Selected article for: "detection limit and low limit"

Author: Chang Ha Woo; Sungho Jang; Giyoung Shin; Gyoo Yeol Jung; Jeong Wook Lee
Title: Sensitive one-step isothermal detection of pathogen-derived RNAs
  • Document date: 2020_3_9
  • ID: 1uqjmeic_28
    Snippet: In contrast, SENSR satisfies many desirable requirements for onsite diagnostic tests 283 for pathogens, such as short turnaround time (30 min), low limit of detection (0.1 aM), 284 inexpensive instrumentation and reagents, and a simple diagnostic procedure. SENSR 285 integrates all component reaction steps using the specially designed probes that contain all 286 required functional parts: promoter, hybridization sequence to target, and an aptamer.....
    Document: In contrast, SENSR satisfies many desirable requirements for onsite diagnostic tests 283 for pathogens, such as short turnaround time (30 min), low limit of detection (0.1 aM), 284 inexpensive instrumentation and reagents, and a simple diagnostic procedure. SENSR 285 integrates all component reaction steps using the specially designed probes that contain all 286 required functional parts: promoter, hybridization sequence to target, and an aptamer 287 template. Even with the multifaceted features of the SENSR probes, the design process is 288 systematic and straightforward. Therefore, new SENSR assay can be promptly developed for 289 emerging pathogens as exemplified by the successful design of SENSR assay for SARS-290

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