OPTIMIZATION AND VALIDATION OF FOXP3, BRAFV600E AND MMR IMMUNOHISTOCHEMISTRY STAINING PROTOCOLS

R. I. Tsamiya, S. N. Mohd Nafi, Nur Asyilla Che Jalil, A. A. Mat Zin
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Abstract

To ensure consistent and repeatable results, t Here, we described could enhance the IHC signals of the targeted antibodies. Mismatch Repair (MMR) proteins such as MutL homolog 1 (MLH1), Mut S homolog 2 (MSH2), Mut S homolog 6 (MSH6), and postmeiotic segregation 2 (PMS2), including B-rapidly accelerated fibrosarcoma with V600E mutation (BRAFV600E) protein and forkhead box P3 (FOXP3) protein, are important for colorectal cancer diagnosis. The IHC staining was performed using different archival tissue controls and commercial antibodies. MLH1 and PMS2 showed higher staining intensity after an overnight incubation at a higher concentration of primary antibody (1:50) compared to BRAFV600E (1:100). The enhanced MSH2 signal was likewise generated at a one-hour incubation period with an equivalent antibody concentration. However, even with a shorter incubation duration of one hour, MSH6 and FOXP3 generated good IHC signals when incubated with primary antibody at a lower antibody concentration of 1:100 and 1:300, respectively. The addition of a primary antibody linker improved the IHC signals for all targeted proteins. In conclusion, when using archival tissues, modifying the aforementioned IHC staining variables produces optimal staining for the MMR, BRAFV600E, and FOXP3 proteins.
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Foxp3、Brafv600e 和 mmr 免疫组化染色方案的优化与验证
为了确保结果的一致性和可重复性,我们介绍了增强靶向抗体 IHC 信号的方法。错配修复(MMR)蛋白,如MutL同源物1(MLH1)、Mut S同源物2(MSH2)、Mut S同源物6(MSH6)和减数分裂后分离2(PMS2),包括B-快速加速纤维肉瘤V600E突变(BRAFV600E)蛋白和叉头盒P3(FOXP3)蛋白,是诊断结直肠癌的重要依据。采用不同的档案组织对照和商业抗体进行了 IHC 染色。与 BRAFV600E(1:100)相比,MLH1 和 PMS2 在更高浓度的一抗(1:50)下孵育过夜后显示出更高的染色强度。同样,在同等抗体浓度下孵育一小时后,MSH2 信号也会增强。然而,即使孵育时间缩短至一小时,MSH6 和 FOXP3 在分别以 1:100 和 1:300 的较低抗体浓度与一抗孵育时也能产生良好的 IHC 信号。添加一抗连接剂后,所有目标蛋白的 IHC 信号都有所改善。总之,在使用存档组织时,修改上述 IHC 染色变量可产生 MMR、BRAFV600E 和 FOXP3 蛋白的最佳染色效果。
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