Microfluidics Based Particle and Droplet Generation for Gene and Drug Delivery Approaches

被引:1
作者
Onan, Deniz [1 ]
Ozder, Melike [1 ]
Sipahi, Meryem Irem [1 ]
Poyraz, Nazlican [1 ]
Apaydin, Ceylin [1 ]
Erel-Akbaba, Guelsah [2 ]
Akbaba, Hasan [1 ]
机构
[1] Ege Univ, Fac Pharm, Dept Pharmaceut Biotechnol, Izmir, Turkiye
[2] Izmir Katip Celebi Univ, Fac Pharm, Dept Pharmaceut Biotechnol, Izmir, Turkiye
关键词
biomedical applications; future perspectives; gene delivery; lipid nanoparticles; microfluidic droplet generation; microfluidics; mRNA vaccines; scale-up; SOLID LIPID NANOPARTICLES; HYBRID NANOPARTICLES; POLYMER HYBRID; MICROPARTICLES; SYSTEM; DESIGN; ENCAPSULATION; TECHNOLOGIES; NANOCARRIERS; MANUFACTURE;
D O I
10.1002/jbm.b.35530
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Microfluidics-based droplets have emerged as a powerful technology for biomedical research, offering precise control over droplet size and structure, optimal mixing of solutions, and prevention of cross-contamination. It is a major branch of microfluidic technology with applications in diagnostic testing, imaging, separation, and gene amplification. This review discusses the different aspects of microfluidic devices, droplet generation techniques, droplet types, and the production of micro/nano particles, along with their advantages and limitations. Passive and active methods for droplet formation are discussed, as well as the manipulation of droplet shape and content. This review also highlights the potential applications of droplet microfluidics in tissue engineering, cancer therapy, and drug delivery systems. The use of microfluidics in the production of lipid nanoparticles and polymeric microparticles is also presented, with emphasis on their potential in drug delivery and biomedical research. Finally, the contributions of microfluidics to vaccines, gene therapy, personalized medicine, and future perspectives are discussed, emphasizing the need for continuous innovation and integration with other technologies, such as AI and wearable devices, to further enhance its potential in personalized medicine and drug delivery. However, it is also noted that challenges in commercialization and widespread adoption still need to be addressed.
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页数:20
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共 134 条
  • [1] Bioinspired artificial exosomes based on lipid nanoparticles carrying let-7b-5p promote angiogenesis in vitro and in vivo
    Aday, Sezin
    Hazan-Halevy, Inbal
    Chamorro-Jorganes, Aranzazu
    Anwar, Maryam
    Goldsmith, Meir
    Beazley-Long, Nicholas
    Sahoo, Susmita
    Dogra, Navneet
    Sweaad, Walid
    Catapano, Francesco
    Ozaki-Tan, Sho
    Angelini, Gianni D.
    Madeddu, Paolo
    Benest, Andrew V.
    Peer, Dan
    Emanueli, Costanza
    [J]. MOLECULAR THERAPY, 2021, 29 (07) : 2239 - 2252
  • [2] Inhalable siRNA-loaded nano-embedded microparticles engineered using microfluidics and spray drying
    Agnoletti, Monica
    Bohr, Adam
    Thanki, Kaushik
    Wan, Feng
    Zeng, Xianghui
    Boetker, Johan Peter
    Yang, Mingshi
    Foged, Camilla
    [J]. EUROPEAN JOURNAL OF PHARMACEUTICS AND BIOPHARMACEUTICS, 2017, 120 : 9 - 21
  • [3] Liposome: classification, preparation, and applications
    Akbarzadeh, Abolfazl
    Rezaei-Sadabady, Rogaie
    Davaran, Soodabeh
    Joo, Sang Woo
    Zarghami, Nosratollah
    Hanifehpour, Younes
    Samiei, Mohammad
    Kouhi, Mohammad
    Nejati-Koshki, Kazem
    [J]. NANOSCALE RESEARCH LETTERS, 2013, 8
  • [4] Polymer-Based Microfluidic Devices for Pharmacy, Biology and Tissue Engineering
    Alrifaiy, Ahmed
    Lindahl, Olof A.
    Ramser, Kerstin
    [J]. POLYMERS, 2012, 4 (03) : 1349 - 1398
  • [5] Droplets and Bubbles in Microfluidic Devices
    Anna, Shelley Lynn
    [J]. ANNUAL REVIEW OF FLUID MECHANICS, VOL 48, 2016, 48 : 285 - 309
  • [6] Preparation of cetyl palmitate-based PEGylated solid lipid nanoparticles by microfluidic technique
    Arduino, Ilaria
    Liu, Zehua
    Rahikkala, Antti
    Figueiredo, Patricia
    Correia, Alexandra
    Cutrignelli, Annalisa
    Denora, Nunzio
    Santos, Helder A.
    [J]. ACTA BIOMATERIALIA, 2021, 121 : 566 - 578
  • [7] Platinum Nanoparticle-Based Microreactors as Support for Neuroblastoma Cells
    Armada-Moreira, Ana
    Taipaleenmaki, Essi
    Baekgaard-Laursen, Marie
    Schattling, Philipp Sebastian
    Sebastiao, Ana M.
    Vaz, Sandra H.
    Stadler, Brigitte
    [J]. ACS APPLIED MATERIALS & INTERFACES, 2018, 10 (09) : 7581 - 7592
  • [8] Expandable Polymer Assisted Wearable Personalized Medicinal Platform
    Babatain, Wedyan
    Gumus, Abdurrahman
    Wicaksono, Irmandy
    Buttner, Ulrich
    El-atab, Nazek
    Rehman, Mutee Ur
    Qaiser, Nadeem
    Conchouso, David
    Hussain, Muhammad Mustafa
    [J]. ADVANCED MATERIALS TECHNOLOGIES, 2020, 5 (10)
  • [9] Microfluidic devices for continuous production of pDNA/cationic liposome complexes for gene delivery and vaccine therapy
    Balbino, Tiago Albertini
    Azzoni, Adriano Rodrigues
    de la Torre, Lucimara Gaziola
    [J]. COLLOIDS AND SURFACES B-BIOINTERFACES, 2013, 111 : 203 - 210
  • [10] Parallel generation of uniform fine droplets at hundreds of kilohertz in a flow-focusing module
    Bardin, David
    Kendall, Michael R.
    Dayton, Paul A.
    Lee, Abraham P.
    [J]. BIOMICROFLUIDICS, 2013, 7 (03):