磁珠在临床以及生物科学与技术中的运用.ppt
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1、Magnetic nano-and microparticles in bioscience and biotechnology,Type of magnetic nano-and microparticles,Multi domain,single domain or superparamagneticMagnetite(Fe3O4)Ferrites(MeO.Fe2O3;Me=Ni,Co,Mg,Zn,Mn)Maghemite(-Fe2O3)Greigite(Fe3S4)Iron,nickel,Magnetic nano-and microparticles,Inorganic materia
2、l,but:Present in biological systemsUsable for a variety of bio-applications,Important dates,1962-Lowenstam(biochemically-precipitated magnetite as a capping material in the radula(tongue plate)teeth of chitons(marine mollusks of the class Polyplacophora)1975-Blakemore(magnetotactic bacteria),Magneti
3、c material in teeth of chitons,hardening the tooth caps(enabling the chitons to extract and eat endolithic algae from within the outer few millimeters of rock substrates),Magnetotactic bacteria,Various morphological types existGram-negative prokaryotesMagnetic nanoparticles present in magnetosomesFo
4、und in sediments in diverse aquatic environments,Magnetotactic bacteria,Provided by Dr.D.Schler,Germany,Magnetosomes,Composed from magnetite(Fe3O4)or greigite(Fe3S4)Ca 50 nm in diameterCovered with a lipidic membraneImportant for navigation of the bacteria into oxic/anoxic layer Biocompatible charac
5、ter(phospholipid bilayer)Possible applications in biosciences,Magnetosomes,Provided by Dr.D.Schler,Germany,Magnetosomes,Provided by Dr.D.Schler,Germany,Biogenic magnetic nanoparticles,Magnetotactic bacteriaMagnetotactic algae ProtozoaInsectFishAmphibiansReptilesBirdsMammals,Animal magnetite,Magnetos
6、ome chains from the frontal tissues of chinook salmon S.Mann et al.:J.Exp.Biol.140(1988)35-49.,Importance of animal magnetite,Most probably involved in magnetoreception(what is the current position?,which direction to move?)interaction of magnetite nanoparticles(chains of magnetic nanoparticles?)wit
7、h the sensing cells,Non-physiological presence of magnetic nanoparticles,Found in human brain in case of neurodegenerative diseasesDisruption of normal iron homeostasis in the brainEarly detection of neurodegenerative diseases using MRI?,Magnetic nanoparticles in meteorites from Mars,Meteorite magne
8、tic nanoparticles resemble magnetosomes from Earth magnetotactic bacteriaHypothesis:Was there a transfer of living systems from Mars to Earth?,Lets return back to Earth!,Magnetic nano-and microstructured materials for bioapplications,Useful for many applications in biosciences,biotechnologies and en
9、vironmental technologiesEnable to label diamagnetic structures Enable separation or detection of magnetically labeled structuresBoth separation and non-separation applications are important,Which nano-and microstructured magnetic materials?,Three important bio-Biocompatible(in the broadest sense of
10、this word)BiodegradableBiomimetic,Biocompatible materials,Biocompatibility in the broadest sense of the wordMinimal toxicity Stability of nanoparticles in body fluidsPossibility for immobilization of biologically active compounds,cell organelles,cells(activated nanoparticles)Reproducible interaction
11、 with biosystemsEnable labeling of biostructures(for magnetoassays)Biopolymer based particles,PEGylated structures,magnetoliposomes,biopolymer-based FFs,self-assembled magnetic structures,Biodegradable materials,Important from the point of view of possible clinical applications(e.g.,drug targeting)N
12、anoparticles formed by biodegradable(bio)polymerMagnetoliposomes and related structures Starch-based magnetic fluids,Biomimetic materials,Analogues of bacterial magnetosomesFerritin x magnetoferritin,Important data,1960s Pappell(first ferrofluids,1000 hours of magnetite milling)1966-Magnetically con
13、trolled thrombosis of intracranial aneurysms1970s increase of interest in biomagnetic research and technology1980 Massart(chemical synthesis of aqueous ferrofluid without detergents)1980s commercially available magnetic particles,Magnetic fluids examples of magnetic nanostructured materials,ferroflu
14、id can be influenced by the presence of external magnetic field,Synthetic biocompatible magnetic nanoparticles and complexes containing them,Biocompatible magnetic fluidsMagnetoliposomesMagnetic nano-and microparticlesMagnetoferritin,Magnetic microparticles,DynabeadsHomogeneous size distribution Sim
15、ple recovery with small permanent magnetsMagnetic nanoparticles present inside the beadsAvailable in plain,activated and bioactive form,Examples of of magnetic nano-and microparticles applications,From molecular biology to environmental technologies Manipulation of microliters as well as million of
16、liters Manipulation in suspension systemsBoth separation and non-separation techniques are important,Immobilization and modification of biologically active compounds,Possibility of simple removal of the immobilized molecules or cells from the system Immobilization of enzymes,antibodies,lectins,oligo
17、nucleotides,affinity ligandsModification of proteins via magnetic PEGImmobilization in magnetoliposomesMagnetosomes from genetically engineered magnetotactic bacteria carrying target proteins,Isolation of biologically active compounds,Direct separation of targets from crude samples containing solids
18、Affinity magnetic beads or magnetic two-phase systemsPreconcentration of target molecules from large volumes of crude materials Poly A+mRNA,DNA,oligonucleotides EnzymesLectinsDNA/RNA binding proteinsAntibodies,antigens Xenobiotics(both organic and inorganic),High gradient magnetic separators,Test tu
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