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Research Articles

Preparation, characterization, and antibacterial activity of tigecycline-loaded, ultrasound-activated microbubbles

, , , , , , , , , , , ORCID Icon & show all
Pages 1-8 | Received 08 Aug 2020, Accepted 09 Dec 2021, Published online: 19 Dec 2021

References

  • Acconcia CN, Leung BYC, Winch G, Wang J, Hynynen K, Goertz DE. 2019. Acoustic radiation force induced accumulation and dynamics of microbubbles on compliant surfaces. Phys Med Biol. 64(13):135003.
  • Al-Jawadi S, Thakur SS. 2020. Ultrasound-responsive lipid microbubbles for drug delivery: a review of preparation techniques to optimise formulation size, stability and drug loading. Int J Pharm. 585:1–13.
  • Arpagaus C, Collenberg A, Rütti D, Assadpour E, Jafari SM. 2018. Nano spray drying for encapsulation of pharmaceuticals. Int J Pharm. 546(1-2):194–214.
  • Carmen JC, Nelson JL, Beckstead BL, Runyan CM, Robison RA, Schaalje GB, Pitt WG. 2004. Ultrasonic-enhanced gentamicin transport through colony biofilms of Pseudomonas aeruginosa and Escherichia coli. J Infect Chemother. 10(4):193–199.
  • da Silva LM, Nunes Salgado HR. 2010. Tigecycline: a review of properties, applications, and analytical methods. Ther Drug Monit. 32(3):282–288.
  • de Jong N, Emmer M, van Wamel A, Versluis M. 2009. Ultrasonic characterization of ultrasound contrast agents. Med Biol Eng Comput. 47(8):861–873.
  • Deprez J, Lajoinie G, Engelen Y, De Smedt SC, Lentacker I. 2021. Opening doors with ultrasound and microbubbles: Beating biological barriers to promote drug delivery. Adv Drug Deliv Rev. 172:9–36.
  • Dong Y, Chen S, Wang Z, Peng N, Yu J. 2013. Synergy of ultrasound microbubbles and vancomycin against Staphylococcus epidermidis biofilm. J Antimicrob Chemother. 68(4):816–826.
  • El-Sherif DM, Wheatley MA. 2003. Development of a novel method for synthesis of a polymeric ultrasound contrast agent. J Biomed Mater Res A. 66(2):347–355.
  • Feinstein SB, Cheirif J, Ten Cate FJ, Silverman PR, Heidenreich PA, Dick C, Desir RM, Armstrong WF, Quinones MA, Shah PM. 1990. Safety and efficacy of a new transpulmonary ultrasound contrast agent: Initial multicenter clinical results. J Am Coll Cardiol. 16(2):316–324.
  • Fisher DG, Price RJ. 2019. Recent advances in the use of focused ultrasound for magnetic resonance image-guided therapeutic nanoparticle delivery to the central nervous system. Front Pharmacol. 10:1–14.
  • Forsberg F, Basude R, Liu JB, Alessandro J, Shi WT, Rawool NM, Goldberg BB, Wheatley MA. 1999. Effect of filling gases on the back scatter from contrast microbubbles: Theory and in vivo measurements. Ultrasound Med Biol. 25(8):1203–1211.
  • Fu YY, Zhang L, Yang Y, Liu CW, He YN, Li P, Yu X. 2019. Synergistic antibacterial effect of ultrasound microbubbles combined with chitosan-modified polymyxin B-loaded liposomes on biofilm-producing Acinetobacter baumannii. Int J Nanomedicine. 14:1805–1815.
  • He N, Hu J, Liu H, Zhu T, Huang B, Wang X, Wu Y, Wang W, Qu D. 2011. Enhancement of vancomycin activity against biofilms by using ultrasound-targeted microbubble destruction. Antimicrob Agents Chemother. 55(11):5331–5337.
  • Helfield B. 2019. A review of phospholipid encapsulated ultrasound contrast agent microbubble physics. Ultrasound Med Biol. 45(2):282–300.
  • Ho YJ, Chang HC, Lin CW, Fan CH, Lin YC, Wei KC, Yeh CK. 2021. Oscillatory behavior of microbubbles impacts efficacy of cellular drug delivery. J Control Release. 333:316–327.
  • Horsley H, Owen J, Browning R, Carugo D, Malone-Lee J, Stride E, Rohn JL. 2019. Ultrasound-activated microbubbles as a novel intracellular drug delivery system for urinary tract infection. J Control Release. 301:166–175.
  • Ju MH, Yao YL, Du CL, Chen S, Song YL. 2018. Subsequent multidrug-resistant bacteremia is a risk factor for short-term mortality of patients with ventilator-associated pneumonia caused by acinetobacter baumannii in intensive care unit: a multicenter experience . Chin Med J (Engl)). 131(3):361–363.
  • Klibanov AL. 2009. Preparation of targeted microbubbles: ultrasound contrast agents for molecular imaging. Med Biol Eng Comput. 47(8):875–882.
  • Leong-Poi H, Christiansen J, Heppner P, Lewis CW, Klibanov AL, Kaul S, Lindner JR. 2005. Assessment of Endogenous and Therapeutic Arteriogenesis by Contrast Ultrasound Molecular Imaging of Integrin Expression. Circulation. 111(24):3248–3254.
  • Lum AFH, Borden MA, Dayton PA, Kruse DE, Simon SI, Ferrara KW. 2006. Ultrasound radiation force enables targeted deposition of model drug carriers loaded on microbubbles. J Control Release. 111(1-2):128–134.
  • Ma D, Green AM, Willsey GG, Marshall JS, Wargo MJ, Wu J. 2015. Effects of acoustic streaming from moderate-intensity pulsed ultrasound for enhancing biofilm mitigation effectiveness of drug-loaded liposomes. J Acoust Soc Am. 138(2):1043–1051.
  • Ma X, Liu Q. 2017. Preparation of poly(N-isopropylacrylamide)-block-(acrylic acid)-encapsulated proteinaceous microbubbles for delivery of doxorubicin. Colloids Surf B Biointerfaces. 154:115–122.
  • Meng Y, Reilly RM, Pezo RC, Trudeau M, Sahgal A, Singnurkar A, Perry J, Myrehaug S, Pople CB, Davidson B, et al. 2021. MR-guided focused ultrasound enhances delivery of trastuzumab to Her2-positive brain metastases. Sci Transl Med. 13(615):eabj4011.
  • Olsman M, Mühlenpfordt M, Olsen EB, Torp SH, Kotopoulis S, Rijcken CJF, Hu Q, Thewissen M, Snipstad S, de Lange Davies C. 2021. Acoustic cluster therapy (ACT®) enhances accumulation of polymeric micelles in the murine brain. J Control Release. 337:285–295.
  • Olson MW, Ruzin A, Feyfant E, Rush TS, O'Connell J, Bradford PA. 2006. Functional, biophysical, and structural bases for antibacterial activity of tigecycline. Antimicrob Agents Chemother. 50(6):2156–2166.
  • Paul S, Nahire R, Mallik S, Sarkar k. 2014. Encapsulated microbubbles and echogenic liposomes for contrast ultrasound imaging and targeted drug delivery. Comput Mech. 53(3):413–435.
  • Perez F, Hujer AM, Hujer KM, Decker BK, Rather PN, Bonomo RA. 2007. Global challenge of multidrug-resistant Acinetobacter baumannii. Antimicrob Agents Chemother. 51(10):3471–3484.
  • Qian Z, Sagers RD, Pitt WG. 1997. The effect of ultrasonic frequency upon enhanced killing of P. aeruginosa biofilms. Ann Biomed Eng. 25(1):69–76.
  • Qian Z, Sagers RD, Pitt WG. 1999. Investigation of the mechanism of the bioacoustics effect. J Biomed Mater Res. 44(2):198–205.
  • Rychak JJ, Lindner JR, Ley K, Klibanov AL. 2006. Deformable Gas-filled Microbubbles Targeted to P-Selectin. J Control Release. 114(3):288–299.
  • Sipahi OR, Mermer S, Demirdal T, Ulu AC, Fillatre P, Ozcem SB, Kaya Ş, Şener A, Bulut C, Tekin R, et al. 2018. Tigecycline in the treatment of multidrug-resistant Acinetobacter baumannii meningitis: results of the Ege study. Clin Neurol Neurosurg. 172:31–38.
  • Smith MD, Elion JL, Mcclure RR, Kwan OL, Demaria AN, Evans J, Fritzsch TH. 1989. Left Heart Opacification with Peripheral Venous Injection of a New Saccharide Echo Contrast Agent in Dogs. J Am Coll Cardiol. 13(7):1622–1628.
  • Snipstad S, Sulheim E, de Lange Davies C, Moonen C, Storm G, Kiessling F, Schmid R, Lammers T. 2018. Sonopermeation to improve drug delivery to tumors: from fundamental understanding to clinical translation. Expert Opin Drug Deliv. 15(12):1249–1261.
  • Straub JA, Chickering DE, Church CC, Shah B, Hanlon T, Bernstein H. 2005. Porous PLGA microparticles: AI-700, an intravenously administered ultrasound contrast agent for use in echocardiography. J Control Release. 108(1):21–32.
  • Takeuchi S, Sato T, Kawashima N. 2002. Nonlinear response of microbubbles coated with surfactant membrane developed as ultrasound contrast agent-experimental study and numerical calculations. Colloid Surface B. 24(3-4):207–216.

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