Klippel–Trénaunay syndrome, formerly Klippel–Trénaunay–Weber syndrome and sometimes angioosteohypertrophy syndrome and hemangiectatic hypertrophy, is a rare congenital medical condition in which blood vessels and/or lymph vessels fail to form properly. The three main features are nevus flammeus (port-wine stain), venous and lymphatic malformations, and soft-tissue hypertrophy of the affected limb. It is similar to, though distinct from, the less common Parkes Weber syndrome. The classical triad of Klippel–Trenaunay syndrome consists of:
vascular malformations of the capillary, venous and lymphatic vessels; varicosities of unusual distribution, particularly the lateral venous anomaly; and unilateral soft and skeletal tissue hypertrophy, usually the lower extremity. It belongs to the PIK3CA-related overgrowth spectrum of diseases which are caused by mutations in the PIK3CA gene.
Signs and symptoms
The birth defect is diagnosed by the presence of a combination of these symptoms (often on approximately 1⁄4 of the body, though some cases may present more or less affected tissue):
One or more distinctive port-wine stains with sharp borders Varicose veins Hypertrophy of bony and soft tissues, that may lead to local gigantism or shrinking, most typically in the lower body/legs. An improperly developed lymph system In some cases, port-wine stains (capillary port wine type) may be absent. Such cases are very rare and may be classified as "atypical Klippel–Trenaunay syndrome". KTS can either affect blood vessels, lymph vessels, or both. The condition most commonly presents with a mixture of the two. Those with venous involvement experience increased pain and complications, such as venous ulceration in the lower extremities. Those with large AVMs are at risk of formation of blood clots in the vascular lesion, which may migrate to the lungs (pulmonary embolism). If there is large-volume blood flow through the lesion, high-output heart failure may develop due to the inability of the heart to generate sufficient cardiac output. Much rarer are haemorrhages. They can be serious if the brain is affected.
Genetics The birth defect affects men and women equally, and is not limited to any racial group. In 2004, it was not certain if it was genetic in nature. As of 2001, there was evidence that it may be associated with a translocation at t(8;14)(q22.3;q13). In 2005, some researchers suggested AGGF1 has an association. As of 2016, it belongs to the PIK3CA-related overgrowth spectrum of diseases, which are caused by mutations in the PIK3CA gene. Mutations in phosphatidylinositol-4-5-bisphosphate 3 kinase, catalytic subunit (=PIK3CA) gene leads to dysregulation of the MTOR pathway. Activation of protein kinase leads to uninhibited mTOR action resulting in cell proliferation.
Diagnosis
Differential diagnosis Parkes Weber syndrome Proteus syndrome Macrodystrophia lipomatosa
Classification There is disagreement as to how cases of KTS should be classified if there is an arteriovenous fistula present. Although several authorities have suggested that the term Parkes Weber syndrome is applied in those cases, ICD-10 currently uses the term "Klippel–Trénaunay–Weber syndrome".
Treatment KTS is a complex syndrome, and no single treatment is applicable for everyone. Treatment is decided on a case-by-case basis with the individual's doctors. At present, many of the symptoms may be treated, but there is no cure for Klippel–Trenaunay syndrome.
Surgical Debulking has been the most common treatment for KTS for several decades and while improvements have been made, the procedure is still considered invasive and has several risks associated with it. More effective and less invasive treatment choices now exist for KTS patients and therefore debulking is generally only recommended as a last resort. Debulking operations can result in major deformities and also leave patients with permanent nerve damage. Mayo Clinic has reported the largest experience in managing KTS with major surgery. In 39 years at Mayo clinic the surgery team evaluated 252 consecutive cases of KTS, of which only 145 (57.5%) could be treated by primary surgery. The immediate success rate for treating varicose veins was only 40%, excision of vascular malformation was possible in 60%, debulking operations in 65%, and correction of bone deformity and limb length correction (epiphysiodesis) had 90% success. All the procedures demonstrated high recurrence rate in the follow-up. Mayo clinic studies demonstrate that primary surgical management of KTS has limitations and non-surgical approaches need to be developed in order to offer a better quality of life for these patients. Major surgery including amputation and debulking surgery does not seem to offer any benefit on a long-term basis.
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