Application of nanotechnology is making huge progress in the biomedical and environmental fields. The design and production of nanoreactors based on the combination of catalytic properties of enzymes and the unique characteristics of nano-sized materials is, certainly, an opportunity to solve different challenges in biomedical and environmental fields. Most of the research efforts to combine enzymes and nanostructured materials have been made using ceramic, metallic, or carbon-based materials. Nevertheless, biomaterials, or materials from biological origin, have two main advantages for biomedical and environmental applications when compared with non-biological nanomaterials; they are biocompatible and biodegradable materials. In this work, ...
Biosensors have been under development for over 30 years while research in this field has become ver...
Enzyme-responsive materials (ERMs) are a new class of smart materials that undergo macroscopic trans...
Natural enzymes, exquisite biocatalysts mediating every biological process in living organisms, are ...
Immobilized enzyme-based catalytic constructs could greatly improve various industrial processes due...
AbstractEnzymes have been widely studied for their excellent efficiency, selectivity and environment...
Enzyme stability is of intense interest in bio-materials science as biocatalysts, and as sensing pla...
Therapeutic enzymes are one of the most promising applications of this century in the field of pharm...
Application of nanomaterials as novel supporting materials for enzyme immobilisation has generated i...
The nanobiocatalyst (NBC) is an emerging innovation that synergistically integrates advanced nanotec...
Abstract The initiation of the "nanotechnology era" within the past decade has been prominently mark...
A variety of organic nanomaterials and organic polymers are used for enzyme immobilization to increa...
Therapeutic enzymes are one of the most promising applications of this century in the field of pharm...
Over the past few decades, researchers have established artificial enzymes as highly stable and low-...
During recent years, the possibility to create custom biocompatible nanoshapes using DNA as a buildi...
The long term goal of our current studies is to develop sufficient understanding of enzyme-solid int...
Biosensors have been under development for over 30 years while research in this field has become ver...
Enzyme-responsive materials (ERMs) are a new class of smart materials that undergo macroscopic trans...
Natural enzymes, exquisite biocatalysts mediating every biological process in living organisms, are ...
Immobilized enzyme-based catalytic constructs could greatly improve various industrial processes due...
AbstractEnzymes have been widely studied for their excellent efficiency, selectivity and environment...
Enzyme stability is of intense interest in bio-materials science as biocatalysts, and as sensing pla...
Therapeutic enzymes are one of the most promising applications of this century in the field of pharm...
Application of nanomaterials as novel supporting materials for enzyme immobilisation has generated i...
The nanobiocatalyst (NBC) is an emerging innovation that synergistically integrates advanced nanotec...
Abstract The initiation of the "nanotechnology era" within the past decade has been prominently mark...
A variety of organic nanomaterials and organic polymers are used for enzyme immobilization to increa...
Therapeutic enzymes are one of the most promising applications of this century in the field of pharm...
Over the past few decades, researchers have established artificial enzymes as highly stable and low-...
During recent years, the possibility to create custom biocompatible nanoshapes using DNA as a buildi...
The long term goal of our current studies is to develop sufficient understanding of enzyme-solid int...
Biosensors have been under development for over 30 years while research in this field has become ver...
Enzyme-responsive materials (ERMs) are a new class of smart materials that undergo macroscopic trans...
Natural enzymes, exquisite biocatalysts mediating every biological process in living organisms, are ...