Researchers Have Designed New Technology to Detect Chikungunya Virus

Researchers Have Designed New Technology to Detect Chikungunya Virus

  • Research Stash
  • News
  • 2.6K

Indian scientists have developed a biosensor technique which can potentially help in detecting Chikungunya virus. According to the scientists, the technique can be used to develop a point of care device for rapid identification of the dreaded disease.

Subscribe to our YouTube Channel

This technique is based on molybdenum disulfide nanosheets. The researchers synthesized the nanosheets by chemical route and characterized them by using scanning electron microscopy, transmission electron microscopy, UV-visible spectroscopy, Raman spectroscopy and X-ray Diffraction.

Molybdenum disulfide nanosheets were then subjected to physical adsorption onto the screen printed gold electrodes and then employed for the detection of chikungunya virus DNA using electrochemical voltammetric techniques.

This study has been jointly carried out by researchers of Amity University, Noida, Jamia Millia Islamia University, Delhi and Maharishi Dayanand University, Rohtak. The research team has published a report on the study in the recent issue of research journal Scientific Reports.

Conventionally, Chikungunya is detected through RT-PCR (Real-time polymerase chain reaction) from serum samples or by determination of serum antibodies. These methods are time-consuming and the procedure is cumbersome. Thus, there is a need for a rapid and point-of-care diagnostic tool.

“Advantages like rapid response time and suitability for mass production associated with detection of DNA hybridization have triggered the development of DNA-based electrochemical biosensors. These advantages motivated the present work.

A practical advantage of electrochemical detection could have future implications in translating to cheap assays using single-use screen-printed electrodes, which is an ideal tool due to their low cost, disposability and design flexibility as compared to traditional electrode materials”, the researchers said.

However, some other experts felt that the technique was not a new idea as it was used commonly for developing biosensors. Prof. Ashok Kumar, a scientist at New Delhi based CSIR’s Institute of Genomics and Integrative Biology, who was not involved in the study, told India Science Wire, “In this study, researchers are detecting synthesized small fragments of cDNA and not taking RNA samples from chikungunya which is essential for the diagnosis of disease.

They have just hybridized with complementary strands of DNA. Even validation was carried out using spiked DNA samples in blood serum which is not correct for real samples. The sensitivity of the sensor cannot be applicable to real samples of RNA of the patients.”

The research team consisted of Dr. Chaitali Singhal, Manika Khanuja, Nahid Chaudhary, C.S. Pundir and Jagriti Narang. (India Science Wire)

Umashankar Mishra

For the latest Science, Tech news and conversations, follow Research Stash on TwitterFacebook, and subscribe to our YouTube channel 

Rate

This study has been jointly carried out by researchers of Amity University, Noida, Jamia Millia Islamia University, Delhi and Maharishi Dayanand University, Rohtak. The research team has published a report on the study in the recent issue of research journal Scientific Reports.

Conventionally, Chikungunya is detected through RT-PCR (Real-time polymerase chain reaction) from serum samples or by determination of serum antibodies. These methods are time-consuming and the procedure is cumbersome. Thus, there is a need for a rapid and point-of-care diagnostic tool.

“Advantages like rapid response time and suitability for mass production associated with detection of DNA hybridization have triggered the development of DNA-based electrochemical biosensors. These advantages motivated the present work.

A practical advantage of electrochemical detection could have future implications in translating to cheap assays using single-use screen-printed electrodes, which is an ideal tool due to their low cost, disposability and design flexibility as compared to traditional electrode materials”, the researchers said.

However, some other experts felt that the technique was not a new idea as it was used commonly for developing biosensors. Prof. Ashok Kumar, a scientist at New Delhi based CSIR’s Institute of Genomics and Integrative Biology, who was not involved in the study, told India Science Wire, “In this study, researchers are detecting synthesized small fragments of cDNA and not taking RNA samples from chikungunya which is essential for the diagnosis of disease.

They have just hybridized with complementary strands of DNA. Even validation was carried out using spiked DNA samples in blood serum which is not correct for real samples. The sensitivity of the sensor cannot be applicable to real samples of RNA of the patients.”

The research team consisted of Dr. Chaitali Singhal, Manika Khanuja, Nahid Chaudhary, C.S. Pundir and Jagriti Narang. (India Science Wire)

Umashankar Mishra

For the latest Science, Tech news and conversations, follow Research Stash on TwitterFacebook, and subscribe to our YouTube channel 

" }
Study Gains New Insights into A Cosmic Puzzle

Study Gains New Insights into A Cosmic Puzzle

Scientists studied the 2nd brightest flare observed in X-ray in April-May 2020 and detected very interesting behavior of the X-ray spectrum during its flaring and non-flaring states

  • News
  • 1.2K
Read more
Scientists Find Genomic Regions That Decide Zinc Density in Wheat

Scientists Find Genomic Regions of Zinc Density in Wheat

Scientists have identified regions in the wheat genome responsible for the concentration of zinc in wheat grain. They have also identified candidate genes involved in zinc concentration in wheat

  • News
  • 2.6K
Read more
Wood Substitute from Argo-Industrial Waste

Wood Substitute from Argo-Industrial Waste

The Council of Scientific and Industrial Research-Advanced Materials and Processes Research Institute researched to find a productive way to manage the agro-industrial waste.

  • News
  • 1.4K
Read more

Internet is huge! Help us find great content

Newsletter

Never miss a thing! Sign up for our newsletter to stay updated.

About

Research Stash is a curated collection of tools and News for S.T.E.M researchers

Have any questions or want to partner with us? Reach us at hello@researchstash.com

Navigation

Submit