The use of peptides in paper-based analytics is a highly appealing field, yet it suffers from severe limitations. This is mostly due to the loss of effective target recognition properties of this relatively small bioprobes upon nonspecific adsorption onto cellulose substrates. Here, we address this issue by introducing a simple polymer-based strategy to obtain clickable cellulosic surfaces, that we exploited for the chemoselective bioconjugation of peptide bioprobes. Our method largely outperformed standard adsorption-based immobilization strategy in a challenging, real-case immunoassay, namely the diagnostic discrimination of Zika+ individuals from healthy controls. Of note, the clickable polymeric coating not only allows efficient peptide...
We report a versatile approach for the design of substrate-independent low-fouling surfaces via muss...
Microfluidic paper-based analytical devices (μPADs) fabricated by wax-printing are suitable platform...
Cellulose paper has strong potential as an analytical platform owing to its unique characteristics. ...
The use of peptides in paper-based analytics is a highly appealing field, yet it suffers from severe...
The generation of robust analytical data using microarray platforms strictly relies on optimal ligan...
The generation of robust analytical data using microarray platforms strictly relies on optimal liga...
The need for sensitive, robust, portable, and inexpensive biosensing platforms is of significant int...
A novel method to modify cellulosic surfaces to enhance protein binding was developed. This would be...
Cellulose-based materials are widely used in analytical chemistry as platforms for chromatographic a...
In this Article, we present a new strategy for preparing an antihemoglobin biointerface on cellulose...
As a potential platform for point-of-care clinical analyses and environment monitoring, paper biosen...
Bioactive papers are of growing interest regarding point-of-care testing devices that do not require...
Protein-repellent reactive surfaces that promote localized specific binding are highly desirable for...
AbstractAs a potential platform for point-of-care clinical analyses and environment monitoring, pape...
Control over biointerfacial interactions on material surfaces is of significant interest in many bio...
We report a versatile approach for the design of substrate-independent low-fouling surfaces via muss...
Microfluidic paper-based analytical devices (μPADs) fabricated by wax-printing are suitable platform...
Cellulose paper has strong potential as an analytical platform owing to its unique characteristics. ...
The use of peptides in paper-based analytics is a highly appealing field, yet it suffers from severe...
The generation of robust analytical data using microarray platforms strictly relies on optimal ligan...
The generation of robust analytical data using microarray platforms strictly relies on optimal liga...
The need for sensitive, robust, portable, and inexpensive biosensing platforms is of significant int...
A novel method to modify cellulosic surfaces to enhance protein binding was developed. This would be...
Cellulose-based materials are widely used in analytical chemistry as platforms for chromatographic a...
In this Article, we present a new strategy for preparing an antihemoglobin biointerface on cellulose...
As a potential platform for point-of-care clinical analyses and environment monitoring, paper biosen...
Bioactive papers are of growing interest regarding point-of-care testing devices that do not require...
Protein-repellent reactive surfaces that promote localized specific binding are highly desirable for...
AbstractAs a potential platform for point-of-care clinical analyses and environment monitoring, pape...
Control over biointerfacial interactions on material surfaces is of significant interest in many bio...
We report a versatile approach for the design of substrate-independent low-fouling surfaces via muss...
Microfluidic paper-based analytical devices (μPADs) fabricated by wax-printing are suitable platform...
Cellulose paper has strong potential as an analytical platform owing to its unique characteristics. ...