TY - JOUR
T1 - Stability Challenges of Amorphous Solid Dispersions of Drugs
T2 - A Critical Review on Mechanistic Aspects
AU - Pisay, Muralidhar
AU - Padya, Singh
AU - Mutalik, Srinivas
AU - Koteshwara, Kunnatur B.
N1 - Publisher Copyright:
© 2024 by Begell House, Inc. www.begellhouse.com.
PY - 2024
Y1 - 2024
N2 - The most common drawback of the existing and novel drug molecules is their low bioavailability because of their low solubility. One of the most important approaches to enhance the bioavailability in the enteral route for poorly hydrophilic molecules is amorphous solid dispersion (ASD). The solubility of compounds in amorphous form is comparatively high because of the availability of free energy produced during formulation. This free energy results in the change of crystalline nature of the prepared ASD to the stable crystalline form leading to the reduced solubility of the product. Due to the intrinsic chemical and physical uncertainty and the restricted knowledge about the interactions of active molecules with the carriers making, this ASD is a challenging task. This review focused on strategies to stabilize ASD by considering the various theories explaining the free-energy concept, physical interactions, and thermal properties. This review also highlighted molecular modeling and machine learning computational advancement to stabilize ASD.
AB - The most common drawback of the existing and novel drug molecules is their low bioavailability because of their low solubility. One of the most important approaches to enhance the bioavailability in the enteral route for poorly hydrophilic molecules is amorphous solid dispersion (ASD). The solubility of compounds in amorphous form is comparatively high because of the availability of free energy produced during formulation. This free energy results in the change of crystalline nature of the prepared ASD to the stable crystalline form leading to the reduced solubility of the product. Due to the intrinsic chemical and physical uncertainty and the restricted knowledge about the interactions of active molecules with the carriers making, this ASD is a challenging task. This review focused on strategies to stabilize ASD by considering the various theories explaining the free-energy concept, physical interactions, and thermal properties. This review also highlighted molecular modeling and machine learning computational advancement to stabilize ASD.
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U2 - 10.1615/CritRevTherDrugCarrierSyst.2023039877
DO - 10.1615/CritRevTherDrugCarrierSyst.2023039877
M3 - Article
C2 - 38037820
AN - SCOPUS:85178507163
SN - 0743-4863
VL - 41
SP - 45
EP - 94
JO - Critical Reviews in Therapeutic Drug Carrier Systems
JF - Critical Reviews in Therapeutic Drug Carrier Systems
IS - 3
ER -