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In the realm of biomedicine, ether cellulose's biocompatibility and ability to form stable gels at body temperature have opened new avenues for drug delivery systems and tissue engineering. It can be engineered to slowly release medications over time, providing a more consistent dosage and improving patient compliance. Furthermore, its use as a scaffolding material in tissue regeneration promotes cell growth and supports the healing process without causing adverse reactions.

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cellulose polymer

In the field of sustained-release formulations, HPMC forms a gel matrix around the drug particles, protecting them from rapid dissolution and ensuring a gradual release over time. This reduces the frequency of dosing and improves patient compliance. Additionally, HPMC can be used in combination with other polymers or surfactants to tailor the release profile according to the desired therapeutic effect Additionally, HPMC can be used in combination with other polymers or surfactants to tailor the release profile according to the desired therapeutic effect Additionally, HPMC can be used in combination with other polymers or surfactants to tailor the release profile according to the desired therapeutic effect Additionally, HPMC can be used in combination with other polymers or surfactants to tailor the release profile according to the desired therapeutic effectchemic hpmc.

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cellulose polymer