Tissue Engineering And Nanotheranostics

(Steven Felgate) #1
b2815 Tissue Engineering and Nanotheranostics “9.61x6.69”

288 Index

J


Janus Fe 3 O 4 –MnO nanopartices,
131
Janus hybrid particles, 121
Janus magnetic mesoporous, 123
Janus nanocomposites, 119
Janus nanohybrid, 119 , 128
Janus nanoparticles, 119 , 123 , 126 ,
131 – 132
Janus nanostructure, 119
Janus nanostructure by a self-
assembly, 118
Janus or heterodimer structure,
116
Janus particles, 116 – 119
Janus-shaped morphology, 124
Janus-shaped structure, 122 – 123

L


laser micrometry, 40
lattice mismatching property, 127
Liposome, 235
liquid chromatography-mass
spectroscopy, 44
localized surface plasmon resonance
(LSPR), 152
low oxygen, 19
lung progenitor, 83, 8 7–89

M


magnetic core–shell nanohybrids,
108
magnetic hybrid dumbbell-like, 124
magnetic hybrid nanoparticles, 139
magnetic hybrid nanostructures,
105
magnetic hybrids based
nanotheranostic, 140

magnetic hybrids in photothermal
therapy, 137
magnetic Janus nanohybrids
(MJNHs), 121
magnetic nanohybrid material,
101–102, 105– 106
magnetic nanohybrids, 101,
105 –108, 124, 126 , 131 – 133
magnetic nanohybrid structure,
123
magnetic plasmonic nanohybrids,
111, 124 , 126
magnetic–plasmonic nanostructures,
128
magnetic resonance imaging (MRI),
101 , 103 , 137, 249
magnetic resonance (MR)
phenomenon, 129
magneto-fluorescent core–shell
hybrid nanoparticles (MFCSNPs),
110
magneto–plasmonic hybrid
structure, 125
mechanical
stimuli, 63
mechanical forces, 16
mechanical stimulation, 16– 17
mechanical stretching, 17
mechanical trauma, 3
mechanobiological stimuli,
20
mesenchymal stem cells (MSCs),
7 , 9
mesh weight, 34
mesoporous silica nanoparticles,
237
microtubule, 209–217, 220
molecule, 152
mononuclear myocytes, 6

b2815_Index.indd 288 10/10/2017 12:15:37 PM

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