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Whole-mount Immunohistochemical Analysis for Embryonic Limb Skin Vasculature: a Model System to Study Vascular Branching Morphogenesis in Embryo
Published on: May 20, 2011
Vascular anomalies and the growth of limbs: a review
Odile Enjolras1, René Chapot, Jean Jacques Merland
1Vascular Anomalies clinics, Paris, France. odile.enjolras@lrb.ap-hop-paris.fr
Insights
Vascular bone syndromes in children cause limb overgrowth or hypotrophy. Management requires careful orthopedic consideration to avoid worsening vascular malformations.
Area of Science:
- Vascular Surgery
- Pediatric Orthopedics
- Dermatology
Background:
- Limb growth in children can be impaired by vascular malformations, leading to overgrowth or hypotrophy.
- Vascular anomalies, classified as fast-flow or slow-flow, are associated with limb length discrepancies and progressive complications.
- Syndromes like Parkes Weber and Klippel-Trenaunay present with distinct vascular and orthopedic challenges.
Purpose of the Study:
- To review the presentation and management of vascular bone syndromes affecting limb growth.
- To differentiate between fast-flow and slow-flow vascular anomalies and their associated conditions.
- To discuss orthopedic interventions and their potential impact on vascular malformations.
Main Methods:
- Literature review of vascular bone syndromes.
- Analysis of clinical presentations, including Parkes Weber syndrome and Klippel-Trenaunay syndrome.
- Discussion of treatment strategies, encompassing conservative management, orthopedic procedures, and laser therapy.
Main Results:
- Fast-flow malformations (e.g., Parkes Weber syndrome) can cause significant limb length discrepancy, scoliosis, and pain.
- Slow-flow anomalies include capillary malformations, venous malformations, and Klippel-Trenaunay syndrome, each with unique growth alterations and complications.
- Orthopedic procedures like epiphysiodesis may worsen vascular malformations, necessitating less aggressive management.
Conclusions:
- Vascular bone syndromes require a multidisciplinary approach, balancing orthopedic needs with the management of vascular anomalies.
- Conservative and less aggressive orthopedic strategies are often preferable to avoid exacerbating vascular complications.
- Timely and appropriate management is crucial for optimizing limb function and preventing secondary complications.
Abstract:
Growth of the limb in a child can be impaired, with the coexistence of a vascular malformation. In these vascular bone syndromes, altered growth is manifest as overgrowth or hypotrophy. The vascular malformation is usually complex and gets progressively worse with time. The two types of vascular anomalies in limbs, fast-flow and slow-flow, can be associated with limb length discrepancies. The fast-flow vascular malformations together with arteriovenous fistulae are part of Parkes Weber syndrome, characterized by congenital red cutaneous staining, hypertrophy in girth and increasing of limb length, lymphedema, increasing skin alterations due to a distal vascular steal, and pain, all of which develop during childhood. Treatment is generally conservative. An affected lower extremity can be complicated by pelvic tilting and scoliosis because leg length discrepancy may reach 10 cm. To avoid such a course, stapling epiphysiodesis of the knee cartilages is often performed, but this orthopedic procedure may augment the worsening of the arterial venous malformation in the limb. Therefore, less aggressive orthopedic management is preferable. Slow-flow vascular anomalies associated with limb growth alteration include (1) a diffuse capillary malformation (port-wine stain) with congenital hypertrophy of the involved extremity which is non-progressive; (2) purely venous malformations invading skin, muscles and joints, with pain, functional impairment, a chronic localized intravascular coagulopathy requiring distinctive management, and usually a slight undergrowth of the affected extremity and progressing amyotrophy; (3) the triad of a port-wine stain, anomalous veins and overgrowth of the limb, often known as Klippel-Trenaunay syndrome, which requires orthopedic management to decide the optimal timing for epiphysiodesis (i.e. when leg length discrepancy is >2.5 cm). Varicose veins are sometimes surgically removed after ultrasonographic and Doppler evaluation has confirmed a normal deep venous system. Capillary malformations can be effectively treated with pulsed dye laser, but results are usually poor in distal extremities.
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