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Yataprasen (YTPS) remedy ethanolic spray, one of the National Thai Traditional Medicine Formulary, is extensively employed in Thai traditional healthcare to manage musculoskeletal pain and inflammation. Despite its widespread use, the quality and stability of the YTPS formulation, critical to its efficacy, safety, and patient adherence, have not been comprehensively studied. This research developed and optimized a film-forming spray (FFS) formulation of YTPS ethanolic extract and conducted a 6-month stability evaluation. The FFS shares similarities with gel formulations, particularly in its ability to form a cohesive, semi-solid film upon application, enhancing localized drug delivery and prolonged contact time. Key physicochemical properties, including density (0.8450-0.9086 g/cm), pH (4.72-4.95), spray angle (55.58-60.10°), evaporation time (1.04-1.27 min), and theoretical film thickness (7.72-13.97 µm), were analyzed across varying storage conditions. Active components β-amyrin and stigmasterol demonstrated retention rates of 96.78% and 68.22%, respectively, under refrigerated conditions, with degradation rates accelerating at higher temperatures. Significant variations in density, spray angle, film thickness, and stigmasterol concentration were observed. Additionally, the RP-HPLC method was validated for the accurate and precise quantification of the bioactive compounds such as β-amyrin and stigmasterol, demonstrating excellent linearity within a 10-100 µg/mL range for both compounds with excellent linearity R > 0.999. The results confirmed that YTPS-FFS exhibits good stability and that the validated HPLC method is reliable for routine quality control. These findings supported the potential of YTPS-FFS formulation as a standardized and effective dosage form for managing musculoskeletal conditions, advancing its role in modernized traditional medicine.
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http://dx.doi.org/10.3390/gels11010064 | DOI Listing |
J Biomater Sci Polym Ed
September 2025
Department. of Pharmaceutics, Delhi Pharma Sciences and Research University (DPSRU)Govt of NCT of Delhi, New Delhi, India.
Chronic wounds infected with multidrug-resistant bacteria pose a significant therapeutic challenge, requiring biocompatible and effective interventions. This study presents a novel lignin-based nanoparticle spray for the localized delivery of curcumin, a natural anti-inflammatory and antimicrobial compound. Lignin, a sustainable polyphenolic biopolymer with inherent antioxidant and antimicrobial activities, was used both as a carrier and functional agent.
View Article and Find Full Text PDFJ Adv Pharm Technol Res
August 2025
Faculty of Public Health Universitas Ahmad Dahlan, Yogyakarta, Indonesia.
Diabetic wounds are chronic complications in patients with diabetes mellitus characterized by an elongated proliferation period, leading to a longer wound closure time. The lack of topical remedies for diabetic wounds necessitates the development of formulations that effectively facilitate closure. Kratom () leaves, containing polyphenolic compounds, have the potential to be developed into a film spray suitable for diabetic wound closure.
View Article and Find Full Text PDFInt J Pharm
August 2025
Drug Delivery and Disposition, KU Leuven, Department of Pharmaceutical and Pharmacological Sciences, Campus Gasthuisberg ON2, Herestraat 49 b921, 3000 Leuven, Belgium. Electronic address:
Coatings made up of Inulin (Inu) and Eudragit RS (ERS) have been used in the past in colon specific drug delivery systems. In the present study, we investigated the correlation between manufacturing conditions (spraying process and solid content of the film-forming system) and the permeability and the microstructure of Inu-ERS films. The solid content of the polymer dispersion, atomization air pressure, feed rate and bed temperature were investigated by a full factorial design.
View Article and Find Full Text PDFPolymers (Basel)
August 2025
ICAR-Central Avian Research Institute, Izatnagar, Bareilly 243122, Uttar Pradesh, India.
This study explores the development of a topical film-forming spray infused with phytobiotic herbs to extend egg shelf life and maintain its quality. Unlike traditional surface treatments, film-forming sprays provide uniform drug distribution, better bioavailability, effective CO retention by sealing pores, and antibacterial effects. The spray includes a polymer to encapsulate phytoconstituents and form the film.
View Article and Find Full Text PDFFront Chem
June 2025
School of Materials Science and Engineering, Chang'an University, Xi'an, China.
Road construction-related dust pollution significantly endangers both environmental sustainability and public health, in contrast to traditional dust management techniques like water spraying, which are resource-demanding. The development of eco-friendly dust suppressants with tailored mineral-polymer interactions remains a critical challenge in sustainable material chemistry. This research created a novel composite dust suppressant using sodium alginate (SA), carboxymethyl cellulose (CMC-Na), hydroxypropyl trimethylammonium chloride chitosan (HTCC), gelatin (GEL), and glycerol (GLY).
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