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1.
Pharmaceutics ; 11(12)2019 Dec 02.
Article in English | MEDLINE | ID: mdl-31810280

ABSTRACT

Development of tools for direct thrombus imaging represents a key step for diagnosis and treatment of stroke. Nanoliposomal carriers of contrast agents and thrombolytics can be functionalized to target blood thrombi by small protein binders with selectivity for fibrin domains uniquely formed on insoluble fibrin. We employed a highly complex combinatorial library derived from scaffold of 46 amino acid albumin-binding domain (ABD) of streptococcal protein G, and ribosome display, to identify variants recognizing fibrin cloth in human thrombus. We constructed a recombinant target as a stretch of three identical fibrin fragments of 16 amino acid peptide of the Bß chain fused to TolA protein. Ribosome display selection followed by large-scale Enzyme-Linked ImmunoSorbent Assay (ELISA) screening provided four protein variants preferentially binding to insoluble form of human fibrin. The most specific binder variant D7 was further modified by C-terminal FLAG/His-Tag or double His-tag for the attachment onto the surface of nanoliposomes via metallochelating bond. D7-His-nanoliposomes were tested using in vitro flow model of coronary artery and their binding to fibrin fibers was demonstrated by confocal and electron microscopy. Thus, we present here the concept of fibrin-targeted binders as a platform for functionalization of nanoliposomes in the development of advanced imaging tools and future theranostics.

2.
Mol Pharm ; 16(8): 3441-3451, 2019 08 05.
Article in English | MEDLINE | ID: mdl-31184896

ABSTRACT

Nanodiamonds (ND), especially fluorescent NDs, represent potentially applicable drug and probe carriers for in vitro/in vivo applications. The main purpose of this study was to relate physical-chemical properties of carboxylated NDs to their intracellular distribution and impact on membranes and cell immunity-activation of inflammasome in the in vitro THP-1 cell line model. Dynamic light scattering, nanoparticle tracking analysis, and microscopic methods were used to characterize ND particles and their intracellular distribution. Fluorescent NDs penetrated the cell membranes by both macropinocytosis and mechanical cutting through cell membranes. We proved accumulation of fluorescent NDs in lysosomes. In this case, lysosomes were destabilized and cathepsin B was released into the cytoplasm and triggered pathways leading to activation of inflammasome NLRP3, as detected in THP-1 cells. Activation of inflammasome by NDs represents an important event that could underlie the described toxicological effects in vivo induced by NDs. According to our knowledge, this is the first in vitro study demonstrating direct activation of inflammasome by NDs. These findings are important for understanding the mechanism(s) of action of ND complexes and explain the ambiguity of the existing toxicological data.


Subject(s)
Inflammasomes/drug effects , Intravital Microscopy/methods , Lysosomes/drug effects , NLR Family, Pyrin Domain-Containing 3 Protein/metabolism , Nanodiamonds/administration & dosage , Cathepsin B/immunology , Cathepsin B/metabolism , Cell Membrane/drug effects , Cell Membrane/metabolism , Cell Membrane/ultrastructure , Dynamic Light Scattering , Fluorescence , Humans , Inflammasomes/immunology , Inflammasomes/metabolism , Lysosomes/immunology , Lysosomes/metabolism , Lysosomes/ultrastructure , Microscopy, Atomic Force , Microscopy, Confocal , Microscopy, Electron , NLR Family, Pyrin Domain-Containing 3 Protein/immunology , Nanodiamonds/chemistry , Pinocytosis , THP-1 Cells
3.
Bioconjug Chem ; 29(7): 2343-2356, 2018 07 18.
Article in English | MEDLINE | ID: mdl-29898364

ABSTRACT

New synthetic aminoxy lipids are designed and synthesized as building blocks for the formulation of functionalized nanoliposomes by microfluidization using a NanoAssemblr. Orthogonal binding of hyaluronic acid onto the outer surface of functionalized nanoliposomes via aminoxy coupling ( N-oxy ligation) is achieved at hemiacetal function of hyaluronic acid and the structure of hyaluronic acid-liposomes is visualized by transmission electron microscopy and cryotransmission electron microscopy. Observed structures are in a good correlation with data obtained by dynamic light scattering (size and ζ-potential). In vitro experiments on cell lines expressing CD44 receptors demonstrate selective internalization of fluorochrome-labeled hyaluronic acid-liposomes, while cells with down regulated CD44 receptor levels exhibit very low internalization of hyaluronic acid-liposomes. A method based on microfluidization mixing was developed for preparation of monodispersive unilamellar liposomes containing aminoxy lipids and orthogonal binding of hyaluronic acid onto the liposomal surface was demonstrated. These hyaluronic acid-liposomes represent a potentially new drug delivery platform for CD44-targeted anticancer drugs as well as for immunotherapeutics and vaccines.


Subject(s)
Antineoplastic Agents/administration & dosage , Drug Delivery Systems/methods , Hyaluronan Receptors/metabolism , Hyaluronic Acid/chemistry , Lipids/chemical synthesis , Liposomes/chemistry , Cell Line , Endocytosis , Fluorescent Dyes , Humans , Hyaluronan Receptors/analysis , Hyaluronic Acid/metabolism , Liposomes/therapeutic use , Microfluidics , Microscopy, Electron, Transmission , Neoplasms/drug therapy
4.
Pharm Res ; 32(4): 1186-99, 2015 Apr.
Article in English | MEDLINE | ID: mdl-25630814

ABSTRACT

PURPOSE: The aim of this work was to demonstrate an immunostimulatory and adjuvant effect of new apyrogenic lipophilic derivatives of norAbuMDP and norAbuGMDP formulated in nanoliposomes. METHODS: Nanoliposomes and metallochelating nanoliposomes were prepared by lipid film hydration and extrusion methods. The structure of the liposomal formulation was studied by electron microscopy, AF microscopy, and dynamic light scattering. Sublethal and lethal γ-irradiation mice models were used to demonstrate stimulation of innate immune system. Recombinant Hsp90 antigen (Candida albicans) bound onto metallochelating nanoliposomes was used for immunisation of mice to demonstrate adjuvant activities of tested compounds. RESULTS: Safety and stimulation of innate and adaptive immunity were demonstrated on rabbits and mice. The liposomal formulation of norAbuMDP/GMDP was apyrogenic in rabbit test and lacking any side effect in vivo. Recovery of bone marrow after sublethal γ-irradiation as well as increased survival of mice after lethal irradiation was demonstrated. Enhancement of specific immune response was demonstrated for some derivatives incorporated in metallochelating nanoliposomes with recombinant Hsp90 protein antigen. CONCLUSIONS: Liposomal formulations of new lipophilic derivatives of norAbuMDP/GMDP proved themselves as promising adjuvants for recombinant vaccines as well as immunomodulators for stimulation of innate immunity and bone-marrow recovery after chemo/radio therapy of cancer.


Subject(s)
Acetylmuramyl-Alanyl-Isoglutamine/analogs & derivatives , Adaptive Immunity/drug effects , Adjuvants, Immunologic/pharmacology , Drug Carriers/chemistry , Immunity, Innate/drug effects , Acetylmuramyl-Alanyl-Isoglutamine/administration & dosage , Acetylmuramyl-Alanyl-Isoglutamine/chemistry , Acetylmuramyl-Alanyl-Isoglutamine/pharmacology , Acetylmuramyl-Alanyl-Isoglutamine/therapeutic use , Adjuvants, Immunologic/administration & dosage , Adjuvants, Immunologic/chemistry , Adjuvants, Immunologic/therapeutic use , Animals , Antibodies, Fungal/blood , Antigens, Fungal/immunology , Female , HSP90 Heat-Shock Proteins/immunology , Liposomes , Mice , Mice, Inbred ICR , Microscopy, Atomic Force , Microscopy, Electron, Scanning , Microscopy, Electron, Transmission , Molecular Structure , Nanoparticles , Rabbits , Radiation Injuries, Experimental/immunology , Radiation Injuries, Experimental/prevention & control , Recombinant Proteins/immunology , Survival Analysis
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