The accurate and timely diagnosis of disease is a prerequisite for efficient therapeutic intervention and epidemiological surveillance. Diagnostics based on the detection of nucleic acids are among the most sensitive and specific, yet most such assays require costly equipment and trained personnel. Recent developments in diagnostic technologies, in particular those leveraging clustered regularly interspaced short palindromic repeats (CRISPR), aim to enable accurate testing at home, at the point of care and in the field. In this Review, we provide a rundown of the rapidly expanding toolbox for CRISPR-based diagnostics, in particular the various assays, preamplification strategies and readouts, and highlight their main applications in the sen...
Mitigating the spread of global infectious diseases requires rapid and accurate diagnostic tools. Co...
Mitigating the spread of global infectious diseases requires rapid and accurate diagnostic tools. Co...
Three recent Science articles (Chen et al., 2018; Gootenberg et al., 2018; Myhrvold et&nbs...
The accurate and timely diagnosis of disease is a prerequisite for efficient therapeutic interventio...
The accurate and timely diagnosis of disease is a prerequisite for efficient therapeutic interventio...
With the trend of moving molecular tests from clinical diagnostic laboratories to on-site testing, t...
With the trend of moving molecular tests from clinical diagnostic laboratories to on-site testing, t...
In the past few years, the CRISPR (clustered regularly interspaced short palindromic repeats) applic...
The early management, diagnosis, and treatment of emerging and re-emerging infections and the rising...
CRISPR/Cas technology originated from the immune mechanism of archaea and bacteria and was awarded t...
Infectious diseases are a global health problem affecting billions of people. Developing rapid and s...
Background: Early detection of pathogen-associated diseases are critical for effective treatment. Ra...
Clustered regularly interspaced short palindromic repeats (CRISPR) technology, an easy, rapid, cost-...
Molecular diagnostic (MDx) methods directly detect target nucleic acid sequences and are therefore a...
Mitigating the spread of global infectious diseases requires rapid and accurate diagnostic tools. Co...
Mitigating the spread of global infectious diseases requires rapid and accurate diagnostic tools. Co...
Mitigating the spread of global infectious diseases requires rapid and accurate diagnostic tools. Co...
Three recent Science articles (Chen et al., 2018; Gootenberg et al., 2018; Myhrvold et&nbs...
The accurate and timely diagnosis of disease is a prerequisite for efficient therapeutic interventio...
The accurate and timely diagnosis of disease is a prerequisite for efficient therapeutic interventio...
With the trend of moving molecular tests from clinical diagnostic laboratories to on-site testing, t...
With the trend of moving molecular tests from clinical diagnostic laboratories to on-site testing, t...
In the past few years, the CRISPR (clustered regularly interspaced short palindromic repeats) applic...
The early management, diagnosis, and treatment of emerging and re-emerging infections and the rising...
CRISPR/Cas technology originated from the immune mechanism of archaea and bacteria and was awarded t...
Infectious diseases are a global health problem affecting billions of people. Developing rapid and s...
Background: Early detection of pathogen-associated diseases are critical for effective treatment. Ra...
Clustered regularly interspaced short palindromic repeats (CRISPR) technology, an easy, rapid, cost-...
Molecular diagnostic (MDx) methods directly detect target nucleic acid sequences and are therefore a...
Mitigating the spread of global infectious diseases requires rapid and accurate diagnostic tools. Co...
Mitigating the spread of global infectious diseases requires rapid and accurate diagnostic tools. Co...
Mitigating the spread of global infectious diseases requires rapid and accurate diagnostic tools. Co...
Three recent Science articles (Chen et al., 2018; Gootenberg et al., 2018; Myhrvold et&nbs...