Literature DB >> 30152229

Temperature-Responsive Magnetic Nanoparticles for Enabling Affinity Separation of Extracellular Vesicles.

Ramon Jauregui, Selvi Srinivasan, Lucia N Vojtech, Hilary S Gammill, Daniel T Chiu, Florian Hladik, Patrick S Stayton, James J Lai.   

Abstract

Small magnetic nanoparticles that have surfaces decorated with stimuli-responsive polymers can be reversibly aggregated via a stimulus, such as temperature, to enable efficient and rapid biomarker separation. To fully realize the potential of these particles, the synthesis needs to be highly reproducible and scalable to large quantity. We have developed a new synthesis for temperature-responsive magnetic nanoparticles via an in situ co-precipitation process of Fe2+/Fe3+ salts at room temperature with poly(acrylic acid)- block-poly( N-isopropylacrylamide) diblock co-polymer template, synthesized via the reversible addition-fragmentation chain-transfer polymerization method. These particles were 56% polymer by weight with a 6.5:1 Fe/COOH ratio and demonstrated remarkable stability over a 2 month period. The hydrodynamic diameter remained constant at ∼28 nm with a consistent transition temperature of 34 °C, and the magnetic particle separation efficiency at 40 °C was ≥95% over the 2 month span. These properties were maintained for all large-scale synthesis batches. To demonstrate the practical utility of the stimuli-responsive magnetic nanoparticles, the particles were incorporated into a temperature-responsive binary reagent system and efficiently separated a model protein biomarker (mouse IgG) as well as purified extracellular vesicles derived from a human biofluid, seminal plasma. The ease of using these particles will prove beneficial for various biomedical applications.

Entities:  

Keywords:  biomarkers; diblock co-polymer; extracellular vesicle; magnetic nanoparticle; stimuli-responsive polymer

Mesh:

Substances:

Year:  2018        PMID: 30152229      PMCID: PMC6538933          DOI: 10.1021/acsami.8b09751

Source DB:  PubMed          Journal:  ACS Appl Mater Interfaces        ISSN: 1944-8244            Impact factor:   10.383


  47 in total

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4.  Thermosensitive-polymer-coated magnetic nanoparticles: adsorption and desorption of bovine serum albumin.

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Review 6.  Progress in exosome associated tumor markers and their detection methods.

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Review 7.  Phase 2 of extracellular RNA communication consortium charts next-generation approaches for extracellular RNA research.

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  9 in total

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