ROS Response


ROS (Reactive Oxygen Species) response copolymers have shown great potential in the field of drug delivery. These copolymers can undergo changes in their structure, shape, or properties in response to the presence of ROS, which makes them attractive for designing controlled drug release systems. By incorporating ROS-responsive moieties into the polymer chains, such as thiols or disulfide bonds, the copolymers can be designed to undergo cleavage or degradation in the presence of ROS. The release of the drug payload can be triggered specifically in those ROS-rich environments, allowing for site-specific drug delivery and minimizing off-target effects. Their ability to respond to ROS levels provides an opportunity for targeted and controlled release of drugs, enabling more effective treatments with reduced side effects.

PLA-Se-Se-PEG-NHS

Catalog: PHRC203

MW: N/A

PLA-Se-Se-PEG-SH

Catalog: PHRC205

MW: N/A

PLA-TK-PEG-Biotin

Catalog: PHRC157

MW: N/A

PLA-TK-PEG-FITC

Catalog: PHRC158

MW: N/A

PLA-TK-PEG-MAL

Catalog: PHRC160

MW: N/A

PLA-TK-PEG-NH2

Catalog: PHRC161

MW: N/A

PLA-TK-PEG-NHS

Catalog: PHRC159

MW: N/A

PLA-TK-PEG-OH

Catalog: PHRC156

MW: N/A

PLA-TK-PEG-SH

Catalog: PHRC162

MW: N/A

PLA-TK-PEI-biotin

Catalog: PHRC163

MW: N/A

PLA-TK-PEI-COOH

Catalog: PHRC386

MW: N/A

PLA-TK-PEI-FA

Catalog: PHRC164

MW: N/A

PLA-TK-PEI-MAL

Catalog: PHRC393

MW: N/A

PLA-TK-PEI-N3

Catalog: PHRC397

MW: N/A

PLA-TK-PEI-NH2

Catalog: PHRC387

MW: N/A

PLA-TK-PEI-NHS

Catalog: PHRC390

MW: N/A

PLA-TK-PEI-OH

Catalog: PHRC391

MW: N/A

PLA-TK-PEI-SH

Catalog: PHRC395

MW: N/A

PLGA-PPS-PEG-COOH

Catalog: PHRC215

MW: N/A

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