昊为泰生物多年专注于深耕遗传学和基因组学等领域科研特色技术的开发,不断跟进国际先进的科研成果及技术发展,创新研发了许多特色专利技术和领域内前沿的检测服务项目,受到广大专业科研用户的认可和好评。
iMLDR®多重SNP分型技术是基于传统的连接酶反应经过改进后的具有天昊自主知识产权的多重SNP分型技术,相比于传统的连接酶反应技术,iMLDR®多重SNP分型技术提高了准确性和分型的成功率,经过重复实验和双盲样本的初步验证,该技术的数据准确性超过98%,仅次于测序和SNaPshot。
该技术适合大样本(数百个以上)多位点(15-28个)的分型,能够提高SNP分型的通量,大大降低分型成本,整个技术的示意图如下:
技术路线:
样品需求量:基因组DNA满足10-30 ng/μL,总量≥ 500 ng(10个反应)
样本纯度:无色透明,OD260/280 = 1.8~2.0;OD260/230≥ 2.0
样品完整度:琼脂糖电泳检测要求主条带清晰,无明显弥撒及拖尾,无RNA及蛋白污染
样品保存和运输要求:-20°C保存,冰袋运输
图 iMLDR®多重荧光图谱
iMLDR®部分客户文章:
英文标题 | 中文标题 | 杂志 | 年份 |
An enhancer variant at 16q22. 1 predisposes to hepatocellular carcinoma via regulating PRMT7 expression | 一个16q22.1的增强子变异通过调节PRMT7的表达而易患肝细胞癌 | Nature Communications | 2022 |
Polymorphisms of Cytochromes P450 and Glutathione S-Transferases Synergistically Modulate Risk for Parkinson's Disease | 细胞色素P450和谷胱甘肽S-转移酶的多态性协同调节帕金森病的风险 | Frontiers in Aging Neuroscience | 2022 |
The FAM171A2 gene is a key regulator of progranulin expression and modifies the risk of multiple neurodegenerative diseases | FAM171A2基因是颗粒蛋白前体表达的关键调控因子,可改变多种神经退行性疾病的风险 | Science Advances | 2021 |
A Functional Variant Rs492554 Associated With Congenital Heart Defects Modulates SESN2 Expression Through POU2F1 | 与先天性心脏缺陷相关的功能变异Rs492554通过POU2F1调节SESN2表达 | Frontiers in Cell and Developmental Biology | 2021 |
Effects of SNPs in SOD2 and SOD3 interacted with fluoride exposure on the susceptibility of dental fluorosis | SOD2和SOD3 SNP与氟暴露相互作用对氟斑牙易感性的影响 | International Journal of Hygiene and Environmental Health | 2021 |
Dysregulation of the ghrelin/RANKL/OPG pathway in bone mass is related to AIS osteopenia | 骨量中ghrelin/RANKL/OPG通路的失调与AIS骨质减少有关 | Bone | 2020 |
Effects of COMT rs4680 and BDNF rs6265 polymorphisms on brain degree centrality in Han Chinese adults who lost their only child | COMT rs4680和BDNF rs6265多态性对丧失独生子女汉族成人脑度中心性的影响 | Translational Psychiatry | 2020 |
Impact of Platelet Endothelial Aggregation Receptor-1 Genotypes on Platelet Reactivity and Early Cardiovascular Outcomes in Patients Undergoing | 血小板内皮聚集受体-1基因型对患者血小板反应性和早期心血管结局的影响 | Circulation: Cardiovascular Interventions | 2019 |
1.iMLDR技术适合多少个位点的SNP分型?
答:iMLDR能够满足4-25个位点的SNP分型。
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