Prager Jon, Adams Christopher F, Delaney Alexander M, Chanoit Guillaume, Tarlton John F, Wong Liang-Fong, Chari Divya M, Granger Nicolas
Bristol Veterinary School, University of Bristol, Bristol, UK.
The Royal Veterinary College, University of London, Hatfield, UK.
J Tissue Eng. 2020 Jul 2;11:2041731420934806. doi: 10.1177/2041731420934806. eCollection 2020 Jan-Dec.
Safe hydrogel delivery requires stiffness-matching with host tissues to avoid iatrogenic damage and reduce inflammatory reactions. Hydrogel-encapsulated cell delivery is a promising combinatorial approach to spinal cord injury therapy, but a lack of clinical spinal cord injury stiffness measurements is a barrier to their use in clinics. We demonstrate that ultrasound elastography - a non-invasive, clinically established tool - can be used to measure spinal cord stiffness intraoperatively in canines with spontaneous spinal cord injury. In line with recent experimental reports, our data show that injured spinal cord has lower stiffness than uninjured cord. We show that the stiffness of hydrogels encapsulating a clinically relevant transplant population (olfactory ensheathing cells) can also be measured by ultrasound elastography, enabling synthesis of hydrogels with comparable stiffness to canine spinal cord injury. We therefore demonstrate proof-of-principle of a novel approach to stiffness-matching hydrogel-olfactory ensheathing cell implants to 'real-life' spinal cord injury values; an approach applicable to multiple biomaterial implants for regenerative therapies.
安全的水凝胶递送需要与宿主组织的硬度相匹配,以避免医源性损伤并减少炎症反应。水凝胶包裹细胞递送是脊髓损伤治疗中一种很有前景的联合方法,但缺乏临床脊髓损伤硬度测量数据是其在临床上应用的障碍。我们证明,超声弹性成像——一种非侵入性的、已在临床应用的工具——可用于在患有自发性脊髓损伤的犬类中术中测量脊髓硬度。与最近的实验报告一致,我们的数据表明,受损脊髓的硬度低于未受损脊髓。我们表明,包裹具有临床相关性的移植群体(嗅鞘细胞)的水凝胶的硬度也可以通过超声弹性成像来测量,从而能够合成与犬类脊髓损伤具有可比硬度的水凝胶。因此,我们证明了一种新方法的原理证明,即使水凝胶 - 嗅鞘细胞植入物的硬度与“实际”脊髓损伤值相匹配;该方法适用于多种用于再生治疗的生物材料植入物。