声带切除术后损伤修复与再生的研究进展

刘婕妤;周恩;杨慕;肖禹;秦念;张锟艺;肖旭平;

1:湖南师范大学附属第一医院/湖南省人民医院耳鼻咽喉头颈外科

摘要
<正>声音是在大脑皮质以及皮质下神经中枢控制和协调下,通过正常的发声器官、听觉系统、神经系统共同作用形成的自动反馈的发声系统产生的([1])。声带由甲杓肌、固有层深层、固有层中层、固有层浅层和鳞状上皮层组成,固有层深层和固有层中层形成声韧带,发声主要归功于固有层,它可以在100~1 000 Hz频率承受高达30%的应变,并且可以在短暂拉伸后快速恢复([1])。声带由甲杓肌、固有层深层、固有层中层、固有层浅层和鳞状上皮层组成,固有层深层和固有层中层形成声韧带,发声主要归功于固有层,它可以在100~1 000 Hz频率承受高达30%的应变,并且可以在短暂拉伸后快速恢复([2])。它主要由细胞外基质(ECM)组成,如:纤维蛋白(Ⅰ、Ⅱ和Ⅲ型胶原蛋白,弹性蛋白)、
关键词
基金项目(Foundation):
作者
刘婕妤;周恩;杨慕;肖禹;秦念;张锟艺;肖旭平;
参考文献

1 梅祥胜.嗓音疾病的中西医诊疗现状[J].中国中西医结合耳鼻咽喉科杂志,2019,27(4):246-249.

2 Di Gesù R,Acharya AP,Jacobs I,et al.3D printing for tissue engineering in otolaryngology[J].Connective Tissue Research,2020,61(2):117-136.

3 Vojtech JM,Segina RK,Buckley DP,et al.Refining algorithm-mic estimation of relative fundamental frequency:accounting for sample characteristics and fundamental frequency estimation method[J].J Acoust Soc Am,2019,146(5):3184-3202.

4 Fernandes-Taylor S,Damico Smith C,Arroyo N,et al.Study protocol to develop a patient-reported outcome measuring disability associated with unilateral vocal fold paralysis:a mixedmethods approach with the CoPE collaborative[J].BMG Open,2019,9(10):030151.

5 徐文,韩德民,胡蓉,等.声带损伤后自身修复特点研究[J].首都医科大学学报,2011,32(6):729-732.

6 王家佳,魏春生.声带瘢痕的形成及治疗进展[J].听力学及言语疾病杂志,2011,19(3):283-285.

7 梁耕田,段冰玉,张莹莹,等.犬声带瘢痕模型的建立及其细胞外基质中赖氨酰氧化酶、热休克蛋白70和透明质酸表达的研究[J].临床耳鼻咽喉头颈外科杂志,2017,31(2):116-122.

8 张庆翔,胡惠英,孙国燕,等.声带CO2激光术后自主修复情况的临床研究[J].临床耳鼻咽喉头颈外科杂志,2014,28(19):1472-1476.

9 张燚,曹绿红,陈群,等.不同功率CO2激光对声带损伤的实验研究[J].中华耳鼻咽喉头颈外科杂志,2011,46(12):1039-1041.

10 Shen L,Xu L,Wang Q,et al.Healing process following laser cordectomy of early glottis carcinoma from endoscopic view[J].Lasers in Surgery and Medicine,2016,48(5):483-489.

11 肖水芳,赵欣,张俊波,等.等离子射频技术辅助经口微创手术治疗口咽及口腔恶性肿瘤的临床观察[J].临床耳鼻咽喉头颈外科杂志,2017,31(22):1705-1710.

12 肖水芳,李五一,张俊波,等.等离子射频辅助经口手术治疗下咽癌[J].中华耳鼻咽喉头颈外科杂志,2017,52(5):325-331.

13 双羽,李超,黄永望,等.低温等离子射频消融术与CO2激光治疗早期声门型喉癌疗效比较[J].听力学及言语疾病杂志,2015,23(4),23:372-376.

14 Liu B,Cheng LJ,Ming H,et al.Treatment of the early-stage glottic cancer using low-temperature radiofrequency coblation[J].J Cancer Res Ther,2016,12(2):830-833.

15 Divi V,Benninger M,Kiupel M,et al.Coblation of the canine vocal fold:a histologic study[J].Journal of Voice,2012,26(6):811-819.

16 黄钧涛,成立新,吴淋蓉,等.低温等离子射频消融术和二氧化碳激光治疗早期声门型喉癌效果比较的Meta分析[J].中华肿瘤防治杂志,2021,28(11):864-870.

17 Medeiros N,Castro MEM,van Lith Bijl JT,et al.A systematic review on surgical treatments for sulcus vocalis and vocal fold scar[J].The Laryngoscope,2021.DOI:10.1002/lary.29665.

18 孟洋,孙广滨.声带瘢痕的预防与治疗进展[J].国际耳鼻咽喉头颈外科杂志,2014,38(5):257-261.

19 王玲,李会政,赵颖,等.电子喉镜下声带手术后并发声带瘢痕的预防措施[J].中国现代药物应用,2015,9(19):105-106.

20 Hantzakos A,Dikkers FG,Giovanni A,et al.Vocal fold scars:a common classification proposal by the American Laryngological Association and European Laryngological Society[J].European Archives of Oto-Rhino-Laryngology,2019,276(8):2289-2292.

21 Bartlett RS,Thibeault SL,Prestwich GD.Therapeutic potential of gel-based injectables for vocal fold regeneration[J].Biomedical Materials (Bristol),2012,7(2):24103.

22 Gaston J,Thibeault SL.Hyaluronic acid hydrogels for vocal fold wound healing[J].Biomatter (Austin,TX),2013,3(1):e23799.

23 Dicker KT,Gurski LA,Pradhan-Bhatt S,et al.Hyaluronan:a simple polysaccharide with diverse biological functions[J].Acta Biomaterialia,2014,10(4):1558-1570.

24 Kitamura M,Hirano S,Kanemaru S,et al.Glottic regeneration with a tissue-engineering technique,using acellular extracellular matrix scaffold in a canine model[J].Journal of Tissue Engineering and Regenerative Medicine,2016,10(10):825-832.

25 Reyes Valenzuela A,Bao G,Vikstrom A,et al.Polymeric microspheres containing human vocal fold fibroblasts for vocal fold regeneration[J].The Laryngoscope,2021,131(8):1828-1834.

26 Plunkett N,O'Brien FJ.Bioreactors in tissue engineering[J].Technology and Health Care,2011,19(1):55-69.

27 Gracioso Martins AM,Biehl A,Sze D,et al.Bioreactors for vocal fold tissue engineering[J].Tissue Engineering Part B,Reviews,2021.DOI:10.1089/ten.TEB.2020.0285.

28 Fishman JM,Long J,Gugatschka M,et al.Stem cell approaches for vocal fold regeneration[J].The Laryngoscope,2016,126(8):1865-1870.

29 胡蓉,徐文,范尔钟.自体脂肪间充质干细胞移植促进声带修复再生的实验研究[J].中华耳鼻咽喉头颈外科杂志,2010,45(9):723-728.

30 Long JL.Repairing the vibratory vocal fold[J].The Laryngoscope,2018,128(1):153-159.

31 Agha RA,Fowler AJ,Herlin C,et al.Use of autologous fat grafting for breast reconstruction:a systematic review with meta-analysis of oncological outcomes[J].Journal of Plastic,Reconstructive & Aesthetic Surgery,2015,68(2):143-161.

32 Rowan BG,Lacayo EA,Sheng M,et al.Human adipose tissue-derived stromal/stem cells promote migration and early metastasis of head and neck cancer xenografts[J].Aesthetic Surgery Journal,2015,36(1):93-104.

33 Han B,Liu Y,Zhang X,et al.Three-dimensional printing as an aid to airway evaluation after tracheotomy in a patient with laryngeal carcinoma[J].BMC Anesthesiology,2015,16(1):6.

34 Johnson CM,Howell JT,Mettenburg DJ,et al.Mechanical modeling of the human cricoid cartilage using computer-aided design[J].Annals of Otology,Rhinology & Laryngology,2016,125(1):69-76.

35 Goldstein TA,Smith BD,Zeltsman D,et al.Introducing a 3-dimensionally printed,tissue-engineered graft for airway reconstruction[J].Otolaryngology-Head and Neck Surgery,2015,153(6):1001-1006.

36 Romero RGT,Colton MB,Thomson SL.3D-Printed Synthetic Vocal Fold Models[J].Journal of Voice,2021,35(5):685-694.

本文信息

PDF(146K)

本文关键词相关文章