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1.
Sci Rep ; 7(1): 252, 2017 03 21.
Article in English | MEDLINE | ID: mdl-28325910

ABSTRACT

The Zika virus (ZIKV) outbreak in the Americas and South Pacific poses a significant burden on human health because of ZIKV's neurotropic effects in the course of fetal development. Vaccine candidates against ZIKV are coming online, but immunological tools to study anti-ZIKV responses in preclinical models, particularly T cell responses, remain sparse. We deployed RNA nanoparticle technology to create a vaccine candidate that elicited ZIKV E protein-specific IgG responses in C57BL/6 mice as assayed by ELISA. Using this tool, we identified a unique H-2Db-restricted epitope to which there was a CD8+ T cell response in mice immunized with our modified dendrimer-based RNA nanoparticle vaccine. These results demonstrate that this approach can be used to evaluate new candidate antigens and identify immune correlates without the use of live virus.


Subject(s)
Antibodies, Viral/blood , CD8-Positive T-Lymphocytes/immunology , RNA, Viral/immunology , Viral Vaccines/immunology , Zika Virus Infection/prevention & control , Zika Virus/immunology , Animals , Dendrimers/administration & dosage , Dendrimers/isolation & purification , Enzyme-Linked Immunosorbent Assay , Epitopes, T-Lymphocyte/immunology , Immunoglobulin G/blood , Mice, Inbred C57BL , Nanoparticles/administration & dosage , RNA, Viral/administration & dosage , RNA, Viral/isolation & purification , Viral Vaccines/administration & dosage , Viral Vaccines/isolation & purification
2.
Dalton Trans ; 44(41): 17960-7, 2015 Nov 07.
Article in English | MEDLINE | ID: mdl-26399172

ABSTRACT

Bimodal mesoporous silica consisting of two sets of well-defined mesopores is synthesized by a partial pseudomorphic transformation of an ordered mesoporous starting material (SBA-15 type). The introduction of a second set of smaller mesopores (MCM-41 type) establishes a pore system with bottlenecks that restricts the access to the core of the bimodal mesoporous silica particles. The particle size and shape of the starting material are retained, but micropores present in the starting material disappear during the transformation, leading to a true bimodal mesoporous product. A varying degree of transformation allows the adjustment of the pore volume contribution of the two mesopore domains. Information on the accessibility of the mesopores is obtained by the adsorption of fluorescence-labeled poly(amidoamine) dendrimers and imaging by confocal laser scanning microscopy. This information is correlated with nitrogen sorption data to provide insights regarding the spatial distribution of the two mesopore domains. The bimodal mesoporous materials are excellent model systems for the investigation of cavitation effects in nitrogen desorption isotherms.


Subject(s)
Silicon Dioxide/chemistry , Adsorption , Dendrimers/isolation & purification , Nitrogen/isolation & purification , Porosity , Silicon Dioxide/chemical synthesis
3.
Chemistry ; 20(16): 4638-45, 2014 Apr 14.
Article in English | MEDLINE | ID: mdl-24604830

ABSTRACT

Fluorescent dyes are commonly conjugated to nanomaterials for imaging applications using stochastic synthesis conditions that result in a Poisson distribution of dye/particle ratios and therefore a broad range of photophysical and biodistribution properties. We report the isolation and characterization of generation 5 poly(amidoamine) (G5 PAMAM) dendrimer samples containing 1, 2, 3, and 4 fluorescein (FC) or 6-carboxytetramethylrhodamine succinimidyl ester (TAMRA) dyes per polymer particle. For the fluorescein case, this was achieved by stochastically functionalizing dendrimer with a cyclooctyne "click" ligand, separation into sample containing precisely defined "click" ligand/particle ratios using reverse-phase high performance liquid chromatography (RP-HPLC), followed by reaction with excess azide-functionalized fluorescein dye. For the TAMRA samples, stochastically functionalized dendrimer was directly separated into precise dye/particle ratios using RP-HPLC. These materials were characterized using (1)H and (19)F NMR spectroscopy, RP-HPLC, UV/Vis and fluorescence spectroscopy, lifetime measurements, and MALDI.


Subject(s)
Dendrimers/chemistry , Fluorescent Dyes/chemistry , Chromatography, High Pressure Liquid , Chromatography, Reverse-Phase , Click Chemistry , Dendrimers/isolation & purification , Fluorescein/chemistry , Nanostructures/chemistry , Polyamines/chemistry , Rhodamines/chemistry
4.
J Chromatogr Sci ; 52(4): 321-8, 2014 Apr.
Article in English | MEDLINE | ID: mdl-23613158

ABSTRACT

In this work, a unique high-performance liquid chromatographic method was developed and applied for monitoring the synthesis of polyethyleneglycol surface modified poly(amidoamine) cystamine core dendrimers (PEG-PAMAMs) and PEG-PAMAM-alkynes with a single alkyne moiety attached to the core of a dendron through a unique sulfhydryl group. The separation of the products was performed on a column with a pentafluorphenylpropyl stationary phase, allowing multiple mechanisms of selectivity. More than 50 peaks were separated in one run, reflecting the degree of dendrimer PEGylation (PEG average molecular mass: 3,000). Moreover, modification of PAMAM with a single alkyne group could be distinguished. The developed method can be used for the general characterization and separation of PAMAM derivatives, in which the degree of modification is critical for final applications.


Subject(s)
Chromatography, High Pressure Liquid/methods , Dendrimers/chemistry , Dendrimers/isolation & purification , Polyethylene Glycols/chemistry , Polyethylene Glycols/isolation & purification
5.
Anal Bioanal Chem ; 406(2): 455-8, 2014 Jan.
Article in English | MEDLINE | ID: mdl-24247550

ABSTRACT

Polyamidoamine dendrimers have been studied extensively for their potential applications in nanomedicine. Their uses as imaging, drug, and nucleic acid delivery agents are nearing clinical trials. As such, characterization of polyamidoamine dendrimers and their nano-devices is of immense importance for monitoring the efficiency of their synthesis, purity, and quality control of manufactured products as well as their in vivo behavior. We report here the analysis of polyamidoamine dendrimers possessing various cores and surface groups with a simple and inexpensive isoelectric focusing method. The isoelectric points of the dendrimers were readily determined from a calibration plot generated by running proteins with known pI values. The isoelectric points for various surface-modified polyamidoamine dendrimers ranged from 4 to 9. Polyamidoamine dendrimers possessing terminal hydroxyl groups gave a pI > 7, while those with terminal carboxyl groups exhibit a pI < 7. Generation number and cores of the dendrimers did not significantly affect their isoelectric points. Isoelectric focusing thus offers another important tool for characterizing these nanomolecules.


Subject(s)
Dendrimers/isolation & purification , Polyamines/isolation & purification , Calibration , Dendrimers/chemistry , Drug Carriers , Isoelectric Focusing , Isoelectric Point , Polyamines/chemistry , Proteins/chemistry , Proteins/isolation & purification , Reference Standards
6.
Parasitol Res ; 112(3): 961-9, 2013 Mar.
Article in English | MEDLINE | ID: mdl-23263327

ABSTRACT

Acanthamoeba is one of the most common free-living amoebas which is widespread in the environment and can infect humans, causing diseases such as keratitis and encephalitis. In this paper we examine for the first time the amebicidal activity of the family of cationic dendrimers nG-[Si{(CH(2))(3)N(+)(Me)(Et)(CH(2))(2)NMe(3) (+)}2I(-)]( x ) (where n denotes the generations: zero (n = 0, x = 1), first (n = 1, x = 4), and second (n = 2, x = 8); for simplicity, they were named as 0G-CNN2, 1G-CNN8, and 2G-CNN16, respectively) against Acanthamoeba castellanii UAH-T17c3 trophozoites. In order to test the amebicidal activity, we cultured the strain A. castellanii UAH-T17c3 in PYG-Bactocasitone medium and later, we treated it with different concentrations of these dendrimers and monitored the effects and damage by optical count, flow cytometry, and scanning electron microscopy. The results showed that all the nanosystems assayed had a strong amebicidal activity. The dendrimer 1G-CNN8 was the most effective against the amoeba. In the morphology of treated throphozoites of A. castellanii UAH-T17c3 analyzed by light and scanning electron microscopy techniques, morphological changes were evident in amoeba cells, such as loss of pseudopodia, ectoplasm increase, roundness, and cellular lysis. Furthermore, flow cytometry results showed alterations in cell granularity, which was dose-time dependent. In conclusion, this family of cationic carbosilane dendrimers has a strong amebicidal activity against the trophozoites of A. castellanii UAH-T17c3 in vitro. They could potentially become new agents significant to the development of new amebicidal compounds for prevention and therapy of Acanthamoeba infections.


Subject(s)
Acanthamoeba castellanii/drug effects , Amebicides/pharmacology , Dendrimers/pharmacology , Silanes/pharmacology , Trophozoites/drug effects , Amebicides/isolation & purification , Cell Count , Dendrimers/chemistry , Dendrimers/isolation & purification , Flow Cytometry , Microscopy , Parasitic Sensitivity Tests , Silanes/chemistry , Silanes/isolation & purification
8.
Electrophoresis ; 29(2): 510-5, 2008 Jan.
Article in English | MEDLINE | ID: mdl-18080252

ABSTRACT

Various generations (G1-G8) of negatively charged poly(amidoamine) (PAMAM) succinamic acid dendrimers (PAMAM-SAH) were analyzed by CE using a poly(vinyl alcohol)-coated capillary. Due to its excellent stability and osmotic flow-shielding effect, highly reproducible migration times were achieved for all generations of dendrimer (e.g., RSD for the migration times of G5 dendrimer was 0.6%). We also observed a reverse trend in migration times for the PAMAM-SAH dendrimers (i.e., higher generations migrated faster than lower generation dendrimers) compared to amine-terminated PAMAM dendrimers reported in the literature. This reversal in migration times was attributed to the difference in counterion binding around these negatively charged dendrimers. This reverse trend allowed a generational separation for lower generation (G1-G3) dendrimers. However, a sufficient resolution for the migration peaks of higher generations (G4-G5) in a mixture could not be achieved. This could be due to their nearly identical charge/mass ratio and dense molecular conformations. In addition, we show that dye-functionalized PAMAM-SAH dendrimers can also be analyzed with high reproducibility using this method.


Subject(s)
Dendrimers/isolation & purification , Electrophoresis, Capillary/instrumentation , Electrophoresis, Capillary/methods , Dendrimers/chemistry , Polyvinyl Alcohol , Reproducibility of Results
9.
J Pharm Sci ; 95(6): 1227-37, 2006 Jun.
Article in English | MEDLINE | ID: mdl-16639724

ABSTRACT

We investigated the potential of a new family of lipidic peptide dendrimers in protein transduction into cultured cells. Dendrimer-protein interaction was determined by gel retardation assays using purified recombinant protein. To assess intracellular protein delivery, two marker proteins were used: recombinant firefly luciferase and a Cy3-labeled monoclonal antibody to the c-myc proto-oncogene. Protein delivery was determined by luciferase assays and fluorescence microscopy, respectively. While there was minimal delivery of luciferase or antibody in the absence of the dendrimers, the latter increased protein delivery substantially. Luciferase delivery was concentration and cell type-dependent; the efficiency of delivery also varied with the number of terminal amino groups on the dendrimers. In previous reports, we showed that these dendrimers could be used for gene and drug delivery; the data we report herein suggest that they may also be capable of intracellular protein delivery. This finding has important implications for the use of these dendrimers in protein therapeutics and vaccinology.


Subject(s)
Dendrimers/chemistry , Drug Carriers/chemistry , Photons , Proteins/metabolism , Spectrum Analysis/methods , Antibodies, Monoclonal/metabolism , Cell Survival/drug effects , Dendrimers/chemical synthesis , Dendrimers/isolation & purification , Dendrimers/toxicity , Drug Delivery Systems , Electrophoresis, Polyacrylamide Gel , Electrophoretic Mobility Shift Assay , Fluorescent Dyes , Glutathione Transferase/metabolism , HeLa Cells , Humans , Luciferases/analysis , Luciferases/genetics , Luciferases/metabolism , Microscopy, Fluorescence , Proteins/genetics , Proteins/isolation & purification , Proto-Oncogene Mas , Recombinant Proteins/metabolism , Xanthenes
10.
J Chromatogr B Analyt Technol Biomed Life Sci ; 841(1-2): 135-9, 2006 Sep 01.
Article in English | MEDLINE | ID: mdl-16569517

ABSTRACT

The separation of compounds possessing amino groups (peptides, proteins, polyamino compounds) by capillary zone electrophoresis suffers from the interaction (sticking) of these solutes with the capillary wall. This sticking can result in the absence or incomplete separation of compounds or even in their retention in the capillary. Polyamidoamine (PAMAM) dendrimers are a class of spherical polymers with primary amino groups at the surface. These compounds can be separated reasonably well at acidic pH but not at neutral pH. A new method based on the dynamic coating of the capillary was developed for the separation of these compounds at pH 7.4. The method comprises separation in a fused-silica capillary (57 cm total length, 50 cm to the detector, ID 75 microm) and a background electrolyte consisting of a Tris-phosphate buffer (50 mmol/L, pH 7.4) and 0.05% (w/v) polyethyleneimine. This system is suitable for the separation of 7 generations of dendrimers (generations 0-6). The dynamic coating agent (polyethyleneimine) also improves the separation at acid pH.


Subject(s)
Dendrimers/isolation & purification , Electrophoresis, Capillary/methods , Polyamines/isolation & purification , Dendrimers/chemistry , Hydrogen-Ion Concentration , Peptides/analysis , Peptides/chemistry , Polyamines/chemistry , Proteins/analysis , Proteins/chemistry , Reproducibility of Results , Thermodynamics
11.
Curr Protoc Immunol ; Chapter 9: 9.6.1-9.6.36, 2001 May.
Article in English | MEDLINE | ID: mdl-18432861

ABSTRACT

The multiple antigenic peptide (MAP) is a novel approach to preparing peptide immunogens. The MAP consists of an inner core matrix built up of a large layer of Lys residues and a surface of peptide chains attached to the core matrix. Because of its dendrimeric structure, MAP can be very useful as a template for assembling potential peptide surfaces. Two methods for preparing MAP systems are described in this unit. The direct approach for preparing MAP systems is presented in the first two protocols, including the procedure for b-butyloxycarbonyl (Boc) chemistry and the procedure for 9 -fluorenylmethyloxycarbonyl (Fmoc) chemistry. An indirect approach for preparing MAP systems, in which peptide and core matrix are synthesized separately and conjugated by several ligation methods, is then described. The cMAP approach is also executed using either the direct or indirect approach, but requires an additional cyclization step to constrain the peptides after synthesis. The synthesis of cMAP is described, and the preparation of cyclic peptides is illustrated. A support protocol describes the ninhydrin assay to assess the completeness of the coupling reaction. In most cases, MAP systems can be used directly after simple dialysis or desalting. Some immunological studies, however, require purified MAPs. Additional support protocols describe MAP system purification by dialysis and high-performance gel-filtration chromatography.


Subject(s)
Dendrimers , Molecular Mimicry , Peptides/immunology , Antigens/immunology , Dendrimers/chemical synthesis , Dendrimers/chemistry , Dendrimers/isolation & purification , Peptides/chemical synthesis , Peptides/isolation & purification , Proteins/immunology
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