Stimulation–Inhibition of Protein Release from Alginate Hydrogels Using Electrochemically Generated Local pH Changes

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Stimulation–Inhibition of Protein Release from Alginate Hydrogels Using  Electrochemically Generated Local pH Changes
Schematic of closed‐loop drug release triggered by symptom‐associated
Stimulation–Inhibition of Protein Release from Alginate Hydrogels Using  Electrochemically Generated Local pH Changes
Modulation of Epidermal Growth Factor Release by Biopolymer-Coated Liposomes - Journal of Pharmaceutical Sciences
Stimulation–Inhibition of Protein Release from Alginate Hydrogels Using  Electrochemically Generated Local pH Changes
Recent advances in various stimuli-responsive hydrogels: from synthetic designs to emerging healthcare applications - Materials Chemistry Frontiers (RSC Publishing) DOI:10.1039/D2QM00469K
Stimulation–Inhibition of Protein Release from Alginate Hydrogels Using  Electrochemically Generated Local pH Changes
Electrochemically controlled drug-mimicking protein release from iron- alginate thin-films associated with an electrode.
Stimulation–Inhibition of Protein Release from Alginate Hydrogels Using  Electrochemically Generated Local pH Changes
Stimulation–Inhibition of Protein Release from Alginate Hydrogels Using Electrochemically Generated Local pH Changes
Stimulation–Inhibition of Protein Release from Alginate Hydrogels Using  Electrochemically Generated Local pH Changes
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Stimulation–Inhibition of Protein Release from Alginate Hydrogels Using  Electrochemically Generated Local pH Changes
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Stimulation–Inhibition of Protein Release from Alginate Hydrogels Using  Electrochemically Generated Local pH Changes
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Stimulation–Inhibition of Protein Release from Alginate Hydrogels Using  Electrochemically Generated Local pH Changes
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Stimulation–Inhibition of Protein Release from Alginate Hydrogels Using  Electrochemically Generated Local pH Changes
IJMS, Free Full-Text
Stimulation–Inhibition of Protein Release from Alginate Hydrogels Using  Electrochemically Generated Local pH Changes
Hydrogels with Reversible Crosslinks for Improved Localised Stem Cell Retention: A Review - Princen - 2023 - ChemBioChem - Wiley Online Library
Stimulation–Inhibition of Protein Release from Alginate Hydrogels Using  Electrochemically Generated Local pH Changes
Alginate-Based Smart Materials and Their Application: Recent Advances and Perspectives
Stimulation–Inhibition of Protein Release from Alginate Hydrogels Using  Electrochemically Generated Local pH Changes
Recent advances in various stimuli-responsive hydrogels: from synthetic designs to emerging healthcare applications - Materials Chemistry Frontiers (RSC Publishing) DOI:10.1039/D2QM00469K
Stimulation–Inhibition of Protein Release from Alginate Hydrogels Using  Electrochemically Generated Local pH Changes
Programming hydrogel adhesion with engineered polymer network topology
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