalmitoyl (DPPC) as the sole lipid ingredient had no statistically significant effect on polymer- and lipid-mediated transfection. The transfection efficiencies are related to structural changes in the DNA complexes as demonstrated by DNase-accessibility tests and fluorescence spectroscopy. In the presence of the phospholipid POPG, which is a constituent of Alveofact, DNA condensed in lipofectAMINE lipoplexes became accessible to DNaseI, while DNA condensed with PAMAM dendrimer or PEI was less accessible to DNase I as compared to lipoplexes. Consistently, the fluorescence of a DNA-intercalating dye increased after addition of Alveofact only in the case of lipoplexes. CONCLUSIONS: In contrast to lipofection, gene transfer with cationic polymers to airway epithelial cells is not inhibited by pulmonary surfactant in vitro. Depending on the surfactant concentration even an increase in polymermediated transfection can be seen. In conclusion, cationic polymers appear to be the more stable gene delivery systems for topical application into the airways.

Animals↗