Stomatology ›› 2025, Vol. 45 ›› Issue (2): 81-88.doi: 10.13591/j.cnki.kqyx.2025.02.001
• Basic and Clinical Research • Next Articles
Received:
2024-07-05
Online:
2025-02-28
Published:
2025-02-26
CLC Number:
CHE Shun, GUO Wei. Antibacterial efficacy of diode laser on Enterococcus faecalis in root canal: An in vitro study[J]. Stomatology, 2025, 45(2): 81-88.
Tab.1
Opening rate of dentin tubule in each group under diode laser irradiation $\bar{x}±s$,%,n=6"
时间 | 持续照射组 | 间断照射组 | 对照组 | ||||
---|---|---|---|---|---|---|---|
1.5 W | 2.0 W | 3.0 W | 1.5 W | 2.0 W | 3.0 W | ||
10 s | 90.41±2.48b | 82.30±1.65c | 48.46±1.63e | 90.66±2.42② | 82.55±1.72③ | 73.45±1.15④ | 99.31±0.24a① |
20 s | 75.51±2.28d | 42.75±1.74f | - | 80.41±1.61③ | 72.79±2.75④ | - | |
30 s | 32.12±2.27g | - | - | 70.24±1.97④ | 37.29±1.74⑤ | - |
Tab.2
Opening diameter of dentin tubule in each group under diode laser irradiation $\bar{x}±s$,μm,n=6"
时间 | 持续照射组 | 间断照射组 | 对照组 | ||||
---|---|---|---|---|---|---|---|
1.5 W | 2.0 W | 3.0 W | 1.5 W | 2.0 W | 3.0 W | ||
10 s | 1.73±0.21b | 1.61±0.17b | 0.98±0.22d | 1.77±0.20② | 1.62±0.22② | 1.19±0.13③ | 2.09±0.28a① |
20 s | 1.41±0.55c | 0.93±0.13d | - | 1.59±0.23② | 1.17±0.41③ | - | |
30 s | 0.69±0.14e | - | - | 1.14±0.21③ | 0.81±0.17④ | - |
[1] | 周学东. 牙体牙髓病学[M]. 5版. 北京: 人民卫生出版社, 2020: 116-197. |
[2] | 张妍, 薛明. 再感染根管内的微生物[J]. 中国实用口腔科杂志, 2019, 5(4): 208-211. |
[3] | 周强强, 韦晓玲, 谢玉, 等. 高功率半导体激光对复杂根管消毒效果的体外研究[J]. 口腔材料器械杂志, 2022, 31(3): 186-191, 215. |
[4] |
Kıvanc BH, Arısu HD, Sağlam BC, et al. Evaluation of antimicrobial and thermal effects of diode laser on root canal dentin[J]. Niger J Clin Pract, 2017, 20(12): 1527-1530.
doi: 10.4103/1119-3077.187333 pmid: 29378981 |
[5] | Zou ZH, Bhandari J, Xiao BY, et al. Effect of using diode laser on Enterococcus faecalis and its lipoteichoic acid (LTA) in chronic apical periodontitis[J]. Lasers Med Sci, 2021, 36(5): 1059-1066. |
[6] | Jhingan P, Sandhu M, Jindal G, et al. An in-vitro evaluation of the effect of 980 nm diode laser irradiation on intra-canal dentin surface and dentinal tubule openings after biomechanical preparation: Scanning electron microscopic study[J]. Indian J Dent, 2015, 6(2): 85-90. |
[7] | 孙志达, 邹进. 半导体激光根管内照射即刻杀菌效应及其影响因素的初步研究[J]. 口腔医学, 2011, 31(12): 721-723. |
[8] | 李亚男, 车晓倩, 王宏伟, 等. 机械预备与半导体激光对粪肠球菌杀菌作用的体外研究[J]. 牙体牙髓牙周病学杂志, 2015, 25(8): 483-486, 471. |
[9] |
Jung H. A generalized concept for cell killing by heat. Effect of chronically induced thermotolerance[J]. Radiat Res, 1991, 127(3): 235-242.
pmid: 1886977 |
[10] | Pelozo LL, Silva-Neto RD, Salvador SL, et al. Adjuvant therapy with a 980-nm diode laser in root canal retreatment: Randomized clinical trial with 1-year follow-up[J]. Lasers Med Sci, 2023, 38(1): 77. |
[11] |
Shehab NF, Al-Sabawi NA, Alkhalidi EF. Influence of an 810-nm diode laser on the temperature changes of the external root surface: An in vitro study[J]. J Int Soc Prev Community Dent, 2020, 10(4): 445-451.
doi: 10.4103/jispcd.JISPCD_216_20 pmid: 33042886 |
[12] | 刘雁, 李丽娅, 杜启涛, 等. 980 nm半导体激光对根管壁牙本质润湿性的影响[J]. 实用口腔医学杂志, 2021, 37(5): 650-653. |
[13] | 王惠芸. 我国人牙的测量和统计[J]. 中华口腔科杂志, 1959, 7(3): 149-155. |
[14] | Schneider SW. A comparison of canal preparations in straight and curved root canals[J]. Oral Surg Oral Med Oral Pathol, 1971, 32(2): 271-275. |
[15] | da Costa Ribeiro A, Nogueira GE, Antoniazzi JH, et al. Effects of diode laser (810 nm) irradiation on root canal walls: Thermographic and morphological studies[J]. J Endod, 2007, 33(3): 252-255. |
[16] |
周敏, 许来俊. 新型消毒方式对根管内粪肠球菌清除作用的研究进展[J]. 口腔疾病防治, 2020, 28(9): 607-612.
doi: 10.12016/j.issn.2096-1456.2020.09.011 |
[17] | 常雨丝, 赖光云, 汪俊. 乳牙根尖周病相关微生物研究进展[J]. 中国实用口腔科杂志, 2019, 5(6): 368-371. |
[18] |
Jurič IB, Anić I. The use of lasers in disinfection and cleanliness of root canals: A review[J]. Acta Stomatol Croat, 2014, 48(1): 6-15.
doi: 10.15644/asc48/1/1 pmid: 27688346 |
[19] | 吴亚楠, 张莉. 光动力疗法在根管消毒中的研究进展[J]. 中国医学创新, 2021, 18(17): 185-188. |
[20] | 李同宇, 盛青青, 孙静华, 等. 抗微生物光动力疗法在根管消毒中的应用和研究现状[J]. 中国激光医学杂志, 2021, 30(5): 270-274. |
[21] | Tilakchand M, Singh NN, Yeli MM, et al. Evaluation of the antibacterial efficacy of EZLASE diode LASER on the infected root canal system: An in vivo study[J]. J Conserv Dent, 2018, 21(3): 306-310. |
[22] | Wenzler JS, Falk W, Frankenberger R, et al. Impact of adjunctive laser irradiation on the bacterial load of dental root canals: A randomized controlled clinical trial[J]. Antibiotics, 2021, 10(12): 1557. |
[23] | 刘欣, 吴楠, 冯景路, 等. 半导体激光在慢性根尖周炎根管消毒中的临床疗效[J]. 现代口腔医学杂志, 2023, 37(6): 381-385. |
[24] | Seraj B, Moosavi Garmaroodi Z, Chiniforush N, et al. Thermal changes in root surface of primary teeth during root canal treatment with diode lasers: An in vitro study[J]. J Lasers Med Sci, 2018, 9(4): 237-242. |
[25] | Gutknecht N, Franzen R, Meister J, et al. Temperature evolution on human teeth root surface after diode laser assisted endodontic treatment[J]. Lasers Med Sci, 2005, 20(2): 99-103. |
[26] | Beer F, Farmakis ET, Kopic J, et al. Temperature development on the external root surface during laser-assisted endodontic treatment applying a microchopped mode of a 980 nm diode laser[J]. Photomed Laser Surg, 2017, 35(4): 206-212. |
[27] | 陈幸, 朱庆萍, 沈中华. 半导体激光根管内照射与牙根表面温度变化的关系[J]. 口腔医学, 2013, 33(9): 615-618. |
[28] | 付力, 孙慧斌. 半导体激光根管消毒对根管壁形态及表面温度的影响[J]. 齐鲁医学杂志, 2017, 32(4): 424-426, 429. |
[29] | Das M, Kumar GA, Ramesh S, et al. An in vitro evaluation of microtensile bond strength of resin-based sealer with dentin treated with diode and Nd: YAG laser[J]. J Contemp Dent Pract, 2013, 14(2): 183-187. |
[30] | Su DD, Hu XX, Wang DS, et al. Semiconductor laser irradiation improves root canal sealing during routine root canal therapy[J]. PLoS One, 2017, 12(9): e0185512. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||