Kowalski Tomasz J, Leong Natalie L, Dar Ayelet, Wu Ling, Kabir Nima, Khan Adam Z, Eliasberg Claire D, Pedron Andrew, Karayan Anthony, Lee Siyoung, Di Pauli von Treuheim Theodor, Jiacheng Jin, Wu Ben M, Evseenko Denis, McAllister David R, Petrigliano Frank A
Department of Orthopaedic Surgery, Orthopedic Hospital Research Center, David Geffen School of Medicine, University of California at Los Angeles, Los Angeles, 90095, California.
Department of Bioengineering, University of California, Los Angeles, 90095, California.
J Orthop Res. 2016 Jun;34(6):985-94. doi: 10.1002/jor.23116. Epub 2015 Dec 16.
There has been substantial effort directed toward the application of bone marrow and adipose-derived mesenchymal stromal cells (MSCs) in the regeneration of musculoskeletal tissue. Recently, resident tissue-specific stem cells have been described in a variety of mesenchymal structures including ligament, tendon, muscle, cartilage, and bone. In the current study, we systematically characterize three novel anterior cruciate ligament (ACL)-derived cell populations with the potential for ligament regeneration: ligament-forming fibroblasts (LFF: CD146(neg) , CD34(neg) CD44(pos) , CD31(neg) , CD45(neg) ), ligament perivascular cells (LPC: CD146(pos) CD34(neg) CD44(pos) , CD31(neg) , CD45(neg) ) and ligament interstitial cells (LIC: CD34(pos) CD146(neg) , CD44(pos) , CD31(neg) , CD45(neg) )-and describe their proliferative and differentiation potential, collagen gene expression and metabolism in both normoxic and hypoxic environments, and their trophic potential in vitro. All three groups of cells (LIC, LPC, and LFF) isolated from adult human ACL exhibited progenitor cell characteristics with regard to proliferation and differentiation potential in vitro. Culture in low oxygen tension enhanced the collagen I and III gene expression in LICs (by 2.8- and 3.3-fold, respectively) and LFFs (by 3- and 3.5-fold, respectively) and increased oxygen consumption rate and extracellular acidification rate in LICs (by 4- and 3.5-fold, respectively), LFFs (by 5.5- and 3-fold, respectively), LPCs (by 10- and 4.5-fold, respectively) as compared to normal oxygen concentration. In summary, this study demonstrates for the first time the presence of three novel progenitor cell populations in the adult ACL that demonstrate robust proliferative and matrix synthetic capacity; these cells may play a role in local ligament regeneration, and consequently represent a potential cell source for ligament engineering applications. © 2015 Orthopaedic Research Society. Published by Wiley Periodicals, Inc. J Orthop Res 34:985-994, 2016.
人们已付出巨大努力将骨髓和脂肪来源的间充质基质细胞(MSCs)应用于肌肉骨骼组织的再生。最近,在包括韧带、肌腱、肌肉、软骨和骨在内的多种间充质结构中发现了驻留组织特异性干细胞。在本研究中,我们系统地表征了三种具有韧带再生潜力的新型前交叉韧带(ACL)来源的细胞群:韧带形成成纤维细胞(LFF:CD146阴性、CD34阴性、CD44阳性、CD31阴性、CD45阴性)、韧带周血管细胞(LPC:CD146阳性、CD34阴性、CD44阳性、CD31阴性、CD45阴性)和韧带间质细胞(LIC:CD34阳性、CD146阴性、CD44阳性、CD31阴性、CD45阴性),并描述了它们在常氧和低氧环境下的增殖和分化潜力、胶原基因表达和代谢以及它们在体外的营养潜力。从成人ACL分离出的所有三组细胞(LIC、LPC和LFF)在体外增殖和分化潜力方面均表现出祖细胞特征。与正常氧浓度相比,低氧张力培养增强了LICs(分别为2.8倍和3.3倍)和LFFs(分别为3倍和3.5倍)中I型和III型胶原基因的表达,并增加了LICs(分别为4倍和3.5倍)、LFFs(分别为5.5倍和3倍)、LPCs(分别为10倍和4.5倍)的氧消耗率和细胞外酸化率。总之,本研究首次证明成人ACL中存在三种新型祖细胞群,它们具有强大的增殖和基质合成能力;这些细胞可能在局部韧带再生中发挥作用,因此代表了韧带工程应用的潜在细胞来源。©2015骨科研究学会。由威利期刊公司出版。《矫形外科学研究》34:985 - 994,2016。