UCSF/UC Berkeley Joint Graduate Group in Bioengineering, University of California, Berkeley, CA 94720, USA.
Lab Chip. 2011 Mar 21;11(6):1041-8. doi: 10.1039/c0lc00533a. Epub 2011 Feb 4.
A fully integrated microdevice and process for forensic short tandem repeat (STR) analysis has been developed that includes sequence-specific DNA template purification, polymerase chain reaction (PCR), post-PCR cleanup and inline injection, and capillary electrophoresis (CE). Fragmented genomic DNA is hybridized with biotin-labeled capture oligos and pumped through a fluidized bed of magnetically immobilized streptavidin-coated beads in microchannels where the target DNA is bound to the beads. The bead-DNA conjugates are then transferred into a 250 nL PCR reactor for autosomal STR amplification using one biotin and one fluorescence-labeled primer. The resulting biotin-labeled PCR products are electrophoretically injected through a streptavidin-modified capture gel where they are captured to form a concentrated and purified injection plug. The thermally released sample plug is injected into a 14 cm long CE column for fragment separation and detection. The DNA template capture efficiency provided by the on-chip sequence-specific template purification is determined to be 5.4% using K562 standard DNA. This system can produce full 9-plex STR profiles from 2.5 ng input standard DNA and obtain STR profiles from oral swabs in about 3 hours. This fully integrated microsystem with sample-in-answer-out capability is a significant advance in the development of rapid, sensitive, and reliable micro-total analysis systems for on-site human identification.
已经开发出一种完全集成的微器件和法医短串联重复序列(STR)分析工艺,其中包括序列特异性 DNA 模板纯化、聚合酶链反应(PCR)、PCR 后清洗和在线注入以及毛细管电泳(CE)。碎片化的基因组 DNA 与生物素标记的捕获寡核苷酸杂交,并通过微通道中的流体化床泵送,该微通道中的磁性固定链霉亲和素包被的珠用于将目标 DNA 结合到珠上。然后将珠-DNA 缀合物转移到 250nL PCR 反应器中,使用一个生物素和一个荧光标记的引物进行常染色体 STR 扩增。所得的生物素标记的 PCR 产物通过链霉亲和素修饰的捕获凝胶电泳注入,其中它们被捕获形成浓缩和纯化的注入塞。热释放的样品塞被注入 14cm 长的 CE 柱中进行片段分离和检测。使用 K562 标准 DNA 确定芯片上的序列特异性模板纯化提供的 DNA 模板捕获效率为 5.4%。该系统可以从 2.5ng 输入标准 DNA 产生完整的 9 重 STR 图谱,并在大约 3 小时内从口腔拭子中获得 STR 图谱。这种具有样本到答案输出能力的完全集成微系统是开发快速、灵敏和可靠的现场人类识别微全分析系统的重要进展。