Peptide-Therapy
How Hydrogen Bonding Can Contribute to Polymer-...
Hydrogen bonding can contribute to polymer-mucin adhesion when complementary hydrogen-bond donor and acceptor groups on a hydrated polymer and mucin come into sufficiently close contact. Hydroxyl, carboxyl, amide, ether, and...
How Hydrogen Bonding Can Contribute to Polymer-...
Hydrogen bonding can contribute to polymer-mucin adhesion when complementary hydrogen-bond donor and acceptor groups on a hydrated polymer and mucin come into sufficiently close contact. Hydroxyl, carboxyl, amide, ether, and...
How Electrostatic Interactions Can Influence Mu...
Electrostatic interactions can influence mucoadhesion when charged groups on a polymer attract oppositely charged regions of mucin at the hydrated mucosal interface. Cationic polymers such as chitosan can interact with...
How Electrostatic Interactions Can Influence Mu...
Electrostatic interactions can influence mucoadhesion when charged groups on a polymer attract oppositely charged regions of mucin at the hydrated mucosal interface. Cationic polymers such as chitosan can interact with...
Why Mucoadhesion Is Not a Single Measurable Mat...
Why mucoadhesion is not a single measurable material property is that adhesion emerges from the interaction of a formulation, mucus, tissue, water, time, and mechanical conditions. A film does not...
Why Mucoadhesion Is Not a Single Measurable Mat...
Why mucoadhesion is not a single measurable material property is that adhesion emerges from the interaction of a formulation, mucus, tissue, water, time, and mechanical conditions. A film does not...
How Molecular Attraction Contributes to Mucoadh...
How molecular attraction contributes to mucoadhesive bonding is through the accumulation of many interactions between a hydrated polymer and mucin after sufficiently close contact has formed. Hydrogen bonds, electrostatic attraction,...
How Molecular Attraction Contributes to Mucoadh...
How molecular attraction contributes to mucoadhesive bonding is through the accumulation of many interactions between a hydrated polymer and mucin after sufficiently close contact has formed. Hydrogen bonds, electrostatic attraction,...
How Interpenetration Contributes to Polymer-Muc...
How interpenetration contributes to polymer-mucus adhesion is by allowing mobile chains from a hydrated mucoadhesive polymer and mucin network to diffuse into one another and form an entangled interfacial region....
How Interpenetration Contributes to Polymer-Muc...
How interpenetration contributes to polymer-mucus adhesion is by allowing mobile chains from a hydrated mucoadhesive polymer and mucin network to diffuse into one another and form an entangled interfacial region....
How Wetting Contributes to Initial Mucoadhesive...
How wetting contributes to initial mucoadhesive contact is by allowing a polymeric material to spread, hydrate, and form intimate contact with the mucus-covered oral surface. A dry or poorly wettable...
How Wetting Contributes to Initial Mucoadhesive...
How wetting contributes to initial mucoadhesive contact is by allowing a polymeric material to spread, hydrate, and form intimate contact with the mucus-covered oral surface. A dry or poorly wettable...