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Molecular mechanism of Aspergillus fumigatus biofilm disruption by fungal  and bacterial glycoside hydrolases - ScienceDirect
Molecular mechanism of Aspergillus fumigatus biofilm disruption by fungal and bacterial glycoside hydrolases - ScienceDirect

Polymers | Free Full-Text | Strengthening Cellulose Nanopaper via Deep  Eutectic Solvent and Ultrasound-Induced Surface Disordering of Nanofibers
Polymers | Free Full-Text | Strengthening Cellulose Nanopaper via Deep Eutectic Solvent and Ultrasound-Induced Surface Disordering of Nanofibers

Aqueous Modification of Chitosan with Itaconic Acid to Produce Strong  Oxygen Barrier Film | Biomacromolecules
Aqueous Modification of Chitosan with Itaconic Acid to Produce Strong Oxygen Barrier Film | Biomacromolecules

PelA and PelB proteins form a modification and secretion complex essential  for Pel polysaccharide-dependent biofilm formation in Pseudomonas  aeruginosa - ScienceDirect
PelA and PelB proteins form a modification and secretion complex essential for Pel polysaccharide-dependent biofilm formation in Pseudomonas aeruginosa - ScienceDirect

Molecular mechanism of Aspergillus fumigatus biofilm disruption by fungal  and bacterial glycoside hydrolases - ScienceDirect
Molecular mechanism of Aspergillus fumigatus biofilm disruption by fungal and bacterial glycoside hydrolases - ScienceDirect

Materials | Free Full-Text | Recent Advances in the Fabrication and  Environmental Science Applications of Cellulose Nanofibril-Based Functional  Materials
Materials | Free Full-Text | Recent Advances in the Fabrication and Environmental Science Applications of Cellulose Nanofibril-Based Functional Materials

Ultrafast Colloidal Quantum Dot Infrared Photodiode | ACS Photonics
Ultrafast Colloidal Quantum Dot Infrared Photodiode | ACS Photonics

A Conserved Regulatory Circuit Controls Large Adhesins in Vibrio cholerae |  mBio
A Conserved Regulatory Circuit Controls Large Adhesins in Vibrio cholerae | mBio

The Protein BpsB Is a Poly-β-1,6-N-acetyl-d-glucosamine Deacetylase  Required for Biofilm Formation in Bordetella bronchisepti
The Protein BpsB Is a Poly-β-1,6-N-acetyl-d-glucosamine Deacetylase Required for Biofilm Formation in Bordetella bronchisepti

High-Density Three-Dimensional Network of Covalently Linked Nitric Oxide  Donors to Achieve Antibacterial and Antibiofilm Surfaces | ACS Applied  Materials & Interfaces
High-Density Three-Dimensional Network of Covalently Linked Nitric Oxide Donors to Achieve Antibacterial and Antibiofilm Surfaces | ACS Applied Materials & Interfaces

Antibiotics | Free Full-Text | Synthesis, Characterization, and Evaluation  of Antimicrobial Efficacy of Reduced Graphene–ZnO–Copper  Nanocomplex
Antibiotics | Free Full-Text | Synthesis, Characterization, and Evaluation of Antimicrobial Efficacy of Reduced Graphene–ZnO–Copper Nanocomplex

Biosensors | Free Full-Text | Microfluidic Gut-on-a-Chip: Fundamentals and  Challenges
Biosensors | Free Full-Text | Microfluidic Gut-on-a-Chip: Fundamentals and Challenges

Structural Basis for the De-N-acetylation of  Poly-β-1,6-N-acetyl-d-glucosamine in Gram-positive Bacteria*
Structural Basis for the De-N-acetylation of Poly-β-1,6-N-acetyl-d-glucosamine in Gram-positive Bacteria*

Nanocellulose in thin films, coatings, and plies for packaging  applications: A review :: BioResources
Nanocellulose in thin films, coatings, and plies for packaging applications: A review :: BioResources

Characterization of the Pseudomonas aeruginosa Glycoside Hydrolase PslG  Reveals That Its Levels Are Critical for Psl Polysaccharide Biosynthesis  and Biofilm Formation* - Journal of Biological Chemistry
Characterization of the Pseudomonas aeruginosa Glycoside Hydrolase PslG Reveals That Its Levels Are Critical for Psl Polysaccharide Biosynthesis and Biofilm Formation* - Journal of Biological Chemistry

Molecular mechanism of Aspergillus fumigatus biofilm disruption by fungal  and bacterial glycoside hydrolases - ScienceDirect
Molecular mechanism of Aspergillus fumigatus biofilm disruption by fungal and bacterial glycoside hydrolases - ScienceDirect

Mechanism of Galactosaminogalactan Biosynthesis and Modification in  Aspergillus fumigatus Biofilm Formation
Mechanism of Galactosaminogalactan Biosynthesis and Modification in Aspergillus fumigatus Biofilm Formation

The Protein BpsB Is a Poly-β-1,6-N-acetyl-d-glucosamine Deacetylase  Required for Biofilm Formation in Bordetella bronchiseptica - ScienceDirect
The Protein BpsB Is a Poly-β-1,6-N-acetyl-d-glucosamine Deacetylase Required for Biofilm Formation in Bordetella bronchiseptica - ScienceDirect

The Bacterial Cell Wall: From Lipid II Flipping to Polymerization |  Chemical Reviews
The Bacterial Cell Wall: From Lipid II Flipping to Polymerization | Chemical Reviews

The PGT domain acts as a processive glycosyltransferase. ( A ) Products...  | Download Scientific Diagram
The PGT domain acts as a processive glycosyltransferase. ( A ) Products... | Download Scientific Diagram

High-Density Three-Dimensional Network of Covalently Linked Nitric Oxide  Donors to Achieve Antibacterial and Antibiofilm Surfaces | ACS Applied  Materials & Interfaces
High-Density Three-Dimensional Network of Covalently Linked Nitric Oxide Donors to Achieve Antibacterial and Antibiofilm Surfaces | ACS Applied Materials & Interfaces

Molecular mechanism of Aspergillus fumigatus biofilm disruption by fungal  and bacterial glycoside hydrolases - ScienceDirect
Molecular mechanism of Aspergillus fumigatus biofilm disruption by fungal and bacterial glycoside hydrolases - ScienceDirect

Forming Cross-Linked Peptidoglycan from Synthetic Gram-Negative Lipid II |  Journal of the American Chemical Society
Forming Cross-Linked Peptidoglycan from Synthetic Gram-Negative Lipid II | Journal of the American Chemical Society

On-Chip Construction of Liver Lobules with Self-Assembled Perfusable  Hepatic Sinusoid Networks | ACS Applied Materials & Interfaces
On-Chip Construction of Liver Lobules with Self-Assembled Perfusable Hepatic Sinusoid Networks | ACS Applied Materials & Interfaces

Molecular mechanism of Aspergillus fumigatus biofilm disruption by fungal  and bacterial glycoside hydrolases - ScienceDirect
Molecular mechanism of Aspergillus fumigatus biofilm disruption by fungal and bacterial glycoside hydrolases - ScienceDirect