Sign in to use this feature.

Years

Between: -

Subjects

remove_circle_outline
remove_circle_outline
remove_circle_outline
remove_circle_outline

Journals

Article Types

Countries / Regions

Search Results (9)

Search Parameters:
Keywords = area postrema syndrome

Order results
Result details
Results per page
Select all
Export citation of selected articles as:
27 pages, 4637 KB  
Review
Neuromyelitis Optica Spectrum Disorder: A Clinical Review
by Abdulaziz Al Abdulghani and Steven L. Galetta
Sclerosis 2026, 4(3), 24; https://doi.org/10.3390/sclerosis4030024 - 5 Aug 2026
Viewed by 312
Abstract
Neuromyelitis optica spectrum disorder (NMOSD) is an autoimmune astrocytopathy in which antibodies against the aquaporin-4 (AQP4) water channel produce a stereotyped group of syndromes determined by the anatomical distribution of AQP4 expression. Six core clinical presentations are recognized: optic neuritis, longitudinally extensive transverse [...] Read more.
Neuromyelitis optica spectrum disorder (NMOSD) is an autoimmune astrocytopathy in which antibodies against the aquaporin-4 (AQP4) water channel produce a stereotyped group of syndromes determined by the anatomical distribution of AQP4 expression. Six core clinical presentations are recognized: optic neuritis, longitudinally extensive transverse myelitis, area postrema syndrome, acute brainstem syndrome, diencephalic syndrome, and cerebral syndrome. Because disability in NMOSD almost always accrues at discrete, treatable relapses rather than through insidious progression, early recognition, supported by prompt AQP4-IgG testing and pattern recognition on MRI, is essential to preserving vision, mobility, and independence. This review summarizes the pathophysiology, clinical and radiologic features, diagnostic evaluation, and differential diagnosis of each core syndrome and synthesizes contemporary evidence for relapse prevention. Over the past decade, the therapeutic landscape has been transformed: agents targeting complement (eculizumab, ravulizumab), the interleukin-6 receptor (satralizumab, tocilizumab), and B cells (rituximab, inebilizumab) now have randomized evidence of efficacy in seropositive disease, with complement inhibitors ranking highest across indirect treatment comparisons. Evidence in seronegative disease remains limited, no approved agents have been compared head-to-head, and the optimal role of early plasma exchange is unsettled. Emerging neuroprotective strategies and chimeric antigen receptor T-cell therapy, both of which remain experimental, may further expand options for refractory disease. Once uniformly disabling, AQP4-IgG NMOSD is now a highly treatable condition in which timely diagnosis and sustained immunotherapy can meaningfully alter long-term outcomes. Full article
Show Figures

Figure 1

7 pages, 2021 KB  
Case Report
When LHON Mimics Demyelination: Area Postrema Syndrome in Biallelic DNAJC30 Variants
by Kamil Dzwilewski, Magdalena Krygier, Jakub Szymarek, Marta Zawadzka, Urszula Stodolska-Koberda and Maria Mazurkiewicz-Bełdzińska
J. Clin. Med. 2026, 15(13), 5289; https://doi.org/10.3390/jcm15135289 - 7 Jul 2026
Viewed by 412
Abstract
Introduction: Biallelic pathogenic variants in DNAJC30 cause an autosomal recessive form of Leber hereditary optic neuropathy (LHONAR1), traditionally considered a mitochondrially transmitted disorder. The phenotypic spectrum of diseases linked to DNAJC30 includes isolated optic neuropathy, Leigh syndrome spectrum (LSS), and atypical LHON-plus. [...] Read more.
Introduction: Biallelic pathogenic variants in DNAJC30 cause an autosomal recessive form of Leber hereditary optic neuropathy (LHONAR1), traditionally considered a mitochondrially transmitted disorder. The phenotypic spectrum of diseases linked to DNAJC30 includes isolated optic neuropathy, Leigh syndrome spectrum (LSS), and atypical LHON-plus. Case description: Here, we report a 13-year-old boy presenting symptoms of area postrema syndrome (APS), with recurrent vomiting, vertigo, nystagmus, and subacute visual deterioration with central scotoma. Ophthalmological examination revealed bilateral papilledema with telangiectatic vessels, while visual evoked potentials demonstrated severe bilateral optic pathway dysfunction. Brain magnetic resonance imaging (MRI) showed T2/FLAIR hyperintense lesions involving the area postrema and enhancement of the optic nerves, strongly suggesting seronegative neuromyelitis optica spectrum disorder (NMOSD). Extensive immunological and cerebrospinal fluid studies, including anti-aquaporin-4 (AQP4) and anti-MOG antibodies, were negative. High-dose corticosteroids and intravenous immunoglobulins resulted in only transient and incomplete improvement, followed by further visual decline. Additionally, laboratory tests detected elevated lactate plasma levels. Hence, whole-exome sequencing was performed, which identified a homozygous pathogenic DNAJC30 c.152A>G, p.(Tyr51Cys) variant, associated with LHONAR1. After initiation of idebenone therapy, the patient showed significant improvement in visual function, normalization of lactate levels, and complete resolution of the brainstem lesions on follow-up MRI. Conclusions: This case further expands the neuro-ophthalmic spectrum associated with DNAJC30 variants and suggests that DNAJC30-related disease may closely mimic seronegative NMOSD. We highlight that early genetic diagnosis is essential, as recognition of this mitochondrial etiology enables targeted therapy and may substantially improve clinical outcomes. Full article
(This article belongs to the Special Issue Advances in Demyelinating and Neuroinflammatory Disorders)
Show Figures

Figure 1

9 pages, 1505 KB  
Case Report
Characteristics of Neuromyelitis Optica in Young Mexican Patients
by Denisse Martinez-Roque, Maria Fernanda Castillo-Zuñiga, Ildefonso Rodriguez-Leyva, Adriana Martínez-Mayorga and María E. Jiménez-Capdeville
Sclerosis 2026, 4(1), 4; https://doi.org/10.3390/sclerosis4010004 - 27 Feb 2026
Viewed by 686
Abstract
Background: Neuromyelitis optica spectrum disorder (NMOSD) is an autoimmune demyelinating disease with important disability accumulation. Early-onset NMOSD, defined as disease onset before age 50, exhibits distinct clinical characteristics compared to late-onset disease. We present a case series of patients with first symptom onset [...] Read more.
Background: Neuromyelitis optica spectrum disorder (NMOSD) is an autoimmune demyelinating disease with important disability accumulation. Early-onset NMOSD, defined as disease onset before age 50, exhibits distinct clinical characteristics compared to late-onset disease. We present a case series of patients with first symptom onset before age 30. Methods: A retrospective review of 10 patients diagnosed with NMOSD at our center in San Luis Potosí, Mexico, with disease onset before age 30. Clinical presentation, imaging findings, AQP4 antibody status, treatment response, and disability outcomes were analyzed. Results: The mean age at onset was 18.6 years (range 6–30). Area postrema syndrome was the most common presentation (40%), followed by acute myelitis and optic neuritis (30% each). All tested patients were AQP4-positive. The mean EDSS at follow-up was 6.6, indicating severe disability. Most patients received rituximab with variable response rates. Conclusions: Our cohort showed higher disability than reported in other early-onset series, emphasizing the need for prompt diagnosis and aggressive treatment in this population. Full article
Show Figures

Figure 1

20 pages, 864 KB  
Review
Refractory Nausea and Vomiting Due to Central Nervous System Injury: A Focused Review
by Stefan Stoica, Christopher Hogge and Brett James Theeler
Life 2025, 15(7), 1021; https://doi.org/10.3390/life15071021 - 27 Jun 2025
Cited by 5 | Viewed by 7497
Abstract
The area postrema (AP) is a circumventricular organ (CVO) at the base of the fourth ventricle. It has a crucial role in regulating nausea and vomiting due to its unique blood–brain barrier (BBB)-permeability and extensive neural connectivity. Here, we present two cases of [...] Read more.
The area postrema (AP) is a circumventricular organ (CVO) at the base of the fourth ventricle. It has a crucial role in regulating nausea and vomiting due to its unique blood–brain barrier (BBB)-permeability and extensive neural connectivity. Here, we present two cases of area postrema syndrome (APS), a rare condition of intractable nausea and vomiting resulting from direct AP injury. Our cases each occurred in the context of infratentorial neoplasms or their treatment. Using these cases as a framework, we review the literature on central emetic pathways and propose a treatment algorithm for managing refractory nausea and vomiting of central origin. We also highlight other targets beyond conventional serotonergic, dopaminergic, or histaminergic blockade and their roles in central hyperemesis. Our literature review suggests that APS is due to the disruption of the baseline inhibitory tone of outgoing AP signals. When other options fail, our algorithm culminates in the off-label use of combined serotonergic and neurokinin-1 blockade, which is otherwise used to manage chemotherapy-induced nausea and vomiting (CINV). We believe multimodal CNS receptor blockade is efficacious in APS because it addresses the underlying central neural dysregulation, rather than solely targeting peripheral emetic triggers. Full article
(This article belongs to the Section Physiology and Pathology)
Show Figures

Figure 1

7 pages, 945 KB  
Case Report
Neuromyelitis Optica Spectrum Disorder with Sick Sinus Syndrome: Two Cases and a Literature Review
by Huiting Lin, Xinyi Duan, Lina Li, Jinhao Ye and Haibing Xiao
Healthcare 2023, 11(21), 2810; https://doi.org/10.3390/healthcare11212810 - 24 Oct 2023
Cited by 6 | Viewed by 2500
Abstract
Background and objective: Neuromyelitis optica spectrum disorder (NMOSD) is a rare immune-mediated demyelinating disease of the central nervous system (CNS). There is a lack of reports of sick sinus syndrome (SSS) associated with NMOSD; thus, we hereby report two cases of patients with [...] Read more.
Background and objective: Neuromyelitis optica spectrum disorder (NMOSD) is a rare immune-mediated demyelinating disease of the central nervous system (CNS). There is a lack of reports of sick sinus syndrome (SSS) associated with NMOSD; thus, we hereby report two cases of patients with NMOSD who developed SSS. Cases presentation: The patients were both male and presented with area postrema syndrome. Brain MRI showed lesions in the dorsal part of their medulla oblongata. They were diagnosed with NMOSD when aquaporin-4 antibodies were found in their serum. Slow heart rates and several episodes of syncope were also observed in case 1 during hospitalization, while Holter monitoring showed sinus pauses (10–11 s) and SSS was diagnosed. A pacemaker was fitted. Case 2 had a respiratory arrest followed by a subsequent cardiac arrest. He was successfully resuscitated with epinephrine injection and cardiopulmonary resuscitation. Through immunotherapy, their neurological functions became stable and heart rate and blood pressure returned to the baseline. Conclusions: Since sick sinus syndrome is a life-threatening complication, serious heart arrhythmias should be considered as a potential result of area postrema syndrome associated with NMOSD. Full article
(This article belongs to the Special Issue Rheumatic Diseases and Related Conditions in Healthcare)
Show Figures

Figure 1

11 pages, 1602 KB  
Perspective
Recontextualizing Neuromyelitis Optica as a Systemic Condition: A Perspective
by Parker Webber, Brianna C. Landis and Amanda E. Brooks
J. Clin. Transl. Ophthalmol. 2023, 1(2), 61-71; https://doi.org/10.3390/jcto1020008 - 24 May 2023
Viewed by 2727
Abstract
Neuromyelitis optica spectrum disorder (NMOSD), a demyelinating CNS disorder in which inflammatory cells infiltrate the spinal cord and optic nerve, has been identified as an AQP4-IgG-positive disease. Some of its most common clinical characteristics are optic neuritis, acute myelitis, area postrema syndrome, and [...] Read more.
Neuromyelitis optica spectrum disorder (NMOSD), a demyelinating CNS disorder in which inflammatory cells infiltrate the spinal cord and optic nerve, has been identified as an AQP4-IgG-positive disease. Some of its most common clinical characteristics are optic neuritis, acute myelitis, area postrema syndrome, and brainstem syndrome. However, the relationship between aquaporin-4 (AQP4) and NMOSD appears to be involved in pathologies outside of the CNS due to the fact that autoimmune, muscular, and paraneoplastic syndromes are more common in patients with NMOSD. This perspective presents an analysis of the current literature on neuromyelitis optica in an effort to further understand and compile pathologies that arise outside of the CNS secondary to NMOSD. Recontextualizing neuromyelitis optica as a systemic condition will facilitate greater diagnostic ability and improved treatment approaches. Full article
Show Figures

Figure 1

23 pages, 2206 KB  
Review
Sodium Homeostasis, a Balance Necessary for Life
by Antonio Bernal, María A. Zafra, María J. Simón and Javier Mahía
Nutrients 2023, 15(2), 395; https://doi.org/10.3390/nu15020395 - 12 Jan 2023
Cited by 92 | Viewed by 21066
Abstract
Body sodium (Na) levels must be maintained within a narrow range for the correct functioning of the organism (Na homeostasis). Na disorders include not only elevated levels of this solute (hypernatremia), as in diabetes insipidus, but also reduced levels (hyponatremia), as in cerebral [...] Read more.
Body sodium (Na) levels must be maintained within a narrow range for the correct functioning of the organism (Na homeostasis). Na disorders include not only elevated levels of this solute (hypernatremia), as in diabetes insipidus, but also reduced levels (hyponatremia), as in cerebral salt wasting syndrome. The balance in body Na levels therefore requires a delicate equilibrium to be maintained between the ingestion and excretion of Na. Salt (NaCl) intake is processed by receptors in the tongue and digestive system, which transmit the information to the nucleus of the solitary tract via a neural pathway (chorda tympani/vagus nerves) and to circumventricular organs, including the subfornical organ and area postrema, via a humoral pathway (blood/cerebrospinal fluid). Circuits are formed that stimulate or inhibit homeostatic Na intake involving participation of the parabrachial nucleus, pre-locus coeruleus, medial tuberomammillary nuclei, median eminence, paraventricular and supraoptic nuclei, and other structures with reward properties such as the bed nucleus of the stria terminalis, central amygdala, and ventral tegmental area. Finally, the kidney uses neural signals (e.g., renal sympathetic nerves) and vascular (e.g., renal perfusion pressure) and humoral (e.g., renin–angiotensin–aldosterone system, cardiac natriuretic peptides, antidiuretic hormone, and oxytocin) factors to promote Na excretion or retention and thereby maintain extracellular fluid volume. All these intake and excretion processes are modulated by chemical messengers, many of which (e.g., aldosterone, angiotensin II, and oxytocin) have effects that are coordinated at peripheral and central level to ensure Na homeostasis. Full article
(This article belongs to the Special Issue Salt Appetite and Diet)
Show Figures

Figure 1

15 pages, 346 KB  
Review
TRPV1: A Common Denominator Mediating Antinociceptive and Antiemetic Effects of Cannabinoids
by Kathleen Louis-Gray, Srinivasan Tupal and Louis S. Premkumar
Int. J. Mol. Sci. 2022, 23(17), 10016; https://doi.org/10.3390/ijms231710016 - 2 Sep 2022
Cited by 51 | Viewed by 10582
Abstract
The most common medicinal claims for cannabis are relief from chronic pain, stimulation of appetite, and as an antiemetic. However, the mechanisms by which cannabis reduces pain and prevents nausea and vomiting are not fully understood. Among more than 450 constituents in cannabis, [...] Read more.
The most common medicinal claims for cannabis are relief from chronic pain, stimulation of appetite, and as an antiemetic. However, the mechanisms by which cannabis reduces pain and prevents nausea and vomiting are not fully understood. Among more than 450 constituents in cannabis, the most abundant cannabinoids are Δ9-tetrahydrocannabinol (THC) and cannabidiol (CBD). Cannabinoids either directly or indirectly modulate ion channel function. Transient receptor potential vanilloid 1 (TRPV1) is an ion channel responsible for mediating several modalities of pain, and it is expressed in both the peripheral and the central pain pathways. Activation of TRPV1 in sensory neurons mediates nociception in the ascending pain pathway, while activation of TRPV1 in the central descending pain pathway, which involves the rostral ventral medulla (RVM) and the periaqueductal gray (PAG), mediates antinociception. TRPV1 channels are thought to be implicated in neuropathic/spontaneous pain perception in the setting of impaired descending antinociceptive control. Activation of TRPV1 also can cause the release of calcitonin gene-related peptide (CGRP) and other neuropeptides/neurotransmitters from the peripheral and central nerve terminals, including the vagal nerve terminal innervating the gut that forms central synapses at the nucleus tractus solitarius (NTS). One of the adverse effects of chronic cannabis use is the paradoxical cannabis-induced hyperemesis syndrome (HES), which is becoming more common, perhaps due to the wider availability of cannabis-containing products and the chronic use of products containing higher levels of cannabinoids. Although, the mechanism of HES is unknown, the effective treatment options include hot-water hydrotherapy and the topical application of capsaicin, both activate TRPV1 channels and may involve the vagal-NTS and area postrema (AP) nausea and vomiting pathway. In this review, we will delineate the activation of TRPV1 by cannabinoids and their role in the antinociceptive/nociceptive and antiemetic/emetic effects involving the peripheral, spinal, and supraspinal structures. Full article
(This article belongs to the Special Issue TRP Channel)
24 pages, 1945 KB  
Review
Neuromyelitis Optica Spectrum Disorder and Anti-MOG Syndromes
by Marco A. Lana-Peixoto and Natália Talim
Biomedicines 2019, 7(2), 42; https://doi.org/10.3390/biomedicines7020042 - 12 Jun 2019
Cited by 115 | Viewed by 17469
Abstract
Neuromyelitis optica spectrum disorder (NMOSD) and anti-myelin oligodendrocyte glycoprotein (anti-MOG) syndromes are immune-mediated inflammatory conditions of the central nervous system that frequently involve the optic nerves and the spinal cord. Because of their similar clinical manifestations and habitual relapsing course they are frequently [...] Read more.
Neuromyelitis optica spectrum disorder (NMOSD) and anti-myelin oligodendrocyte glycoprotein (anti-MOG) syndromes are immune-mediated inflammatory conditions of the central nervous system that frequently involve the optic nerves and the spinal cord. Because of their similar clinical manifestations and habitual relapsing course they are frequently confounded with multiple sclerosis (MS). Early and accurate diagnosis of these distinct conditions is relevant as they have different treatments. Some agents used for MS treatment may be deleterious to NMOSD. NMOSD is frequently associated with antibodies which target aquaporin-4 (AQP4), the most abundant water channel in the CNS, located in the astrocytic processes at the blood-brain barrier (BBB). On the other hand, anti-MOG syndromes result from damage to myelin oligodendrocyte glycoprotein (MOG), expressed on surfaces of oligodendrocytes and myelin sheaths. Acute transverse myelitis with longitudinally extensive lesion on spinal MRI is the most frequent inaugural manifestation of NMOSD, usually followed by optic neuritis. Other core clinical characteristics include area postrema syndrome, brainstem, diencephalic and cerebral symptoms that may be associated with typical MRI abnormalities. Acute disseminated encephalomyelitis and bilateral or recurrent optic neuritis are the most frequent anti-MOG syndromes in children and adults, respectively. Attacks are usually treated with steroids, and relapses prevention with immunosuppressive drugs. Promising emerging therapies for NMOSD include monoclonal antibodies and tolerization. Full article
(This article belongs to the Special Issue Multiple Sclerosis: Diagnosis and Treatment)
Show Figures

Figure 1

Back to TopTop