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Aberrant hypomethylation was evident only in the invasive carcinoma samples, indicating that unlike promoter hypermethylation, hypomethylation is a late event during lung adenocarcinoma development (Selamat et al., 2011).
No other impurities were found in the samples, indicating that the products are pure stibnite Sb2S3.
However, asymmetry in the G peak was observed in all samples indicating that the nano-carbon is graphitic in structure.
The values are almost the same for all the samples indicating that the fabrication conditions are consistent.
No difference was observed for any of the control samples indicating that SGSs do not interfere with the assay.
Such clusters are also found in as-quenched samples, indicating that clustering takes place already during quenching.
An important increase of crystallinity has been observed in the final oxidized samples, indicating that the extent of degradation is rather significant.
The EDS analysis (Fig. 3c) revealed that Sb, O, and S elements existed in the samples, indicating that the S-doped Sb2O3 was successfully prepared.
Furthermore, the peaks of the SD are wider than the other as-synthesized samples, indicating that the crystallite size of SD is smaller (Li et al. 2014).
DNA binding was higher in IP samples treated with anti-HA antibody than in no-antibody samples, indicating that OsWRKY11 directly binds the CHIT 2 promoter in vivo.
A broad peak centered at 23° of 2θ was observed for all samples, indicating that the mesostructures of MS and CuMnOx@MS are amorphous.
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