7 |
Doerner JF, Febvay S, Clapham DE. Controlled delivery of bioactive molecules into live cells using the bacterial mechanosensitive channel MscL [J]. Nat Commun, 2012, 3: 990.
|
8 |
Huang YS, Fan CH, Hsu N, et al. Sonogenetic modulation of cellular activities using an engineered auditory-sensing protein [J]. Nano Lett, 2020, 20(2): 1089-1100.
|
9 |
Paefgen V, Doleschel D, Kiessling F. Evolution of contrast agents for ultrasound imaging and ultrasound-mediated drug delivery [J]. Front Pharmacol, 2015, 6: 197.
|
10 |
Cosgrove D, Harvey C. Clinical uses of microbubbles in diagnosis and treatment [J]. Med Biol Eng Comput, 2009, 47(8): 813-826.
|
11 |
Cui W, Tavri S, Benchimol MJ, et al. Neural progenitor cells labeling with microbubble contrast agent for ultrasound imaging in vivo [J]. Biomaterials, 2013, 34(21): 4926-4935.
|
12 |
Shapiro MG, Goodwill PW, Neogy A, et al. Biogenic gas nanostructures as ultrasonic molecular reporters [J]. Nat Nanotechnol, 2014, 9(4): 311-316.
|
13 |
Bowen CC, Jensen TE. Blue-green algae: fine structure of the gas vacuoles [J]. Science, 1965, 147(3664): 1460-1462.
|
14 |
Pfeifer F. Distribution, formation and regulation of gas vesicles [J]. Nat Rev Microbiol, 2012, 10(10): 705-715.
|
15 |
Ezzeldin HM, Klauda JB, Solares SD. Modeling of the major gas vesicle protein, GvpA: from protein sequence to vesicle wall structure [J]. J Struct Biol, 2012, 179(1): 18-28.
|
16 |
Farhadi A, Ho GH, Sawyer DP, et al. Ultrasound imaging of gene expression in mammalian cells [J]. Science, 2019, 365(6460): 1469-1475.
|
17 |
Tayier B, Deng Z, Wang Y, et al. Biosynthetic nanobubbles for targeted gene delivery by focused ultrasound [J]. Nanoscale, 2019, 11(31): 14757-14768.
|
18 |
Lakshmanan A, Farhadi A, Nety SP, et al. Molecular engineering of acoustic protein nanostructures [J]. ACS Nano, 2016, 10(8): 7314-7322.
|
19 |
Burns PN. Harmonic imaging with ultrasound contrast agents [J]. Clin Radiol, 1996, 51(Suppl 1): 50-55.
|
20 |
Maresca D, Skachkov I, Renaud G, et al. Imaging microvasculature with contrast-enhanced ultraharmonic ultrasound [J]. Ultrasound Med Biol, 2014, 40(6): 1318-1328.
|
21 |
Blanco E, Shen H, Ferrari M. Principles of nanoparticle design for overcoming biological barriers to drug delivery [J]. Nat Biotechnol, 2015, 33(9): 941-951.
|
22 |
Rodriguez PL, Harada T, Christian DA, et al. Minimal "Self " peptides that inhibit phagocytic clearance and enhance delivery of nanoparticles [J]. Science, 2013, 339(6122): 971-975.
|
23 |
Zakeri B, Fierer JO, Celik E, et al. Peptide tag forming a rapid covalent bond to a protein, through engineering a bacterial adhesin [J]. Proc Natl Acad Sci USA, 2012, 109(12): E690-E697.
|
24 |
Strunk T, Hamacher K, Hoffgaard F, et al. Structural model of the gas vesicle protein GvpA and analysis of GvpA mutants in vivo [J]. Mol Microbiol, 2011,81(1): 56-68.
|
25 |
Bourdeau RW, Lee-Gosselin A, Lakshmanan A, et al. Acoustic reporter genes for noninvasive imaging of microorganisms in mammalian hosts [J]. Nature, 2018, 553(7686): 86-90.
|
26 |
Lakshmanan A, Farhadi A, Nety SP, et al. Molecular engineering of acoustic protein nanostructures [J]. ACS Nano, 2016, 10(8): 7314-7322.
|
27 |
Danino T, Lo J, Prindle A, et al. In vivo gene expression dynamics of tumor-targeted bacteria [J]. ACS Synth Biol, 2012, 1(10): 465-470.
|
1 |
Heureaux J, Chen D, Murray VL, et al. Activation of a bacterial mechanosensitive channel in mammalian cells by cytoskeletal stress [J]. Cell Mol Bioeng, 2014, 7(3): 307-319.
|
2 |
Ibsen S, Tong A, Schutt C, et al. Sonogenetics is a non-invasive approach to activating neurons in Caenorhabditis elegans [J]. Nat Commun, 2015, 6: 8264.
|
3 |
Aston-Jones G, Deisseroth K. Recent advances in optogenetics and pharmacogenetics [J]. Brain Res, 2013, 1511: 1-5.
|
4 |
Packer AM, Roska B, Hausser M. Targeting neurons and photons for optogenetics [J]. Nat Neurosci, 2013, 16(7): 805-815.
|
5 |
Brand S, Weiss EC, Lemor RM, et al. High frequency ultrasound tissue characterization and acoustic microscopy of intracellular changes [J]. Ultrasound Med Biol, 2008, 34(9): 1396-1407.
|
6 |
Ye J, Tang S, Meng L, et al. Ultrasonic control of neural activity through activation of the mechanosensitive channel MscL [J]. Nano Lett, 2018, 18(7): 4148-4155.
|