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Wu L, Mendoza-Garcia A, Li Q, et al. Organic phase syntheses of magnetic nanoparticles and their applications. Ramaswamy S, Greco JB, Uluer MC, et al. Magnetic resonance imaging of chondrocytes labeled diet plan superparamagnetic iron oxide nanoparticles in tissue-engineered cartilage. Tissue Eng Part A. Saldanha KJ, Doan RP, Ainslie Diet plan, et al.

Micrometer-sized iron Methoxsalen (8-MOP)- FDA particle labeling of mesenchymal stem cells for magnetic resonance imaging-based monitoring of cartilage tissue engineering. Xu H, Aguilar ZP, Penlac (Ciclopirox Topical Solution)- Multum L, et al.

Antibody conjugated magnetic iron oxide nanoparticles for cancer cell separation in fresh whole blood. Chen XZ, Hoop M, Mushtaq F, et al. Recent developments in magnetically driven micro- and nanorobots. Kim Diet plan, Chung SE, Choi SE, et al. Programming magnetic anisotropy in polymeric microactuators.

Targeted drug delivery with diet plan and magnetic nanoparticles: covalent and noncovalent approaches, release control, and clinical studies. Zhu L, Wang D, Wei Diet plan, et al. Singh AV, Maharjan RS, Kanase A, et al. Machine-learning-based approach to decode the influence of nanomaterial properties on their interaction with cells. Singh AV, Ansari MHD, Rosenkranz Diet plan, et al. Artificial intelligence and machine learning in computational nanotoxicology: unlocking and empowering nanomedicine.

Polak P, Shefi O. Nanometric agents in the service of neuroscience: manipulation of neuronal growth and activity using nanoparticles. Li Q, Tang G, Xue S, et al. Silica-coated superparamagnetic iron diet plan nanoparticles targeting of EPCs in ischemic brain injury. Cores J, Caranasos TG, Cheng K. Magnetically targeted stem diet plan delivery for regenerative medicine.

Diet plan AV, Chandrasekar V, Janapareddy P, et al. Emerging application of nanorobotics and artificial intelligence to cross the BBB: advances in design, controlled maneuvering, and targeting of the barriers. Efficient diet plan cell labeling for MRI studies.

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Chen J, Rogers SC, Kavdia M. Analysis of kinetics of dihydroethidium fluorescence with superoxide using xanthine oxidase and hypoxanthine assay. Benetti F, Bregoli L, Olivato I, et al. Effects of metal(loid)-based nanomaterials on essential element diet plan the central role of nanometallomics for nanotoxicology. Schafer R, Kehlbach R, Muller M, et al.

Labeling of human mesenchymal stromal cells with superparamagnetic iron oxide leads to a decrease in migration capacity and diet plan formation ability. Zhang R, Li J, Li J, et al. Efficient In vitro labeling rabbit bone marrow-derived mesenchymal stem cells with SPIO and differentiating into neural-like cells. Xu L, Yuan S, Chen W, et al.

Transplantation and tracking of diet plan human umbilical cord mesenchymal stem cell labeled with superparamagnetic iron oxide in deaf pigs. Singh AV, Dad ansari MH, Dayan CB, et al. Lee JH, Jung MJ, Hwang YH, diet plan al.

Heparin-coated superparamagnetic iron oxide for in vivo MR imaging of human MSCs. Ledda M, Fioretti D, Lolli MG, et diet plan. Mahmoudi M, Sant S, Wang B, et al. Superparamagnetic iron oxide nanoparticles (SPIONs): development, surface modification and applications in chemotherapy.

Tartaj P, Serna CJ. Elkhenany H, Abd Elkodous M, Ghoneim NI, et al. Comparison of different uncoated and starch-coated superparamagnetic iron oxide nanoparticles: implications for stem cell tracking.

Gupta AK, Wells S.

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