Biomimetic approaches for tissue engineering

被引:21
|
作者
Reddy, Roopa [1 ]
Reddy, Narendra [1 ]
机构
[1] Jyothy Inst Technol, Ctr Incubat Innovat Res & Consultancy, Bengaluru 560082, India
关键词
Tissue engineering; biomaterials; scaffolds; biomimetics; COMPOSITE SCAFFOLD; CALCIUM-PHOSPHATE; BONE REGENERATION; HYDROGEL; MATRIX; GELATIN; HYDROXYAPATITE; FABRICATION; CONSTRUCT; COATINGS;
D O I
10.1080/09205063.2018.1500084
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Advancement in medical technologies, emergence of new diseases and need for quick and effective treatments have increased the requirement for unique and distinct materials. A plethora of materials in various forms, shapes and sizes have been developed from polymers, metals and ceramics and extensively explored for both in vitro and in vivo applications. When used inside the body, biomaterials include metals, polymers and ceramics typically as implants, scaffolds, drug or gene carriers and also as protective agents. Although various materials are used for biomedical products, natural polymers are preferred over synthetic or metallic materials since they have better biocompatibility and ability to degrade in vivo without releasing toxic substances. In addition to the material, the structure and properties of the biomedical device/product plays a crucial role, particularly, when used for in vivo applications. It is desirable that the materials or products developed resemble the structure and replicate the biological functions in the body. For instance, 3D, nanofibrous structures similar to the extracellular matrix are considered suitable as tissue engineering scaffolds. Hence, extensive studies have been done to biomimic the biological systems and develop biomedical materials and devices using natural and synthetic polymers. For instance, successful replication of the biomineralization and bone formation and regeneration of tissue have been done. There are unlimited choice of materials, approaches and potential products that can be developed using the biomimetic approach. In this review, we provide an overview of the materials and methods used to develop biomimetic products for various medical applications. The objective of this study to provide readers with information on the various methods, materials and approaches that can be used to develop biomimetic materials to address the challenges and needs of the medicine and health care industries. This manuscript is restricted to discussions on biomimetic approaches for tissue engineering applications. However, there are considerable other medical applications of biomimetic materials which are not part of this review.
引用
收藏
页码:1667 / 1685
页数:19
相关论文
共 50 条
  • [41] Biomimetic polyurethanes scaffolds for cardiac tissue engineering
    Boffito, M.
    Sartori, S.
    Ciardelli, G.
    JOURNAL OF TISSUE ENGINEERING AND REGENERATIVE MEDICINE, 2014, 8 : 34 - 35
  • [42] Biomimetic Design of Silk Materials for Tissue Engineering
    Lu, Q., Sr.
    TISSUE ENGINEERING PART A, 2015, 21 : S64 - S64
  • [43] ENGINEERING BIOMIMETIC HYDROGEL SCAFFOLDS FOR TISSUE REGENERATION
    Dey, Kamol
    Sartore, Luciana
    TISSUE ENGINEERING PART A, 2023, 29 (11-12) : 1441 - 1442
  • [44] Bioengineering of biomimetic microenvironments for cardiac tissue engineering
    Rosellini, Elisabetta
    Boccaccini, Aldo R.
    Quaini, Federico
    Zhang, Yu Shrike
    FRONTIERS IN BIOENGINEERING AND BIOTECHNOLOGY, 2023, 11
  • [45] Biomimetic material strategies for cardiac tissue engineering
    Prabhakaran, Molamma P.
    Venugopal, J.
    Kai, Dan
    Ramakrishna, Seeram
    MATERIALS SCIENCE & ENGINEERING C-MATERIALS FOR BIOLOGICAL APPLICATIONS, 2011, 31 (03): : 503 - 513
  • [46] Biomimetic delivery of signals for bone tissue engineering
    Ming Dang
    Laura Saunders
    Xufeng Niu
    Yubo Fan
    Peter X. Ma
    Bone Research, 6
  • [47] Biomimetic Hydrogels for Tissue Engineering of the Intervertebral Disc
    Wiltsey, C. T.
    Christiani, T. R.
    Williams, J.
    Coulter, J. L.
    Demiduke, D. N.
    Toomer, K. A.
    English, S. M.
    Hess, B. A.
    Branda, A. M.
    Sheehan, J.
    Kadlowec, J. A.
    Tulenko, T.
    Iftode, C.
    Vernengo, A. J.
    2012 38TH ANNUAL NORTHEAST BIOENGINEERING CONFERENCE (NEBEC), 2012, : 394 - +
  • [48] Biomimetic delivery of signals for bone tissue engineering
    Ming Dang
    Laura Saunders
    Xufeng Niu
    Yubo Fan
    Peter X.Ma
    Bone Research, 2018, 6 (03) : 205 - 216
  • [49] Biomimetic porous scaffolds for bone tissue engineering
    Wu, Shuilin
    Liu, Xiangmei
    Yeung, Kelvin W. K.
    Liu, Changsheng
    Yang, Xianjin
    MATERIALS SCIENCE & ENGINEERING R-REPORTS, 2014, 80 : 1 - 36
  • [50] Biomimetic polymer scaffolds for bone tissue engineering
    Mikos, T
    FASEB JOURNAL, 2002, 16 (05): : A1251 - A1251