Pharmaceutical particle technologies: An approach to improve drug solubility, dissolution and bioavailability

Технологии получения фармацевтических частиц: подход к повышению растворимости, растворения и биодоступности лекарственных средств
Iksoo Kim, Prakash Khadka, Jieun Ro, Hyeongmin Kim, Jeong Tae Kim, Hyunil Kim, Jae Min Cho, Gyiae Yun, Jaehwi Lee
2014-06-13

drug dissolutionoral bioavailabilityparticle size reductionpharmaceutical particle technologypoor aqueous solubility
Pharmaceutical particle technology is employed to improve poor aqueous solubility of drug compounds that limits in vivo bioavailability owing to their low dissolution rate in the gastrointestinal fluids following oral administration. The particle technology involves several approaches from the conventional size reduction processes to the newer, novel particle technologies that modify the solubility properties of the drugs and produce solid, powdered form of the drugs that are readily soluble in water and can be easily formulated into various dosage forms. This review highlights the solid particle technologies available for improving solubility, dissolution and bioavailability of drugs with poor aqueous solubility.
1
Pharmaceutical particle technologies address this limitation through approaches ranging from conventional particle-size reduction to newer technologies that modify drug solubility.
2
Poor aqueous solubility reduces oral bioavailability because drug compounds dissolve slowly in gastrointestinal fluids.
3
The review surveys solid particle technologies designed to improve the solubility, dissolution, and bioavailability of poorly water-soluble drugs.
4
These technologies produce solid, powdered drug forms that dissolve more readily in water and can be incorporated into diverse dosage forms.

poorly water-soluble drug compounds in solid powdered form

particle-technology approaches for improving drug solubility, dissolution rate, and oral bioavailability

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2014-06-13
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Authors
Iksoo Kim
Prakash Khadka
Jieun Ro
Hyeongmin Kim
Jeong Tae Kim
Hyunil Kim
Jae Min Cho
Gyiae Yun
Jaehwi Lee
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