Aims: We determined adalimumab utilisation and associated drug costs in patients with ulcerative colitis (UC), focusing on patients requiring dose escalation.
Methods: The retrospective cohort study analysed the de-identified prescription data of the Arvato Health Analytics (Munich, Germany) database (2010-2015) in adult UC patients undergoing adalimumab therapy.
Results: A total of 154 patients were newly treated with adalimumab (average 39.6 years, 53% females), with a mean dose of 2.93 mg/day. Within 12 months, 69 patients (45%) received a dose increase of > 50% (doubled dose in 48 patients; 32%), with the escalation reported at 169.3 ± 99.3 days. A subsequent dose de-escalation to the standard dose occurred in 50 (32%) of patients that initially had a dose increase of > 50% (after 94.7 ± 49.6 days). Direct drug costs were 28,846 € in the overall study population, 24,934 € in patients on standard dose, 36,094 € in patients with dose increase, and 32,742 € in patients with increase and subsequent decrease.
Conclusion: Dose escalation occurred frequently, and in one third of patients the dose was at least doubled. Dose escalations were associated with substantial increases in direct drug costs. Dose escalation of adalimumab can severely affect both the health care system and the drug budget of the physician. It needs to be considered that other biologic medications may constitute a more cost-effective alternative.
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http://dx.doi.org/10.1007/s10198-017-0953-z | DOI Listing |
Environ Sci Technol
January 2025
Key Laboratory of Application of Ecology and Environmental Protection in Plateau Wetland of Sichuan, Xichang University, Xichang 415000 Sichuan Province, China.
This study delves into the adverse effects of AVM, emphasizing oxidative stress induction in the Chinese mitten crab, , and the role of the MAPK-CncC signaling pathway in mediating the antioxidative response. Our findings reveal a dose-dependent impairment in growth performance, alongside occurrence of oxidative stress. The activity of CAT and superoxide dismutase increased significantly in all treatments (0.
View Article and Find Full Text PDFNeurology
February 2025
Department of Neurology and Center of Clinical Neuroscience, First Medical Faculty, General University Hospital and Charles University, Prague, Czech Republic.
Background And Objectives: Patients with multiple sclerosis (MS) may demonstrate better disease control when treatment is initiated on high-efficacy disease-modifying therapies (DMTs) from onset. This subgroup analysis assessed the long-term efficacy and safety profile of the high-efficacy DMT ocrelizumab (OCR) as first-line therapy for early-stage relapsing MS (RMS).
Methods: Post hoc exploratory analyses of efficacy and safety were performed in a subgroup of treatment-naive patients with RMS who received ≥1 dose of OCR in the multicenter OPERA I/II (NCT01247324/NCT01412333) studies.
JCO Glob Oncol
January 2025
Uganda Cancer Institute, Department of Radiotherapy, Kampala, Uganda.
The evolution of radiation therapy in Uganda has been a journey marked by significant milestones and persistent challenges. Since the inception of radiotherapy services in 1988-1989, there has been a concerted effort to enhance cancer treatment services. The early years were characterized by foundational developments, such as the installation of the first teletherapy units, low-dose-rate brachytherapy units, and conventional simulators, and the recognition of radiation oncologists and medical physicist professionals laid the groundwork for radiotherapy treatment modalities.
View Article and Find Full Text PDFJCO Glob Oncol
January 2025
Division of Haematology/Oncology, The Hospital for Sick Children, Toronto, Canada.
Purpose: Asparaginase (ASN) is a critical component of pediatric ALL protocols. Until recently, ASN was available in three formulations: native Escherichia coli, PEGylated E. coli (PEG), and Erwinase, with native E.
View Article and Find Full Text PDFJ Clin Oncol
January 2025
Center for Cell Engineering, Sloan Kettering Institute, New York, NY.
Purpose: We designed a CD19-targeted chimeric antigen receptor (CAR) comprising a calibrated signaling module, termed 1XX, that differs from that of conventional CD28/CD3ζ and 4-1BB/CD3ζ CARs. Preclinical data demonstrated that 1XX CARs generated potent effector function without undermining T-cell persistence. We hypothesized that 1XX CAR T cells may be effective at low doses and elicit minimal toxicities.
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