干细胞/氧释放微粒增强海绵状神经损伤模型中的勃起功能。

Tissue Engineering Part A Pub Date : 2021-01-01 Epub Date: 2020-03-31 DOI:10.1089/ten.TEA.2019.0240
Ae Ryang Jung, Yong Hyun Park, Ga Eun Kim, Mee Young Kim, Seung Hwan Jeon, Ho Yong Kim, So Young Kim, Se Heang Oh, Ji Youl Lee
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引用次数: 9

摘要

海绵神经损伤引起的勃起功能障碍是根治性前列腺切除术治疗局限性前列腺癌的常见并发症。各种研究已经研究了使用干细胞治疗修复受损组织和预防海绵体纤维化。然而,干细胞治疗有局限性,包括移植干细胞的营养和氧气供应不足。本研究探讨了干细胞/释氧中空微粒(HPs)对双侧海绵状神经损伤(BCNI)大鼠勃起功能障碍的治疗作用。在海绵体神经损伤后1、2、4周的BCNI模型中观察治疗效果。在第4周,与仅使用干细胞治疗相比,使用干细胞/氧释放HP系统治疗后勃起功能进一步改善。干细胞/氧释放HP系统增加了环鸟苷单磷酸(cGMP)水平和神经元一氧化氮合酶(nNOS)、内皮一氧化氮合酶(eNOS)、α-平滑肌肌动蛋白(α-SMA)和毒毒碱乙酰胆碱受体3 (M3)的表达,减少了海绵体的纤维化和凋亡。我们的研究结果清楚地表明,干细胞存活率在移植干细胞/氧释放杂交系统位点附近增加。综上所述,一个氧气释放HP系统支持延长干细胞存活,维持干细胞的旁分泌作用,从而增强勃起功能。这些发现显示了延长干细胞存活在干细胞应用于各种疾病和类型的组织损伤方面的希望。在这项研究中,我们使用一种释放氧气的中空微粒(HPs)系统与干细胞一起,试图克服干细胞治疗的某些局限性,包括移植干细胞的营养和氧气供应不足。我们的研究结果表明,干细胞/释氧HP杂交系统可以通过延长干细胞的存活时间,进一步改善双侧海绵状神经损伤大鼠的勃起功能、环鸟苷单磷酸(cGMP)水平和NOS水平。我们的数据表明,干细胞/氧释放HP系统是前列腺切除术后勃起功能障碍的一种有前景的临床治疗选择。此外,该系统可能与不同疾病的治疗和再生医学相关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Stem Cell/Oxygen-Releasing Microparticle Enhances Erectile Function in a Cavernous Nerve Injury Model.

Erectile dysfunction caused by damage to the cavernous nerve is a common complication of radical prostatectomy for patients with localized prostate cancer. Various studies have investigated repair of damaged tissue and prevention of fibrosis in the corpus cavernosum using stem cell therapy. However, stem cell therapy has limitations, including insufficient nutrient and oxygen supply to transplanted stem cells. This study investigated whether stem cell/oxygen-releasing hollow microparticles (HPs) had therapeutic effect on erectile dysfunction in a rat model of bilateral cavernous nerve injury (BCNI). Therapeutic effects were observed in the BCNI model at 1, 2, and 4 weeks postcavernous nerve injury. Erectile function further improved after treatment with stem cell/oxygen-releasing HP system compared with treatment with only stem cells at 4 weeks. Stem cell/oxygen-releasing HP system increased cyclic guanosine monophosphate (cGMP) level and neuronal nitric oxide synthase (nNOS), endothelial nitric oxide synthase (eNOS), α-smooth muscle actin (α-SMA), and muscarinic acetylcholine receptor 3 (M3) expression while decreasing fibrosis and apoptosis in the corpus cavernosum. Our results clearly show that stem cell survival increases around transplanted stem cell/oxygen-releasing hybrid system site. Taken together, an oxygen-releasing HP system supported prolonged stem cell survival, sustaining the paracrine effect of the stem cells, and consequently enhancing erectile function. These findings show promise with regard to prolonged stem cell survival in stem cell applications for various diseases and types of tissue damage. Impact statement In this study, we used an oxygen-releasing hollow microparticles (HPs) system with stem cells to attempt to overcome certain limitations of stem cell therapy, including insufficient nutrient and oxygen supplies for transplanted stem cells. Our results demonstrated that a stem cell/oxygen-releasing HP hybrid system could further improve erectile function, cyclic guanosine monophosphate (cGMP) level, and NOS level in a bilateral cavernous nerve injury rat model through prolonged stem cell survival. Our data suggest that a stem cell/oxygen-releasing HP system is a promising clinical treatment option for postprostatectomy erectile dysfunction. Furthermore, this system may be relevant in different disease therapies and regenerative medicine.

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Tissue Engineering Part A
Tissue Engineering Part A CELL & TISSUE ENGINEERING-BIOTECHNOLOGY & APPLIED MICROBIOLOGY
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