Capillary Malformation–Arteriovenous Malformation Syndrome Associated with RASA1 and EPHB4 Mutations: Comparative Case Series and Narrative Review
Abstract
1. Introduction
2. Case Reports
2.1. Case 1—RASA1 Mutation (CM-AVM1)
2.2. Case 2—EPHB4 Mutation (CM-AVM2)
2.3. Case 3—Dual EPHB4 + RASA1 Mutation


3. Literature Review
3.1. Pathophysiology
3.2. Clinical Characteristics
| CM-AVM1 | CM-AVM2 | |
|---|---|---|
| Disease causing genes | RASA1 | EPHB4 |
| Onset | Early childhood, congenital | Early childhood, congenital |
| Capillary malformations | + | + |
| High-flow vascular malformations | 30% of patients (10% CNS; rare visceral vascular malformations) [27] | 18% of patients (3% CNS vascular malformations) [27] |
| Telangiectasia | − | + Infancy/childhood Spidery >> punctate Diffuse |
| Epistaxis | − | + Intermittent mild episodes with spontaneous resolution |
| Bier spots | − | + |
| Parkes Weber syndrome | 7% of patients | 7% of patients |
| Family history | +/− | +/− |
| Clinical features | Often discrete symptoms | Often discrete symptoms; can mimic HHT |
3.3. Diagnosis
- ▪
- Primary feature: presence of at least three characteristic CMs (multifocal, small, pink-to-red macules).
- ▪
- Supportive features:
- ○
- Radiological or clinical demonstration of an AVM or AVF,
- ○
- Positive family history of AVMs or CMs,
- ○
- Confirmed pathogenic variant in RASA1 or EPHB4 genes.
3.4. Differential Diagnosis
| Differential Diagnosis | Genes Involved | Sustains the Diagnosis | Rules out the Diagnosis |
|---|---|---|---|
| Hereditary hemorrhagic telangiectasia (HHT) | ACVRL1 ENG GDF2 SMAD4 | Multiple AVMs that lack intervening capillaries and result in direct connections between arteries and veins | Onset often during adolescence or infancy; telangiectasis are typically punctate/macular and localized rather than diffuse (lips, tongue, nose, face, fingers, ears, conjunctivae); large CMs are not typical; AVMs most often pulmonary, hepatic, cerebral; commonly manifests with spontaneous and recurrent epistaxis episodes, with increasing frequency and severity with age, as well as, cutaneous or mucosal CMs that rupture and bleed after a slight trauma; may associate gastrointestinal bleeding due to telangiectasias in the gastrointestinal mucosa |
| Sturge–Weber syndrome (SWS) | GNAQ GNA11 | Intracranial vascular anomaly localized in the occipital and posterior parietal lobes | Segmental facial cutaneous vascular malformations (port-wine stains) in distribution of the three branches of the trigeminal nerve; leptomeningeal angiomatosis; seizures; high risk of glaucoma |
| Klippel-Trenaunay syndrome (KTS) | PIK3CA | Capillary malformations and hypertrophy of the related bones and soft tissues; congenital | Vascular malformations are typically low-flow lesions |
| PTEN hamartoma tumor syndrome | PTEN | Overgrowth and high-flow lesions | Vascular anomalies are usually intramuscular, associated with ectopic fat, severely disrupting tissue architecture; tumor predisposition is more prominent |
| Multiple cutaneous and mucosal venous malformations (VMCMs) | TEK | Onset frequently in infancy and childhood; cutaneous venous malformations can be mistaken for CMs | Small, soft, compressible, multifocal bluish cutaneous and/or mucosal venous malformations with slow flow on Doppler ultrasound; usually present at birth but new lesions appear with time; small lesions are usually asymptomatic while larger lesions can invade the subcutaneous muscle and cause pain |
| Hereditary glomuvenous malformations (GVMs) | GLMN | Onset frequently in infancy | Cobble–stone appearance, hard consistency, only partially compressible, painful on palpation; usually not found in mucosa; histopathology—rounded cells (glomus cells) around blood-filled cavities, cells stain positively with smooth muscle α-actin and vimentin |
4. Discussions
4.1. Imaging Characteristics and Multimodal Evaluatio n
4.2. Laboratory and Immunological Findings
4.3. Genetic Findings and Molecular Mechanisms
4.4. Differential Diagnosis and Diagnostic Considerations
4.5. Clinical Management and Follow-Up
4.6. Genetic Counseling and Family Implications
4.7. Proposed Diagnostic and Clinical Approach
- Initial Doppler ultrasound and transcranial Doppler evaluation
- MRI/MRA characterization of vascular anatomy and hemodynamics
- Laboratory assessment including ferritin, IL-6, complete blood count, and coagulation profile when inflammatory activation is suspected
- Genetic testing including EPHB4 and RASA1 analysis
- Longitudinal neurovascular imaging surveillance and multidisciplinary follow-up [47]
- Family counseling and consideration of familial genetic screening.
5. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
- Eerola, I.; Boon, L.M.; Mulliken, J.B.; Burrows, P.E.; Dompmartin, A.; Watanabe, S.; Vanwijck, R.; Vikkula, M. Capillary Malformation-Arteriovenous Malformation, a New Clinical and Genetic Disorder Caused by RASA1 Mutations. Am. J. Hum. Genet. 2003, 73, 1240–1249. [Google Scholar] [CrossRef] [PubMed]
- Amyere, M.; Revencu, N.; Helaers, R.; Pairet, E.; Baselga, E.; Cordisco, M.; Chung, W.; Dubois, J.; Lacour, J.P.; Martorell, L.; et al. Germline loss-of-function mutations in EPHB4 cause a second form of capillary malformation-arteriovenous malformation (CM-AVM2) deregulating RAS-MAPK signaling. Circulation 2017, 136, 1037–1048. [Google Scholar] [CrossRef]
- Revencu, N.; Boon, L.M.; Mulliken, J.B.; Enjolras, O.; Cordisco, M.R.; Burrows, P.E.; Clapuyt, P.; Hammer, F.; Dubois, J.; Baselga, E.; et al. Parkes Weber syndrome, vein of galen aneurysmal malformation, and other fast-flow vascular anomalies are caused by RASA1 mutations. Hum. Mutat. 2008, 29, 959–965. [Google Scholar] [CrossRef] [PubMed]
- Bayrak-Toydemir, P.; Stevenson, D.A.; Adam, M.P.; Feldman, J.; Mirzaa, G.M. Capillary Malformation-Arteriovenous Malformation Syndrome; University of Washington: Seattle, WA, USA, 2011. [Google Scholar]
- Bizubac, A.M.; Fleaca, M.A.; Herișeanu, M.C.; Nedelcu, C.; Bratu, A.; Marcu, V.; Filip, C.; Cîrstoveanu, C. Vein of Galen Malformation—Experience of the Last 13 Years in a Reference Center from South-Eastern Europe. Life 2025, 15, 1536. [Google Scholar] [CrossRef] [PubMed]
- Nedelcu, C.; Ionescu, N.S.; Bizubac, A.M.; Filip, C.; Cirstoveanu, C. Trends and Challenges in Noninvasive Hemodynamic Monitoring of Neonates Following Cardiac Surgery: A Narrative Review. Life 2025, 15, 1621. [Google Scholar] [CrossRef]
- Toma, A.I. Paediatric neurology: Standardization of neonatal assessment in Romania. Enfance 2023, 4, 333–338. [Google Scholar] [CrossRef]
- Revencu, N.; Fastre, E.; Ravoet, M.; Helaers, R.; Brouillard, P.; Bisdorff-Bresson, A.; Chung, C.W.T.; Gerard, M.; Dvorakova, V.; Irvine, A.D.; et al. RASA1 mosaic mutations in patients with capillary malformation-arteriovenous malformation. J. Med. Genet. 2020, 57, 48–52. [Google Scholar] [CrossRef]
- Wooderchak-Donahue, W.L.; Johnson, P.; McDonald, J.; Blei, F.; Berenstein, A.; Sorscher, M.; Mayer, J.; Scheuerle, A.E.; Lewis, T.; Grimmer, J.F.; et al. Expanding the clinical and molecular findings in RASA1 capillary malformation-arteriovenous malformation. Eur. J. Hum. Genet. 2018, 26, 1521–1536. [Google Scholar] [CrossRef]
- Revencu, N.; Boon, L.M.; Mendola, A.; Cordisco, M.R.; Dubois, J.; Clapuyt, P.; Hammer, F.; Amor, D.J.; Irvine, A.D.; Baselga, E.; et al. RASA1 Mutations and Associated Phenotypes in 68 Families with Capillary Malformation-Arteriovenous Malformation. Hum. Mutat. 2013, 34, 1632–1641. [Google Scholar] [CrossRef]
- Macmurdo, C.F.; Wooderchak-Donahue, W.; Bayrak-Toydemir, P.; Le, J.; Wallenstein, M.B.; Milla, C.; Teng, J.M.C.; Bernstein, J.A.; Stevenson, D.A. RASA1 somatic mutation and variable expressivity in capillary malformation/arteriovenous malformation (CM/AVM) syndrome. Am. J. Med. Genet. A 2016, 170, 1450–1454. [Google Scholar] [CrossRef]
- Lapinski, P.E.; Doosti, A.; Salato, V.; North, P.; Burrows, P.E.; King, P.D. Somatic second hit mutation of RASA1 in vascular endothelial cells in capillary malformation-arteriovenous malformation. Eur. J. Med. Genet. 2018, 61, 11–16. [Google Scholar] [CrossRef]
- Cai, R.; Liu, F.; Liu, Y.; Chen, H.; Lin, X. RASA-1 somatic “second hit” mutation in capillary malformation–arteriovenous malformation. J. Dermatol. 2018, 45, 1478–1480. [Google Scholar] [CrossRef]
- Amyere, M.; Aerts, V.; Brouillard, P.; McIntyre, B.A.S.; Duhoux, F.P.; Wassef, M.; Enjolras, O.; Mulliken, J.B.; Devuyst, O.; Antoine-Poirel, H.; et al. Somatic uniparental isodisomy explains multifocality of glomuvenous malformations. Am. J. Hum. Genet. 2013, 92, 188–196. [Google Scholar] [CrossRef]
- Akers, A.L.; Johnson, E.; Steinberg, G.K.; Zabramski, J.M.; Marchuk, D.A. Biallelic somatic and germline mutations in cerebral cavernous malformations (CCMs): Evidence for a two-hit mechanism of CCM pathogenesis. Hum. Mol. Genet. 2009, 18, 919–930. [Google Scholar] [CrossRef] [PubMed]
- Pagenstecher, A.; Stahl, S.; Sure, U.; Felbor, U. A two-hit mechanism causes cerebral cavernous malformations: Complete inactivation of CCM1, CCM2 or CCM3 in affected endothelial cells. Hum. Mol. Genet. 2009, 18, 911–918. [Google Scholar] [CrossRef] [PubMed]
- Limaye, N.; Wouters, V.; Uebelhoer, M.; Tuominen, M.; Wirkkala, R.; Mulliken, J.B.; Eklund, L.; Boon, L.M.; Vikkula, M. Somatic mutations in angiopoietin receptor gene TEK cause solitary and multiple sporadic venous malformations. Nat. Genet. 2009, 41, 118–124. [Google Scholar] [CrossRef]
- Grillner, P.; Söderman, M.; Holmin, S.; Rodesch, G. A spectrum of intracranial vascular high-flow arteriovenous shunts in RASA1 mutations. Child’s Nerv. Syst. 2016, 32, 709–715. [Google Scholar] [CrossRef]
- Orme, C.M.; Boyden, L.M.; Choate, K.A.; Antaya, R.J.; King, B.A. Capillary malformation—Arteriovenous malformation syndrome: Review of the literature, proposed diagnostic criteria, and recommendations for management. Pediatr. Dermatol. 2013, 30, 409–415. [Google Scholar] [CrossRef]
- Kawasaki, J.; Aegerter, S.; Fevurly, R.D.; Mammoto, A.; Mammoto, T.; Sahin, M.; Mably, J.D.; Fishman, S.J.; Chan, J. RASA1 functions in EPHB4 signaling pathway to suppress endothelial mTORC1 activity. J. Clin. Investig. 2014, 124, 2774–2784. [Google Scholar] [CrossRef]
- Aoyagi, Y.; Schwartz, A.W.; Li, Z.; Bai, H.; Gonzalez, L.; Lazcano Etchebarne, C.; Ohashi, Y.; Kano, M.; Ho, B.; Martin, K.; et al. Changes in vascular identity during vascular remodeling. JVS. Vasc. Sci. 2025, 6, 100282. [Google Scholar] [CrossRef] [PubMed]
- Tas, B.; Starnoni, D.; Smajda, S.; Vivanti, A.J.; Adamsbaum, C.; Eyries, M.; Melki, J.; Tawk, M.; Ozanne, A.; Revencu, N.; et al. Arteriovenous Cerebral High Flow Shunts in Children: From Genotype to Phenotype. Front. Pediatr. 2022, 10, 871565. [Google Scholar] [CrossRef]
- Palermo, M.; Olivi, A.; Sturiale, C.L. Capillary malformation–arteriovenous malformation syndrome (CM-AVM): A systematic review of cerebrovascular manifestations. Child’s Nerv. Syst. 2025, 41, 422. [Google Scholar] [CrossRef] [PubMed]
- Wooderchak-Donahue, W.L.; Akay, G.; Whitehead, K.; Briggs, E.; Stevenson, D.A.; O’fallon, B.; Velinder, M.; Farrell, A.; Shen, W.; Bedoukian, E.; et al. Phenotype of CM-AVM2 caused by variants in EPHB4: How much overlap with hereditary hemorrhagic telangiectasia (HHT)? Genet. Med. 2019, 21, 2007–2014. [Google Scholar] [CrossRef]
- Burrows, P.E. Angioarchitecture of Hereditary Arteriovenous Malformations. Semin. Interv. Radiol. 2017, 34, 250–257. [Google Scholar] [CrossRef] [PubMed]
- Cordisco, M.R.; El-Feghaly, J.; Prezzano, J.C.; Lanöel, A.; Torres, N.; Persico, S.; Requejo, F.; Sierre, S.; Fiandrino, M.J.; Luna, L.; et al. Capillary Malformation-Arteriovenous Malformation Type 2, A Report of 6 Cases and Main Differential Diagnosis. J. Vasc. Anom. 2022, 3, e053. [Google Scholar] [CrossRef]
- Brix, A.T.H.; Tørring, P.M.; Bygum, A. Capillary Malformation-arteriovenous Malformation Type 2: A Case Report and Review. Acta Derm.-Venereol. 2022, 102, 1126. [Google Scholar] [CrossRef] [PubMed]
- Rodríguez Bandera, A.I.; Feito Rodríguez, M.; Chiloeches Fernández, C.; Stewart, N.; Valdivielso-Ramos, M. Role of colour-Doppler high-frequency ultrasonography in capillary malformation-arteriovenous malformation syndrome: A case series. Australas. J. Dermatol. 2020, 61, 349–352. [Google Scholar] [CrossRef]
- Yakes, W.F.; Vogelzang, R.L.; Ivancev, K.; Yakes, A.M. New arteriographic classification of AVM based on the yakes classification system. In Congenital Vascular Malformations: A Comprehensive Review of Current Management; Springer: Berlin/Heidelberg, Germany, 2017; pp. 63–69. [Google Scholar]
- Wooderchak-Donahue, W.; Stevenson, D.A.; McDonald, J.; Grimmer, J.F.; Gedge, F.; Bayrak-Toydemir Pinar, P. RASA1 analysis: Clinical and molecular findings in a series of consecutive cases. Eur. J. Med. Genet. 2012, 55, 91–95. [Google Scholar] [CrossRef]
- Thiex, R.; Mulliken, J.B.; Revencu, N.; Boon, L.M.; Burrows, P.E.; Cordisco, M.; Dwight, Y.; Smith, E.R.; Vikkula, M.; Orbach, D.B. A Novel Association between RASA1 Mutations and Spinal Arteriovenous Anomalies. Am. J. Neuroradiol. 2010, 31, 775–779. [Google Scholar] [CrossRef]
- Ryu, B.; Sato, S.; Mochizuki, T.; Inoue, T.; Okada, Y.; Niimi, Y. De novo intracranial arteriovenous malformation development after endovascular treatment for a pial arteriovenous fistula in capillary malformation-arteriovenous malformation syndrome. Interv. Neuroradiol. 2021, 27, 25–30. [Google Scholar] [CrossRef]
- Overcash, R.T.; Gibu, C.K.; Jones, M.C.; Ramos, G.A.; Andreasen, T.S. Maternal and fetal capillary malformation-arteriovenous malformation (CM-AVM) due to a novel RASA1 mutation presenting with prenatal non-immune hydrops fetalis. Am. J. Med. Genet. A 2015, 167, 2440–2443. [Google Scholar] [CrossRef]
- Zheng, Y.; Peng, Y.; Zhang, S.; Li, L.; Peng, Y.; Yin, Q. Capillary Malformation–Arteriovenous Malformation Combined Alagille Syndrome in a Patient With Double Gene Variations of RASA1 and NOTCH2. Front. Genet. 2019, 10, 1088. [Google Scholar] [CrossRef]
- Martin-Almedina, S.; Ogmen, K.; Sackey, E.; Grigoriadis, D.; Karapouliou, C.; Nadarajah, N.; Ebbing, C.; Lord, J.; Mellis, R.; Kortuem, F.; et al. Janus-faced EPHB4-associated disorders: Novel pathogenic variants and unreported intrafamilial overlapping phenotypes. Genet. Med. 2021, 23, 1315–1324. [Google Scholar] [CrossRef]
- Chennappan, S.; Kontaridis, M.I. RASopathies in Cardiac Disease. Annu. Rev. Med. 2026, 76, 301–314. [Google Scholar] [CrossRef]
- de Wijn, R.S.; Oduber, C.E.U.; Breugem, C.C.; Alders, M.; Hennekam, R.C.M.; van der Horst, C.M.A.M. Phenotypic variability in a family with capillary malformations caused by a mutation in the RASA1 gene. Eur. J. Med. Genet. 2012, 55, 191–195. [Google Scholar] [CrossRef]
- Burrows, P.E.; Gonzalez-Garay, M.L.; Rasmussen, J.C.; Aldrich, M.B.; Guilliod, R.; Maus, E.A.; Fife, C.E.; Kwon, S.; Lapinski, P.E.; King, P.D.; et al. Lymphatic abnormalities are associated with RASA1 gene mutations in mouse and man. Proc. Natl. Acad. Sci. USA 2013, 110, 8621–8626. [Google Scholar] [CrossRef] [PubMed]
- Richards, S.; Aziz, N.; Bale, S.; Bick, D.; Das, S.; Gastier-Foster, J.; Grody, W.W.; Hegde, M.; Lyon, E.; Spector, E.; et al. Standards and guidelines for the interpretation of sequence variants: A joint consensus recommendation of the American College of Medical Genetics and Genomics and the Association for Molecular Pathology. Genet. Med. 2015, 17, 405–424. [Google Scholar] [CrossRef] [PubMed]
- Gourier, G.; Audebert-Bellanger, S.; Vourc’h, P.; Fraitag, S.; L’Hérondelle, K.; Labouche, A.; Misery, L.; Abasq-Thomas, C. Multiple capillary malformations of progressive onset: Capillary malformation–arteriovenous malformation syndrome (CM-AVM). Ann. Dermatol. Venereol. 2018, 145, 486–491. [Google Scholar] [CrossRef]
- Gandon, C.; Bonniaud, B.; Collet, E.; Dalac, S.; Jeudy, G.; Vabres, P. A Typical Vascular and Pigmentary Dermoscopic Pattern of Capillary Malformations in Capillary Malformation–Arteriovenous Malformation Syndrome: Report of Four Cases. Pediatr. Dermatol. 2016, 33, e337–e341. [Google Scholar] [CrossRef] [PubMed]
- Ustaszewski, A.; Janowska-Głowacka, J.; Wołyńska, K.; Pietrzak, A.; Badura-Stronka, M. Genetic syndromes with vascular malformations—Update on molecular background and diagnostics. Arch. Med. Sci. 2021, 17, 965–991. [Google Scholar] [CrossRef]
- Li, D.; Wenger, T.L.; Seiler, C.; March, M.E.; Gutierrez-Uzquiza, A.; Kao, C.; Bhoj, E.; Tian, L.; Rosenbach, M.; Liu, Y.; et al. Pathogenic variant in EPHB4 results in central conducting lymphatic anomaly. Hum. Mol. Genet. 2018, 27, 3233–3245. [Google Scholar] [CrossRef] [PubMed]
- Xue, J.; Zhang, Z.; Sun, Y.; Jin, D.; Guo, L.; Li, X.; Zhao, D.; Feng, X.; Qi, W.; Zhu, H. Research Progress and Molecular Mechanisms of Endothelial Cells Inflammation in Vascular-Related Diseases. J. Inflamm. Res. 2023, 16, 3593–3617. [Google Scholar] [CrossRef] [PubMed]
- Wang, S.; Deng, X.; Wu, Y.; Wu, Y.; Zhou, S.; Yang, J.; Huang, Y. Understanding the pathogenesis of brain arteriovenous malformation: Genetic variations, epigenetics, signaling pathways, and immune inflammation. Hum. Genet. 2023, 142, 1633–1649. [Google Scholar] [CrossRef] [PubMed]
- Jordan, M.B.; Allen, C.E.; Greenberg, J.; Henry, M.; Hermiston, M.L.; Kumar, A.; Hines, M.; Eckstein, O.; Ladisch, S.; Nichols, K.E.; et al. Challenges in the diagnosis of hemophagocytic lymphohistiocytosis: Recommendations from the North American Consortium for Histiocytosis (NACHO). Pediatr. Blood Cancer 2019, 66, e27929. [Google Scholar] [CrossRef]
- Toma, A.I.; Dima, V.; Rusu, L.; Nemeș, A.F.; Gonț, B.F.; Arghirescu, A.; Necula, A.; Fieraru, A.; Stoiciu, R.; Andrășoaie, L.; et al. Cerebral Ultrasound at Term-Equivalent Age: Correlations with Neuro-Motor Outcomes at 12–24 Months Corrected Age. Children 2025, 12, 30. [Google Scholar] [CrossRef]












| Case | Genetic Background | Dominant Mechanism | Imaging Phenotype | Clinical and Laboratory Features |
|---|---|---|---|---|
| 1 | RASA1 monoallelic variant | High-flow AVM with compensated but chronic cortical hypoperfusion (steal effect) | Slowly progressive decline in cerebral resistive index | Clinically stable |
| 2 | EPHB4 + macrophage activation syndrome | Endothelial inflammation, cytokine storm, hemophagocytic activation | Sharp decline in cerebral resistive index (RI < 0.35); hyperemia and vasoplegia on Doppler | Highly elevated ferritin and IL-6 levels, HLH histopathology |
| 3 | Combined EPHB4 + RASA1 mutations | Dual pathway dysgenesis (venous + arteriovenous) | Mixed-flow malformation with serpiginous subdural shunts and calvarial thickening | Chronic hyperemia; vascular remodeling |
Disclaimer/Publisher’s Note: The statements, opinions and data contained in all publications are solely those of the individual author(s) and contributor(s) and not of MDPI and/or the editor(s). MDPI and/or the editor(s) disclaim responsibility for any injury to people or property resulting from any ideas, methods, instructions or products referred to in the content. |
© 2026 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license.
Share and Cite
Nedelcu, C.; Cirstoveanu, C.; Filip, C.; Stefan, R.I.; Bizubac, A.M.; Heriseanu, M.C.; Dimitriu, M.C.T.; Ionescu, N.S.; Axente, M. Capillary Malformation–Arteriovenous Malformation Syndrome Associated with RASA1 and EPHB4 Mutations: Comparative Case Series and Narrative Review. Life 2026, 16, 1001. https://doi.org/10.3390/life16061001
Nedelcu C, Cirstoveanu C, Filip C, Stefan RI, Bizubac AM, Heriseanu MC, Dimitriu MCT, Ionescu NS, Axente M. Capillary Malformation–Arteriovenous Malformation Syndrome Associated with RASA1 and EPHB4 Mutations: Comparative Case Series and Narrative Review. Life. 2026; 16(6):1001. https://doi.org/10.3390/life16061001
Chicago/Turabian StyleNedelcu, Carmina, Catalin Cirstoveanu, Cristina Filip, Ruxandra Ioana Stefan, Ana Mihaela Bizubac, Mariana Carmen Heriseanu, Mihai C. T. Dimitriu, Nicolae Sebastian Ionescu, and Mihaela Axente. 2026. "Capillary Malformation–Arteriovenous Malformation Syndrome Associated with RASA1 and EPHB4 Mutations: Comparative Case Series and Narrative Review" Life 16, no. 6: 1001. https://doi.org/10.3390/life16061001
APA StyleNedelcu, C., Cirstoveanu, C., Filip, C., Stefan, R. I., Bizubac, A. M., Heriseanu, M. C., Dimitriu, M. C. T., Ionescu, N. S., & Axente, M. (2026). Capillary Malformation–Arteriovenous Malformation Syndrome Associated with RASA1 and EPHB4 Mutations: Comparative Case Series and Narrative Review. Life, 16(6), 1001. https://doi.org/10.3390/life16061001

