[[abstract]]This study presents an efficient and sensitive method for detecting rare cells without cell culture, in which cells are analyzed quantitatively using quantum dots (QDs) as a fluorescent probe. By the conjugation of QDs with cells, the biotin-streptavidin reaction functions as a bridge to connect QDs and cells. The cells can be quantified based on the correlation of the QD fluorescence intensity with the cell population. Non-specific adsorption and cross-reaction of QD625-streptavidin on T cell membrane are neglected by reacting with biotin anti-human CD3 and mixing with red blood cell, respectively. Additionally, the photo-activation period and pH can be controlled to enhance the fluorescence of cell populations, which increases...
Amid the COVID-19 pandemic, cancer continues to be the most devastating disease worldwide. Liquid bi...
The emerging nanomaterial, quantum dots or QDs, offers numerous potential applications in the biolog...
Since its emergence, semiconductor nanoparticles known as quantum dots (QDs) have drawn considerable...
[[abstract]]This study presents an efficient and sensitive method for detecting rare cells without c...
[[abstract]]This work presents a rapid and sensitive method for detecting cancer cells at low concen...
Abstract Semiconductor quantum dots (QDs) offer several advantages over organic dyes in fluores-cenc...
In the last several decades, technology has continued to decrease in size. Subsequently, the field o...
The parallel and highly sensitive detection of biomolecules is of paramount importance to understand...
Luminescent quantum dots have attracted great interest in recent years among biological researchers ...
The parallel and highly sensitive detection of biomolecules is of paramount importance to understand...
Single cell analysis methods are increasingly being utilized to investigate how individual cells pro...
We present a simple and efficient method for marking living human red blood cells using CdS (Cadmium...
Sensitive and selective detection of point mutation is essential to molecular biology research and e...
We have applied quantum dot (Qdot) antibody conjugates as a biomolecular probe for cellular proteins...
Fluorescent semiconductor quantum dots (QDs) are newfound nanocrystal probes which have been used in...
Amid the COVID-19 pandemic, cancer continues to be the most devastating disease worldwide. Liquid bi...
The emerging nanomaterial, quantum dots or QDs, offers numerous potential applications in the biolog...
Since its emergence, semiconductor nanoparticles known as quantum dots (QDs) have drawn considerable...
[[abstract]]This study presents an efficient and sensitive method for detecting rare cells without c...
[[abstract]]This work presents a rapid and sensitive method for detecting cancer cells at low concen...
Abstract Semiconductor quantum dots (QDs) offer several advantages over organic dyes in fluores-cenc...
In the last several decades, technology has continued to decrease in size. Subsequently, the field o...
The parallel and highly sensitive detection of biomolecules is of paramount importance to understand...
Luminescent quantum dots have attracted great interest in recent years among biological researchers ...
The parallel and highly sensitive detection of biomolecules is of paramount importance to understand...
Single cell analysis methods are increasingly being utilized to investigate how individual cells pro...
We present a simple and efficient method for marking living human red blood cells using CdS (Cadmium...
Sensitive and selective detection of point mutation is essential to molecular biology research and e...
We have applied quantum dot (Qdot) antibody conjugates as a biomolecular probe for cellular proteins...
Fluorescent semiconductor quantum dots (QDs) are newfound nanocrystal probes which have been used in...
Amid the COVID-19 pandemic, cancer continues to be the most devastating disease worldwide. Liquid bi...
The emerging nanomaterial, quantum dots or QDs, offers numerous potential applications in the biolog...
Since its emergence, semiconductor nanoparticles known as quantum dots (QDs) have drawn considerable...