全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...
Bioprocess  2021 

巢式PCR-RFLP检测rs9263726位点的实验研究
Study on the Detection of rs9263726 Locus by Nested PCR-RFLP

DOI: 10.12677/BP.2021.113006, PP. 46-53

Keywords: 巢式PCR-RFLP,rs9263726位点,别嘌呤醇,个体化用药
Nested PCR-RFLP
, rs9263726 Locus, Allopurinol, Individualized Medication

Full-Text   Cite this paper   Add to My Lib

Abstract:

目的:rs9263726位点(G>A)之A等位基因是预测别嘌呤醇致严重不良反应风险的遗传标记,本研究旨在建立一种直接使用口腔上皮细胞进行PCR结合FokI酶切检测该位点基因型的方法。方法:自行设计扩增产物包含FokI内对照识别序列的引物,以样本的口腔上皮细胞粗处理物为模板,通过巢式PCR扩增跨越rs9263726位点的靶片段,进而根据PCR产物的FokI酶切图谱判断样本基因型。结果:所检样本均能扩增出预期大小的PCR产物,3种基因型的酶切图谱特征明显,且经测序验证结果一致。结论:初步建立了一种基于巢式PCR-RFLP检测rs9263726位点的改良方法,具有简便、快速、准确、低成本等特点。
Objective: The A allele of rs9263726 locus (G>A) is a genetic marker for predicting the risk of serious adverse reactions caused by allopurinol. The purpose of this study is to establish a method to detect this locus using a combination of direct PCR from oral epithelial cells with
FokI restriction digestion. Methods: Using innovational self-designed primers, a target fragment spanning the rs9263726 locus and upstream containing the FokI internal control restriction site was amplified by nested PCR from crudely-treated oral epithelial cells, and the genotype of the samples was determined by FokI digestion restriction map of PCR products. Results: The PCR products of expected size could be amplified from all samples, and the digestion patterns of three different genotypes were clearly distinguished, which were consistent with the sequencing results. Conclusion: An improved method based on nested PCR-RFLP to detect rs9263726 locus has been preliminarily established. It is simple, rapid, accurate and at low cost.

References

[1]  孙雪林, 康薇, 田晓鑫, 胡欣, 刘德军. 人类白细胞抗原相关的药物超敏反应[J]. 中国临床保健杂志, 2020, 23(3): 423-428.
[2]  郭俊荣, 刘曼, 王旭红. 124例药源性中毒性表皮坏死松解症不良反应病例分析[J]. 中国药物应用与监测, 2020, 17(5): 329-332.
[3]  王胜男, 何鑫, 佟力军, 戴玉鑫, 孟令娜, 张丹, 等. 别嘌呤醇致严重皮肤不良反应与内蒙古各民族人群HLA-B*58:01等位基因的相关性分析[J]. 中国民族医药杂志, 2020, 26(9): 68-69.
[4]  刘威, 黎颖然, 张文渊, 等. 中国汉族人群HLA-B*58:01等位基因与别嘌醇引起严重皮肤不良反应关联性的Meta分析[J]. 今日药学, 2019, 29(3): 177-181.
[5]  方玲, 董敏, 汪燕燕. HLA-B*58:01基因检测在别嘌醇严重过敏反应评价的应用分析[J/OL]. 中国药物警戒, 2020: 1-11.
http://kns.cnki.net/kcms/detail/11.5219.R.20201223.1618.002.html, 2020-12-23.
[6]  Tohkin, M., Kaniwa, N., Saito, Y., Sugiyama, E., Kurose, K., Nishikawa, J., et al. (2013) A Whole-Genome Association Study of Major Deter-minants for Allopurinol-Related Stevensa Johnson Syndrome and Toxic Epidermal Necrolysis in Japanese Patients. The Pharmacogenomics Journal, 13, 60-69.
https://doi.org/10.1038/tpj.2011.41
[7]  马骁, 张志欣, 蔡剑平, 潘芹芹, 樊甦, 王晓艳, 等. 中国高尿酸血症患者HLA-B*58:01基因的人群分布[J]. 国际检验医学杂志, 2016, 37(24): 3395-3399.
[8]  康星. 严重药疹反应相关分子标志物HLA-B*58:01和HLA-B*15:02检测方法的建立及应用[D]: [硕士学位论文]. 西安: 西北大学, 2015.
[9]  Saksit, N., Nakkam, N., Konyoung, P., Khunarkornsiri, U., Tassanee-yakul, W., Chumworathayi, P., et al. (2017) Comparison between the HLA-B*58:01 Allele and Single-Nucleotide Poly-morphisms in Chromosome 6 for Prediction of Allopurinol-Induced Severe Cutaneous Adverse Reactions. Journal of Immunology Research, 2017, Article ID: 2738784.
https://doi.org/10.1155/2017/2738784
[10]  Chen, Z., Zhang, S., Zhang, J., Zhang, Y., Xue, L. and Miao, L. (2015) rs9263726 Is a Specific Genetic Marker for Allopurinol-Induced Se-vere Cutaneous Adverse Reactions in Chinese Patients. Personalized Medicine, 12, 585-592.
https://www.futuremedicine.com/doi/10.2217/pme.15.38
[11]  王玉明, 李冬梅, 赵莹, 詹淑芬, 韩林. 巢式PCR-RFLP法检测Cystatin C基因多态性的实验研究[J]. 昆明医学院学报, 2008, 29(4): 33-36.
[12]  Maekawa, K., Nishikawa, J., Kaniwa, N., et al. (2012) Development of a Rapid and Inexpensive Assay for Detecting a Surrogate Ge-netic Polymorphism of HLA-B*58:01: A Partially Predictive but Useful Biomarker for Allopurinol-Related Ste-vens-Johnson Syndrome/toxic Epidermal Necrolysis in Japanese. Drug Metabolism and Pharmacokinetics, 27, 447-450.
https://doi.org/10.2133/dmpk.DMPK-11-NT-120
[13]  曾大勇, 王长连, 黄品芳, 刘亦伟, 陈丹丹. 别嘌醇引发严重皮肤不良反应标志基因HLA-B*58:01的检测方法研究[J]. 中国现代应用药学, 2015, 32(6): 700-704.
[14]  何震宇, 顾取良, 游娟. 改良PCR-RFLP法检测MTHFR基因C677T位点多态性[J]. 广东药科大学学报, 2019, 35(5): 669-673.
[15]  Sugisaki, H. and Kanazawa, S. (1981) New Restriction Endonucleasea from Flavobacterium okeanokoites (FokI) and Micrococcus lnteus (MluI). Gene, 16, 73-78.
https://doi.org/10.1016/0378-1119(81)90062-7
[16]  王悦君. 限制性内切酶FokI作用机制研究及动力学分析[D]: [硕士学位论文]. 上海: 上海交通大学, 2007.

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133