Currently, the significantly developing fields of tissue engineering related to the fabrication of polymer-based materials that possess microenvironments suitable to provide cell attachment and promote cell differentiation and proliferation involve various materials and approaches. Biomimicking approach in tissue engineering is aimed at the development of a highly biocompatible and bioactive material that would most accurately imitate the structural features of the native extracellular matrix consisting of specially arranged fibrous constructions. For this reason, the present research is devoted to the discussion of promising fibrous materials for bone tissue regeneration obtained by electrospinning techniques. In this brief review, we focu...
While electrospinning had seen intermittent use in the textile industry from the early twentieth cen...
Natural polymers such as collagens, elastin, and fibrinogen make up much of the body\u27s native ext...
Natural polymers such as collagens, elastin, and fibrinogen make up much of the body\u27s native ext...
Bone tissue engineering is an interdisciplinary field where the principles of engineering are applie...
Bone tissue engineering is an interdisciplinary field where the principles of engineering are applie...
Electrospinning is a promising and versatile technique that is used to fabricate polymeric nanofibro...
Bone tissue engineering (BTE) is an optimized approach for bone regeneration to overcome the disadva...
Nanofibrous materials produced by electrospinning processes have attracted considerable interest in ...
Electrospinning of fibrous scaffolds containing nano-hydroxyapatite (nHAp) embedded in a matrix of f...
Electrospinning is the technique for producing nonwoven fibrous structures, to mimic the fabrication...
Electro spinning technique is used to produce continuous nanofiber for different application area li...
Symposium K: Micro-and Nanoscale Processing of Materials for Biomedical DevicesSession K2Scientific ...
Natural polymers such as collagens, elastin, and fibrinogen make up much of the body’s native extrac...
While electrospinning had seen intermittent use in the textile industry from the early twentieth cen...
While electrospinning had seen intermittent use in the textile industry from the early twentieth cen...
While electrospinning had seen intermittent use in the textile industry from the early twentieth cen...
Natural polymers such as collagens, elastin, and fibrinogen make up much of the body\u27s native ext...
Natural polymers such as collagens, elastin, and fibrinogen make up much of the body\u27s native ext...
Bone tissue engineering is an interdisciplinary field where the principles of engineering are applie...
Bone tissue engineering is an interdisciplinary field where the principles of engineering are applie...
Electrospinning is a promising and versatile technique that is used to fabricate polymeric nanofibro...
Bone tissue engineering (BTE) is an optimized approach for bone regeneration to overcome the disadva...
Nanofibrous materials produced by electrospinning processes have attracted considerable interest in ...
Electrospinning of fibrous scaffolds containing nano-hydroxyapatite (nHAp) embedded in a matrix of f...
Electrospinning is the technique for producing nonwoven fibrous structures, to mimic the fabrication...
Electro spinning technique is used to produce continuous nanofiber for different application area li...
Symposium K: Micro-and Nanoscale Processing of Materials for Biomedical DevicesSession K2Scientific ...
Natural polymers such as collagens, elastin, and fibrinogen make up much of the body’s native extrac...
While electrospinning had seen intermittent use in the textile industry from the early twentieth cen...
While electrospinning had seen intermittent use in the textile industry from the early twentieth cen...
While electrospinning had seen intermittent use in the textile industry from the early twentieth cen...
Natural polymers such as collagens, elastin, and fibrinogen make up much of the body\u27s native ext...
Natural polymers such as collagens, elastin, and fibrinogen make up much of the body\u27s native ext...