Metastatic pheochromocytoma and paraganglioma
Metastatic pheochromocytoma and paraganglioma is disease that has spread to bone, lymph nodes, liver or lungs, the only way these adrenaline-producing tumours are called malignant. It is often slow, so treatment starts with blood pressure control and watching, then moves through radioactive drugs that home to the tumour, the kinase inhibitor sunitinib, chemotherapy and, since 2025, belzutifan.
Overview
No pathological feature reliably separates benign from malignant pheochromocytoma and paraganglioma; malignancy is defined by metastases at sites where chromaffin tissue does not normally occur, above all bone, lymph nodes, liver and lung. Metastatic disease occurs in about a tenth of adrenal tumours and a much larger share of extra-adrenal sympathetic paragangliomas, and SDHB mutation, large size, extra-adrenal site and a noradrenergic or dopaminergic profile are the main risk factors. The course is heterogeneous: some patients live for decades with stable bone metastases, others progress within months, so the first decision is whether to treat at all. Catecholamine excess is controlled throughout with alpha-blockade (phenoxybenzamine or doxazosin) and beta-blockade added second, with metyrosine for refractory cases, and any procedure, including biopsy and embolisation, is done under blockade to avoid a hypertensive crisis. Somatostatin receptor PET (68Ga-DOTATATE) and 123I-MIBG scintigraphy stage the disease and, by showing uptake, select patients for the corresponding radionuclide therapy.
Treatment is sequenced by pace. Indolent disease is watched or treated locally with surgery, radiotherapy, ablation or embolisation of dominant lesions. For progressive disease, radionuclide therapy is the first systemic step: high-specific-activity 131I-MIBG (iobenguane, Azedra) was approved in 2018 after a phase 2 trial in which a quarter of patients halved their antihypertensive medication and about a fifth had tumour responses, though the manufacturer withdrew it from the market in 2024, and lutetium-177 dotatate, approved for gastroenteropancreatic neuroendocrine tumours, is used for somatostatin-receptor-positive disease on the strength of retrospective series and phase 2 trials. Sunitinib is the one systemic drug with randomised evidence: FIRSTMAPPP (Lancet 2024), an academic phase 2 trial that took twelve years to enrol 78 patients, showed 12-month progression-free survival of 36 percent against 19 percent on placebo. Cyclophosphamide, vincristine and dacarbazine (CVD) chemotherapy, in use since 1988, and temozolomide, which is active particularly in SDHB-mutant tumours, are the cytotoxic options, and cabozantinib showed activity in the phase 2 NATALIE trial. Belzutifan, the HIF-2 alpha inhibitor, was approved in the United States in May 2025 for adults and children over 12 with locally advanced, unresectable or metastatic disease after a response rate of 26 percent in the LITESPARK-015 cohort, the first approval for the disease in seven years and the first to exploit the pseudohypoxia biology of cluster 1 tumours; the imipridone ONC206 and radioligand combinations are in trials. Bone metastases, the commonest site, are treated with denosumab or bisphosphonates and palliative radiotherapy.
State of the art
- Belzutifan is the first approved targeted drug and the first to act on the tumour's own hypoxia biology.
- FIRSTMAPPP proved that randomised trials are possible in this ultra-rare disease and validated sunitinib.
- Radionuclide therapy gives durable control to patients whose tumours take up the tracer.
Red cards
From the labels and guidelines behind the standard of care. Your team's thresholds win.- Emergency services nowBleeding or bruising
Bleeding that will not stop, black or bloody stools, or unexplained bruising when platelets are expected to be low.
- Emergency services nowBone pain flare or fracture (radium-223)
Sudden severe bone pain, or back pain with weakness or numbness in the legs (possible spinal cord compression).
- Emergency services nowBowel perforation
Sudden severe abdominal pain, a hard or very tender abdomen, or abdominal pain with vomiting and fever. Boxed warning for gastrointestinal perforation on bevacizumab.
- Emergency services nowFainting or palpitations
Fainting, near-fainting, or an irregular or racing heartbeat; several kinase inhibitors prolong the QT interval and the labels require ECG and electrolyte monitoring.
- Check before combiningFood and drink: Cabozantinib
Tablets: take on an empty stomach (no food 2 hours before or 1 hour after). Avoid grapefruit.
- Check before combiningFood and drink: Sunitinib
Avoid grapefruit.
See all on the product pages:131I-MIBG (iobenguane I-131) therapyCabozantinibCyclophosphamideLutetium-177 dotatateSunitinibTemozolomideVincristine·Printable cards in the navigator
Anatomy and lymph node drainage
- Renal cortex (RCC)
- Renal pelvis and ureter (upper tract urothelial)
- Bladder lining (non-muscle-invasive)
- Bladder muscle wall (muscle-invasive)
- Adrenal cortex
- Adrenal medulla and sympathetic chain (neuroblastoma)
- Developing kidney (Wilms tumour)
- Nodes: renal hilar
- Nodes: para-aortic and paracaval
- Nodes: obturator and iliac (bladder)
Renal cell carcinoma comes from the kidney's filtering cortex, urothelial cancer from the lining of the collecting system and bladder, and the adrenal on top hosts cortical and medullary (neuroblastoma) tumours.
- Renal cortex (RCC)
- Renal pelvis and ureter (upper tract urothelial)
- Bladder lining (non-muscle-invasive)
- Bladder muscle wall (muscle-invasive)
- Adrenal cortex
- Adrenal medulla and sympathetic chain (neuroblastoma)Indolent metastatic pheochromocytoma or paraganglioma (bone-predominant, observation or local therapy) · Progressive somatostatin-receptor-positive metastatic paraganglioma (lutetium-177 dotatate) · MIBG-avid metastatic pheochromocytoma (131I-MIBG where available) · SDHB-related metastatic paraganglioma (temozolomide-sensitive, belzutifan candidate) · Rapidly progressive metastatic pheochromocytoma or paraganglioma (CVD chemotherapy) · Metastatic pheochromocytoma or paraganglioma with uncontrolled catecholamine excess
- Developing kidney (Wilms tumour)
- renal hilar
- para-aortic and paracaval
- obturator and iliac (bladder)
Same organ: Non-muscle-invasive bladder cancer, Muscle-invasive and advanced bladder cancer, Bladder & urothelial cancer, Clear cell renal cell carcinoma, Papillary renal cell carcinoma, Chromophobe renal cell carcinoma, Renal cell carcinoma, Wilms tumour (nephroblastoma), Neuroblastoma (paediatric), Low-risk neuroblastoma (INRG very low and low risk, including stage MS), Intermediate-risk neuroblastoma, High-risk neuroblastoma, Adrenocortical carcinoma, Pheochromocytoma and paraganglioma (PPGL), Urethral cancer, Penile cancer, Localised penile cancer (organ-confined, node-negative), Node-positive and metastatic penile cancer, Localised adrenocortical carcinoma (ENSAT stage I to III, resectable), Advanced and metastatic adrenocortical carcinoma (ENSAT stage IV or unresectable), Hereditary pheochromocytoma and paraganglioma (SDHx, VHL, RET, NF1, MAX and TMEM127)
Show survival figures (1)
Averages across everyone diagnosed, often years ago. Your stage, subtype, age, fitness and the treatment you receive matter more than the average, and the numbers are improving quickly.
- About one in ten pheochromocytomas and up to a third or more of sympathetic paragangliomas, especially SDHB-related ones, metastasise to bone, lymph nodes, liver and lung; the course ranges from indolent over decades to rapidly fatal.
- MRIStandard of care
Nothing recorded yet.
Nothing recorded yet.
Also on OnCo: Symptoms and red flags · Early detection roadmap.
Cases by country
No country-level case numbers. This cancer is not mapped to a GLOBOCAN site.
One section per setting: the options named, what each is for, the trials behind them, the recorded trade-offs and the questions to ask.
Alpha-blockade with beta-blockade added second; metyrosine for refractory symptoms; blockade before every procedure; bone-protective agents for skeletal metastases.
68Ga-DOTATATE PET, 123I-MIBG scintigraphy where 131I-MIBG is available, CT or MRI, FDG-PET for SDHB-related disease; germline testing.
Active surveillance; resection, radiotherapy, thermal ablation or embolisation of dominant or symptomatic lesions.
Lutetium-177 dotatate for somatostatin-receptor-positive disease; 131I-MIBG for MIBG-avid disease where still available (approved 2018, withdrawn from market 2024).
Belzutifan (approved 2025); sunitinib (FIRSTMAPPP); cabozantinib; cyclophosphamide, vincristine and dacarbazine or temozolomide for rapidly progressive or SDHB-related disease.
ONC206, radioligand combinations and next-generation HIF-2 alpha inhibitors.
Subtypes & biomarkers
top- Indolent metastatic pheochromocytoma or paraganglioma (bone-predominant, observation or local therapy)
- Progressive somatostatin-receptor-positive metastatic paraganglioma (lutetium-177 dotatate)
- MIBG-avid metastatic pheochromocytoma (131I-MIBG where available)
- SDHB-related metastatic paraganglioma (temozolomide-sensitive, belzutifan candidate)
- Rapidly progressive metastatic pheochromocytoma or paraganglioma (CVD chemotherapy)
- Metastatic pheochromocytoma or paraganglioma with uncontrolled catecholamine excess
- Plasma or urinary metanephrines and 3-methoxytyramine (secretory profile, monitoring)
- Germline and somatic SDHB, VHL and other cluster status (prognosis, belzutifan and temozolomide sensitivity)
- 68Ga-DOTATATE PET uptake (lutetium-177 dotatate eligibility)
- 123I-MIBG uptake (131I-MIBG eligibility)
- Rate of progression on serial imaging (decides when to treat)
- Bone scan or FDG-PET for skeletal disease
How often this target appears
- 1988Cyclophosphamide, vincristine and dacarbazine chemotherapy reported at the NIH
- 1991131I-MIBG therapy in malignant pheochromocytoma reported
- 2018High-specific-activity 131I-MIBG (Azedra) approved in the United States
- 2024FIRSTMAPPP: sunitinib improves progression-free survival; Azedra withdrawn from the market
- 2025Belzutifan approved for advanced pheochromocytoma and paraganglioma
Dated changes read from the records linked to this cancer: approvals, regulatory steps, reported trials, guideline versions and milestones. Newest first; no date is inferred.
All 12 changes by month →- 2026-09-18This recordMetastatic pheochromocytoma and paragangliomaFacts on this page last checked
When this page itself was last checked or edited.
- 2025MilestoneBelzutifanBelzutifan approved for advanced pheochromocytoma and paraganglioma
A milestone in how this cancer is treated.
- 2024MilestoneSunitinibFIRSTMAPPP: sunitinib improves progression-free survival; Azedra withdrawn from the market
A milestone in how this cancer is treated.
- 2018Milestone131I-MIBG (iobenguane I-131) therapyHigh-specific-activity 131I-MIBG (Azedra) approved in the United States
A milestone in how this cancer is treated.
- 2014GuidelineMetastatic pheochromocytoma and paragangliomaGuideline Endocrine Society clinical practice guideline 2014; NCCN Neuroendocrine and Adrenal Tumors: All patients
Alpha-blockade with beta-blockade added second; metyrosine for refractory symptoms; blockade before every procedure; bone-protective agents for skeletal metastases.
- 2014GuidelineMetastatic pheochromocytoma and paragangliomaGuideline Endocrine Society clinical practice guideline 2014; NCCN Neuroendocrine and Adrenal Tumors: Indolent disease
Active surveillance; resection, radiotherapy, thermal ablation or embolisation of dominant or symptomatic lesions.
What is in development for Metastatic pheochromocytoma and paraganglioma, drawn from the whole corpus: 2 items. Drugs are grouped by the most advanced trial phase they have reached anywhere; approved treatments sit under standard of care. Technologies are the methods being tested for this cancer, trials are the studies recorded here, and ideas are proposals not yet in a trial.
Trials under way · 2
- Belzutifan/MK-6482 for the Treatment of Advanced Pheochromocytoma/Paraganglioma (PPGL), Pancreatic Neuroendocrine Tumor (pNET), Von Hippel-Lindau (VHL · phase 2 · Merck Sharp & Dohme LLC
- Study of ONC206 (JZP3507) in Advanced Pheochromocytoma and Paraganglioma · phase 2 · Jazz Pharmaceuticals
Open problems and what is being done
No randomised trial has compared radionuclide therapy with drugs or defined their order.
and how the field plans to fix it →What is being done about thisRare cancers and small trialsAvailable now- MIBG imaging and 131I-MIBG therapyEstablished
In trialsNothing recorded yet.
Ideas and roadmapsNothing recorded yet.
Also on OnCo: Find a trial · Expert centres.
Azedra's withdrawal leaves MIBG-avid, somatostatin-receptor-negative patients without a radionuclide option in many countries.
Catecholamine crises during treatment remain dangerous.
The disease is too rare and too slow for conventional trial designs.
and how the field plans to fix it →What is being done about thisRare cancers and small trialsAvailable now- MIBG imaging and 131I-MIBG therapyEstablished
In trialsNothing recorded yet.
Ideas and roadmapsNothing recorded yet.
Also on OnCo: Find a trial · Expert centres.
Trials
topTrials recruiting now
Country and place are remembered in this browser only. A postcode is sent to OpenStreetMap's Nominatim service to find coordinates when you press the button; nothing else leaves your device.
Landmark trials
Expert centres
topExpert centres
Melbourne · cancer center | Australia | none recorded | 0 | 1,547 | 24,196 | #14 | |
Boston · hospital | United States | 0 | 3,582 | 54,857 | #16 | ||
Stanford · university | United States | 0 | 3,000 | 50,162 | #30 | ||
Shanghai · hospital | China | none recorded | 0 | 2,872 | 31,534 | - | |
Sydney · cancer center | Australia | none recorded | 0 | 2,222 | 33,278 | - | |
Beijing · hospital | China | none recorded | 0 | 1,784 | 18,230 | - | |
Dallas, TX · cancer center | United States | 0 | 1,744 | 19,757 | - | ||
Utrecht · cancer center | Netherlands | none recorded | 0 | 1,422 | 20,323 | - | |
Barcelona · hospital | Spain | none recorded | 0 | 1,265 | 15,631 | - | |
Tianjin · cancer center | China | none recorded | 0 | 1,219 | 11,455 | - | |
Hangzhou · cancer center | China | none recorded | 0 | 1,219 | 17,635 | - | |
Lyon · cancer center | France | none recorded | 0 | 1,071 | 14,301 | - | |
Rozzano (Milan) · hospital | Italy | none recorded | 0 | 1,031 | 10,720 | - | |
L'Hospitalet de Llobregat · cancer center | Spain | 0 | 988 | 14,310 | - | ||
Oslo · cancer center | Norway | none recorded | 0 | 936 | 11,600 | - |
These are the things we can measure; they are not a ranking of quality. Each column is a field on the institution record or a count over what OnCo has linked; a centre that treats many patients with Metastatic pheochromocytoma and paraganglioma but is thinly recorded here will look small.
Not known: OnCo holds no case-volume or outcome figures for centres, so none are shown. Where a national audit or registry publishes them, the centre's page links to it. Default order: Newsweek rank, then trials for this cancer, then research output.
Questions to ask
topQuestions to ask your oncologist about Metastatic pheochromocytoma and paraganglioma
Newly diagnosed
- What is my exact diagnosis, stage, and grade, and which tests established them?Why: Everything else follows from an accurate stage and subtype.
- Which biomarkers have been tested on my tumour (for example Plasma or urinary metanephrines and 3-methoxytyramine, Germline and somatic SDHB, VHL and other cluster status, 68Ga-DOTATATE PET uptake, 123I-MIBG uptake, Rate of progression on serial imaging), and what were the results?Why: These results decide eligibility for targeted therapy, immunotherapy, and trials.
- Which subtype is my cancer, and does that change the recommended treatment?Why: Recognised subtypes for this cancer include Indolent metastatic pheochromocytoma or paraganglioma, Progressive somatostatin-receptor-positive metastatic paraganglioma, MIBG-avid metastatic pheochromocytoma.
- Is germline (inherited) genetic testing recommended for me or my family?Why: Inherited variants can change treatment and matter for relatives.
All patients
- For my situation (all patients), which of the standard options do you recommend and why?Why: Guideline options include: Alpha-blockade with beta-blockade added second; metyrosine for refractory symptoms; blockade before every procedure; bone-protective agents for skeletal metastases.
Staging
- For my situation (staging), which of the standard options do you recommend and why?Why: Guideline options include: 68Ga-DOTATATE PET, 123I-MIBG scintigraphy where 131I-MIBG is available, CT or MRI, FDG-PET for SDHB-related disease; germline testing.
Indolent disease
- For my situation (indolent disease), which of the standard options do you recommend and why?Why: Guideline options include: Active surveillance; resection, radiotherapy, thermal ablation or embolisation of dominant or symptomatic lesions.
Progressive disease, radionuclide therapy
- For my situation (progressive disease, radionuclide therapy), which of the standard options do you recommend and why?Why: Guideline options include: Lutetium-177 dotatate for somatostatin-receptor-positive disease; 131I-MIBG for MIBG-avid disease where still available (approved 2018, withdrawn from market 2024).
- Am I a candidate for Lutetium-177 dotatate, 131I-MIBG (iobenguane I-131) therapy, and what side effects should I expect?Why: Knowing the expected toxicities helps you plan work, family, and supportive care.
Progressive disease, systemic drugs
- For my situation (progressive disease, systemic drugs), which of the standard options do you recommend and why?Why: Guideline options include: Belzutifan (approved 2025); sunitinib (FIRSTMAPPP); cabozantinib; cyclophosphamide, vincristine and dacarbazine or temozolomide for rapidly progressive or SDHB-related disease.
- Am I a candidate for Belzutifan, Sunitinib, Cabozantinib or related drugs, and what side effects should I expect?Why: Knowing the expected toxicities helps you plan work, family, and supportive care.
Trials
- For my situation (trials), which of the standard options do you recommend and why?Why: Guideline options include: ONC206, radioligand combinations and next-generation HIF-2 alpha inhibitors.
- How do the results of Study of ONC206 (JZP3507) in Advanced Pheochromocytoma and Paraganglioma and Belzutifan/MK-6482 for the Treatment of Advanced Pheochromocytoma/Paraganglioma (PPGL), Pancreatic Neuroendocrine Tumor (pNET), Von Hippel-Lindau (VHL apply to someone like me?Why: Trial populations differ from individual patients; ask how closely you match.
Any stage
- Are there clinical trials I could join, for example of Belzutifan, Belzutifan/MK-6482 for the Treatment of Advanced Pheochromocytoma/Paraganglioma (PPGL), Pancreatic Neuroendocrine Tumor (pNET), Von Hippel-Lindau (VHL, Study of ONC206 (JZP3507) in Advanced Pheochromocytoma and Paraganglioma, Lutetium-177 dotatate?Why: Trials are how the next standard of care is set; asking early keeps options open.
- Would a second opinion at a high-volume centre change anything, and can you help arrange it?Why: Rare or high-stakes decisions benefit from a centre that treats many similar patients.
- What supportive care (symptom control, nutrition, exercise, mental health, financial help) is available from the start?Why: Supportive care improves quality of life and helps patients complete treatment.
- I read that “No randomised trial has compared radionuclide therapy with drugs or defined their order”. How does that affect my plan?Why: Open problems are where trials and second opinions matter most.
- I read that “Azedra's withdrawal leaves MIBG-avid, somatostatin-receptor-negative patients without a radionuclide option in many countries”. How does that affect my plan?Why: Open problems are where trials and second opinions matter most.
Newly diagnosed? Read the first 60 days with Metastatic pheochromocytoma and paraganglioma, then print the one-page appointment sheet with room for the answers.
Print this page for your appointment (your browser's print command). These prompts are for discussion; your clinical team knows your case.
Direct links plus the targets, companies, and technologies of this cancer's products.
technologies
16targets
6drugs
8companies
7terms
3trials
2key papers
3Sunitinib is an evidence-based option for progressive metastatic pheochromocytoma and paraganglioma, alongside radionuclide therapy and, for VHL-related disease, belzutifan.
Radionuclide therapy is a standard option for MIBG-avid metastatic pheochromocytoma and paraganglioma; somatostatin receptor targeted lutetium therapy is the alternative for SSTR-avid disease.
The diagnostic, surgical and follow-up rows on both pheochromocytoma and paraganglioma pages follow this guideline.
Latest papers
topQuery for this cancer: (TITLE:"Metastatic pheochromocytoma and paraganglioma" OR ABSTRACT:"Metastatic pheochromocytoma and paraganglioma" OR TITLE:"Malignant pheochromocytoma" OR ABSTRACT:"Malignant pheochromocytoma" OR TITLE:"Metastatic paraganglioma" OR ABSTRACT:"Metastatic paraganglioma" OR TITLE:"Advanced PPGL" OR ABSTRACT:"Advanced PPGL" OR TITLE:"Unresectable pheochromocytoma and paraganglioma" OR ABSTRACT:"Unresectable pheochromocytoma and paraganglioma") AND (treatment OR therapy OR trial OR survival OR diagnosis). Results are unfiltered search hits about Metastatic pheochromocytoma and paraganglioma, not a curated reading list.
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