纤维化
背景(考古学)
医学
药物输送
体内
药理学
生物信息学
病理
生物
化学
生物技术
古生物学
有机化学
作者
Simone Bersini,Mara Gilardi,Marina Mora,Silke Krol,Chiara Arrigoni,Christian Candrian,Simona Zanotti,Matteo Moretti
标识
DOI:10.1016/j.addr.2018.02.009
摘要
Muscle fibrosis represents the end stage consequence of different diseases, among which muscular dystrophies, leading to severe impairment of muscle functions. Muscle fibrosis involves the production of several growth factors, cytokines and proteolytic enzymes and is strictly associated to inflammatory processes. Moreover, fibrosis causes profound changes in tissue properties, including increased stiffness and density, lower pH and oxygenation. Up to now, there is no therapeutic approach able to counteract the fibrotic process and treatments directed against muscle pathologies are severely impaired by the harsh conditions of the fibrotic environment. The design of new therapeutics thus need innovative tools mimicking the obstacles posed by the fibrotic environment to their delivery. This review will critically discuss the role of in vivo and 3D in vitro models in this context and the characteristics that an ideal model should possess to help the translation from bench to bedside of new candidate anti-fibrotic agents.
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