Department of Orthopaedics, Xiangya Hospital, Central South University, Changsha, China.
National Clinical Research Center for Geriatric Disorders, Xiangya Hospital, Central South University, Changsha, Hunan, China.
Am J Sports Med. 2023 Jun;51(7):1872-1885. doi: 10.1177/03635465231168104. Epub 2023 May 15.
Successful management of chronic rotator cuff (RC) tears remains a challenge owing to its limited intrinsic healing capacity and unsatisfactory failure rate. Menstrual blood-derived mesenchymal stem cells (MenSCs) have the potential to differentiate into the chondrogenic or osteogenic lineage. Autologous platelet-rich gel (APG), a gel material derived from platelet-rich plasma (PRP), can be applied as a carrier system for cell delivery and also as a releasing system for endogenous growth factors.
To investigate the effect of human MenSCs encapsulated in APG (MenSCs@APG) on the healing of chronic RC tears in a rabbit model.
Controlled laboratory study.
After evaluation of the effect of PRP on MenSC proliferation or differentiation, the stem cells were encapsulated in APG for in vivo injection. Supraspinatus tenotomy from the right greater tuberosity was performed on 45 New Zealand White rabbits. After 6 weeks, these rabbits were randomly allocated to 3 supplemental treatments during supraspinatus repair: saline injection (control [CTL] group), APG injection (APG group), and MenSCs@APG injection (MenSCs@APG group). At week 18, these rabbits were sacrificed to harvest the humerus-supraspinatus tendon complexes for micro-computed tomography (CT), histological evaluation, tensile test, and MenSC tracking.
In vitro results showed that APG can stimulate MenSC proliferation and enhance chondrogenic or osteogenic differentiation. In vivo results showed that APG can act as a carrier for delivering MenSCs into the healing site, and also as a stimulator for enhancing the in vivo performance of MenSCs. Micro-CT showed that bone volume/total volume and trabecular thickness of the new bone in the MenSCs@APG group presented significantly larger values than those of the APG or CTL group ( < .05 for all). Histologically, compared with the CTL or APG group, significantly more mature fibrocartilage regenerated at the healing site in the MenSCs@APG group. A large number of human nuclei-stained cells were observed in the MenSCs@APG group, presenting a similar appearance to fibrochondrocytes or osteocytes. Biomechanically, the MenSCs@APG group showed significantly higher failure load and stiffness than the APG or CTL group ( < .05 for all).
Human MenSCs@APG facilitated RC healing in a rabbit model of chronic tears.
Autogenous MenSCs@APG may be a new stem cell-based therapy for augmenting RC healing in the clinic.
由于慢性肩袖撕裂(RC)的内在愈合能力有限和不尽如人意的失败率,其的成功管理仍然是一个挑战。间充质干细胞(MenSCs)来源于月经血,具有向软骨细胞或成骨细胞谱系分化的潜能。富血小板凝胶(APG)是一种从富含血小板的血浆(PRP)衍生而来的凝胶材料,可作为细胞递送的载体系统,也可作为内源性生长因子的释放系统。
研究人 MenSCs 包被在富血小板凝胶(MenSCs@APG)中对兔慢性 RC 撕裂愈合的影响。
对照实验室研究。
在评估 PRP 对 MenSC 增殖或分化的影响后,将干细胞包埋在 APG 中进行体内注射。在 45 只新西兰白兔的右肱骨头大结节处进行冈上肌腱切断术。6 周后,这些兔子被随机分配到冈上肌腱修复的 3 种补充治疗中:生理盐水注射(对照组[CTL]组)、APG 注射(APG 组)和 MenSCs@APG 注射(MenSCs@APG 组)。在第 18 周,这些兔子被处死,以收获肱骨-冈上肌腱复合体进行微计算机断层扫描(CT)、组织学评估、拉伸试验和 MenSC 示踪。
体外结果表明,APG 可刺激 MenSC 增殖并增强软骨或成骨分化。体内结果表明,APG 可作为递送 MenSCs 进入愈合部位的载体,并作为增强 MenSCs 体内性能的刺激物。微 CT 显示,新骨的骨体积/总体积和小梁厚度在 MenSCs@APG 组中表现出明显大于 APG 或 CTL 组的值(所有值<.05)。组织学上,与 CTL 或 APG 组相比,MenSCs@APG 组在愈合部位再生了更多成熟的纤维软骨。在 MenSCs@APG 组中观察到大量被人核染色的细胞,其外观类似于纤维软骨细胞或成骨细胞。生物力学上,MenSCs@APG 组的失效负荷和刚度明显高于 APG 或 CTL 组(所有值<.05)。
人 MenSCs@APG 促进了兔慢性肩袖撕裂模型的肩袖愈合。
自体 MenSCs@APG 可能是一种新的基于干细胞的治疗方法,可增强 RC 愈合。