Introduction: Paraneoplastic hypercalcemia is a life-threatening complication and is usually caused by tumoral secretion of parathyroid hormone-related peptide (PTHrP). Endocrinopathies are common adverse events of immune checkpoint inhibitor (ICI) therapy, but only few reports describe ICI-induced hypercalcemia.Case description: We report the case of a 56-year-old patient with penile cutaneous squamous cell carcinoma (cuSCC) who experienced progression after adjuvant radiochemotherapy. Within the AliCe trial, a multicenter, single-arm phase-II study for stage III/IV non-resectable/metastatic cuSCC, he received avelumab (anti-programmed cell death-ligand 1 antibody) in combination with cetuximab (anti-epidermal growth factor receptor antibody). Two hours after the initial treatment, the patient developed severe delirium, initially unresponsive to symptomatic treatment. Paraneoplastic hypercalcemia was diagnosed on the basis of decreased parathyroid hormone, normal calcitriol, and elevated PTHrP levels. Although ICI-related hypercalcemia could not be fully ruled out, study treatment was continued without further neurological symptoms, but had to be discontinued due to disease progression. The patient showed a good response to palliative chemotherapy lasting 10 months before he died due to progressive disease.Conclusion: This case demonstrates the potential risk of severe hypercalcemia. While hypercalcemia of malignancy is associated with an unfavorable prognosis, immune-mediated hypercalcemia should be considered in patients receiving ICI.
Introduction Paraneoplastic hypercalcemia is a life-threatening complication and is usually caused by tumoral secretion of parathyroid hormone-related peptide (PTHrP). Endocrinopathies are common adverse events of immune checkpoint inhibitor (ICI) therapy, but only few reports describe ICI-induced hypercalcemia. Case description We report the case of a 56-year-old patient with penile cutaneous squamous cell carcinoma (cuSCC) who experienced progression after adjuvant radiochemotherapy. Within the AliCe trial, a multicenter, single-arm phase-II study for stage III/IV non-resectable/metastatic cuSCC, he received avelumab (anti-programmed cell death-ligand 1 antibody) in combination with cetuximab (anti-epidermal growth factor receptor antibody). Two hours after the initial treatment, the patient developed severe delirium, initially unresponsive to symptomatic treatment. Paraneoplastic hypercalcemia was diagnosed on the basis of decreased parathyroid hormone, normal calcitriol, and elevated PTHrP levels. Although ICI-related hypercalcemia could not be fully ruled out, study treatment was continued without further neurological symptoms, but had to be discontinued due to disease progression. The patient showed a good response to palliative chemotherapy lasting 10 months before he died due to progressive disease. Conclusion This case demonstrates the potential risk of severe hypercalcemia. While hypercalcemia of malignancy is associated with an unfavorable prognosis, immune-mediated hypercalcemia should be considered in patients receiving ICI.
Background: Post-acute sequelae of COVID-19 (PASC) comprise a broad spectrum of symptoms such as fatigue, general weakness, compromised attention and sleep or anxiety disorders. PASC represents a medical and socio-economic challenge. Objectives: Our study evaluated cytokines (IL-1β, IL-6 and TNFα) and cortisol levels in a cohort of typical patients with PASC, suffering concentration problems, fatigue and difficulties finding words. Design: This was a prospective cohort study. Four groups were analysed and compared: those who had never contracted SARS-CoV-2 ( n = 13), infected but had no PASC ( n = 34), infected with former PASC that resolved ( n = 40) and patients with ongoing PASC after infection ( n = 91). Methods: Cytokine and cortisol serum levels were determined in patients’ blood samples. Results: Cytokine levels of IL-1β, IL-6, TNFα and cortisol levels did not differ between groups analysed. Conclusion: This may indicate a non-organic/psychosomatic genesis of PASC; further studies are needed to elucidate the underlying causes of PACS, and non-organic causes should not be overlooked.
Understanding cerebellar alterations due to healthy aging provides a reference point against which pathological findings in late-onset disease, for example spinocerebellar ataxia type 6 (SCA6), can be contrasted. In the present study, we investigated the impact of aging on the cerebellar nuclei and cerebellar cortex in 109 healthy controls (age range: 16 - 78 years) using 3 Tesla magnetic resonance imaging (MRI). Findings were compared with 25 SCA6 patients (age range: 38 - 78 years). A subset of 16 SCA6 (included: 14) patients and 50 controls (included: 45) received an additional MRI scan at 7 Tesla and were re-scanned after one year. MRI included T1-weighted, T2-weighted FLAIR, and multi-echo T2*-weighted imaging. The T2*-weighted phase images were converted to quantitative susceptibility maps (QSM). Since the cerebellar nuclei are characterized by elevated iron content with respect to their surroundings, two independent raters manually outlined them on the susceptibility maps. T1-weighted images acquired at 3T were utilized to automatically identify the cerebellar gray matter (GM) volume. Linear correlations revealed significant atrophy of the cerebellum due to tissue loss of cerebellar cortical GM in healthy controls with increasing age. Reduction of the cerebellar GM was substantially stronger in SCA6 patients. The volume of the dentate nuclei did not exhibit a significant relationship with age, at least in the age range between 18 and 78 years, whereas mean susceptibilities of the dentate nuclei increased with age. As previously shown, the dentate nuclei volumes were smaller and magnetic susceptibilities were lower in SCA6 patients compared to age- and sex-matched controls. The significant dentate volume loss in SCA6 patients could also be confirmed with 7T MRI. Linear mixed effects models and individual paired t-tests accounting for multiple comparisons revealed no statistical significant change in volume and susceptibility of the dentate nuclei after one year in neither patients nor controls. Importantly, dentate volumes were more sensitive to differentiate between SCA6 (Cohen's d = 3.02) and matched controls than the cerebellar cortex volume (d = 2.04). In addition to age-related decline of the cerebellar cortex and atrophy in SCA6 patients, age-related increase of susceptibility of the dentate nuclei was found in controls, whereas dentate volume and susceptibility was significantly decreased in SCA6 patients. Because no significant changes of any of these parameters was found at follow-up, these measures do not allow to monitor disease progression at short intervals.
The selective intra-arterial nimodipine application for the treatment of cerebral vasospasm (CVS) in patients after spontaneous subarachnoid hemorrhage (sSAH) is widely employed. The purpose of this study is to examine the radiation exposure and to determine local diagnostic reference levels (DRLs) of intra-arterial nimodipine therapy. In a retrospective study design, DRLs and achievable dose (AD) were assessed for all patients undergoing (I) selective intra-arterial nimodipine application or (II) additional mechanical angioplasty for CVS treatment. Interventional procedures were differentiated according to the type of procedure and the number of probed vessels. Altogether 494 neurointerventional procedures of 121 patients with CVS due to sSAH could be included. The radiation exposure indices were distributed as follows: (I) DRL 74.3 Gy·cm2, AD 59.8 Gy·cm2; (II) DRL 128.3 Gy·cm2, AD 94.5 Gy·cm2. Kruskal-Wallis test confirmed significant dose difference considering the number of probed vessels (p< 0.001). The mean cumulative dose per patient was 254.9 Gy·cm2(interquartile range 88.6-315.6 Gy·cm2). The DRLs of intra-arterial nimodipine therapy are substantially lower compared with DRLs proposed for other therapeutic interventions, such as thrombectomy or aneurysm coiling. However, repeated therapy sessions are often required, bearing the potential risk of a cumulatively higher radiation exposure.
Extinction of conditioned aversive responses (CR) has been shown to be context-dependent. The hippocampus and prefrontal cortex are of particular importance. The cerebellum may contribute to context-related processes because of its known connections with the hippocampus and prefrontal cortex. Context dependency of extinction can be demonstrated by the renewal effect. When CR acquisition takes place in context A and is extinguished in context B, renewal refers to the recovery of the CR in context A (A-B-A paradigm). In the present study acquisition, extinction and renewal of classically conditioned eyeblink responses were tested in 18 patients with subacute focal cerebellar lesions and 18 age- and sex-matched healthy controls. Standard delay eyeblink conditioning was performed using an A-B-A paradigm. All cerebellar patients underwent a high-resolution T1-weighted brain MRI scan to perform lesion-symptom mapping. CR acquisition was not significantly different between cerebellar and control participants allowing to draw conclusions on extinction. CR extinction was significantly less in cerebellar patients. Reduction of CR extinction tended to be more likely in patients with lesions in the lateral parts of lobule VI and Crus I. A significant renewal effect was present in controls only. The present data provide further evidence that the cerebellum contributes to extinction of conditioned eyeblink responses. Because acquisition was preserved and extinction took place in another context than acquisition, more lateral parts of the cerebellar hemisphere may contribute to context-related processes. Furthermore, lack of renewal in cerebellar patients suggest a contribution of the cerebellum to context-related processes.
Cerebellar ataxia (CA) is a frequent and often disabling condition that impairs motor functioning and impacts on quality of life (QoL). No medication has yet been proven effective for the symptomatic or even causative treatment of hereditary or non-hereditary, non-acquired CA. So far, the only treatment recommendation is physiotherapy. Therefore, new therapeutic options are needed. Based on three observational studies, the primary objective of the acetyl-DL-leucine on ataxia (ALCAT) trial is to examine the efficacy and tolerability of a symptomatic therapy with acetyl-DL-leucine compared to placebo on motor function measured by the Scale for the Assessment and Rating of Ataxia (SARA) in patients with CA.
A 60-year-old man had a 3-year history of cerebellar ataxia and dementia, without a family history. T1-weighted MRI showed cerebellar atrophy (figure, A). Susceptibility-weighted images (SWI) revealed hypointensities of the basal ganglia and mesencephalic and cerebellar nuclei (figure, B, a–c), suggesting neurodegeneration with brain iron accumulation.1 Serum copper, iron, ferritin, transferrin, and ceruloplasmin levels were normal. Genetic testing revealed a CAG/CAA repeat expansion of 1 allele with 44 repeats (normal range 25–42), within the reduced penetrance range (43–48 repeats) in the TATA box binding protein ( TBP ) gene.2 In patients with cerebellar atrophy with hypointensities of subcortical and cerebellar nuclei in SWI or gradient echo imaging, diagnostic considerations should include spinocerebellar ataxia 17.
Physical activity protects brain function in healthy individuals and those with Alzheimer's disease (AD). Evidence for beneficial effects of parental exercise on the health status of their progeny is sparse and limited to nondiseased individuals. Here, we questioned whether maternal running interferes with offspring's AD-like pathology and sought to decipher the underlying mechanisms in TgCRND8 mice. Maternal stimulation was provided by voluntary wheel running vs. standard housing during pregnancy. Following 5 mo of standard housing of transgenic and wild-type offspring, their brains were examined for AD-related pathology and/or plasticity changes. Running during pregnancy reduced beta-amyloid (A beta) plaque burden (-35%, P = 0.017) and amyloidogenic APP processing in transgenic offspring and further improved the neurovascular function by orchestrating different A beta transporters and increasing angiogenesis (+29%, P = 0.022). This effect was accompanied by diminished inflammation, as indicated by reduced microgliosis (-20%, P = 0.002) and down-regulation of other proinflammatory mediators, and resulted in less oxidative stress, as nitrotyrosine levels declined (-28%, P = 0.029). Moreover, plasticity changes (in terms of up-regulation of reelin, synaptophysin, and ARC) were found not only in transgenic but also in wild-type offspring. We conclude that exercise during pregnancy provides long-lasting protection from neurodegeneration and improves brain plasticity in the otherwise unstimulated progeny.-Herring, A., Donath, A., Yarmolenko, M., Uslar, E., Conzen, C., Kanakis, D., Bosma, C., Worm, K., Paulus, W., Keyvani, K. Exercise during pregnancy mitigates Alzheimer-like pathology in mouse offspring. FASEB J. 26, 117-128 (2012). www.fasebj.org