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Efficient decellularization of equine tendon with preserved biomechanical properties and cytocompatibility for human tendon surgery indications

机译:具有保存的生物力学性质的高效脱细胞,具有生物力学性质和人肌腱手术指示的细胞相容性

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Abstract Chronic and acute tendon injuries are frequent afflictions, for which treatment is often long and unsatisfactory. When facing extended injuries, matrices and scaffolds with sufficient biomechanical properties are required for surgical repair and could additionally serve as supports for cellular therapies to improve healing. In this study, protocols of either commonly used detergents only (SDS 1%, Triton 1%, TBP 1%, and Tween‐20 1%) or a combination of freeze/thaw (F/T) cycles with decellularization agents (NaCl 1M, ddH 2 O) were evaluated for the decellularization of horse equine superficial digital flexor tendon (SDFT) for hand flexor or extensor tendon reconstruction. Decellularization efficiency was assessed microscopically by histological staining (HE, DAPI) and DNA quantification. Macroscopical structure and biomechanical integrity of the tendon matrices were further assessed by gross observation, histological staining (SR), and mechanical testing (ultimate strain and stress, Young’s modulus, energy to failure) for select protocols. Decellularization with hypertonic NaCl 1M in association with F/T cycles produced the most robust tendon matrices, which were nontoxic after 10 days for subsequent recellularization with human fetal progenitor tendon cells (hFPTs). This standardized protocol uses a less aggressive decellularization agent than current practice, which allows subsequent reseeding with allogenic cells, therefore making them very suitable and bioengineered tendon matrices for human tendon reconstruction in the clinic.
机译:摘要慢性和急性肌腱损伤是频繁的累累,患有治疗往往漫长而不令人满意。在面对延长的损伤时,手术修复需要具有足够的生物力学性质的基质和支架,并且可以作为细胞疗法的支持,以改善愈合。在该研究中,常用洗涤剂的方案仅(SDS 1%,Triton1%,TBP 1%和TBP-20 1%)或具有脱细胞化剂的冷冻/解冻(F / T)循环的组合(NaCl1M评估DDH 2 O),用于手弯曲或伸展肌腱重建的马马浅表数字屈肌肌腱(SDFT)的脱细胞化。通过组织学染色(HE,DAPI)和DNA定量进行微观评估脱细胞化效率。通过总观察,组织学染色(SR)和机械测试(最终应变和应力,杨氏模量,能量,失败)进一步评估肌腱矩阵的宏观结构和生物力学完整性。具有高渗NaCl1M与F / T循环相关联的脱细胞化产生最强大的肌腱矩阵,其在10天后是随后与人胎儿祖母肌腱细胞(HFPT)的透速过分的10天内的毒性。该标准化方案使用较少的脱细胞化剂而不是目前的实践,其允许随后与同种异体细胞进行重新预留,因此在临床中制备非常合适的和生物工程肌腱矩阵,用于诊所的人肌腱重建。

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