Production of magnetic bacteria and formation mechanisms, targeting industrial applications from a functional perspective.
S10918
An easy-to-understand explanation of 'magnetic microparticles,' which are gaining attention as materials for measuring biomolecules, separating cells, extracting nucleic acids, and removing environmental toxins and heavy metals!
Lecturer Atsushi Arakaki, Assistant Professor, Graduate School of Engineering, Tokyo University of Agriculture and Technology Target Audience: Engineers, researchers, and educators interested in magnetic bacteria, magnetic microparticles, magnets created by magnetic bacteria, their measurement methods, and applications. Venue: Tokyo Chuo City Industrial Hall, 4th Floor, Meeting Room 4 [Tokyo, Nihonbashi] Access: 5 minutes from B4 exit via underground passage from Bakuroyokoyama Station on the Toei Shinjuku Line (Directions 2) 5 minutes from C1 exit via East ticket gate from Bakurocho Station on the JR Sobu Rapid Line (Directions 3), etc. Date and Time: September 21, 2011 (Wednesday) 13:30-16:30 Capacity: 30 people *Registration will close once full. Please apply early. Participation Fee: [Early Bird Discount Price] 46,200 yen (tax included, including lunch and text costs) for up to 2 participants from one company. *Limited to Tech-Zone members who apply by September 7. Membership registration is free. *After September 7, the [Regular Price] will be 49,350 yen (tax included, including text costs) for up to 2 participants from one company. ◆If 3 participants from the same organization apply, the fee will be 69,300 yen.
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basic information
**Lecture Summary** Magnetic microparticles can be separated and induced by magnetic forces, and due to their large surface area, they are widely used in the bio-related field for measuring biomolecules, separating cells, extracting nucleic acids, and removing environmental toxins and heavy metals. In these bio-applications, it is necessary to immobilize functional molecules on the particle surface, making the molecular-level design of the particle surface particularly important. This lecture will introduce the characteristics of magnetic microparticles covered with lipids synthesized by magnetotactic bacteria, as well as the development and application research of particle materials utilizing them.
Price range
P2
Delivery Time
P2
Applications/Examples of results
1. Magnetic microparticles used in the bio field 1-1 Products and market 1-2 Required performance and design guidelines for magnetic microparticles 2. What are magnetic bacteria? 2-1 Characteristics of magnetic microparticles produced by bacteria 2-2 Utilization of the biomembrane covering magnetic microparticles 2-3 Genetic modification of magnetic bacteria 3. Functionalization of magnetic microparticle surfaces 3-1 Immobilization of nucleic acids and proteins using chemical crosslinkers 3-2 Amino group modification 3-3 Composite formation of particles 4. Magnetic microparticle protein display technology 4-1 Introduction of membrane proteins onto the surface of magnetic microparticles 4-2 Improvement and control of expression levels 4-3 Membrane reconstruction 5. Control of morphology and composition of magnetic microparticles 5-1 Control of morphology and composition using cells 5-2 Control of morphology and composition in non-cellular systems 6. Bioapplications of magnetic microparticles 6-1 Immunoassays, enzyme reactions 6-2 Cell separation 6-3 Nucleic acid extraction 6-4 Genetic diagnosis 6-5 Development of automation devices 【Q&A, Business card exchange】
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