非线性偏振与 RNA 高光谱成像在肝细胞癌早期诊断中的应用潜力

IF 1.2 Q4 GENETICS & HEREDITY
Yasser H. El-Sharkawy, Sherif Elbasuney, Sara M. Radwan, Mostafa A. Askar, Samar H. Rizk, Gharieb S. El-Sayyad
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引用次数: 0

摘要

大多数癌症的原癌基因和抑癌基因都发生了许多基因变化。癌症的早期诊断仍然是一项挑战。最近,非线性偏振揭示了作为早期癌症诊断工具的潜力。激光诱导的非线性偏振可以提供一种新的指纹特征。本研究采用非线性偏振对健康志愿者的 DNA 和 RNA 样品进行表征。用 656-nm LED 光源照射总 DNA 和 RNA,使用高光谱相机捕捉并记录共振频率(散射和再发射信号)。信号频率和相移的变化是区分 DNA(对照组)和 RNA(对照组)的有效方法。DNA(对照组)与总 RNA(对照组)在第 2、3、4 和 5 次谐波上显示出不同的共振频率特征。DNA 在 0.88 千兆赫处显示出主要的相移,而 RNA 则在 0.106 千兆赫处显示出主要的相移。将肝细胞癌(HCC)患者的 RNA 样品的共振谱特征与 RNA(对照组)的共振谱特征进行了比较。RNA(HCC)在 0.014、0.021、0.032 和 0.072 GHz 显示出独特的频率信号。这些特征有助于早期诊断 HCC。RNA(对照组)主要分布在 0.014 和 0.072 MHz,而 RNA(HCC)主要分布在 0.021 和 0.032。据我们所知,这是利用简单非线性极化产生总 DNA 和 RNA 光谱指纹特征的首次研究。此外,我们还通过非线性光谱特征识别出了 HCC 引起的 RNA 突变。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The potentials of nonlinear polarization with hyperspectral imaging of RNA for hepatocellular carcinoma early diagnosis
Most cancers acquire numerous genetic changes in proto-oncogenes as well as tumor-suppressor genes. Cancer's early diagnosis remains a challenge. Recently, nonlinear polarization has revealed the potential as a promising tool for early cancer diagnosis. Laser-induced nonlinear polarization can offer a novel fingerprint signature. In this study, nonlinear polarization was adopted for the characterization of both DNA and RNA samples from healthy volunteers. Total DNA and RNA were illuminated with a 656-nm LED source, and the resonance frequencies (scattered and re-emitted signals) were captured and recorded using a hyperspectral camera. Changes in signal frequency as well as phase shift offered a potent means to differentiate DNA (control) from RNA (control). DNA (control) demonstrated characteristic resonance frequencies that differ from total RNA (control) at the 2nd, 3rd, 4th, and 5th harmonics. While DNA demonstrated a phase shift dominating at 0.88 GHz, RNA dominates at 0.106 GHz. The resonance spectral signature of RNA samples from people with hepatocellular carcinoma (HCC) was compared to that of RNA (control). RNA (HCC) demonstrated distinctive frequency signals at 0.014, 0.021, 0.032, and 0.072 GHz. These characteristics feature could facilitate early HCC diagnosis. While RNA (control) dominates at 0.014 and 0.072 MHz, RNA (HCC) dominates at 0.021 and 0.032. As far as we are aware, this is the initial investigation into the use of simple nonlinear polarization to generate spectral fingerprinting signatures of total DNA and RNA. Furthermore, RNA mutations due to HCC were identified via characteristic nonlinear spectral signature.
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来源期刊
Egyptian Journal of Medical Human Genetics
Egyptian Journal of Medical Human Genetics Medicine-Genetics (clinical)
CiteScore
2.20
自引率
7.70%
发文量
150
审稿时长
18 weeks
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