Fibrin matrices: The versatile therapeutic delivery systems

被引:39
作者
Ahmad, Ejaj [1 ]
Fatima, Munazza Tamkeen [1 ]
Hoque, Mehboob [1 ]
Owais, Mohammad [1 ]
Saleemuddin, Mohammed [1 ]
机构
[1] Aligarh Muslim Univ, Interdisciplinary Biotechnol Unit, Aligarh 202002, Uttar Pradesh, India
关键词
Fibrinogen; Plasma microparticle; Plasma beads; Fibrin microthreads; Drug delivery; MESENCHYMAL STEM-CELLS; RECOMBINANT HUMAN THROMBIN; FIBROBLAST-GROWTH-FACTOR; IN-VITRO; SUSTAINED-RELEASE; LOCAL-DELIVERY; ENCAPSULATED LIPOSOMES; ADJUVANT FORMULATION; HUMAN KERATINOCYTES; CARTILAGE REPAIR;
D O I
10.1016/j.ijbiomac.2015.07.054
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Fibrin sealants, that have been employed for over a century by surgeons to stop post surgery bleeding, are finding novel applications in the controlled delivery of antibiotics and several other therapeutics. Fibrinogen can be easily purified from blood plasma and converted by thrombolysis to fibrin that undergoes spontaneous aggregation to form insoluble clot. During the gelling, fibrin can be formulated into films, clots, threads, microbeads, nanoconstructs and nanoparticles. Whole plasma clots in the form of beads and microparticles can also be prepared by activating endogenous thrombin, for possible drug delivery. Fibrin formulations offer remarkable scope for controlling the porosity as well as in vivo degradability and hence the release of the associated therapeutics. Binding/covalent-linking of therapeutics to the fibrin matrix, crosslinking of the matrix with bifunctional reagents and coentrapment of protease inhibitors have been successful in regulating both in vitro and in vivo release of the therapeutics. The release rates can also be remarkably lowered by preentraprnent of therapeutics in insoluble particles like liposomes or by anchoring them to the matrix via molecules that bind them as well as fibrin. (C) 2015 Elsevier B.V. All rights reserved.
引用
收藏
页码:121 / 136
页数:16
相关论文
共 181 条
[1]   A comparison of fibrin, agarose and gellan gum hydrogels as carriers of stem cells and growth factor delivery microspheres for cartilage regeneration [J].
Ahearne, Mark ;
Kelly, Daniel J. .
BIOMEDICAL MATERIALS, 2013, 8 (03)
[2]   Plasma beads loaded with Candida albicans cytosolic proteins impart protection against the fungal infection in BALB/c mice [J].
Ahmad, Ejaj ;
Fatima, Munazza T. ;
Saleemuddin, M. ;
Owais, M. .
VACCINE, 2012, 30 (48) :6851-6858
[3]   Beaded plasma clot: a potent sustained-release, drug-delivery system [J].
Ahmad, Ejaj ;
Fatima, Munazza T. ;
Owais, Mohammad ;
Saleemuddin, Mohammad .
THERAPEUTIC DELIVERY, 2011, 2 (05) :573-583
[4]  
Ahmed T. A. E., 2014, FRONT BIOENG BIOTECH
[5]   Fibrin: A versatile scaffold for tissue engineering applications [J].
Ahmed, Tamer A. E. ;
Dare, Emma V. ;
Hincke, Max .
TISSUE ENGINEERING PART B-REVIEWS, 2008, 14 (02) :199-215
[6]   Characterization and inhibition of fibrin hydrogel-degrading enzymes during development of tissue engineering scaffolds [J].
Ahmed, Tamer A. E. ;
Griffith, May ;
Hincke, Max .
TISSUE ENGINEERING, 2007, 13 (07) :1469-1477
[7]   Control of chondrogenesis by the transcription factor Sox9 [J].
Akiyama, Haruhiko .
MODERN RHEUMATOLOGY, 2008, 18 (03) :213-219
[8]   Construction of a complete rabbit cornea substitute using a fibrin-agarose scaffold [J].
Alaminos, Miguel ;
Del Carmen Sanchez-Quevdo, Maria ;
Munoz-Avila, Jose Ignacio ;
Serrano, Daniel ;
Medialdea, Santiago ;
Carreras, Ignacio ;
Campos, Antonio .
INVESTIGATIVE OPHTHALMOLOGY & VISUAL SCIENCE, 2006, 47 (08) :3311-3317
[9]   Antimicrobial Drugs Encapsulated in Fibrin Nanoparticles for Treating Microbial Infested Wounds [J].
Alphonsa, B. Maria ;
Kumar, P. T. Sudheesh ;
Praveen, G. ;
Biswas, Raja ;
Chennazhi, K. P. ;
Jayakumar, R. .
PHARMACEUTICAL RESEARCH, 2014, 31 (05) :1338-1351
[10]   FIBRIN SEALANT - SUMMARY OF A CONFERENCE ON CHARACTERISTICS AND CLINICAL USES [J].
ALVING, BM ;
WEINSTEIN, MJ ;
FINLAYSON, JS ;
MENITOVE, JE ;
FRATANTONI, JC .
TRANSFUSION, 1995, 35 (09) :783-790