Building an anisotropic meniscus with zonal variations.
نویسندگان
چکیده
Toward addressing the difficult problems of knee meniscus regeneration, a self-assembling process has been used to re-create the native morphology and matrix properties. A significant problem in such attempts is the recapitulation of the distinct zones of the meniscus, the inner, more cartilaginous and the outer, more fibrocartilaginous zones. In this study, an anisotropic and zonally variant meniscus was produced by self-assembly of the inner meniscus (100% chondrocytes) followed by cell seeding the outer meniscus (coculture of chondrocytes and meniscus cells). After 4 weeks in culture, the engineered, inner meniscus exhibited a 42% increase in both instantaneous and relaxation moduli and a 62% increase in GAG/DW, as compared to the outer meniscus. In contrast, the circumferential tensile modulus and collagen/DW of the outer zone was 101% and 129% higher, respectively, than the values measured for the inner zone. Furthermore, there was no difference in the radial tensile modulus between the control and zonal engineered menisci, suggesting that the inner and outer zones of the engineered zonal menisci successfully integrated. These data demonstrate that not only can biomechanical and biochemical properties be engineered to differ by the zone, but they can also recapitulate the anisotropic behavior of the knee meniscus.
منابع مشابه
Optimization of human meniscus imaging using minimal phase RF pulse
Human meniscus is one of the important tissues related to the maintenance of the performance of knee joint, which plays a critical role in the normal biomechanics in load bearing, load distribution, and so forth [1]. Degeneration of human meniscus correlated strongly with the progression of osteoarthritis (OA) [2]. As a result, obtaining regional information of the menisci is helpful to clinica...
متن کاملT1rho and T2 relaxation times of the normal adult knee meniscus at 3T: analysis of zonal differences
BACKGROUND Prior studies describe histological and immunohistochemical differences in collagen and proteoglycan content in different meniscal zones. The aim of this study is to evaluate horizontal and vertical zonal differentiation of T1rho and T2 relaxation times of the entire meniscus from volunteers without symptom and imaging abnormality. METHODS Twenty volunteers age between 19 and 38 wh...
متن کاملBi-zonal cartilaginous tissues engineered in a rotary cell culture system.
In this study, we aimed at validating a rotary cell culture system (RCCS) bioreactor with medium recirculation and external oxygenation, for cartilage tissue engineering. Primary bovine and human culture-expanded chondrocytes were seeded into non-woven meshes of esterified hyaluronan (HYAFF-11), and the resulting constructs were cultured statically or in the RCCS, in the presence of insulin and...
متن کاملVariable fiber orientations of knee cartilages investigated by zonal T2* measurements with automatic segmentation
Osteoarthritis (OA) is a common disease in aged people, which results in degeneration of the articular cartilage and the meniscus [1]. Identification of the tiny changes of these cartilages is important to the early detection of OA and the monitoring of the disease progression. Recently, quantitative MR measurements, such as mapping of T1ρ, T2, and diffusion coefficient, have been used to evalu...
متن کاملHuman meniscus cells express hypoxia inducible factor-1alpha and increased SOX9 in response to low oxygen tension in cell aggregate culture
In previous work we demonstrated that the matrix-forming phenotype of cultured human cells from whole meniscus was enhanced by hypoxia (5% oxygen). Because the meniscus contains an inner region that is devoid of vasculature and an outer vascular region, here we investigate, by gene expression analysis, the separate responses of cells isolated from the inner and outer meniscus to lowered oxygen,...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
- Tissue engineering. Part A
دوره 20 1-2 شماره
صفحات -
تاریخ انتشار 2014