Comparison of structural, mechanical, and histochemical characteristics of L-PRF and T-PRF membranes using different centrifugation protocols – An ex-vivo observational study

IF 0.4 Q4 DENTISTRY, ORAL SURGERY & MEDICINE
Mohan Kumar Pasupuleti , N. Haripriya , Gautami S. Penmetsa , Swetha Pasupuleti , Sruthima NVS Gottumukkala , Ramesh KSV , B. Vivek
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Abstract

Objectives

Many investigators are looking into the possibility of using platelet-rich. hemoderivatives as a source of the protein structures and cytokines necessary for. periodontal healing of wounds. The objective of the study was to evaluate and. compare the structural, mechanical, and histochemical characteristics of L-PRF and TPRF. membranes prepared by using three different centrifugation protocols.

Methods

Thirty participants around the ages of 20 and 35 who were in good overall. health had their antecubital veins pricked for ten milliliters of the blood. Venous blood. was centrifuged immediately after collection in silica-coated glass tubes and titaniumcoated. tubes utilizing the APRF machine. The mechanical properties of PRF. membranes (n = 30) for L-PRF and T-PRF each protocol) were assessed using a. desktop universal testing machine.

Results

The forces around 700 g (3200 rpm, 15 min) yielded a PRF membrane with. desirable mechano-degradation characteristics for its clinical application. Histochemical examination revealed mixed inflammatory infiltrate with predominantly. platelets followed by lymphocytes, neutrophils& monocytes in T-PRF. Whereas, in. LPRF thin strands of mixed inflammatory infiltrate predominantly neutrophils &. monocytes are seen in the connective tissue stroma.

Conclusion

This study demonstrated that centrifugation speed, force, and time. influenced the structural, and mechanical properties of PRF membranes prepared with. various protocols. This is the first study to reveal the marked impact of glass and. titanium-reinforced centrifugation tubes on the final production of PRF. It was further. found that a significant difference was observed between L-PRF and T-PRF at. 3200 rpm and 2700 rpm protocols.

采用不同离心方案的 L-PRF 和 T-PRF 膜的结构、机械和组织化学特性比较 - 一项体外观察研究
目的许多研究人员正在研究使用富血小板血液衍生物作为牙周伤口愈合所需的蛋白质结构和细胞因子来源的可能性。这项研究的目的是评估和比较 L-PRF 和 TPRF 膜的结构、机械和组织化学特性。方法30 名年龄在 20 岁到 35 岁之间、总体健康状况良好的参与者刺破胫前静脉,抽取 10 毫升血液。静脉血采集后立即装入硅涂层玻璃管和钛涂层玻璃管中,利用 APRF 机器进行离心。使用台式万能试验机评估了 L-PRF 和 T-PRF 两种方案的 PRF 膜(n = 30)的机械性能。组织化学检查显示,在 T-PRF 中,混合炎症浸润以血小板为主,其次是淋巴细胞、中性粒细胞和单核细胞。而在结缔组织基质中则可见以中性粒细胞& 单核细胞为主的混合炎症浸润的细丝。这是首次揭示玻璃和钛增强离心管对 PRF 最终生产的显著影响的研究。研究进一步发现,L-PRF 和 T-PRF 在转速为 3200 rpm 和 2700 rpm 时存在显著差异。3200转/分和2700转/分时,L-PRF和T-PRF之间存在明显差异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
0.80
自引率
0.00%
发文量
129
审稿时长
83 days
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