Hydrocortisone is principally used as replacement therapy in adrenocortical deficiency states. In pediatric practice, posology ranges from 10 to 20 mg/m2 per day, divided in three doses, for the purpose of mimicking the nycthemeral cycle. Hydrocortisone is marketed in France in tablet form that contains 10 mg of the active ingredient. This galenic formulation is not suitable for pediatric use, and often requires a grinding operation or a dose fractionation to facilitate administration. To overcome this difficulty, the objective of this study was to develop and evaluate the physicochemical and microbiological stabilities of hydrocortisone in a sugar-free, alcohol-free, and paraben-free InOrpha suspending agent. The studied samples were formulated into a 2-mg/mL suspension and stored in glass bottles at two temperature conditions, between 2 degrees C to 8 degrees C and at room temperature). Two series of twelve samples were tested for physicochemical stability using high-performance liquid chromatography as well as for a microbiological status for 28 days (daily opening of the bottles from day 0 of compounding) and for 56 days (first opening at day 28 from compounding and daily opening for 28 consecutive days). The high-performance liquid chromatography method developed is linear, accurate, precise, and robust. On the other hand, a forced degradation study has demonstrated the selectivity and specificity of the method validated as stability indicating. In both storage conditions, high-performance liquid chromatography analysis showed that tested samples had concentrations ranging within 90% to 110% of the initial concentration for 28 consecutive days upon daily bottle opening and, for a maximum of 42 days with a first opening at day 28 from the compounding time. Microbiological status remained stable throughout the course of the study. Based on the data collected, the study led to the development of a new galenic formulation of hydrocortisone suitable for pediatric use which can be safely stored under refrigerated conditions or at room temperature for a maximum of 42 consecutive days.
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Zhong Nan Da Xue Xue Bao Yi Xue Ban
August 2024
Xiangya Stomatological Hospital and Xiangya School of Stomatology, Central South University; Hunan Engineering Research Center for Oral Digital Intelligence and Personalized Medicine; Hunan 3D Printing Engineering Research Center of Oral Care; WANG Songling Academician Workstation for Oral-maxilofacial and Regenerative Medicine, Central South University, Changsha 410078.
Objectives: Drug-loaded mucoadhesive silk fibroin (SF) microneedle patch can overcome the limitations of low bioavailability and significant pain associated with traditional treatment methods, such as topical application or injection of triamcinolone for oral submucous fibrosis (OSF). However, these systems release the drug too quickly, failing to meet the clinical requirements. This study aims to construct a mucoadhesive SF microneedle patch pre-assembled with silk fibroin nanospheres (SFN) and explore its ability to sustain the release of triamcinolone in the treatment of OSF.
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January 2025
Traumatic Brain Injury & Metabolomics Department, DRDO, Institute of Nuclear Medicine and Allied Sciences (INMAS), S. K Mazumdar Road, Timarpur, New Delhi 110054, India. Electronic address:
Head trauma from blast exposure is a growing health concern, particularly among active military personnel, and is considered the signature injury of the Gulf War. However, it remains elusive whether fundamental differences exist between blast-related traumatic brain injuries (TBI) and TBI due to other mechanisms. Considering the importance of lipid metabolism associated with neuronal membrane integrity and its compromise during TBI, we sought to find changes in lipidomic profiling during blast or blunt (Stereotaxically Controlled Contusison-SCC)-mediated TBI.
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College of Biological Engineering, Henan University of Technology, Zhengzhou 450001, China. Electronic address:
To elucidate the effect of transglutaminase (TG) on the rheological properties of wheat gluten, this study investigates the underlying mechanisms by analyzing changes in gluten structure. The results demonstrated that the TG-treated gluten samples had higher storage modulus (G') and loss modulus (G″) compared to the control, conversely, creep and recovery strains followed an opposite trend. Notably, the most pronounced effects were observed with adding 2 U/g TG for 20-30 min.
View Article and Find Full Text PDFTalanta
January 2025
State Key Laboratory of Materials for Integrated Circuits, Shanghai Institute of Microsystem and Information Technology, Chinese Academy of Sciences, Shanghai, 200050, China.
Research on metasurface sensors with high sensitivity, strong specificity, good biocompatibility and strong integration is the key to promote the application of terahertz waves in the field of biomedical detection. However, traditional metallic terahertz metasurfaces have shortcomings such as poor biocompatibility and large ohmic loss in the terahertz frequency band, impeding their further application and integration in the field of biosensing detection. Here, we overcome this challenge by proposing a high-performance terahertz metasurface based on gold nanoparticles and single-walled carbon nanotubes composite film.
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Osimertinib (AZD9291) is a widely used tyrosine kinase inhibitor for the treatment of non-small cell lung cancer patients with activating EGFR mutations. However, the correlation between dose and efficacy has been debated for several years. For this reason, there is a need for standardized methods for routine analysis, clinical studies on pharmacokinetics and dose-response relationships, and greater understanding of preanalytical conditions, such as sample storage stability.
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