Heggeness Michael H, Strong Nora, Wooley Paul H, Yang Shang-You
Department of Orthopaedic Surgery, University of Kansas School of Medicine-Wichita, Wichita, Kansas, USA.
Department of Orthopaedic Surgery, University of Kansas School of Medicine-Wichita, Wichita, Kansas, USA.
Spine J. 2017 Feb;17(2):252-259. doi: 10.1016/j.spinee.2016.09.016. Epub 2016 Sep 21.
The clinical use of recombinant human bone morphogenic protein 2 (rhBMP-2, Infuse) has been associated with nerve-related complications including new-onset sciatica, and retrograde ejaculation.
To better understand the interaction of rhBMP-2 and peripheral nerves with the intent of making procedures safer.
STUDY DESIGN/SETTING: Using a mouse model to examine the direct effect of diluted rhBMP-2 (Infuse) on murine sciatic nerves.
Animal studies were approved by the Institutional Animal Care and Use Committee. Balb/c mouse sciatic nerves were surgically exposed and 60 ng (in 10 µL) of rhBMP-2 was applied to the nerve. In separate experiments, the sciatic nerves were subjected to mechanical compression using forceps (and not exposed to rhBMP-2). The third group of mice received direct injection of the same amount of rhBMP-2, or sterile saline as a control, into the hamstring area of the posterior thigh without surgery. Mouse limbs with intact sciatic nerve were collected at 24, 48, or 72 hours after treatment for histology processing. A separate set of identically treated sciatic nerves were retrieved from mice at the same time points and cells were isolated by collagenase and trypsin digestion. The isolated cells were cultured in a stem cell medium containing 20% knockout serum and human leukemia inhibitory factor. Immunohistochemical or immunofluorescent cell stains against KLF4, Sox2, c-Myc, and Oct4 were performed on the mouse tissue sections and cell culture slides. In addition, real-time polymerase chain reaction (PCR) was performed to quantify the mRNA expression profiles of the stem cell marker genes in cultured cells.
Profound morphological changes of the mouse sciatic nerves were noted after exposure to rhBMP-2, with a rapid and robust cell proliferation within the nerves followed by migration of these cells into surrounding tissue. Immunohistochemical stain revealed strong nuclear stains of KLF4, Sox2, Oct4, and c-Myc on the overwhelming majority of these proliferating cells in the nerve. Intramuscular injections of rhBMP-2 or willful physical compression of the nerves showed similar cell proliferation effects as the direct application of Infuse to the sciatic nerve. The cells in stem cell culture medium grew steadily without feeder cells and appeared fairly uniform. They were adherent to substrate and were motile. Double fluorescent staining on the cells indicated colocalizationof all pairs of the four stem cell markers in the cell nuclei. Real-time PCR confirmed the strong mRNA expressions of KLF4, Sox2, Oct4, and c-Myc in these isolated cells.
Exposure to BMP-2 causes a marked proliferation of previously quiescent cells within peripheral nerves. These cells simultaneously express KLF4, Sox2, Oct4, and c-Myc, the transcription factors that confer embryonic pluripotency. Work described in the companion paper reveals some of the differentiation capacity of the cells and their likely clinical significance. In addition, the effects of direct exposure of nerves to rhBMP-2 as described here should clearly illuminate the mechanism of BMP-2-related nerve complications. We would suggest that the use of this agent in proximity to known neural structures should only be done with extreme caution.
重组人骨形态发生蛋白2(rhBMP - 2,Infuse)在临床应用中与神经相关并发症有关,包括新发坐骨神经痛和逆行射精。
为了更好地理解rhBMP - 2与周围神经的相互作用,以使手术更安全。
研究设计/场所:使用小鼠模型来研究稀释的rhBMP - 2(Infuse)对小鼠坐骨神经的直接作用。
动物研究经机构动物护理和使用委员会批准。通过手术暴露Balb/c小鼠的坐骨神经,并将60 ng(10 μL)的rhBMP - 2应用于神经。在单独的实验中,使用镊子对坐骨神经进行机械压迫(不暴露于rhBMP - 2)。第三组小鼠在不进行手术的情况下,将相同量的rhBMP - 2或无菌生理盐水作为对照直接注射到大腿后部的腘绳肌区域。在治疗后24、48或72小时收集具有完整坐骨神经的小鼠肢体进行组织学处理。在相同时间点从小鼠中取出另一组经过相同处理的坐骨神经,通过胶原酶和胰蛋白酶消化分离细胞。将分离的细胞在含有20%敲除血清和人白血病抑制因子的干细胞培养基中培养。对小鼠组织切片和细胞培养玻片进行针对KLF4、Sox2、c - Myc和Oct4的免疫组织化学或免疫荧光细胞染色。此外,进行实时聚合酶链反应(PCR)以定量培养细胞中干细胞标记基因的mRNA表达谱。
暴露于rhBMP - 2后,小鼠坐骨神经出现了明显的形态学变化,神经内细胞迅速且大量增殖,随后这些细胞迁移到周围组织。免疫组织化学染色显示,在神经中绝大多数这些增殖细胞上,KLF4、Sox2、Oct4和c - Myc有强烈的核染色。肌肉注射rhBMP - 2或故意对神经进行物理压迫显示出与直接将Infuse应用于坐骨神经相似的细胞增殖效果。干细胞培养基中的细胞在没有饲养细胞的情况下稳定生长,且看起来相当均匀。它们附着于底物且具有运动性。对细胞进行双重荧光染色表明,这四种干细胞标记物在细胞核中均共定位。实时PCR证实了这些分离细胞中KLF4、Sox2、Oct4和c - Myc的强烈mRNA表达。
暴露于BMP - 2会导致周围神经内先前静止的细胞显著增殖。这些细胞同时表达KLF4、Sox2、Oct4和c - Myc,这些转录因子赋予胚胎多能性。配套论文中描述的工作揭示了这些细胞的一些分化能力及其可能的临床意义。此外,此处所述的神经直接暴露于rhBMP - 2的效应应能清楚地阐明BMP - 2相关神经并发症的机制。我们建议,在已知神经结构附近使用该药物时应极其谨慎。