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Naxitamab Side Effects: A Clinical Monitoring Guide
INDICATION DANYELZA is indicated, in combination with granulocyte-macrophage colony-stimulating factor (GM-CSF), for the treatment of pediatric patients 1 year of age and older and adult patients with relapsed or refractory high-risk neuroblastoma in the bone or bone marrow who have demonstrated a partiaI response, minor response, or stable disease to prior therapy.
This indication is approved under accelerated approval based on overalI response rate and duration of response. Continued approval for this indication may be contingent upon verification and description of clinical benefit in a confirmatory trial(s).

What to Expect: A Clinical Guide to Naxitamab Side Effects and Monitoring

Distinguishing DANYELZA adverse events from progressing neuroblastoma symptoms is one of the central monitoring challenges for HCPs running anti-GD2 therapy. The safety profile is well characterized, with the dominant toxicities driven directly by mechanism rather than off-target effects. Programs that understand the adverse event distribution and the specific monitoring obligations can run the regimen safely in the outpatient setting.

This piece works through the adverse event frequency and grading, how those events differ from disease activity, premedication and infusion strategy, and the neurological and cardiovascular surveillance requirements. The DANYELZA prescribing information and the established outpatient experience provide the guidance for what to expect, when, and how. Each section maps to a specific decision a treating team makes during the cycle.

What the Safety Data Actually Shows Across Trial 201 for Neuroblastoma Patients

The safety database for DANYELZA rests on Study 201 and Study 12-230, both in relapsed or refractory high-risk neuroblastoma. Infusion-related reactions of any grade occurred in 100 percent of patients in Study 201 and in 94 percent of patients in Study 12-230. Grade 3 or 4 infusion reactions occurred in 68 percent of patients in Study 201 and 32 percent of patients in Study 12-230. Serious infusion-related reactions occurred in 4 percent and 18 percent of patients, respectively.

Hypotension of any grade occurred in 100 percent of patients in Study 201 and 89 percent of patients in Study 12-230. Pain of any grade occurred in 100 percent of patients in Study 201 and 94 percent of patients in Study 12-230, with Grade 3 pain occurring in 72 percent of patients in Study 201.

Anaphylaxis occurred in 12 percent of patients in Study 201, and two patients (8 percent) permanently discontinued DANYELZA due to anaphylaxis. One patient in Study 12-230 experienced a Grade 4 cardiac arrest 1.5 hours following completion of a DANYELZA infusion.

Common Adverse Reactions

The most common adverse reactions across both studies, occurring in at least 25 percent of patients in either study, include:

Hypertension occurred in 44 percent of Study 201 patients and 28 percent of Study 12-230 patients, with Grade 3 or 4 hypertension in 4 percent and 7 percent, respectively. Four patients in Study 12-230 permanently discontinued DANYELZA due to hypertension.

The Study 201 pre-specified interim analysis offers additional context for severe-event resolution. Among patients who experienced Grade 3 pain, 90 percent resolved within five hours and the majority within one hour.

Among patients who experienced Grade 3 or 4 hypotension, 89 percent resolved within five hours and the majority within one hour. The events are common but short-lived under structured management.

​How DANYELZA Adverse Events Differ From Neuroblastoma Symptoms

Telling treatment toxicity apart from progressing neuroblastoma symptoms shapes how clinicians respond at the bedside. Adverse reactions from DANYELZA arise from antibody-mediated immune engagement at GD2 sites, while disease symptoms originate from the tumor itself. Mistaking one for the other risks both unnecessary treatment interruption and the failure to detect disease progression.

The clearest discriminator is timing relative to the infusion. Infusion reactions in Study 201 generally occurred within 24 hours of completing a DANYELZA infusion, most often within 30 minutes of initiation, and were most frequent during the first infusion of each cycle.

Pain typically began during the infusion and lasted a median of less than one day in Study 201, with a range from less than one day up to 62 days. Neuroblastoma symptoms, by contrast, build gradually across days or weeks and follow disease biology rather than the dosing calendar.

Pain is the most common overlapping presentation between toxicity and disease. DANYELZA-induced pain spikes during infusion and resolves quickly under structured management, while disease-driven bone pain persists or worsens between cycles. The timing distinction is more reliable than location for separating the two etiologies.

Constitutional symptoms create a harder distinction. Fatigue, pyrexia, and decreased appetite can reflect either ongoing therapy or progressing neuroblastoma. Imaging response assessments, including MIBG scans and bone marrow biopsy, resolve ambiguous cases that pattern recognition alone cannot.

The diagnostic reasoning shifts depending on where in the cycle the symptoms appear. On-infusion or immediately post-infusion presentations almost always reflect treatment toxicity. Mid-cycle or pre-cycle presentations that persist or escalate warrant disease evaluation rather than presumed toxicity.

​How Premedication and Infusion Strategy Modulate Severe Events

The premedication protocol targets the specific severe-event profile rather than a generic infusion-reaction risk. Intravenous corticosteroids precede the first infusion of each cycle by 120 to 30 minutes, with subsequent infusions receiving corticosteroids if a severe reaction occurred previously. An antihistamine, H2 antagonist, acetaminophen, and antiemetic are administered 30 minutes before every infusion to manage infusion-related reactions and nausea or vomiting.

Pain management begins with a 12-day course of gabapentin or other prophylactic medication for neuropathic pain, initiated five days before the first infusion of each cycle. Oral opioids precede each infusion by 60 to 45 minutes, with intravenous opioids available for breakthrough pain during infusion. Ketamine may be considered for pain not adequately controlled by opioids. The premedication structure converts what would be an unmanageable acute pain syndrome into a structured, anticipated event.

The first infusion of Cycle 1 runs 60 minutes, with subsequent infusions delivered over 30 to 60 minutes as tolerated. Eighty percent of patients in Study 201 required reduction in infusion rate, and 80 percent had an infusion interrupted for at least one infusion-related reaction. The pattern argues for slow titration with built-in pause-and-resume protocols rather than fixed rates.

Severe acute events are mostly manageable with established supportive interventions. Reduce the rate, interrupt the infusion, or permanently discontinue DANYELZA based on severity, and institute appropriate medical management as needed. Patients require observation for at least two hours following completion of each infusion in a setting where cardiopulmonary resuscitation medication and equipment are available.

How Premedication and Infusion Strategy Modulate Severe Events of Neuroblastoma

The premedication protocol is engineered around the specific severe-event profile, not against a generic infusion-reaction risk. According to Mora et al. (2023) in Frontiers in Oncology, pre-hydration with normal saline is recommended in the Trial 201 protocol to mitigate severe hypotension. Corticosteroid premedication on Cycle 1 Day 1 reduces the risk of severe bronchospasm and other infusion-related reactions.

The infusion strategy itself has been refined to reduce severe events without compromising pharmacology. Step-up infusion protocols modify the infusion rate to allow the patient's physiology to adjust gradually. Published experience suggests the approach reduces the frequency of severe acute events on early infusions.

Severe acute events are mostly manageable with established supportive interventions. Normal saline bolus addresses hypotension, β2-receptor agonists address bronchospasm, and reductions or pauses in infusion rate address persistent reactions. The toolkit is straightforward; the operational requirement is to have it pre-positioned and rehearsed.

The acute pain management protocol pairs gabapentin lead-in with pre-infusion oral opioids and breakthrough IV opioids during infusion. Ketamine is used as part of a multimodal pain management strategy that reduces the amount of opioids required. The premedication structure converts what would be an unmanageable acute pain syndrome into a structured, anticipated event.

How to Structure Neurological Monitoring Against Neuroblastoma Symptoms

Neurotoxicity demands structured surveillance at every visit rather than symptom-triggered evaluation alone. The label identifies several specific neurological adverse events, each with its own warning signs, frequency profile, and permanent-discontinuation criteria. Some overlap with neuroblastoma symptoms in ways that require disciplined clinical reasoning rather than reactive interpretation.

Reversible Posterior Leukoencephalopathy Syndrome

RPLS occurred in 2 patients (2.8 percent) in Trial 12-230, with events occurring on days 2 and 7 after the first cycle. Both events were associated with hypertension, which underscores the link between cardiovascular and neurological surveillance. Permanent discontinuation is required for any-grade RPLS regardless of severity.

Transverse Myelitis in Neuroblastoma

Transverse myelitis is rare but considered a class effect of anti-GD2 antibodies, with at least one Grade 3 event reported in a single patient under expanded access. According to the prescribing information, the patient recovered after high-dose methylprednisolone. Permanent discontinuation is required for any grade of transverse myelitis.

Peripheral Neuropathy

The peripheral neuropathy discontinuation criteria are precise and grade-dependent. Grade ≥2 motor neuropathy and Grade ≥3 sensory neuropathy both trigger permanent discontinuation, according to the ASCO Post HCP summary. Both thresholds are tighter than clinicians might expect for other neurotoxic agents.

Neurological Disorders of the Eye

Subtotal or total vision loss triggers permanent discontinuation under the label. The category captures rare but clinically significant events that, when they arise, demand ophthalmologic input. Routine pre-treatment baseline documentation of visual function supports later assessment if symptoms emerge.

Prolonged Urinary Retention

Urinary retention occurred in 4 percent of patients across both pivotal trials, with all events on the day of infusion lasting between 0 and 24 days. Persistent urinary retention after opioid discontinuation triggers permanent naxitamab discontinuation. The pattern aligns with the GD2 distribution on autonomic nerve fibers and the broader neurotoxicity profile.

How to Structure Cardiovascular Monitoring

Cardiovascular surveillance is the most schedule-intensive monitoring obligation in the regimen. Monitor blood pressure during infusion and at least daily on Days 1 through 8 of each cycle of DANYELZA, and evaluate for complications of hypertension, including RPLS. The intensity reflects both the frequency and the timing of hypertensive events.

Most hypertensive events occurred on the day of DANYELZA infusion and up to 9 days following an infusion. The post-discharge window therefore matters as much as in-clinic monitoring. Programs serving distant catchment areas need a home blood pressure monitoring protocol or daily clinic check-ins to reliably cover Days 1 through 8. Do not initiate DANYELZA in patients with uncontrolled hypertension, and interrupt or permanently discontinue based on severity.

Myocarditis has emerged as a rare but serious adverse event requiring its own surveillance pathway. According to the prescribing information, myocarditis has occurred in adolescent patients within days of receiving DANYELZA and requiring drug interruption. Monitor for signs and symptoms of myocarditis throughout treatment, with withholding, dose reduction, or permanent discontinuation based on severity. The pathway is a distinct surveillance obligation rather than a subset of general cardiovascular monitoring.

Orthostatic hypotension has occurred in patients receiving DANYELZA in clinical trials and expanded access programs, with severe orthostatic events including cases requiring hospitalization. Cases occurred within hours to 6 days of DANYELZA infusions in any cycle. In patients with symptoms of orthostatic hypotension, monitor postural blood pressure prior to initiating treatment and as clinically indicated with subsequent dosing.

The cardiovascular monitoring protocol is detailed but executable in the outpatient setting. More than 90 percent of infusions in the Study 201 pre-specified interim analysis took place in an outpatient setting, with 1,144 of 1,237 infusions delivered outpatient. The monitoring intensity is real, but it does not require inpatient infrastructure for most patients.

Building Your Safety Infrastructure for Naxitamab

The naxitamab safety profile rewards anticipatory rather than reactive programs. Most adverse events are predictable in type, timing, and severity, with cycle-by-cycle attenuation patterns that let programs scale monitoring intensity to actual risk. The published guidance from established centers provides a detailed operational framework that most teams can adapt.

SERB offers safety monitoring resources, premedication guidance, and clinical support for centers building or refining their naxitamab safety infrastructure for neuroblastoma. The Trovillion et al. 2024 outpatient guidelines and the published infusion strategy work give programs concrete starting points for protocol development.

​Sources

  1. DANYELZA (naxitamab-gqgk) [package insert]. New York, NY: Y-mAbs Therapeutics, Inc.; 2024. https://labeling.ymabs.com/danyelza

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CR=complete response; MIBG=meta-iodobenzylguanidine.

References: 1. Park JR, Bagatell R, Cohn SL, et al. J Clin Oncol. 2017;35(22):2580-2587. 2. DuBois SG, Kalika Y, Lukens JN, et al. J Pediatr Hematol Oncol. 1999;21(3):181-189.
3. Garaventa A, Poetschger U,Valteau-Couanet D, et al. J Clin Oncol. 2021;39(23):2552-2563. 4. Pinto N, Naranjo A, Hibbitts E, et al. Eur J Cancer. 2019;112:66-79. 5. Yanik GA, Parisi MT, Naranjo A, et al. J Nucl Med. 2018;59:502-508. 6. Yanik GA, Parisi MT, Shulkin BL, et al. J Nucl Med. 2013;54(4):541-548. 7. Streby KA, Parisi MT, Shulkin BL, et al. Pediatr Blood Cancer. 2023;70(8):e30418.

References: 1. DANYELZA® [package insert]. New York, NY: Y-mAbs Therapeutics, Inc.; 2024. 2. Data on file. Y-mAbs Therapeutics, Inc.

References: 1. Data on file. Y-mAbs Therapeutics, Inc. 2. DANYELZA® [package insert]. New York, NY: Y-mAbs Therapeutics, Inc.; 2024.

Reference: 1. Data on file. Y-mAbs Therapeutics, Inc.

References: 1. DANYELZA® [package insert]. New York, NY: Y-mAbs Therapeutics, Inc.; 2024. 2. Data on file. Y-mAbs Therapeutics, Inc. 3. NIH US National Library of Medicine. https://clinicaltrials.gov/ct2/ show/NCT01419834?term=NCT01419834&draw=2&rank=1. Accessed April 22, 2024.

References: 1. DANYELZA® [package insert]. New York, NY: Y-mAbs Therapeutics, Inc.; 2024. 2. Data on file. Y-mAbs Therapeutics, Inc.

References: 1. Yanik GA, Parisi MT, Shulkin BL, et al. J Nucl Med. 2013;54(4):541-548. 2. Yanik GA, Parisi MT, Naranjo A, et al. J Nucl Med. 2018;59:502-508. 3. Streby KA, Parisi MT, Shulkin BL, et al. Pediatr Blood Cancer. 2023;e30418. https://doi.org/10.1002/pbc.30418. 4. DANYELZA® [package insert]. New York, NY: Y-mAbs Therapeutics, Inc; 2024.

References: 1. DANYELZA® [package insert]. New York, NY: Y-mAbs Therapeutics, Inc.; 2024. 2. Lisby S, Liebenberg N, Bukrinski J, et al. Presented at the SIOP virtual congress. Abstract #945. October 16, 2020. 3. Cheung N-KV, Guo H, Hu J, et al. Oncoimmunology. 2012;1(4):477-486.

References: 1. Data on file. Y-mAbs Therapeutics, Inc. 2. DANYELZA® [package insert]. New York, NY: Y-mAbs Therapeutics, Inc.; 2024.

References: 1. DANYELZA® [package insert]. New York, NY: Y-mAbs Therapeutics, Inc.; 2024. 2. Data on file. Y-mAbs Therapeutics, Inc.

References: 1. DANYELZA® [package insert]. New York, NY: Y-mAbs Therapeutics, Inc.; 2024. 2. Data on file. Y-mAbs Therapeutics, Inc.

IMPORTANT SAFETY INFORMATION and INDICATION

WARNING: SERIOUS INFUSION-RELATED REACTIONS and NEUROTOXICITY

Serious Infusion-Related Reactions

  • DANYELZA can cause serious infusion reactions, including cardiac arrest, anaphylaxis, hypotension, bronchospasm, and stridor. lnfusion reactions of any Grade occurred in 94-100% of patients. Severe infusion reactions occurred in 32-68% and serious infusion reactions occurred in 4-18% of patients in DANYELZA clinical studies.
  • Premedicate prior to each DANYELZA infusion as recommended and monitor patients for at least 2 hours following completion of each infusion. Reduce the rate, interrupt infusion, or permanently discontinue DANYELZA based on severity.
  • Neurotoxicity

  • DANYELZA can cause severe neurotoxicity, including severe neuropathic pain, transverse myelitis and reversible posterior leukoencephalopathy syndrome (RPLS). Pain of any Grade occurred in 94-100% of patients in DANYELZA clinical studies.
  • Premedicate to treat neuropathic pain as recommended. Permanently discontinue DANYELZA based on the adverse reaction and severity.
CONTRAINDICATION

DANYELZA is contraindicated in patients with a history of severe hypersensitivity reaction to naxitamab-gqgk. Reactions have included anaphylaxis.

WARNINGS AND PRECAUTIONS
Serious Infusion-Related Reactions

DANYELZA can cause serious infusion reactions requiring urgent intervention including fluid resuscitation, administration of bronchodilators and corticosteroids, intensive care unit admission, infusion rate reduction or interruption of DANYELZA infusion. Infusion-related reactions included hypotension, bronchospasm, hypoxia, and stridor.

Serious infusion-related reactions occurred in 4% of patients in Study 201 and in 18% of patients in Study 12-230. Infusion-related reactions of any Grade occurred in 100% of patients in Study 201 and 94% of patients in Study 12-230. Hypotension of any grade occurred in 100% of patients in Study 201 and 89% of patients in Study 12-230.

In Study 201, 68% of patients experienced Grade 3 or 4 infusion reactions; and in Study 12-230, 32% of patients experienced Grade 3 or 4 infusion reactions. Anaphylaxis occurred in 12% of patients and two patients (8%) permanently discontinued DANYELZA due to anaphylaxis in Study 201. One patient in Study 12-230 (1.4%) experienced a Grade 4 cardiac arrest 1.5 hours following completion of DANYELZA infusion.

In Study 201, infusion reactions generally occurred within 24 hours of completing a DANYELZA infusion, most often within 30 minutes of initiation. Infusion reactions were most frequent during the first infusion of DANYELZA in each cycle. Eighty percent of patients required reduction in infusion rate and 80% of patients had an infusion interrupted for at least one infusion-related reaction.

Caution is advised in patients with pre-existing cardiac disease, as this may exacerbate the risk of severe hypotension.

Premedicate with an antihistamine, acetaminophen, an H2 antagonist and corticosteroid as recommended. Monitor patients closely for signs and symptoms of infusion reactions during and for at least 2 hours following completion of each DANYELZA infusion in a setting where cardiopulmonary resuscitation medication and equipment are available.

Reduce the rate, interrupt infusion, or permanently discontinue DANYELZA based on severity and institute appropriate medical management as needed.

Neurotoxicity

DANYELZA can cause severe neurotoxicity, including severe neuropathic pain, transverse myelitis, and reversible posterior leukoencephalopathy syndrome.

Pain
Pain, including abdominal pain, bone pain, neck pain, and extremity pain, occurred in 100% of patients in Study 201 and 94% of patients in Study 12-230. Grade 3 pain occurred in 72% of patients in Study 201. One patient in Study 201 (4%) required interruption of an infusion due to pain. Pain typically began during the infusion of DANYELZA and lasted a median of less than one day in Study 201 (range less than one day and up to 62 days).

Premedicate with drugs that treat neuropathic pain (e.g., gabapentin) and oral opioids. Administer intravenous opioids as needed for breakthrough pain. Permanently discontinue DANYELZA based on severity.

Transverse Myelitis
Transverse myelitis has occurred with DANYELZA. Permanently discontinue DANYELZA in patients who develop transverse myelitis.

Reversible Posterior Leukoencephalopathy Syndrome (RPLS)
Reversible posterior leukoencephalopathy syndrome (RPLS) (also known as posterior reversible encephalopathy syndrome or PRES) occurred in 2 (2.8%) patients in Study 12-230. Events occurred 2 and 7 days following completion of the first cycle of DANYELZA. Monitor blood pressure during and following DANYELZA infusion and assess for neurologic symptoms. Permanently discontinue DANYELZA in case of symptomatic RPLS.

Peripheral Neuropathy
Peripheral neuropathy, including peripheral sensory neuropathy, peripheral motor neuropathy, paresthesia, and neuralgia, occurred in 32% of patients in Study 201 and in 25% of patients in Study 12-230. Most signs and symptoms of neuropathy began on the day of the infusion and neuropathy lasted a median of 5.5 days (range 0 to 22 days) in Study 201 and 0 days (range 0 to 22 days) in Study 12-230.

Permanently discontinue DANYELZA based on severity.

Neurological Disorders of the Eye
Neurological disorders of the eye including unequal pupils, blurred vision, accommodation disorder, mydriasis, visual impairment, and photophobia occurred in 24% of patients in Study 201 and 19% of patients in Study 12-230. Neurological disorders of the eye lasted a median of 17 days (range 0 to 84 days) in Study 201 with two patients (8%) experiencing an event that had not resolved at the time of data cutoff, and a median of 1 day (range less than one day to 21 days) in Study 12-230. Permanently discontinue DANYELZA based on severity.

Prolonged Urinary Retention
Urinary retention occurred in 1 (4%) patient in Study 201 and in 3 patients (4%) in Study 12-230. All events in both studies occurred on the day of an infusion of DANYELZA and lasted between 0 and 24 days. Permanently discontinue DANYELZA in patients with urinary retention that does not resolve following discontinuation of opioids.

Myocarditis

Myocarditis has occurred in adolescent patients receiving DANYELZA in clinical trials and expanded access programs. Myocarditis occurred within days of receiving DANYELZA requiring drug interruption. Monitor for signs and symptoms of myocarditis during treatment with DANYELZA. Withhold, reduce the dose, or permanently discontinue DANYELZA based on severity.

Hypertension

Hypertension occurred in 44% of patients in Study 201 and 28% of patients in Study 12-230 who received DANYELZA. Grade 3 or 4 hypertension occurred in 4% of patients in Study 201 and 7% of patients in Study 12-230. Four patients (6%) in Study 12-230 permanently discontinued DANYELZA due to hypertension. In both studies, most events occurred on the day of DANYELZA infusion and occurred up to 9 days following an infusion of DANYELZA.

Do not initiate DANYELZA in patients with uncontrolled hypertension. Monitor blood pressure during infusion, and at least daily on Days 1 to 8 of each cycle of DANYELZA and evaluate for complications of hypertension including RPLS. Interrupt DANYELZA infusion and resume at a reduced rate, or permanently discontinue DANYELZA based on the severity.

Orthostatic Hypotension

Orthostatic hypotension has occurred in patients receiving DANYELZA in clinical trials and expanded access programs. Severe orthostatic hypotension, including cases requiring hospitalization, have occurred. Cases occurred within hours to 6 days of DANYELZA infusions in any cycle.

In patients with symptoms of orthostatic hypotension, monitor postural blood pressure prior to initiating treatment with DANYELZA and as clinically indicated with subsequent dosing. Withhold, reduce dose, or permanently discontinue DANYELZA based on severity.

Embryo-Fetal Toxicity

Based on its mechanism of action, DANYELZA may cause fetal harm when administered to a pregnant woman. Advise females of reproductive potential, including pregnant women, of the potential risk to a fetus. Advise females of reproductive potential to use effective contraceptive during treatment with DANYELZA and for two months after the last dose.

ADVERSE REACTIONS

The most common adverse reactions in Studies 201 and 12-230 (≥25% in either study) were infusion-related reaction, pain, tachycardia, vomiting, cough, nausea, diarrhea, decreased appetite, hypertension, fatigue, erythema multiforme, peripheral neuropathy, urticaria, pyrexia, headache, injection site reaction, edema, anxiety, localized edema and irritability. The most common Grade 3 or 4 laboratory abnormalities (≥5% in either study) were decreased lymphocytes, decreased neutrophils, decreased hemoglobin, decreased platelet count, decreased potassium, increased alanine aminotransferase, decreased glucose, decreased calcium, decreased albumin, decreased sodium and decreased phosphate.

INDICATION

DANYELZA is indicated, in combination with granulocyte-macrophage colony-stimulating factor (GM-CSF), for the treatment of pediatric patients 1 year of age and older and adult patients with relapsed or refractory high-risk neuroblastoma in the bone or bone marrow who have demonstrated a partial response, minor response, or stable disease to prior therapy.This indication is approved under accelerated approval based on overall response rate and duration of response. Continued approval for this indication may be contingent upon verification and description of clinical benefit in a confirmatory trial(s).

Please see full Prescribing Information and Patient Information for DANYELZA including Boxed Warning on serious infusion-related reactions and neurotoxicity.

References: 1. DANYELZA® [package insert]. New York, NY: Y-mAbs Therapeutics, Inc.; 2024.
2. Data on file. Y-mAbs Therapeutics, Inc.

References: 1. Data on file. Y-mAbs Therapeutics, Inc. 2. DANYELZA® [package insert]. New York, NY: Y-mAbs Therapeutics, Inc.; 2024. Available online at https://labeling.ymabs.com/danyelza. 3. Smith V, Foster J. High-risk neuroblastoma treatment review. Children (Basel). 2018;5(9):114. 4. Ahmed A, Zhang L, Reddivalla N, Hetherington M. Neuroblastoma in children: update on clinicopathologic and genetic prognostic factors. Pediatr Hematol Oncol. 2017;34(3):165-185. 5. London W, Castel V, Monclair T, et al. Clinical and biologic features predictive of survival after relapse of neuroblastoma: a report from International Neuroblastoma Risk Group project. J Clin Oncol. 2011;29(24):3286-3292.

References: 1. DANYELZA® [package insert]. New York, NY: Y-mAbs Therapeutics, Inc.; 2024. Available online at https://labeling.ymabs.com/danyelza. 2. National Cancer Institute. Published November 27, 2017. Accessed May 17, 2021. Common Terminology Criteria for Adverse Events (CTCAE) Version 5.0. https://ctep.cancer.gov/protocolDevelopment/electronic_applications/docs/CTCAE_v5_Quick_Reference_8.5x11.pdf

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IMPORTANT SAFETY INFORMATION and INDICATION View less
IMPORTANT SAFETY INFORMATION and INDICATION View less