Multi-Stimuli-Responsive DOX Released from Magnetosome for Tumor Synergistic Theranostics

To improve responses to tumor microenvironments for achieving a better therapeutic outcome in combination cancer therapy, poly(ε-caprolactone)-SS-poly(methacrylic acid) diblock copolymer (PCL-SS-PMAA) with a disulfide linkage between the hydrophobic and hydrophilic junctions was synthesized. Repeati...

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Veröffentlicht in:International journal of nanomedicine 2020-01, Vol.15, p.8623-8639
Hauptverfasser: Tsai, Ming-Fong, Lo, Yu-Lun, Huang, Yuan-Chun, Yu, Chun-Chieh, Wu, Yi-Ting, Su, Chia-Hao, Wang, Li-Fang
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Sprache:eng
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Zusammenfassung:To improve responses to tumor microenvironments for achieving a better therapeutic outcome in combination cancer therapy, poly(ε-caprolactone)-SS-poly(methacrylic acid) diblock copolymer (PCL-SS-PMAA) with a disulfide linkage between the hydrophobic and hydrophilic junctions was synthesized. Repeating units of PCL and PMAA in PCL-SS-PMAA were controlled and formulated into polymersomes (PSPps). Truncated octahedral Fe O nanoparticles (IONPs) were synthesized and encapsulated to produce IONPs-PSPps NPs and doxorubicin (DOX) was further loaded to produce IONPs-PSPps@DOX NPs for theranostic applications. IONPs-PSPps NPs remained a superparamagnetic property with a saturation magnetization value of 85 emu⋅g and a relaxivity value of 180 mM ⋅s . Upon exposure to an alternating magnetic field (AMF), IONPs-PSPps NPs increased temperature from 25°C to 54°C within 15 min. Among test groups, the cell apoptosis was greatest in the group exposed to IONPs-PSPps@DOX NPs with AMF and magnet assistance. In vivo T -weighted magnetic resonance images of A549 tumor-bearing mice also showed highest contrast and greatest tumor suppression in the tumor with AMF and magnet assistance. IONPs-PSPps@DOX NPs are a potential theranostic agent having multifaceted applications involving magnetic targeting, MRI diagnosis, hyperthermia and chemotherapy.
ISSN:1178-2013
1176-9114
1178-2013
DOI:10.2147/IJN.S275655