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利用定向肽两亲纳米纤维实现海绵体神经的再生。

Regeneration of the cavernous nerve by Sonic hedgehog using aligned peptide amphiphile nanofibers.

机构信息

Department of Urology, Northwestern University, Feinberg School of Medicine, Chicago, IL 60611, USA.

出版信息

Biomaterials. 2011 Feb;32(4):1091-101. doi: 10.1016/j.biomaterials.2010.10.003. Epub 2010 Oct 23.

DOI:10.1016/j.biomaterials.2010.10.003
PMID:20971506
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2993249/
Abstract

SHH plays a significant role in peripheral nerve regeneration and has clinical potential to be used as a regenerative therapy for the CN in prostatectomy patients and in other patients with neuropathy of peripheral nerves. Efforts to regenerate the cavernous nerve (CN), which provides innervation to the penis, have been minimally successful, with little translation into improved clinical outcomes. We propose that, Sonic hedgehog (SHH), is critical to maintain CN integrity, and that SHH delivered to the CN by novel peptide amphiphile (PA) nanofibers, will promote CN regeneration, restore physiological function, and prevent penile morphology changes that result in erectile dysfunction (ED). We performed localization studies, inhibition of SHH signaling in the CN, and treatment of crushed CNs with SHH protein via linear PA gels, which are an innovative extended release method of delivery. Morphological, functional and molecular analysis revealed that SHH protein is essential to maintain CN architecture, and that SHH treatment promoted CN regeneration, suppressed penile apoptosis and caused a 58% improvement in erectile function in less than half the time reported in the literature. These studies show that SHH has substantial clinical application to regenerate the CN in prostatectomy and diabetic patients, that this methodology has broad application to regenerate any peripheral nerve that SHH is necessary for maintenance of its structure, and that this nanotechnology method of protein delivery may have wide spread application as an in vivo delivery tool in many organs.

摘要

SHH 在周围神经再生中起着重要作用,具有作为前列腺切除术患者和其他周围神经病变患者的 CN 再生治疗的临床潜力。再生海绵体神经 (CN) 的努力取得了最小的成功,几乎没有转化为改善的临床结果。我们提出,Sonic hedgehog (SHH) 对于维持 CN 完整性至关重要,并且通过新型肽两亲物 (PA) 纳米纤维递送到 CN 的 SHH 将促进 CN 再生、恢复生理功能并预防导致勃起功能障碍 (ED) 的阴茎形态变化。我们进行了定位研究,抑制 CN 中的 SHH 信号,并通过线性 PA 凝胶治疗挤压的 CN,这是一种创新的延长释放方法。形态、功能和分子分析表明,SHH 蛋白对于维持 CN 结构至关重要,并且 SHH 治疗促进了 CN 再生,抑制了阴茎细胞凋亡,并使勃起功能提高了 58%,时间不到文献报道的一半。这些研究表明,SHH 具有很大的临床应用潜力,可以再生前列腺切除术和糖尿病患者的 CN,这种方法广泛适用于再生任何需要 SHH 维持其结构的周围神经,并且这种蛋白质递送的纳米技术方法可能作为一种广泛应用于许多器官的体内递送工具。

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Regeneration of the cavernous nerve by Sonic hedgehog using aligned peptide amphiphile nanofibers.利用定向肽两亲纳米纤维实现海绵体神经的再生。
Biomaterials. 2011 Feb;32(4):1091-101. doi: 10.1016/j.biomaterials.2010.10.003. Epub 2010 Oct 23.
2
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Sonic hedgehog is neuroprotective in the cavernous nerve with crush injury. sonic 刺猬在海绵体神经挤压损伤中具有神经保护作用。
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Nature's Secret Neuro-Regeneration Pathway in Axolotls, Polychaetes and Planarians for Human Therapeutic Target Pathways.蝾螈、多毛纲环节动物和水螅的自然神经再生途径对人类治疗靶标途径的启示。

本文引用的文献

1
A self-assembly pathway to aligned monodomain gels.一种自组装方法制备取向单畴凝胶。
Nat Mater. 2010 Jul;9(7):594-601. doi: 10.1038/nmat2778. Epub 2010 Jun 13.
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Tuning supramolecular rigidity of peptide fibers through molecular structure.通过分子结构调控肽纤维的超分子刚性。
J Am Chem Soc. 2010 May 5;132(17):6041-6. doi: 10.1021/ja908560n.
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Supramolecular design of self-assembling nanofibers for cartilage regeneration.用于软骨再生的自组装纳米纤维的超分子设计。
Int J Mol Sci. 2024 Nov 6;25(22):11904. doi: 10.3390/ijms252211904.
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SHH regulates penile morphology and smooth muscle through a mechanism involving BMP4 and GREM1.音猬因子(SHH)通过一种涉及骨形态发生蛋白4(BMP4)和生长调节致癌基因1(GREM1)的机制来调节阴茎形态和平滑肌。
J Sex Med. 2024 Apr 30;21(5):379-390. doi: 10.1093/jsxmed/qdae016.
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BMP4 and GREM1 are targets of SHH signaling and downstream regulators of collagen in the penis.骨形态发生蛋白4(BMP4)和Gremlin1(GREM1)是音猬因子(SHH)信号通路的靶点以及阴茎中胶原蛋白的下游调节因子。
J Sex Med. 2024 Apr 30;21(5):367-378. doi: 10.1093/jsxmed/qdae015.
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Nanotechnology in sexual medicine.纳米技术在性医学中的应用。
J Sex Med. 2024 Jan 30;21(2):81-83. doi: 10.1093/jsxmed/qdad149.
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Advanced hydrogels: New expectation for the repair of organic erectile dysfunction.先进水凝胶:修复器质性勃起功能障碍的新期望。
Mater Today Bio. 2023 Feb 20;19:100588. doi: 10.1016/j.mtbio.2023.100588. eCollection 2023 Apr.
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Pathway analysis of microarray data from corpora cavernosal tissue of patients with a prostatectomy or Peyronie disease in comparison with a cavernous nerve-injured rat model of erectile dysfunction.前列腺切除术或 Peyronie 病患者海绵体组织的基因芯片数据分析与勃起功能障碍海绵体神经损伤大鼠模型的比较。
J Sex Med. 2023 Feb 14;20(2):139-151. doi: 10.1093/jsxmed/qdac019.
9
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Tuning Peptide-Based Hydrogels: Co-Assembly with Composites Driving the Highway to Technological Applications.基于肽的水凝胶的调谐:与复合材料的共组装推动技术应用的高速公路。
Int J Mol Sci. 2022 Dec 22;24(1):186. doi: 10.3390/ijms24010186.
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Sonic hedgehog induces response of commissural axons to Semaphorin repulsion during midline crossing. Sonic hedgehog 诱导连合纤维在中线穿越过程中对 Semaphorin 排斥的反应。
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Sonic hedgehog improves delayed wound healing via enhancing cutaneous nitric oxide function in diabetes.音猬因子通过增强糖尿病患者皮肤一氧化氮功能来改善延迟性伤口愈合。
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J Neurochem. 2008 Nov;107(4):918-27. doi: 10.1111/j.1471-4159.2008.05666.x. Epub 2008 Sep 11.
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Cavernous nerve regeneration using acellular nerve grafts.使用脱细胞神经移植物进行海绵体神经再生。
World J Urol. 2008 Aug;26(4):333-9. doi: 10.1007/s00345-008-0283-y. Epub 2008 Jul 2.
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Self-assembling nanofibers inhibit glial scar formation and promote axon elongation after spinal cord injury.自组装纳米纤维可抑制脊髓损伤后胶质瘢痕形成并促进轴突伸长。
J Neurosci. 2008 Apr 2;28(14):3814-23. doi: 10.1523/JNEUROSCI.0143-08.2008.