FDA Approves First Non-Antipsychotic Drug to Treat Agitation Associated with Dementia

The FDA approval of Auvelity for agitation in Alzheimer’s dementia represents a clinically meaningful advancement, introducing the first non-antipsychotic pharmacologic option for this challenging condition. Supported by randomized clinical trials demonstrating both symptomatic improvement and relapse prevention, Auvelity offers a promising alternative for managing agitation while potentially avoiding risks associated with antipsychotics. Careful patient selection and monitoring remain essential given its safety profile.

source: FDA

Summary

[Posted 6/May/2026]

AUDIENCE: Neurology, Psychiatry

KEY FINDINGS: The FDA approval of Auvelity for agitation in Alzheimer’s dementia represents a clinically meaningful advancement, introducing the first non-antipsychotic pharmacologic option for this challenging condition. Supported by randomized clinical trials demonstrating both symptomatic improvement and relapse prevention, Auvelity offers a promising alternative for managing agitation while potentially avoiding risks associated with antipsychotics. Careful patient selection and monitoring remain essential given its safety profile.

BACKGROUND: The U.S. Food and Drug Administration today approved an expanded use for Auvelity (dextromethorphan hydrobromide and bupropion hydrochloride) extended-release tablets to treat agitation associated with dementia due to Alzheimer's disease in adults. The drug is the first FDA-approved treatment for this condition that is not an antipsychotic. FDA initially approved Auvelity in 2022 to treat major depressive disorder in adults.

DETAILS: "This approval represents a significant advancement in our ability to help patients and families dealing with one of the most challenging aspects of Alzheimer's disease," said FDA Commissioner Marty Makary, M.D., M.P.H. "With today's action, patients and their families have access to an additional important treatment for complications of this devastating disease."

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Agitation is a common and distressing symptom in patients with Alzheimer's disease dementia, characterized by excessive motor activity, or verbal or physical aggression. It can significantly impact quality of life for patients and caregivers.

"Auvelity was found to be efficacious for treating agitation in Alzheimer's disease in two randomized trials and now represents an additional option to address one of the most difficult sequelae of the disease, especially as it progresses,” said Tracy Beth Hoeg, M.D., Ph.D., Acting Director of the FDA's Center for Drug Evaluation and Research. "We hope this approval will provide meaningful benefit to patients, their families, and caregivers."

The first randomized study (NCT 03226522) was a five-week trial in which participants received either Auvelity or a placebo. The primary endpoint was the change from baseline to week five in the total score of the Cohen-Mansfield Agitation Inventory (CMAI), a survey that assesses the frequency of manifestations of agitated behaviors in elderly patients, based on caregiver reports. Auvelity was significantly superior to placebo in The Cohen-Mansfield Agitation Inventory score improvements.

The second randomized study (NCT 04947553) was a withdrawal study in participants who responded to Auvelity. Upon reaching a sustained clinical response to Auvelity, patients were randomly assigned to continue treatment with Auvelity or switch to placebo. The primary endpoint was time to relapse. Participants who continued Auvelity treatment had a significantly longer time to relapse of agitation symptoms compared to patients receiving the placebo.

The most common side effects include dizziness, upset stomach, headache, diarrhea, drowsiness, dry mouth, sexual dysfunction, and uncontrolled sweating. Auvelity has a Boxed Warning about increased risk of suicidal thoughts and behaviors in adolescents and young adults taking antidepressants. Health care providers should monitor patients for clinical worsening and emergence of suicidal thoughts and behaviors, especially during initial treatment. The medicine can cause seizures, with risk increasing with dose. It can also cause elevated blood pressure and hypertension, and may activate mania or hypomania (irritable mood) in susceptible patients.

Before starting Auvelity, health care providers should assess blood pressure, screen for personal or family history of bipolar disorder, and determine if patients are taking other medications containing bupropion or dextromethorphan.

The FDA granted breakthrough therapy designation and priority review designation for this action. The approval of Auvelity for agitation associated with dementia due to Alzheimer's disease was granted to Axsome Therapeutics.

Source: FDA Approves First Non-Antipsychotic Drug to Treat Agitation Associated with Dementia. FDA. Published: April 30, 2026.



TMS Sites Associated With Nicotine Addiction Improvement Converge on a Common Brain Circuit

A study indicates that that TMS sites more strongly connected to a brain circuit linked to nicotine-addiction remission were associated with greater improvement in withdrawal symptoms. Data showed convergence between TMS and lesion-based brain circuits. The findings identify potential targets in the frontopolar, posterior parietal, lateral temporal, and superior frontal regions for future TMS research in nicotine addiction.

source: Am J Psychiatry

Summary

[Posted 10/Sep/2026]

AUDIENCE: Psychiatry, Neurology

KEY FINDINGS: The findings indicate that brain regions associated with improvement in nicotine addiction through TMS and lesions converge on a common functional brain circuit. Rather than relying solely on stimulation of an individual anatomical region, connectivity with this circuit may help guide selection of TMS targets for nicotine addiction. The identified circuit provides a testable framework for future neuromodulation studies. However, the study demonstrates an association between TMS-site connectivity and withdrawal improvement and does not establish that targeting these regions will improve long-term smoking cessation outcomes.

BACKGROUND: Transcranial magnetic stimulation (TMS) is an established neuromodulation approach for smoking cessation, but the optimal brain region to target for nicotine addiction remains uncertain. Previous lesion-mapping research identified a brain circuit associated with remission of nicotine addiction. This study investigated whether TMS sites connected to that lesion-derived circuit were also associated with greater improvement in nicotine withdrawal symptoms.

DETAILS: The study included 72 participants with tobacco use disorder who abstained from smoking for at least 12 hours before TMS assessment. TMS was delivered to four left-hemisphere regions-the dorsolateral prefrontal cortex, superior frontal gyrus, posterior parietal cortex, and visual cortex-across separate sessions, producing a total of 243 stimulation sites.

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Nicotine withdrawal was assessed before and after each TMS session using the Shiffman-Jarvik Withdrawal Scale. The investigators used a normative functional-connectivity dataset derived from 1,000 healthy individuals to determine how strongly each stimulation site was connected with the previously identified lesion-based nicotine-addiction remission circuit. They then examined whether this connectivity predicted improvement in withdrawal symptoms.

Greater connectivity between the TMS stimulation site and the lesion-derived addiction-remission circuit was significantly associated with greater improvement in nicotine withdrawal symptoms. The association remained significant after adjustment for sex, baseline nicotine dependence, or both factors simultaneously.

A data-driven TMS circuit associated with withdrawal improvement showed substantial correspondence with the lesion-based remission circuit, with a Pearson correlation of r=-0.74. Combining the lesion and TMS findings identified potential therapeutic targets involving the frontopolar cortex, posterior parietal cortex, lateral temporal lobe, and superior frontal gyrus.

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Source: Khosravani, S., Drew, W., Apostol, M. R., et al. Convergence of TMS Sites and Lesion Locations Associated With Nicotine Addiction Improvement on a Common Brain Circuit.. American Journal of Psychiatry. 2026; 183(9): 646-656. Published: September, 2026. DOI: 10.1176/appi.ajp.20250855.



Ophthalmic Artery Doppler May Serve as a Noninvasive Marker of Angiogenic Imbalance in Near-Term Pregnancy

The findings demonstrate a significant relationship between the sFlt-1/PlGF ratio and ophthalmic artery Doppler measurements in near-term pregnancy. In particular, the OA peak systolic velocity ratio appears to reflect underlying angiogenic imbalance. Because OA Doppler is noninvasive, relatively accessible, and inexpensive, it may represent a useful surrogate approach for excluding angiogenic imbalance.

source: Ultrasound Obstet Gynecol.

Summary

[Posted 4/Sep/2026]

AUDIENCE: Ob/Gyn, Family Medicine

KEY FINDINGS: In 203 nulliparous women assessed at 35+0 to 36+6 weeks, higher sFlt-1/PlGF ratios were associated with higher OA-PSV ratios, lower OA-PI, and higher MAP. An OA-PSV ratio 0.61 identified women with an sFlt-1/PlGF ratio <38 with 90.5% accuracy at a 15% false-positive rate. The findings suggest that OA Doppler, particularly the PSV ratio, may provide a noninvasive and accessible surrogate for angiogenic imbalance near term. Further validation is needed before OA Doppler can replace biochemical assessment in clinical practice.

BACKGROUND: Angiogenic imbalance, reflected by an elevated soluble fms-like tyrosine kinase-1 to placental growth factor (sFlt-1/PlGF) ratio, is associated with the pathophysiology of pre-eclampsia. Although the sFlt-1/PlGF ratio can help identify angiogenic imbalance, its use may be limited by cost and availability. This study evaluated whether ophthalmic artery (OA) Doppler parameters are associated with the sFlt-1/PlGF ratio and whether OA Doppler could help identify or exclude angiogenic imbalance in near-term pregnancy.

DETAILS: This cross-sectional cohort study was nested within the PE37 randomized controlled trial and included nulliparous women recruited between January 2023 and January 2025. Women underwent sFlt-1/PlGF measurement between 35+0 and 36+6 weeks' gestation. A subsample underwent OA Doppler assessment, including the OA peak systolic velocity (PSV) ratio and pulsatility index (PI), together with measurement of mean arterial pressure (MAP) and mean uterine artery PI. The Doppler operator was blinded to the sFlt-1/PlGF results. The analysis included 203 women, distributed across the lowest, middle, and highest sFlt-1/PlGF ratio tertiles as 62, 71, and 70 women, respectively.

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Increasing sFlt-1/PlGF ratio was associated with progressive changes in OA Doppler measurements. The median OA-PSV ratio increased from 0.45 (IQR, 0.39–0.53) in the lowest tertile to 0.48 (IQR, 0.41–0.58) in the middle tertile and 0.59 (IQR, 0.50–0.66) in the highest tertile (adjusted P<0.001). Conversely, median OA-PI decreased from 2.20 (IQR, 1.92–2.61) to 2.13 (IQR, 1.86–2.37) and 1.86 (IQR, 1.60–2.26), respectively (adjusted P=0.031).

MAP also increased across the sFlt-1/PlGF tertiles, from 87.0 (IQR, 82.7–92.0) mmHg to 88.7 (IQR, 83.7–93.7) mmHg and 94.7 (IQR, 89.3–100.0) mmHg (adjusted P<0.001). In contrast, mean uterine artery PI did not demonstrate a significant trend across the sFlt-1/PlGF tertiles.

For identifying an sFlt-1/PlGF ratio <38, an OA-PSV ratio <0.61 correctly identified 90.5% of women at a 15% false-positive rate. The authors therefore identified OA Doppler, particularly the PSV ratio, as a potentially useful surrogate measure for angiogenic imbalance and a promising approach for ruling out abnormal angiogenic status.

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Source: Tinajero, M. F., Faraci, C., Cuenca, M., et al. Ophthalmic artery Doppler as potential surrogate marker of angiogenic imbalance in near-term pregnancy. Ultrasound in Obstetrics & Gynecology. 2026; 68(2):211–219. Published: August, 2026. DOI: 10.1002/uog.70270.



Next-Generation Phenotyping May Strengthen Variant Interpretation in Mowat-Wilson Syndrome

In a proof-of-concept study, GestaltMatcher ranked Mowat-Wilson syndrome as the leading diagnosis in a 4-year-old child with a de novo ZEB2 variant. Three of 4 facial images met the PP4 moderate threshold and 1 met the supporting threshold. Integration of facial, HPO, and molecular data through PEDIA ranked ZEB2 as the most likely disease-causing gene. The findings suggest that AI-assisted phenotyping may provide quantitative support for variant interpretation while complementing expert clinical genetics assessment.

source: Neuro Genetics

Summary

[Posted 3/Sep/2026]

AUDIENCE: Neurology, Pediatric, Radiology

KEY FINDINGS: Computational facial phenotyping using GestaltMatcher identified MWS as the leading diagnosis in a child with a suspected de novo ZEB2 variant and provided quantitative evidence that supported variant interpretation. Three of 4 facial images reached the PP4 moderate threshold, while 1 reached the supporting threshold. Integration of facial phenotype, HPO information, and molecular data through PEDIA ranked ZEB2 first and contributed to classification of the variant as likely pathogenic. The findings provide a proof of concept for incorporating NGP into rare-disease diagnostic and variant-interpretation workflows, although larger, multicenter studies are needed to establish reproducibility and generalizability.

BACKGROUND: Mowat-Wilson syndrome (MWS) is a rare neurodevelopmental disorder caused by pathogenic variants in the ZEB2 gene and characterized by developmental impairment, epilepsy, congenital anomalies, and distinctive craniofacial features. Although next-generation phenotyping (NGP) tools such as GestaltMatcher can assist in recognizing rare genetic disorders, their use as quantitative evidence for variant interpretation within the American College of Medical Genetics and Genomics (ACMG) framework remains less established. This study evaluated whether computational facial phenotyping and multimodal clinical data could support variant prioritization and the ACMG PP4 phenotype-specificity criterion in MWS.

DETAILS: The investigators applied GestaltMatcher to a 4-year-old child with an undiagnosed neurodevelopmental disorder, suspected MWS, and a de novo ZEB2 variant. Facial photographs were analyzed alongside Human Phenotype Ontology (HPO) terms and simulated exome data using the PEDIA framework. Bayesian likelihood modeling was used to establish Gestalt score thresholds corresponding to supporting, moderate, strong, and very strong PP4 evidence. Brain MRI was also analyzed for structural abnormalities associated with MWS. The GestaltMatcher model had been trained using 9,671 images from 7,294 patients representing 275 disorders. For the MWS analysis, the dataset included 11 individuals with MWS and 14 age-matched controls.

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GestaltMatcher ranked MWS as the leading diagnosis, while integration through PEDIA also ranked ZEB2 as the most likely disease-causing gene. Across the 4 facial images from the proband, 3 achieved the PP4 moderate threshold and 1 achieved the PP4 supporting threshold. The established Gestalt score thresholds were 0.5111 for supporting, 0.5672 for moderate, 0.6609 for strong, and 0.7632 for very strong evidence.

Using the NGP-derived PP4 moderate evidence together with the original ACMG evidence, the ZEB2 variant was classified as likely pathogenic. Brain MRI demonstrated subtle thinning of the corpus callosum, a finding consistent with previously reported MWS-associated neuroimaging abnormalities. MRI-derived features also differentiated individuals with MWS from age-matched controls in exploratory analysis.

An additional exploratory case involving an infant with molecularly confirmed MWS showed that GestaltMatcher could prioritize MWS based solely on infant facial characteristics. The authors emphasize that NGP is intended to complement, rather than replace, expert clinical genetic assessment.

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Source: Hsieh, T. C., Todd, D., Warner, T., et al. Leveraging Next-Generation Phenotyping in Dysmorphology to Support Variant Interpretation in Mowat-Wilson Syndrome. Neurology Genetics. 2026; 12(4): e200384. Published: July 1, 2026. DOI: 10.1212/NXG.0000000000200384



Somatic Diseases May Affect the Brain Primarily Through Vascular Injury and Neuronal Loss

A narrative review found that common age-related somatic diseases were consistently associated with brain atrophy, neuronal loss, and cerebrovascular lesions. Evidence linking these diseases to amyloid and tau pathology was limited and inconsistent. The findings suggest that systemic diseases may contribute to dementia primarily through non-Alzheimer's mechanisms, particularly vascular injury and neuronal loss. The review underscores the importance of recognizing mixed dementia and considering systemic health in the assessment of cognitive decline.

source: JIM

Summary

[Posted 1/Sep/2026]

AUDIENCE: Internal Medicine, Neurology, Cardiology

KEY FINDINGS: Common age-related somatic diseases appear to be more consistently associated with cerebrovascular injury, brain atrophy, and neuronal loss than with amyloid or tau pathology. These findings suggest that the relationship between systemic disease and dementia may involve multiple non-AD pathways rather than a direct effect on classical AD pathology. The review highlights the importance of recognizing mixed dementia and considering systemic health when evaluating brain aging and cognitive decline.

BACKGROUND: Several common age-related somatic diseases are associated with an increased risk of dementia, but the neuropathological pathways underlying these associations remain incompletely understood. This narrative review examined evidence linking heart disease, type 2 diabetes, kidney disease, liver disease, lung disease, and anemia with brain pathology, including Alzheimer's disease (AD)-related amyloid and tau pathology and non-AD changes such as neuronal loss, brain atrophy, cerebrovascular lesions, neuroinflammation, and non-AD proteinopathies.

DETAILS: The authors conducted a PubMed search for human studies investigating associations between somatic diseases and brain pathology using postmortem examinations, brain imaging, or cerebrospinal fluid biomarkers. The available evidence was qualitatively synthesized and graded according to its strength. The review specifically evaluated whether common systemic diseases were associated with AD-related pathology or with other forms of brain injury that may contribute to cognitive impairment and dementia.

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Across the conditions examined, the strongest and most consistent associations were between somatic diseases and global neuronal loss or brain atrophy, as well as cerebrovascular lesions. In contrast, associations between somatic diseases and amyloid or tau deposition were limited and inconsistent. The review found no systematic studies examining neuroinflammation or non-AD proteinopathies in relation to somatic diseases.

Overall, the available evidence suggests that systemic diseases may contribute to brain damage predominantly through non-AD mechanisms, particularly cerebrovascular injury and diffuse neuronal loss, rather than by directly driving the characteristic amyloid and tau pathology of AD. The authors emphasize that these processes may contribute to the complex combination of pathologies frequently underlying dementia in older adults.

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Source: Grande, G., Valletta, M., Gasparini, F., et al. Brain pathology in relation to somatic diseases: Exploring the body–brain crosstalk. Journal of Internal Medicine. 2026; 300(3): 223–237. Published: June 2, 2026. DOI: 10.1111/joim.70119.



Hyponatremia Treatment Guidelines: Maintain Cautious Correction to Prevent Osmotic Demyelination

Current hyponatremia correction safeguards should be maintained. For chronic hyponatremia with sodium 120 mmol/L or lower, correction should generally remain within 10-12 mmol/L in 24 hours and 18 mmol/L in 48 hours; high-risk patients require a stricter limit of 8 mmol/L in 24 hours. Frequent monitoring and desmopressin may prevent overcorrection.

source: Clin J Am Soc Nephrol.

Summary

[Posted 19/Aug/2026]

AUDIENCE: Nephrology, Endocrinology, Emergency Medicine

KEY FINDINGS: Current safeguards for severe hyponatremia remain warranted despite recent evidence questioning restrictive correction limits. Correction should be particularly cautious in patients with sodium ≤105 mmol/L or other ODS risk factors. Frequent serum sodium measurement and urine-output monitoring are essential because spontaneous water diuresis can cause rapid sodium increases. Desmopressin may help prevent or reverse excessive correction.

BACKGROUND: Severe hyponatremia can cause life-threatening neurologic complications, while overly rapid correction can result in osmotic demyelination syndrome (ODS). Recent retrospective evidence has questioned whether existing correction limits are overly restrictive. This review reassesses the evidence supporting current treatment safeguards and emphasizes continued caution when correcting severe hyponatremia.

DETAILS: The review examines the evidence underlying international recommendations for limiting the rate of serum sodium correction, with particular attention to patients with severe or chronic hyponatremia. The authors discuss evidence linking rapid correction with ODS and review data that have challenged the need for conservative correction limits.

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For chronically hyponatremic patients with serum sodium ≤120 mmol/L who are at normal risk for ODS, the US/Irish expert panel recommends limiting correction to 10–12 mmol/L during any 24-hour period and 18 mmol/L during any 48-hour period, with a minimum correction of 4–8 mmol/L. Patients at increased risk of ODS—including those with sodium ≤105 mmol/L, alcohol use disorder, hypokalemia, malnutrition, or advanced liver disease—should have correction limited to 8 mmol/L in any 24-hour period, with a minimum daily correction goal of 4–6 mmol/L.

For patients with severe symptoms, European and US/Irish recommendations support bolus administration of hypertonic saline to increase serum sodium by approximately 5 mmol/L or 4–6 mmol/L, respectively, within a few hours. The review notes that this initial increase can substantially reduce intracranial pressure and may reverse impending brain herniation.

The review concludes that current safeguards for treating severe hyponatremia should not be abandoned. Excessive increases in serum sodium can occur because of sudden elimination of dilute urine rather than excessive saline administration. Water diuresis may increase serum sodium by more than 2 mmol/L per hour, emphasizing the need for frequent serum sodium measurements and close monitoring of urine output in patients with sodium ≤120 mmol/L.

Desmopressin can be used to prevent or reverse inadvertent overcorrection. A strategy involving scheduled desmopressin with controlled hypertonic saline administration, termed the "DDAVP clamp"", has been reported to help achieve correction targets, although comparative evidence remains limited.

The review highlights that patients with sodium ≤105 mmol/L and additional risk factors for ODS are particularly vulnerable. If correction exceeds 8 mmol/L in less than 24 hours in these high-risk patients, relowering the serum sodium should be considered.

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Source: Sterns, R. H., Rondon-Berrios, H., Adrogué, H. J., et al. Treatment Guidelines for Hyponatremia: Stay the Course. Clinical Journal of the American Society of Nephrology. 2026; 19(1): 129-135. Published: January, 2024. DOI: 10.2215/CJN.0000000000000244.



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