127
Views
12
CrossRef citations to date
0
Altmetric
Original Research

A new strategy for accurate targeted diagnosis and treatment of cutaneous malignant melanoma: dual-mode phase-change lipid nanodroplets as ultrasound contrast agents

, , , , , , , , & show all
Pages 7079-7093 | Published online: 02 Sep 2019

References

  • Ankeny JS, Labadie B, Luke J, et al. Review of diagnostic, prognostic, and predictive biomarkers in melanoma. Clin Exp Metastasis. 2018;35(5–6):487–493. [PubMed: 29722000]. doi:10.1007/s10585-018-9892-z29722000
  • Abbas O, Miller DD, Bhawan J. Cutaneous malignant melanoma: update on diagnostic and prognostic biomarkers. Am J Dermatopathol. 2014;36(5):363–379. [PubMed: 24803061]. doi:10.1097/DAD.0b013e31828a2ec524803061
  • Miller KD, Siegel RL, Lin CC, et al. Cancer treatment and survivorship statistics, 2016. CA Cancer J Clin. 2016;66(4):271–289. [PubMed: 27253694]. doi:10.3322/caac.2134927253694
  • Cai T, Kuang Y, Zhang C, et al. Glucose-6-phosphate dehydrogenase and NADPH oxidase 4 control STAT3 activity in melanoma cells through a pathway involving reactive oxygen species, c-SRC and SHP2. Am J Cancer Res. 2015;5(5):1610–1620. [PubMed: 26175932].26175932
  • D’Aniello C, Perri F, Scarpati GDV, et al. Melanoma adjuvant treatment: current insight and clinical features. Curr Cancer Drug Targets. 2018; 18(5):442–456. [PubMed: 28183255]. doi:10.2174/156800961766617020816371428183255
  • Cabrera R, Recule F. Unusual Clinical Presentations of Malignant Melanoma: a Review of Clinical and Histologic Features with Special Emphasis on Dermatoscopic Findings. Am J Clin Dermatol. 2018;19(Suppl 1):15–23. [PubMed: 30374898]. doi:10.1007/s40257-018-0373-6
  • Houghton JL, Zeglis BM, Abdel-Atti D, et al. Site-specifically labeled CA19. 9-targeted immunoconjugates for the PET, NIRF, and multimodal PET/NIRF imaging of pancreatic cancer. Proc Natl Acad Sci U S A. 2015;112(52):15850–15855. [PubMed: 26668398]. doi:10.1073/pnas.150654211226668398
  • Luo MH, Yeh CK, Situ B, Yu JS, Li BC, Chen ZY. Microbubbles: a Novel Strategy for Chemotherapy. Curr Pharm Des. 2017;23(23):3383–3390. [PubMed: 28088911]. doi:10.2174/138161282366617011309214828088911
  • Kripfgans OD, Fowlkes JB, Miller DL, Eldevik OP, Carson PL. Acoustic droplet vaporization for therapeutic and diagnostic applications. Ultrasound Med Biol. 2000;26(7):1177–1189. [PubMed: 11053753]. doi:10.1016/S0301-5629(00)00262-311053753
  • Rapoport N, Nam KH, Gupta R, et al. Ultrasound-mediated tumor imaging and nanotherapy using drug loaded, block copolymer stabilized perfluorocarbon nanoemulsions. J Control Release. 2011; 153(1):4–15. [PubMed: 21277919]. doi:10.1016/j.jconrel.2011.01.02221277919
  • Sheeran PS, Rojas JD, Puett C, Hjelmquist J, Arena CB, Dayton PA. Contrast-enhanced ultrasound imaging and in vivo circulatory kinetics with low-boiling-point nanoscale phase-change perfluorocarbon agents. Ultrasound Med Biol. 2015;41(3):814–831. [PubMed: 25619781]. doi:10.1016/j.ultrasmedbio.2014.10.02025619781
  • Deng L, Cai X, Sheng D, et al. A laser-activated biocompatible theranostic nanoagent for targeted multimodal imaging and photothermal therapy. Theranostics. 2017; 7(18):4410–4423. [PubMed: 29158836]. doi:10.7150/thno.2128329158836
  • Yi X, Yan F, Wang F, et al. IR-780 dye for near-infrared fluorescence imaging in prostate cancer. Med Sci Monit. 2015;21:511–517. [PubMed: 25686161]. doi:10.12659/MSM.89243725686161
  • Svoboda M, Riha J, Wlcek K, Jaeger W, Thalhammer T. Organic anion transporting polypeptides (OATPs): regulation of expression and function. Curr Drug Metab. 2011;12(2):139–153. [PubMed: 21395542].21395542
  • Green SM, Kaipainen A, Bullock K, et al. Role of OATP transporters in steroid uptake by prostate cancer cells in vivo. Prostate Cancer Prostatic Dis. 2017;20(1):20–27. [PubMed: 27645128]. doi:10.1038/pcan.2016.4227645128
  • Pais-Silva C, de Melo-Diogo D, Correia IJ. IR780-loaded TPGS-TOS micelles for breast cancer photodynamic therapy. Eur J Pharm Biopharm. 2017;113:108–117. [PubMed: 28087376]. doi:10.1016/j.ejpb.2017.01.00228087376
  • Yang H, Cai W, Xu L, et al. Nanobubble–affibody: novel ultrasound contrast agents for targeted molecular ultrasound imaging of tumor. Biomaterials. 2015;37:279–288. [PubMed: 25453958]. doi:10.1016/j.biomaterials.2014.10.01325453958
  • Cai WB, Yang HL, Zhang J, et al. The optimized fabrication of nanobubbles as ultrasound contrast agents for tumor imaging. Sci Rep. 2015;5:13725 [PubMed: 26333917]. doi:10.1038/srep1372526333917
  • Yang H, Zhou T, Cai W, et al. Novel dual-mode nanobubbles as potential targeted contrast agents for female tumors exploration. Tumour Biol. 2016; 37(10):14153–14163. [PubMed: 27539728]. doi:10.1007/s13277-016-5238-027539728
  • Lin S, Shah A, Hernandez-Gil J, et al. Optically and acoustically triggerable sub-micron phase-change contrast agents for enhanced photoacoustic and ultrasound imaging. Photoacoustics. 2017;6:26–36. [PubMed: 28507898]. doi:10.1016/j.pacs.2017.04.00128507898
  • Alves CG, Lima-Sousa R, de Melo-Diogo D, Louro RO, Correia IJ. IR780 based nanomaterials for cancer imaging and photothermal, photodynamic and combinatorial therapies. Int J Pharm. 2018;542(1–2):164–175. [PubMed: 29549013]. doi:10.1016/j.ijpharm.2018.03.02029549013
  • Shirata C, Kaneko J, Inagaki Y, et al. Near-infrared photothermal/photodynamic therapy with indocyanine green induces apoptosis of hepatocellular carcinoma cells through oxidative stress. Sci Rep. 2017; 7(1):13958 [PubMed: 29066756]. doi:10.1038/s41598-017-14401-029066756
  • Deng G, Li S, Sun Z, et al. Near-infrared fluorescence imaging in the largely unexplored window of 900–1,000 nm. Theranostics. 2018; 8(15):4116–4128. [PubMed: 30128040]. doi:10.7150/thno.2653930128040
  • Sneddon D, Poulsen SA. Agents described in the molecular imaging and contrast agent database for imaging carbonic anhydrase IX expression. J Enzyme Inhib Med Chem 2014;29(5):753–763. doi:10.3109/14756366.2013.848205
  • Hu JJ, Cheng YJ, Zhang XZ. Recent advances in nanomaterials for enhanced photothermal therapy of tumors. Nanoscale. 2018;10(48):22657–22672. [PubMed: 30500042]. doi:10.1039/c8nr07627h30500042
  • Jiang Y, Li J, Zhen X, Xie C, Pu K. Dual‐peak absorbing semiconducting copolymer nanoparticles for first and second near‐infrared window photothermal therapy: a comparative study. Adv Mater. 2018;30(14):e1705980 [PubMed: 29457284]. doi:10.1002/adma.v30.1429457284
  • Wang Y, Cai D, Wu H, et al. Functionalized Cu 3 BiS 3 nanoparticles for dual-modal imaging and targeted photothermal/photodynamic therapy. Nanoscale. 2018;10(9):4452–4462. [PubMed: 29451575]. doi:10.1039/c7nr07458a29451575
  • Guo Z, Zou Y, He H, et al. Bifunctional platinated nanoparticles for photoinduced tumor ablation. Adv Mater. 2016; 28(46):10155–10164. [PubMed: 27714878]. doi:10.1002/adma.20160273827714878