串联多肽脂质 CRISPR-Cas9 复合物对抗阿尔茨海默病中的 APP 和 APOE4 基因异常

Ilham Rahmanto, Maulana Bagus Adi Cahyono, H. Khatimah, Rahmi Nugraningrum, Pionera Seconda Giyanti Putri, Nurul Zulfa Sahiruddin, Nabila Rahmaniah, Pradana Zaky Romadhon
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摘要

阿尔茨海默氏症侵袭着全球 2400 万人口,占现有痴呆症病例的 60-80%。阿尔茨海默氏症会导致海马和内黑质中的β-淀粉样蛋白(Aβ)斑块堆积,从而导致大脑质量下降。最近的研究表明,这种疾病的表现是由于 APP 和 APOE4 基因异常导致异常 Aβ 蛋白过度积累。APP 基因的点突变会产生有毒形式的 Aβ 蛋白,即 Aβ42,而有毒的 APOE4 基因会加速 Aβ42 的沉积和促炎活动,从而加剧大脑的退化过程。基因编辑作为一种潜在的确定性疗法最近受到了研究人员的关注。CRISPR-Cas9通过修改基因的DNA序列,修复APP基因,并用APOE3替代APOE4基因。纳米复合 CRISPR-Cas9 串联肽脂是临床医生靶向脑神经细胞的模型。对阿尔茨海默氏症小鼠模型的体内研究证明,纳米复合肽作为 CRISPR-Cas9 在脑神经细胞中的载体具有潜力。这种工程技术具有高精度、副作用小、价格相对低廉的特点,可实现长期治疗效果,甚至终生治疗,效果令人满意。
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Tandem peptide lipid CRISPR-Cas9 complex combating APP and APOE4 gene abnormality in Alzheimer's disease
Alzheimer's attacks 24 million global population and dominates 60-80% of existing cases of dementia. It causes the accumulation of beta-amyloid (Aβ) plaques in the hippocampus and entorhinal cortex, resulting in decreased mass from the brain. Recent studies have shown that the manifestation of this disease is due to an overaccumulation of abnormal Aβ protein due to abnormalities in the APP and APOE4 genes. Point mutations in the APP gene will create the toxic form of Aβ protein, namely Aβ42, and the toxic APOE4 gene will accelerate the onset of Aβ42 deposition and pro-inflammatory activity that exacerbates the degenerative process of the brain. Gene editing as a potential definitive therapy was recently a concern by researchers. CRISPR-Cas9 repairs the APP gene and substitutes the APOE4 gene with APOE3 by modifying the gene's DNA sequence. Nano complex CRISPR-Cas9 tandem peptide lipid is a model for clinicians to target brain nerve cells. In vivo research on an Alzheimer's mouse model proved the potential of nano-complex-based peptides as carriers of CRISPR-Cas9 in brain nerve cells. This engineering technology offers satisfactory results with high precision, minimal side effects, and a relatively low price for long-term therapeutic effects and even a lifetime.
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