Shi Brendan Y, Sriram Varun, Wu Shannon Y, Huang Dave, Cheney Alexis, Metzger Melodie F, Sundberg Oskar, Lyons Karen M, McKenna Charles E, Nishimura Ichiro, Kremen Thomas J
Department of Orthopaedic Surgery, David Geffen School of Medicine, University of California at Los Angeles, Los Angeles, CA, United States.
Department of Orthopaedic Surgery, Cedars-Sinai Medical Center, Los Angeles, CA, United States.
Front Bioeng Biotechnol. 2024 Feb 16;12:1308161. doi: 10.3389/fbioe.2024.1308161. eCollection 2024.
Osteoadsorptive fluorogenic sentinel 3 (OFS-3) is a recently described compound that contains a bone-targeting bisphosphonate (BP) and cathepsin K (Ctsk)-triggered fluorescence signal. A prior study in a murine Achilles repair model demonstrated its effectiveness at targeting the site of tendon-to-bone repair, but the intrinsic effect of this novel bisphosphonate chaperone on tendon-to-bone healing has not been previously explored. We hypothesized that application of this bisphosphonate-fluorophore cargo conjugate would not affect the biomechanical properties or histologic appearance of tendon-bone repairs. Right hindlimb Achilles tendon-to-bone repair was performed on 12-week old male mice. Animals were divided into 2 groups of 18 each: 1) Achilles repair with OFS-3 applied directly to the repair site prior to closure, and 2) Achilles repair with saline applied prior to closure. Repaired hindlimbs from 12 animals per group were harvested at 6 weeks for biomechanical analysis with a custom 3D-printed jig. At 4 and 6 weeks, repaired hindlimbs from the remaining animals were assessed histologically using H&E, immunohistochemistry (IHC) staining for the presence of Ctsk, and second harmonic generation (SHG) imaging to evaluate collagen fibers. At 6 weeks, there was no significant difference in failure load, stiffness, toughness, or displacement to failure between repaired hindlimbs that received OFS-3 saline. There was no difference in tissue healing on H&E or Ctsk staining on immunohistochemistry between animals that received OFS-3 saline. Finally, second harmonic generation imaging demonstrated no difference in collagen fiber parameters between the two groups. OFS-3 did not significantly affect the biomechanical properties or histologic appearance of murine Achilles tendon-to-bone repairs. This study demonstrates that OFS-3 can target the site of tendon-to-bone repair without causing intrinsic negative effects on healing. Further development of this drug delivery platform to target growth factors to the site of tendon-bone repair is warranted.
骨吸附荧光哨兵3(OFS-3)是一种最近被描述的化合物,它含有一种骨靶向双膦酸盐(BP)和组织蛋白酶K(Ctsk)触发的荧光信号。先前在小鼠跟腱修复模型中的一项研究证明了其在靶向肌腱-骨修复部位的有效性,但这种新型双膦酸盐伴侣对肌腱-骨愈合的内在影响此前尚未被探索。我们假设这种双膦酸盐-荧光团货物共轭物的应用不会影响肌腱-骨修复的生物力学性能或组织学外观。对12周龄雄性小鼠进行右后肢跟腱-骨修复。将动物分为两组,每组18只:1)在缝合前将OFS-3直接应用于修复部位的跟腱修复组,2)在缝合前应用生理盐水的跟腱修复组。每组12只动物的修复后肢在6周时收获,使用定制的3D打印夹具进行生物力学分析。在4周和6周时,对其余动物的修复后肢进行组织学评估,使用苏木精-伊红(H&E)染色、免疫组织化学(IHC)染色检测Ctsk的存在以及二次谐波产生(SHG)成像来评估胶原纤维。在6周时,接受OFS-3的修复后肢与接受生理盐水的修复后肢在破坏载荷、刚度、韧性或破坏位移方面没有显著差异。接受OFS-3和生理盐水的动物在H&E染色或免疫组织化学Ctsk染色上的组织愈合没有差异。最后,二次谐波产生成像显示两组之间胶原纤维参数没有差异。OFS-3对小鼠跟腱-骨修复的生物力学性能或组织学外观没有显著影响。这项研究表明,OFS-3可以靶向肌腱-骨修复部位,而不会对愈合产生内在负面影响。有必要进一步开发这种药物递送平台,将生长因子靶向输送到肌腱-骨修复部位。