Maru Viral P, Madkaikar Manisha, Sattar Shumail, Chauhan Rewant, Devi R K Sarada
Department of Pediatric and Preventive Dentistry, Government Dental College and Hospital, Mumbai, India.
ICMR-National institute of immunohematology, Parel, Mumbai, India.
J Clin Pediatr Dent. 2022 Sep;46(5):65-71. doi: 10.22514/jocpd.2022.009. Epub 2022 Sep 1.
Regenerative endodontic procedures (REP) rely on the principles of tissue engineering and take advantage of the regenerative abilities of Stem Cells derived from human exfoliated deciduous teeth (SHEDs). Since REPs advise the minimal instrumentation of root canals, they are more dependent on intracanal medicaments with antimicrobial activity to provide a sterile environment for pulpal regeneration. Hence present trial was conducted to examine the influence of different intracanal medicaments on SHEDs proliferation and survival.
SHEDs were cultured by using the long-term explant culture method and characterized using flow cytometry and exposed to different concentrations of calcium hydroxide, doxycycline, potassium iodide, triamcinolone, and glutaraldehyde. SHEDs were subjected to the 3-(4,5- dimethylthiazol -2 -yl)-2,5-diphenyl-2H- tetrazolium bromide (MTT) assay, apoptosis using the Annexin V-binding assay and Alkaline Phosphatase (ALP) activity.
All medicaments significantly reduced cell viability at different concentrations over different exposure times. Highest number of live cells and ALP activity was observed in SHEDs cultured in calcium hydroxide.
Potassium iodide and glutaraldehyde were the significantly less likely of all the medications examined to adversely affect the viability and survival of SHEDs.
再生牙髓治疗程序(REP)依赖于组织工程原理,并利用源自人乳牙的干细胞(SHEDs)的再生能力。由于REP建议对根管进行最少的器械操作,它们更依赖于具有抗菌活性的根管内药物,以为牙髓再生提供无菌环境。因此,进行了本试验以研究不同根管内药物对SHEDs增殖和存活的影响。
采用长期外植体培养方法培养SHEDs,并使用流式细胞术进行表征,然后将其暴露于不同浓度的氢氧化钙、强力霉素、碘化钾、曲安奈德和戊二醛中。对SHEDs进行3-(4,5-二甲基噻唑-2-基)-2,5-二苯基-2H-四唑溴盐(MTT)测定、使用膜联蛋白V结合测定法检测细胞凋亡以及检测碱性磷酸酶(ALP)活性。
在不同的暴露时间下,所有药物在不同浓度下均显著降低了细胞活力。在氢氧化钙中培养的SHEDs中观察到活细胞数量最多且ALP活性最高。
在所有检测的药物中,碘化钾和戊二醛对SHEDs活力和存活产生不利影响的可能性显著较小。