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E targets, depot effect, high encapsulation and transport [38] efficiency, targeted deliveryE targets, depot effect, high encapsulation and transport [38] efficiency, targeted delivery . Polymeric nanoparticles (NPs) consist of polymeric colloidal nanoparticles prepared from biodegradable and biocompatible, natural or synthetic polymers, ranging in sizes from 10 nm to 1 m. A wide variety of
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E targets, depot effect, high encapsulation and transport [38] efficiency, targeted deliveryE targets, depot effect, high encapsulation and transport [38] efficiency, targeted delivery . Polymeric nanoparticles (NPs) consist of polymeric colloidal nanoparticles prepared from biodegradable and biocompatible, natural or synthetic polymers, ranging in sizes from 10 nm to 1 m. A wide variety of
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Nto the viral backbone (Table 1). Viral vaccine vector systems, such asNto the viral backbone (Table 1). Viral vaccine vector systems, such as adenovirus (type 2 and 5), adeno-associated virus, retrovirus, lentivirus, poxvirus, alphavirus, herpes simplex virus (HSV), offer several potential advantages over traditional vaccines, even though [23,24] each of them show some limitations and side
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Ficient RNA replication resulting in almost 200000 RNA copies [27] from each RNAFicient RNA replication resulting in almost 200000 RNA copies [27] from each RNA template . Although replication-deficient particles provide a high level of safety, there is still a marginal risk of the generation of replication-proficient particles through nonhomologous recombination. To minimize this risk, spli
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E targets, depot effect, high encapsulation and transport [38] efficiency, targeted deliveryE targets, depot effect, high encapsulation and transport [38] efficiency, targeted delivery . Polymeric nanoparticles (NPs) consist of polymeric colloidal nanoparticles prepared from biodegradable and biocompatible, natural or synthetic polymers, ranging in sizes from 10 nm to 1 m. A wide variety of
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Ently used for encapsulating and successfully [39] delivering a variety of anticancerEntly used for encapsulating and successfully [39] delivering a variety of anticancer drugs (reviewed in ). Problems of stability, cytotoxicity and conservation may represent constrains that require further optimized [42] formulations .POLYMERIC NANOPARTICLESPolymer-based nanoparticle delivery systems (polym
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Proteins have been reconstituted to produce virosomes with full biological fusionProteins have been reconstituted to produce virosomes with full biological fusion activity, through detergent solubilization and detergent removal [48,51,52] procedures . Several methods have been described to manufacture virosomes, including antigen loading, and DNA-binding to cationic-virosomes for gene delive
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Proteins have been reconstituted to produce virosomes with full biological fusionProteins have been reconstituted to produce virosomes with full biological fusion activity, through detergent solubilization and detergent removal [48,51,52] procedures . Several methods have been described to manufacture virosomes, including antigen loading, and DNA-binding to cationic-virosomes for gene delive