Biocompatible antibiotic-loaded mesoporous silica/bioglass/collagen-based scaffolds as bone drug delivery systems

被引:9
|
作者
Skwira, Adrianna [1 ,2 ,3 ]
Szewczyk, Adrian [1 ]
Barros, Joana [4 ,5 ,7 ]
Laranjeira, Marta [4 ,5 ,6 ]
Monteiro, Fernando Jorge [4 ,5 ,6 ,7 ]
Sadej, Rafal [2 ,3 ]
Prokopowicz, Magdalena [1 ]
机构
[1] Med Univ Gdansk, Fac Pharm, Dept Phys Chem, Hallera 107, PL-80416 Gdansk, Poland
[2] Univ Gdansk, Intercollegiate Fac Biotechnol, Dept Mol Enzymol & Oncol, Debinki 1, PL-80211 Gdansk, Poland
[3] Med Univ Gdansk, Debinki 1, PL-80211 Gdansk, Poland
[4] Univ Porto, i3S Inst Invest & Inovacao Saude, Rua Alfredo Allen 208, P-4200135 Porto, Portugal
[5] Univ Porto, INEB Inst Engn Biomed, Rua Alfredo Allen 208, P-4200135 Porto, Portugal
[6] Porto Comprehens Canc Ctr Raquel Seruca P CCC, R Dr Antonio Bernardino Almeida, P-4200072 Porto, Portugal
[7] Univ Porto, FEUP Fac Engn, Dept Engn Met & Mat, Rua Dr Roberto Frias S-N, P-4200465 Porto, Portugal
关键词
Scaffolds; Drug delivery; Collagen; Mesoporous silica; Bioglass; CHICK CHORIOALLANTOIC MEMBRANE; COLLAGEN-BASED SCAFFOLDS; MECHANICAL-PROPERTIES; PORE-SIZE; COMPOSITE; SILICA; OSTEOMYELITIS; SPONGES; MODEL; SBF;
D O I
10.1016/j.ijpharm.2023.123408
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Local delivery of antibiotics has gained increasing interest in the treatment of osteomyelitis due to its effectiveness and safety. Since the regeneration of bone tissue at the site of infection is as important as bacterial eradication, implantable drug delivery systems should not only release the drugs in a proper manner but also exert the osseointegration capability. Herein, we present an implantable drug delivery system in a scaffold form with a unique set of features for local treatment of osteomyelitis. For the first time, collagen type I, ciprofloxacin-loaded mesoporous silica, and bioglass were combined to obtain scaffolds using the molding method. Drug-loaded mesoporous silica was blended with polydimethylsiloxane to prolong the drug release, whereas bio-glass served as a remineralization agent. Collagen-silica scaffolds were evaluated in terms of physicochemical properties, drug release rate, mineralization potential, osteoblast response in vitro, antimicrobial activity, and biological properties using an in vivo preclinical model - chick embryo chorioallantoic membrane (CAM). The desirable multifunctionality of the proposed collagen-silica scaffolds was confirmed. They released the cipro-floxacin for 80 days, prevented biofilm development, and induced hydroxyapatite formation. Moreover, the resulting macroporous structure of the scaffolds promoted osteoblast attachment, infiltration, and proliferation. Collagen-silica scaffolds were also biocompatible and effectively integrated with CAM.
引用
收藏
页数:16
相关论文
共 50 条
  • [21] The use of collagen-based scaffolds to simulate prostate cancer bone metastases with potential for evaluating delivery of nanoparticulate gene therapeutics
    Fitzgerald, Kathleen A.
    Guo, Jianfeng
    Tierney, Erica G.
    Curtin, Caroline M.
    Malhotra, Meenakshi
    Darcy, Raphael
    O'Brien, Fergal J.
    O'Driscoll, Caitriona M.
    BIOMATERIALS, 2015, 66 : 53 - 66
  • [22] Drug delivery systems based on mesoporous silica nanoparticles for the management of hepatic diseases
    Liu, Boyan
    Liu, Wenshi
    Xu, Miao
    Zhao, Tongyi
    Zhou, Bingxin
    Zhou, Ruilin
    Zhu, Ze
    Chen, Xuchun
    Bao, Zhiye
    Wang, Keke
    Li, Heran
    ACTA PHARMACEUTICA SINICA B, 2025, 15 (02) : 809 - 833
  • [23] CHARACTERISATION OF COLLAGEN-BASED SCAFFOLDS AS THREE-DIMENSIONAL GENE DELIVERY MODELS FOR BREAST CANCER TUMOURS AND BONE METASTASIS
    Costard, Lara Sophie
    Ramanayake, Harumi
    O'Brien, Fergal J.
    Curtin, Caroline
    TISSUE ENGINEERING PART A, 2022, 28 : S455 - S455
  • [24] Mesoporous silica-based hybrid materials for bone-specific drug delivery
    Pasqua, Luigi
    De Napoli, Ilaria Ester
    De Santo, Marzia
    Greco, Marianna
    Catizzone, Enrico
    Lombardo, Domenico
    Montera, Gabriella
    Comande, Alessandra
    Nigro, Alessandra
    Morelli, Catia
    Leggio, Antonella
    NANOSCALE ADVANCES, 2019, 1 (08): : 3269 - 3278
  • [25] Chitosan-based scaffolds as drug delivery systems in bone tissue engineering
    Bharathi, R.
    Ganesh, S. Shree
    Harini, G.
    Vatsala, Kumari
    Anushikaa, R.
    Aravind, S.
    Abinaya, S.
    Selvamurugan, N.
    INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 2022, 222 : 132 - 153
  • [26] Biocompatible nanocomposite scaffolds based on copolymer-grafted chitosan for bone tissue engineering with drug delivery capability
    Saber-Samandari, Samaneh
    Saber-Samandari, Saeed
    MATERIALS SCIENCE AND ENGINEERING C-MATERIALS FOR BIOLOGICAL APPLICATIONS, 2017, 75 : 721 - 732
  • [27] Thermo/pH dually responsive drug delivery systems based on mesoporous silica nanoparticles
    Tang, Xiuping
    Hou, Yu
    Zhang, Guolin
    Liu, Xue
    JOURNAL OF CONTROLLED RELEASE, 2017, 259 : E158 - E158
  • [28] Mesoporous silica nanoparticle based nano drug delivery systems: synthesis, controlled drug release and delivery, pharmacokinetics and biocompatibility
    He, Qianjun
    Shi, Jianlin
    JOURNAL OF MATERIALS CHEMISTRY, 2011, 21 (16) : 5845 - 5855
  • [29] Influence of Drug-Silica Electrostatic Interactions on Drug Release from Mesoporous Silica-Based Oral Delivery Systems
    Hate, Siddhi S.
    Reutzel-Edens, Susan M.
    Taylor, Lynne S.
    MOLECULAR PHARMACEUTICS, 2020, 17 (09) : 3435 - 3446
  • [30] A bone-targeting delivery platform based on mesoporous silica loaded with piR7472 for the treatment of osteoporosis
    Long, Yubin
    Ma, Yuan
    Yang, Houzhi
    Wang, Xiangbin
    Fan, Jigeng
    Li, Yong
    Tao, Bo
    Sun, Tianwei
    ARABIAN JOURNAL OF CHEMISTRY, 2024, 17 (12)