[ Pharmaceutical Sciences Asia - ONLINE ]
E-ISSN 2586-8470
[ Journal Abbreviation: Pharm.Sci.Asia ]
Mahidol University Journal of Pharmaceutical Sciences
  FORMER NAME   "Mahidol University Journal of Pharmaceutical Sciences" Published Since 1974

 
Abstracts

DOI: 10.29090/psa.2026.03.26.11964Pharm Sci Asia 2026; 53(3), 265-274
 

Preparation of resveratrol nanocrystals by drug/polymer/surfactant ternary hot extrusion

Thanyaporn Channamom, Shogo Mizuno, Kenjirou Higashi *, Keisuke Ueda, Kunikazu Moribe*

- Graduate School of Pharmaceutical Sciences, Chiba University, 1-8-1, Inohana, Chuo-ku, Chiba 260-8675, Japan


Drug nanocrystal formulations are an effective strategy for dissolution improvement and oral absorption of poorly water-soluble drugs. In our previous study, we developed a ternary hot extrusion method and demonstrated that drug nanocrystal suspensions can be successfully prepared. In this study, resveratrol (RES) was used as a model poorly water-soluble drug to evaluate the feasibility of this method. A ternary system consisting of RES, polyvinylpyrrolidone K-25 (PVP), and sodium dodecyl sulfate (SDS) was investigated. Physical mixtures (RES/PVP/SDS=1:3:1 in the weight ratio) were processed using a twin-screw melt mixer to obtain hot extrudates (HE), which were subsequently dispersed in water. Powder X-ray diffraction (PXRD) analysis confirmed that RES remained crystalline in all HE samples. SDS decomposition was observed under high screw speeds (≥250 rpm) and elevated temperatures (130 °C). Cryogenic transmission electron microscopy revealed aggregates of rod-shaped RES nanocrystals (~50 nm) in the HE suspension. PXRD of ultracentrifuged precipitates of HE suspension confirmed that RES retained crystallinity within the nanoparticles. Nanoparticle formation efficiency depended strongly on processing conditions. At 120 °C, higher screw speeds reduced nanoparticle formation due to SDS degradation. At 200?rpm, increasing temperature improved the nanoparticle formation efficiency, reaching a maximum at 125 °C, followed by a decline at 130 °C due to SDS degradation. These results suggest that the optimal conditions for preparing RES nanosuspensions via hot extrusion involve employing relatively high screw rotation speeds and processing temperatures within a range preventing SDS decomposition. This study demonstrates the potential broad applicability of this technique for various poorly water-soluble drugs.


Keyword:

Drug nanocrystal; Hot extrusion; Mechanical force; Heat




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Vol.53
No.3
July-September 2026

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Vol.53
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April-June 2026

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January-March 2026

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