Objective Chondrospheres represent a variant of tissue spheroids biofabricated from chondrocytes. They are already being used in clinical trials for cartilage repair; however, their biomechanical properties have not been systematically investigated yet. The aim of our study was to characterize chondrospheres in long-term in vitro culture conditions for morphometric changes, biomechanical integrity, and their fusion and spreading kinetics. Results It has been demonstrated that the increase in chondrospheres secant modulus of elasticity is strongly associated with the synthesis and accumulation of extracellular matrix. Additionally, significant interplay has been found between biomechanical properties of tissue spheroids and their fusion kinetics in contrast to their spreading kinetics. Conclusions Extracellular matrix is one of the main structural determinants of chondrospheres biomechanical properties during chondrogenic maturation in vitro. The estimation of tissue spheroids' physical behavior in vitro prior to operative treatment can be used to predict and potentially control fusogenic self-assembly process after implantation in vivo.
Clinical analysis of the nasolabial complex in patients suffering of the unilateral cleft lip and palate deformity after cheilorhinoplasty is presented in the article. Functional disorders such as nasal breathe impairment and it's relation to the nasolabial muscle dystonia in the dependency of primary cheilorhinoplasty type are analyzed. The plan of surgical treatment as well as the postoperative rehabilitation using the botulotoxin injections is offered.
The aim of the study was to assess the effectivity of auricular prosthesis on intraosseous implants in patient with grade III microtia. The study included 7 patients (5 males and 2 females) aged 18 to 45 years with hemifacial microsomia and grade III microtia operated in Central Research Institute of Dentistry and Maxillofacial Surgery in 2013-2016. Number and position of intraosseous implants was determined by reverse planning based on CT representing hard and soft facial structures. Patients were followed-up for 6-36 months. Good esthetic results were obtained by minimally invasive surgical procedure and short post-op rehabilitation. However these results required meticulous virtual planning and manufacturing of surgical template. The described method promotes very fast medical and social rehabilitation of patients with severe microtia.
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