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601por Ghadiri, Maryam, Vasheghani-Farahani, Ebrahim, Atyabi, Fatemeh, Kobarfard, Farzad, Hosseinkhani, Hossein“…The experimental results indicated that DS-NPs with favorable properties can be achieved at an optimized condition of 2 mg/mL DS and 0.75 mg/mL tri-polyphosphate (TPP) concentrations, TPP addition rate of 35 mL/min, pH 3 of DS solution and super paramagnetic iron oxide nanoparticles (SPION)/DS mass ratio of 0.5. The entrapment efficiency of capecitabine was 26.1% at optimum condition and drug release at neutral pH after 24 h and acidic pH within 3 h was 56 and 98%, respectively. …”
Publicado 2017
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602por Tong, Wei, Hui, Hui, Shang, Wenting, Zhang, Yingqian, Tian, Feng, Ma, Qiang, Yang, Xin, Tian, Jie, Chen, Yundai“…Methods: A novel multimodal imaging agent, 5-HT-Fe(3)O(4)-Cy7 nanoparticles (5HFeC NPs), used for active MPO targeting, was designed by conjugating superparamagnetic iron oxide nanoparticles (SPIONs) with 5-hydroxytryptamine and cyanine 7 N-hydroxysuccinimide ester. …”
Publicado 2021
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603“…In this review, we discuss the current research and therapeutic efficacy of metal nanoparticle (MNP)-based radiosensitizers, specifically in the treatment of HNC with an emphasis on gold- (AuNPs), gadolinium- (AGdIX), and silver- (Ag) based nanoparticles together with the metallic oxide-based hafnium (Hf), zinc (ZnO) and iron (SPION) nanoparticles. Both in vitro and in vivo systems for different ionizing radiations including photons and protons were reviewed. …”
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604por Chaix, Arnaud, Griveau, Audrey, Defforge, Thomas, Grimal, Virginie, Le Borgne, Brice, Gautier, Gaël, Eyer, Joël“…Motivated by this approach, we investigated the use of magnetic-pSiNRs covered with superparamagnetic iron oxide nanoparticles (SPIONs) for magnetic guidance, then decorated with the NFL-peptide to facilitate targeting and enhance internalization into human GBM cells. …”
Publicado 2022
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605por Kim, Cherry, Suh, Ji‐Yeon, Heo, Changhoe, Lee, Chang Kyung, Shim, Woo Hyun, Park, Bum Woo, Cho, Gyunggoo, Lee, Do‐Wan, Woo, Dong‐Cheol, Kim, Sang‐Yeob, Kim, Yun Jae, Bae, Dong‐Jun, Kim, Jeong Kon“…Transvascular permeability (TP) was quantified on dynamic‐contrast‐enhanced MRI (DCE‐MRI) using extravascular extracellular agent (Gd‐DOTA); blood volume (BV) was estimated using intravascular T(2) agent (SPION). With regard to region‐dependent variability in vascular phenotypes, the control group demonstrated higher TP in the tumor center than in the periphery, and greater BV in the tumor periphery than in the center. …”
Publicado 2018
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606por Kamil Mohammad Al-Mosawi, Aseel, Bahrami, Ahmad Reza, Nekooei, Sirous, Saljooghi, Amir Sh., Matin, Maryam M.“…Results: Nanocarriers were prepared with a final size diameter of 78 nm, the surface area and pore size of SPION-MSNs were calculated as 636 m(2)g(−1), and 3 nm based on the BET analysis. …”
Publicado 2023
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607“…In this regard, 40 rats were distributed into five groups with eight animals: control, diabetes, and diabetes treated with SPIONs, QC, and QCSPIONs. All treatments (at the dose of 25 mg/kg) were dissolved in deionized water and gavaged for 35 consecutive days. …”
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608“…Both superparamagnetic iron oxide nanoparticles (SPIONs) of size 10 nm and ferrimagnetic iron oxide nanoparticles (FIONs) of size 30 nm were synthesized by thermal decomposition method for comparison studies. …”
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609por Moreira, Rute, Jervis, Peter J., Carvalho, André, Ferreira, Paula M. T., Martins, José A., Valentão, Patrícia, Andrade, Paula B., Pereira, David M.“…Moreover, the incorporation of superparamagnetic iron oxide nanoparticles (SPIONs) rendered the hydrogels responsive to external magnetic fields, undergoing gel-to-solution phase transition upon remote magnetic excitation. …”
Publicado 2020
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610Application of Magnetic Nanoparticles for Rapid Detection and In Situ Diagnosis in Clinical Oncologypor Onishi, Tatsuya, Mihara, Kisyo, Matsuda, Sachiko, Sakamoto, Satoshi, Kuwahata, Akihiro, Sekino, Masaki, Kusakabe, Moriaki, Handa, Hiroshi, Kitagawa, Yuko“…Furthermore, magnetic nanoparticles, such as superparamagnetic iron oxide nanoparticles (SPIONs), can detect sentinel lymph nodes in breast cancer in a clinical setting, as well as those in gallbladder cancer in animal models, in a surgery-applicable timeframe. …”
Publicado 2022
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611“…The important tracing agent was also found to be Technetium-99m ((99m)Tc), Gallium-68 ((68)Ga) and superparamagnetic iron oxide nanoparticle (SPION), while the essential contrast agents are gold, iodine, silver gadolinium, iron and manganese-based particles. …”
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612por Mehralivand, Sherif, van der Poel, Henk, Winter, Alexander, Choyke, Peter L., Pinto, Peter A., Turkbey, Baris“…Radiotracers and more recently fluorescent dyes and superparamagnetic iron oxide nanoparticles (SPION) are injected into the primary tumor or peritumoral and the sentinel LNs are identified intraoperatively by a gamma probe, fluorescent camera or a handheld magnetometer. …”
Publicado 2018
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613por Candiota, Ana Paula, Acosta, Milena, Simões, Rui Vasco, Delgado-Goñi, Teresa, Lope-Piedrafita, Silvia, Irure, Ainhoa, Marradi, Marco, Bomati-Miguel, Oscar, Miguel-Sancho, Nuria, Abasolo, Ibane, Schwartz, Simó, Santamaria, Jesús, Penadés, Soledad, Arús, Carles“…In detail, sugar/gadolinium-loaded gold nanoparticles (Gd-GNPs) and iron nanoparticles (SPIONs) were tested. Our results indicate that the post-mortem ex vivo RCE of evaluated CAs, did not correlate well with their respective in vitro relaxivities. …”
Publicado 2014
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614por Iranpour, Sonia, Bahrami, Ahmad Reza, Nekooei, Sirous, Sh. Saljooghi, Amir, Matin, Maryam M.“…MATERIALS AND METHODS: Herein, we designed a novel DDS based on magnetic mesoporous silica core–shell nanoparticles (SPION@MSNs) in which release of doxorubicin (DOX) at the physiologic pH was blocked with gold gatekeepers. …”
Publicado 2021
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615por Palzer, Julian, Mues, Benedikt, Goerg, Richard, Aberle, Merel, Rensen, Sander S, Olde Damink, Steven W M, Vaes, Rianne D W, Cramer, Thorsten, Schmitz-Rode, Thomas, Neumann, Ulf P, Slabu, Ioana, Roeth, Anjali A“…Magnetoliposomes (ML), consisting of superparamagnetic iron oxide nanoparticles (SPION) stabilized with a phospholipid-bilayer, are exposed to an alternating magnetic field (AMF) to generate heat. …”
Publicado 2021
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