Background. - Medication overuse headache (MOH) is a condition where pain relief medications cause chronic headaches due to excessive use. Recent advancements highlight the effectiveness of preventive treatments like anti-CGRP monoclonal antibodies. Current strategies combine medication withdrawal and preventive treatments, with corticosteroids traditionally used to ease withdrawal symptoms. Methods. - This is a prospective three-arm observational cohort study comparing the effectiveness and safety of galcanezumab alone, galcanezumab plus prednisone and prednisone alone for the treatment of MOH. We enrolled 75 patients. Prednisone was administered at an initial dose of 50 mg daily, and then tapered off over 28 days. Duration of followup was 3 months. Results. - All treatments proved effective (P < 0.001). We found a significant reduction of mean monthly days with headache in the galcanezumab plus prednisone group (baseline: 25, IQR: 20-30; after 3 months: 7, IQR: 5-10), in the galcanezumab group (baseline: 25, IQR: 20- 30; after 3 months: 10, IQR: 5-14) and in the Prednisone group (baseline: 25, IQR: 20-28; after 3 months: median: 15 days, IQR: 8-22 days). Patients treated with prednisone reported a higher incidence of side effects (P = 0.002). Conclusion. - Our study indicates that both galcanezumab and prednisone decrease the frequency of headaches in patients with MOH. The combined usage of these treatments showed the highest reduction in mean monthly headache days. However, treatment with prednisone determined a significant rate of adverse events, therefore we suggest its use only in unresponsive patients. In all other patients galcanezumab appears to be a safe and effective option. (c) 2024 The Authors. Published by Elsevier Masson SAS. This is an open access article under
To compare the effectiveness and safety of galcanezumab, fremanezumab, and erenumab for the treatment of chronic and episodic migraine, through real‐world data.
Patient-reported outcomes (PROs) may help patients and clinicians in selecting disease-modifying therapies (DMTs) for multiple sclerosis (MS). To evaluate PRO differences among first-line DMTs for relapsing-remitting (RR) people with MS (pwMS). Multicenter study. RR pwMS on first-line DMTs completed Fatigue Severity Scale (FSS), PROs Indices for MS (PRIMUS), 36-item Short-Form Health Survey (SF-36), treatment satisfaction questionnaire for medication (TSQM), Beck Depression Inventory-II (BDI-II), and Symbol Digit Modalities Test (SDMT). Differences among PROs across DMTs were tested by ANOVA. Multivariable linear regressions were used to investigate associations between PROs and the treatment group. Two-hundred eighty pwMS were enrolled: 56% were on interferons (INF), 22% on dimethylfumarate (DMF), 13% on glatiramer acetate, and 9% on teriflunomide (Teri). Compared with INF, pwMS on Teri were the oldest, with higher disability, worst depression at BDI, worst cognitive performances at SDMT (p = 0.001), fatigue at FSS (p = 0.001), and activity limitation and quality of life respectively at PRIMUS (p = 0.005) and SF-36 Mental Composite Score (p < 0.001); pwMS on DMF reported highest side effects and, together with pwMS on Teri, better treatment satisfaction at TSQM. Compared with INF-treated patients, pwMS on DMF and Teri reported the best treatment satisfaction, although DMF-treated pwMS reported higher side effects and those on Teri the worst QoL and fatigue; however, the older age, higher disability and depression, and worse cognitive performance of pwMS on Teri suggest to be careful in evaluating these results.
Background: Dimethyl-fumarate (DMF) was effective and safe in relapsing-remitting multiple sclerosis (MS) in randomized clinical trials. We aimed to evaluate the efficacy and safety of DMF and factors related to drug response in real-life setting. Methods: We analysed prospectively collected demographic and clinical data for patients treated with DMF in six multiple sclerosis (MS) centers from 2015 to 2017 in Campania region, Italy. We performed univariate and multivariate analyses to assess relationships between baseline parameters and DMF efficacy outcomes, Annualized Relapse Rate (ARR), Expanded Disability Status Scale (EDSS) progression and No Evidence of Disease Activity (NEDA-3) status. Results: we analyzed data of 456 patients (67% female subjects, mean age 40 +/- 12 years, mean disease duration 9 +/- 9 years, mean treatment duration 18 +/- 11 months, median EDSS 2.5, 0-8). Proportion of Naive versus pretreated with other DMTs patients was 149/307 (32.7%), with 122 patients switching to DMF for disease activity (26.7%) and 185 for safety and tolerability issues (40.6%). During treatment with DMF, the annualized relapse rate was reduced by 75% respect to the pre-treatment ARR [incidence-rate-ratio (IRR) = 0.25, p < 0.001, CI 0.18-0.33]. Factors influencing ARR rate while on DMF were relapsing remitting (RR) MS course (IRR = 2.0, p = < 0.001, CI 1.51-2.73) and previous DMTs status: deescalating from second-line therapies was associated to higher risk of relapsing (IRR = 1.8, p < 0.001, CI 1.39-2.31). At multivariable Cox proportional hazard model, only age of onset was related with rate or relapses, with younger age being protective (HR 0.96, p = 0,02). EDSS remained stable in 88% of patients. Disease duration was associated with higher rate of NEDA-3 failure, that was instead maintained in 65% of patients at 24 months. 109 patients (22%) discontinued therapy after a mean of 1.1 +/- + 0.7 years. Reasons for DMF discontinuation over time were lack of efficacy (50%), safety issues (30%), tolerability (7%), poor compliance (7%), and pregnancy (4%). Higher pre-treatment EDSS was associated with DMF discontinuation (p = 0.009). Only 33 patients dropped out due to safety reasons (7%), the most frequent safety issues driving to drop out being lymphopenia, liver/pancreatic enzymes increase, gatrointestinal severe tolerability issues. We recorded 95 cases (24%) of lymphopenia: 60 grade I (13%), 31 grade II (7%) and 4 grade III (1%). Conclusions: We confirm that DMF shows a good efficacy in both naive patients and patients switching from other first-line DMTs, especially in patients with early onset of disease. Higher baseline EDSS was a risk factor for discontinuing DMF therapy, while shorter disease duration was protective for both EDSS progression and NEDA-3 status maintenance.
Insulin-like growth factor binding protein 2 (IGFBP-2) may represent a critical link between body composition and insulin sensitivity. We investigated the relationship between circulating IGFBP-2 levels, body composition, insulin sensitivity, energy intake and physical activity in children with obesity. Children were recruited via the Weight Management Service at the Royal Children's Hospital, Melbourne, as part of the Childhood Overweight BioRepository of Australia (COBRA). Comprehensive anthropometric, biochemical and environmental data were collected and compared to serum IGFBP-2 levels (measured by enzyme-linked immunosorbent assay). Multiple regression modelling was used to assess the influence of circulating IGFBP-2 levels on anthropometric and biochemical measures. One hundred and ninety-four children were included in this study (46% male). Circulating IGFBP-2 negatively correlated with age, anthropometric measures, blood pressure and insulin concentration. Positive associations were observed between insulin sensitivity index-homeostasis model assessment (ISI-HOMA) and serum IGFBP-2. In multiple regression modelling, IGFBP-2 significantly contributes to variance in systolic blood pressure (-19%, P < 0.05), circulating triglycerides (-16%, P < 0.05) and ISI-HOMA (18%, P < 0.05). No associations were observed between dietary energy intake or physical activity and IGFBP-2 levels. Circulating IGFBP-2 levels in children with obesity correlate inversely with body mass and markers of metabolic dysfunction, and positively with insulin sensitivity. These findings suggest that reduced levels of IGFBP-2 may play an important role in the pathogenesis of obesity complications in early life.
The insulin-like growth factor (IGF) system is expressed in most tissues and organs during embryogenesis and throughout adult life. In particular, it is abundantly expressed during development of the nervous system, playing a key role in this process. The IGF system comprises the ligands IGF-1 and -2, their cognate receptors, and six IGF-binding proteins (IGFBPs), which modulate bioavailability and receptor targeting of the IGFs. IGFBP-modulated interaction of the IGF ligands with the IGF-1 receptor activates, via insulin receptor substrates 1 and 2, two major intracellular signaling pathways, namely, the mitogen-activated protein kinase or the phosphoinositol-3 kinase pathway. In vitro studies have demonstrated that the IGF ligands, via the above pathways, promote differentiation and proliferation and sustain survival, preventing apoptosis of neuronal and brain-derived cells. Furthermore, the IGF system appears to be involved in the regulation of many brain metabolic functions, including uptake and utilization of glucose, the major fuel of the nervous system. Studies of transgenic mice overexpressing components of the IGF system or mice with disruptions of the same genes have clearly shown that the IGF system plays a key role in vivo. IGF and similar growth factor systems do not act in isolation. Hence, the presence of other neuroendocrine factors (growth factors, cytokine, and hormones) may further modulate IGF's biological activity and cellular responses in the nervous system. The availability of animal models for brain injury and neuronal degeneration has allowed the investigation of the role of IGF-1 in prevention and rescue of damaged neuronal cells. These studies have pointed to the potential therapeutic use of IGF-1 alone or in combination with other neuroendocrine factors in the treatment of nervous system diseases.
Growth hormone (GH)/insulin‐like growth factor 1 (IGF‐1) axis abnormalities in multiple sclerosis (MS) suggest their role in its pathogenesis. Interferon β (IFN‐β) efficacy could be mediated also by an increase of IGF‐1 levels. A 2‐year longitudinal study was performed to estimate the prevalence of GH and/or IGF‐1 deficiency in clinically isolated syndrome (CIS) patients and their correlation with conversion to MS in IFN treated patients.
BACKGROUND:Different retrospective studies compared natalizumab and fingolimod in relapsing-remitting multiple sclerosis (RRMS), with conflicting results. We aimed to explore the prescriptive attitude and the clinical outcome of the two therapies.METHODS:We retrospectively included all RRMS patients treated with natalizumab (n=101) or fingolimod (n=78) as their first second-line therapy with at least 24-month follow-up. Demographic and clinical features were recorded to calculate the propensity score (PS). Outcomes of interest were annualized relapse rate (ARR), risk of relapse, and change in the EDSS RESULTS: At baseline, natalizumab patients were younger and had a shorter disease duration, a higher number of relapse in 1 year (1yR) and 2 years (2yR) and overall (ARR-PT) pretherapy, compared to fingolimod patients. On therapy, the proportion of relapsing patients and the mean RR were similar in the two groups. However, the change in the ARR was higher in natalizumab than in fingolimod group (P<.002), but, using PS as a covariate, it was comparable (P=.960). Similarly, the change in EDSS was significantly different for the two groups (P<.004), but not after adjusting for the PS (P=.321).CONCLUSION:We observed a comparable efficacy on ARR reduction and on EDSS progression with natalizumab and fingolimod correcting through PS, suggesting that the efficacy difference observed before correction might derive from the clinical attitude in prescribing natalizumab in more active MS patients in real life.
OBJECTIVE:Despite cognitive tests have been validated in multiple sclerosis (MS), a neuropsychological evaluation is not implemented in the Expanded Disability Status Scale (EDSS) scoring. METHODS:We used the Brief International Cognitive Assessment for Multiple Sclerosis (BICAMS) and orientation tests (OTs) to measure the cerebral functional system (CFS) score and to evaluate its impact on the EDSS. We compared EDSS calculated as usual (Native-EDSS) and after the use of the BICAMS and OT (NPS-EDSS). RESULTS:We tested 604 MS patients with BICAMS, OTs, and EDSS. In all, 384 patients (63.6%) had at least one altered test at the BICAMS. Older age, lower education, higher Native-EDSS, and male gender were independently associated with at least one impaired BICAMS test. Native-EDSS was different from NPS-EDSS (-0.112; p < 0.001) in 99 patients (16%). When considering patients with a Native-EDSS ⩽ 4.0, the proportion of miscalculated EDSS was 25%. CONCLUSION:The use of brief neuropsychological tests leads to a more accurate CFS assessment in two-thirds of MS patients, and a more accurate EDSS calculation in 25% of patients with a score ⩽4.0. This may help clinicians to better recognize cognitive impairment in everyday clinical practice, especially in the case of isolated cognitive worsening.
Brain growth and function are regulated by insulin-like growth factors I and II (IGF-I and IGF-II) but also by IGF-binding proteins (IGFBPs), including IGFBP-2. In addition to modulating IGF activities, IGFBP-2 interacts with a number of components of the extracellular matrix and cell membrane via a Cardin-Weintraub sequence or heparin binding domain (HBD1). The nature and the signalling elicited by these interactions are not fully understood. Here, we examined transgenic mice (H1d-hBP2) overexpressing a mutant human IGFBP-2 that lacks a specific heparin binding domain (HBD1) known as the Cardin-Weintraub sequence. H1d-hBP2 transgenic mice have the genetic background of FVB mice and are characterized by severe deficits in brain growth throughout their lifetime (p<0.05). In tissue lysates from brain hemispheres of 12-21day old male mice, protein levels of the GTPase dynamin-I were significantly reduced (p<0.01). Weight reductions were also found in distinct brain regions in two different age groups (12 and 80weeks). In the younger group, impaired weights were observed in the hippocampus (-34%; p<0.001), cerebellum (-25%; p<0.0001), olfactory bulb (-31%; p<0.05) and prefrontal cortex (-29%; p<0.05). At an age of 12weeks expression of myelin basic protein was reduced (p<0.01) in H1d-BP-2 mice in the cerebellum but not in the hippocampus. At 80weeks of age, weight reductions were similarly present in the cerebellum (-28%; p<0.001) and hippocampus (-31; p<0.05). When mice were challenged in the elevated plus maze, aged but not younger H1d-hBP2 mice displayed significantly less anxiety-like behaviour, which was also observed in a second transgenic mouse model overexpressing mouse IGFBP-2 lacking HBD1 (H1d-mBP2). These in vivo studies provide, for the first time, evidence for a specific role of IGFBP-2 in brain functions associated with anxiety and risk behaviour. These activities of IGFBP-2 could be mediated by the Cardin-Weintraub/HBD1 sequence and are altered in mice expressing IGFBP-2 lacking the HBD1.
The metalloproteinase ADAMTS-5 (A disintegrin and metalloproteinase with thrombospondin motifs) degrades aggrecan, a proteoglycan essential for cartilage structure and function. ADAMTS-5 is the major aggrecanase in mouse cartilage, and is also likely to be the major aggrecanase in humans. ADAMTS-5 is a multidomain enzyme, but the function of the C-terminal ancillary domains is poorly understood. We show that mutant ADAMTS-5 lacking the catalytic domain, but with a full suite of ancillary domains inhibits wild type ADAMTS activity, in vitro and in vivo, in a dominant-negative manner. The data suggest that mutant ADAMTS-5 binds to wild type ADAMTS-5; thus we tested the hypothesis that ADAMTS-5 associates to form oligomers. Co-elution, competition, and in situ PLA experiments using full-length and truncated recombinant ADAMTS-5 confirmed that ADAMTS-5 molecules interact, and showed that the catalytic and disintegrin-like domains support these intermolecular interactions. Cross-linking experiments revealed that recombinant ADAMTS-5 formed large, reduction-sensitive oligomers with a nominal molecular mass of ∼400 kDa. The oligomers were unimolecular and proteolytically active. ADAMTS-5 truncates comprising the disintegrin and/or catalytic domains were able to competitively block full-length ADAMTS-5-mediated aggrecan cleavage, measured by production of the G1-EGE373 neoepitope. These results show that ADAMTS-5 oligomerization is required for full aggrecanase activity, and they provide evidence that blocking oligomerization inhibits ADAMTS-5 activity. The data identify the surface provided by the catalytic and disintegrin-like domains of ADAMTS-5 as a legitimate target for the design of aggrecanase inhibitors.
IGFBP-1 and IGFBP-2 are suppressed by growth hormone and therefore represent less prominent members of the IGFBP family when compared to IGFBP-3 that carries most of the IGFs during circulation under normal conditions in humans in vivo. As soon as the GH signal is decreased expression of IGF-I and IGFBP-3 is reduced. Under conditions of lowered suppression by GH the time seems come for IGFBP-1 and IGFBP-2. Both IGFBPs are potent effectors of growth and metabolism. Secretion of IGFBP-1 and IGFBP-2 is further suppressed by insulin and diminished with increasing obesity. Both IGFBP family members share the RGD sequence motif that mediates binding to integrins and is linked to PTEN/PI3K signalling. In mice, IGFBP-2 prevents age- and diet-dependent glucose insensitivity and blocks differentiation of preadipocytes. The latter function is modulated by two distinct heparin-binding domains of IGFBP-2 which are lacking in IGFBP-1. IGFBP-2 is further regulated by leptin and has been demonstrated to affect insulin sensitivity and glucose tolerance, further supporting a particular role of IGFBP-2 in glucose and fat metabolism. Since IGFBP-2 is controlled by sex steroids as well, we devised a scheme to compare IGFBP effects in breast, ovarian and prostate cancer. While a positive association does not seem to exist with IGFBP-1 and risk of cancers within these reproductive tissues, a relationship between IGFBP-2 and breast cancer, ovarian cancer and prostate cancer does indeed appear to be present. To date, the specific roles of IGFBP-2 in estrogen signalling are unclear, though there is accumulating evidence for an effect of IGFBP-2 on PI3K signalling via PTEN, particularly in breast cancer. (C) 2015 Elsevier Ltd. All rights reserved.