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Paliperidone palmitate (PP) is a long-acting injectable (LAI) antipsychotic, developed for monthly intramuscular (i.m.) administration into deltoid/gluteal muscle, approved for the treatment of schizophrenia in many countries. To assess the options for i.m. injection sites, dose-proportionality of PP was investigated after injection of a single dose (25-150 mg eq.) of PP in either gluteal (n = 106) or deltoid (n = 95) muscle of schizophrenic patients. Overall, mean (geometric) area under plasma concentration-time curve from time zero to infinity (AUC∞ ) of paliperidone increased proportionally with increasing PP doses, regardless of injection site. Mean maximum plasma concentration (Cmax ) was slightly less than dose-proportional for both injection sites at PP doses >50 mg eq. Mean Cmax was higher after injection in the deltoid compared with the gluteal muscle, except for the 100 mg eq. dose, while AUC∞ for both injection sites was comparable at all doses. Median time to reach Cmax (tmax ) ranged from 13-14 days after deltoid and 13-17 days after gluteal injection across all doses. Single PP injections in deltoid and gluteal muscles in the dose range of 25-150 mg eq. were generally tolerable both locally and systemically.
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http://dx.doi.org/10.1002/jcph.295 | DOI Listing |
Natl Sci Rev
September 2025
Institute of Functional Nano & Soft Materials (FUNSOM), Jiangsu Key Laboratory for Carbon-Based Functional Materials & Devices, Soochow University, Suzhou 215123, China.
Chimeric antigen receptor T (CAR-T)-cell therapy is a promising resolution for solid tumors, but its corresponding clinical translation has been hindered by unsatisfactory therapeutic potency and severe cytokine release syndrome. Herein, tetracycline (Tet)-On inducible human epidermal growth factor receptor 1 (HER1)-targeted CAR-T (Tet-HER1-CAR-T) cells were engineered to enable spatially selective activation at tumor sites by doxycycline (Doxy), which is delivered by pH-responsive stealth liposomal calcium carbonate nanoparticles (Doxy@CaCO-PEG). Compared with the intravenous administration of conventional HER1-CAR-T cells and Tet-HER1-CAR-T cells activated by free Doxy, concurrent intravenous administration of Tet-HER1-CAR-T cells and Doxy@CaCO-PEG leads to the localized tumor activation of Tet-HER1-CAR-T cells and reduced systemic secretion of inflammatory cytokines.
View Article and Find Full Text PDFInfect Drug Resist
September 2025
Department of Emergency Medicine, Affiliated Lu'an Hospital of Anhui Medical University, Lu'an, Anhui, 237005, People's Republic of China.
Hypervirulent is a recently identified pathotype characterized by high virulence and rapid dissemination. It is associated with invasive infections at multiple anatomical sites, including liver abscesses, necrotizing fasciitis, meningitis, myositis, and endophthalmitis. It has emerged as a significant threat to public health due to its aggressive clinical course and high mortality rate.
View Article and Find Full Text PDFJ Vasc Access
September 2025
Prince of Wales Hospital, Sydney, NSW, Australia.
Objective: Minimal Invasive Dialysis Access (MIDA) for renal dialysis encompasses percutaneous arteriovenous fistula (pAVF) creation and the modified percutaneous Seldinger peritoneal dialysis catheter insertions (pPD). This review examines the impact of MIDA on technical success, maturation rates, patency, clinical benefits, complications, and cost.
Methods: A review was made of the literature on MIDA including pAVF creation and pPD insertion regarding technical success rates, maturation rates, patency, clinical benefits, complications, and cost.
Introduction: Distraction methods such as virtual reality and cold vibration devices (Buzzy) are recommended during vascular access. Few studies focused on distraction during intramuscular injection.
Methods: This study evaluated the effect of distraction methods on procedure-related pain, fear, and anxiety during the intramuscular injection in children aged 5 to 12 years in the pediatric emergency department.
Adv Healthc Mater
September 2025
Krembil Research Institute, Toronto Western Hospital, University Health Network, Toronto, ON, M5T 0S8, Canada.
Accurate brain signal recording and precise electrode placement are critical for the success of neuromodulation therapies such as deep brain stimulation (DBS). Addressing these challenges requires deep brain electrodes that provide high-quality, stable recordings while remaining compatible with high-resolution medical imaging modalities like magnetic resonance imaging (MRI). Moreover, such electrodes shall be cost-effective, easy to manufacture, and patient-compatible.
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