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Linear skin defects with multiple congenital anomalies 2(LSDMCA2)

MedGen UID:
763835
Concept ID:
C3550921
Disease or Syndrome
Synonym: LSDMCA2
 
Gene (location): COX7B (Xq21.1)
 
Monarch Initiative: MONDO:0010474
OMIM®: 300887

Disease characteristics

Microphthalmia with linear skin defects (MLS) syndrome is characterized by unilateral or bilateral microphthalmia and/or anophthalmia and linear skin defects, usually involving the face and neck, which are present at birth and heal with age, leaving minimal residual scarring. Other findings can include a wide variety of other ocular abnormalities (e.g., corneal anomalies, orbital cysts, cataracts), central nervous system involvement (e.g., structural anomalies, developmental delay, infantile seizures), cardiac concerns (e.g., hypertrophic or oncocytic cardiomyopathy, atrial or ventricular septal defects, arrhythmias), short stature, diaphragmatic hernia, nail dystrophy, hearing impairment, and genitourinary malformations. Inter- and intrafamilial variability is described. [from GeneReviews]
Authors:
Manuela Morleo  |  Brunella Franco   view full author information

Clinical features

From HPO
Sandal gap
MedGen UID:
374376
Concept ID:
C1840069
Finding
A widely spaced gap between the first toe (the great toe) and the second toe.
Atrial septal defect
MedGen UID:
6753
Concept ID:
C0018817
Congenital Abnormality
Atrial septal defect (ASD) is a congenital abnormality of the interatrial septum that enables blood flow between the left and right atria via the interatrial septum.
Tetralogy of Fallot
MedGen UID:
21498
Concept ID:
C0039685
Congenital Abnormality
People with CCHD have one or more specific heart defects. The heart defects classified as CCHD include coarctation of the aorta, double-outlet right ventricle, D-transposition of the great arteries, Ebstein anomaly, hypoplastic left heart syndrome, interrupted aortic arch, pulmonary atresia with intact septum, single ventricle, total anomalous pulmonary venous connection, tetralogy of Fallot, tricuspid atresia, and truncus arteriosus.\n\nSome people with treated CCHD have few related health problems later in life. However, long-term effects of CCHD can include delayed development and reduced stamina during exercise. Adults with these heart defects have an increased risk of abnormal heart rhythms, heart failure, sudden cardiac arrest, stroke, and premature death.\n\nAlthough babies with CCHD may appear healthy for the first few hours or days of life, signs and symptoms soon become apparent. These can include an abnormal heart sound during a heartbeat (heart murmur), rapid breathing (tachypnea), low blood pressure (hypotension), low levels of oxygen in the blood (hypoxemia), and a blue or purple tint to the skin caused by a shortage of oxygen (cyanosis). If untreated, CCHD can lead to shock, coma, and death. However, most people with CCHD now survive past infancy due to improvements in early detection, diagnosis, and treatment.\n\nEach of the heart defects associated with CCHD affects the flow of blood into, out of, or through the heart. Some of the heart defects involve structures within the heart itself, such as the two lower chambers of the heart (the ventricles) or the valves that control blood flow through the heart. Others affect the structure of the large blood vessels leading into and out of the heart (including the aorta and pulmonary artery). Still others involve a combination of these structural abnormalities.\n\nCritical congenital heart disease (CCHD) is a term that refers to a group of serious heart defects that are present from birth. These abnormalities result from problems with the formation of one or more parts of the heart during the early stages of embryonic development. CCHD prevents the heart from pumping blood effectively or reduces the amount of oxygen in the blood. As a result, organs and tissues throughout the body do not receive enough oxygen, which can lead to organ damage and life-threatening complications. Individuals with CCHD usually require surgery soon after birth.
Ventricular hypertrophy
MedGen UID:
87400
Concept ID:
C0340279
Disease or Syndrome
Enlargement of the cardiac ventricular muscle tissue with increase in the width of the wall of the ventricle and loss of elasticity. Ventricular hypertrophy is clinically differentiated into left and right ventricular hypertrophy.
Pulmonary arterial hypertension
MedGen UID:
425404
Concept ID:
C2973725
Disease or Syndrome
Pulmonary hypertension is defined mean pulmonary artery pressure of 25mmHg or more and pulmonary capillary wedge pressure of 15mmHg or less when measured by right heart catheterisation at rest and in a supine position.
Short stature
MedGen UID:
87607
Concept ID:
C0349588
Finding
A height below that which is expected according to age and gender norms. Although there is no universally accepted definition of short stature, many refer to "short stature" as height more than 2 standard deviations below the mean for age and gender (or below the 3rd percentile for age and gender dependent norms).
Posteriorly rotated ears
MedGen UID:
96566
Concept ID:
C0431478
Congenital Abnormality
A type of abnormal location of the ears in which the position of the ears is characterized by posterior rotation (the superior part of the ears is rotated towards the back of the head, and the inferior part of the ears towards the front).
Hypoplasia of the corpus callosum
MedGen UID:
138005
Concept ID:
C0344482
Congenital Abnormality
Underdevelopment of the corpus callosum.
Global developmental delay
MedGen UID:
107838
Concept ID:
C0557874
Finding
A delay in the achievement of motor or mental milestones in the domains of development of a child, including motor skills, speech and language, cognitive skills, and social and emotional skills. This term should only be used to describe children younger than five years of age.
Delayed myelination
MedGen UID:
224820
Concept ID:
C1277241
Finding
Delayed myelination.
Microcephaly
MedGen UID:
1644158
Concept ID:
C4551563
Finding
Head circumference below 2 standard deviations below the mean for age and gender.
High forehead
MedGen UID:
65991
Concept ID:
C0239676
Finding
An abnormally increased height of the forehead.
Abnormal facial shape
MedGen UID:
98409
Concept ID:
C0424503
Finding
An abnormal morphology (form) of the face or its components.
Short nose
MedGen UID:
343052
Concept ID:
C1854114
Finding
Distance from nasion to subnasale more than two standard deviations below the mean, or alternatively, an apparently decreased length from the nasal root to the nasal tip.
Long philtrum
MedGen UID:
351278
Concept ID:
C1865014
Finding
Distance between nasal base and midline upper lip vermilion border more than 2 SD above the mean. Alternatively, an apparently increased distance between nasal base and midline upper lip vermilion border.
Highly arched eyebrow
MedGen UID:
358357
Concept ID:
C1868571
Finding
Increased height of the central portion of the eyebrow, forming a crescent, semicircular, or inverted U shape.
Short chin
MedGen UID:
784514
Concept ID:
C3697248
Finding
Decreased vertical distance from the vermilion border of the lower lip to the inferior-most point of the chin.
Abnormality of the skin
MedGen UID:
11449
Concept ID:
C0037268
Congenital Abnormality
An abnormality of the skin.
Aplasia cutis congenita
MedGen UID:
79390
Concept ID:
C0282160
Congenital Abnormality
Aplasia cutis congenita (ACC) is defined as congenital localized absence of skin. The skin appears as a thin, transparent membrane through which the underlying structures are visible. The location is usually on the scalp (Evers et al., 1995). Approximately 20 to 30% of cases have underlying osseous involvement (Elliott and Teebi, 1997). Autosomal dominant inheritance is most common, but recessive inheritance has also been reported. Cutaneous aplasia of the scalp vertex also occurs in Johanson-Blizzard syndrome (243800) and Adams-Oliver syndrome (AOS; 100300). A defect in the scalp is sometimes found in cases of trisomy 13 and in about 15% of cases of deletion of the short arm of chromosome 4, the Wolf-Hirschhorn syndrome (WHS; 194190) (Hirschhorn et al., 1965; Fryns et al., 1973). Evers et al. (1995) provided a list of disorders associated with aplasia cutis congenita, classified according to etiology. They also tabulated points of particular significance in history taking and examination of patients with ACC.
Wide intermamillary distance
MedGen UID:
473489
Concept ID:
C1827524
Finding
A larger than usual distance between the left and right nipple.
Hypertelorism
MedGen UID:
9373
Concept ID:
C0020534
Finding
Although hypertelorism means an excessive distance between any paired organs (e.g., the nipples), the use of the word has come to be confined to ocular hypertelorism. Hypertelorism occurs as an isolated feature and is also a feature of many syndromes, e.g., Opitz G syndrome (see 300000), Greig cephalopolysyndactyly (175700), and Noonan syndrome (163950) (summary by Cohen et al., 1995).
Myopia
MedGen UID:
44558
Concept ID:
C0027092
Disease or Syndrome
Nearsightedness, also known as myopia, is an eye condition that causes blurry distance vision. People who are nearsighted have more trouble seeing things that are far away (such as when driving) than things that are close up (such as when reading or using a computer). If it is not treated with corrective lenses or surgery, nearsightedness can lead to squinting, eyestrain, headaches, and significant visual impairment.\n\nNearsightedness usually begins in childhood or adolescence. It tends to worsen with age until adulthood, when it may stop getting worse (stabilize). In some people, nearsightedness improves in later adulthood.\n\nFor normal vision, light passes through the clear cornea at the front of the eye and is focused by the lens onto the surface of the retina, which is the lining of the back of the eye that contains light-sensing cells. People who are nearsighted typically have eyeballs that are too long from front to back. As a result, light entering the eye is focused too far forward, in front of the retina instead of on its surface. It is this change that causes distant objects to appear blurry. The longer the eyeball is, the farther forward light rays will be focused and the more severely nearsighted a person will be.\n\nNearsightedness is measured by how powerful a lens must be to correct it. The standard unit of lens power is called a diopter. Negative (minus) powered lenses are used to correct nearsightedness. The more severe a person's nearsightedness, the larger the number of diopters required for correction. In an individual with nearsightedness, one eye may be more nearsighted than the other.\n\nEye doctors often refer to nearsightedness less than -5 or -6 diopters as "common myopia." Nearsightedness of -6 diopters or more is commonly called "high myopia." This distinction is important because high myopia increases a person's risk of developing other eye problems that can lead to permanent vision loss or blindness. These problems include tearing and detachment of the retina, clouding of the lens (cataract), and an eye disease called glaucoma that is usually related to increased pressure within the eye. The risk of these other eye problems increases with the severity of the nearsightedness. The term "pathological myopia" is used to describe cases in which high myopia leads to tissue damage within the eye.
Optic disc pallor
MedGen UID:
108218
Concept ID:
C0554970
Finding
A pale yellow discoloration of the optic disk (the area of the optic nerve head in the retina). The optic disc normally has a pinkish hue with a central yellowish depression.
Visual impairment
MedGen UID:
777085
Concept ID:
C3665347
Finding
Visual impairment (or vision impairment) is vision loss (of a person) to such a degree as to qualify as an additional support need through a significant limitation of visual capability resulting from either disease, trauma, or congenital or degenerative conditions that cannot be corrected by conventional means, such as refractive correction, medication, or surgery.

Term Hierarchy

Recent clinical studies

Etiology

Oliwa A, Hendson G, Longman C, Synnes A, Seath K, Barnicoat A, Hall JG, Patel MS
Am J Med Genet A 2023 Feb;191(2):546-553. Epub 2022 Nov 1 doi: 10.1002/ajmg.a.63019. PMID: 36317804
Almashaqbeh SS, Aljammal DS, Alharahsheh HM, Alqudah SF, Alkrimeen RA
Med Arch 2022 Aug;76(4):301-304. doi: 10.5455/medarh.2022.76.301-304. PMID: 36313953Free PMC Article
Leoni C, Stevenson DA, Martini L, De Sanctis R, Mascolo G, Pantaleoni F, De Santis S, La Torraca I, Persichilli S, Caradonna P, Tartaglia M, Zampino G
Mol Genet Metab 2014 Jan;111(1):41-5. Epub 2013 Aug 16 doi: 10.1016/j.ymgme.2013.08.007. PMID: 24246682
Pinheiro A, Mathew MC, Thomas M, Jacob M, Srivastava VM, Cherian R, Raju R, George R
Pediatr Dermatol 2007 Jan-Feb;24(1):11-7. doi: 10.1111/j.1525-1470.2007.00325.x. PMID: 17300642
Van den Veyver IB, Cormier TA, Jurecic V, Baldini A, Zoghbi HY
Genomics 1998 Jul 15;51(2):251-61. doi: 10.1006/geno.1998.5350. PMID: 9722948

Diagnosis

Almashaqbeh SS, Aljammal DS, Alharahsheh HM, Alqudah SF, Alkrimeen RA
Med Arch 2022 Aug;76(4):301-304. doi: 10.5455/medarh.2022.76.301-304. PMID: 36313953Free PMC Article
Araszkiewicz A, Gandecka A, Nowicki M, Uruska A, Malińska A, Kowalska K, Wierusz-Wysocka B, Zozulińska-Ziółkiewicz D
Pol Arch Med Wewn 2016 Nov 22;126(11):847-853. doi: 10.20452/pamw.3649. PMID: 27906877
Lee HJ, Shin DH, Choi JS, Kim KH
J Korean Med Sci 2012 Feb;27(2):225-7. Epub 2012 Jan 27 doi: 10.3346/jkms.2012.27.2.225. PMID: 22323875Free PMC Article
Pinheiro A, Mathew MC, Thomas M, Jacob M, Srivastava VM, Cherian R, Raju R, George R
Pediatr Dermatol 2007 Jan-Feb;24(1):11-7. doi: 10.1111/j.1525-1470.2007.00325.x. PMID: 17300642
Gorlin RJ
Medicine (Baltimore) 1987 Mar;66(2):98-113. doi: 10.1097/00005792-198703000-00002. PMID: 3547011

Therapy

Lihua J, Feng G, Shanshan M, Jialu X, Kewen J
Medicine (Baltimore) 2017 Nov;96(47):e8016. doi: 10.1097/MD.0000000000008016. PMID: 29381910Free PMC Article
König A, Happle R
Am J Med Genet 1999 Aug 6;85(4):365-8. doi: 10.1002/(sici)1096-8628(19990806)85:4<365::aid-ajmg12>3.0.co;2-#. PMID: 10398262

Prognosis

Oliwa A, Hendson G, Longman C, Synnes A, Seath K, Barnicoat A, Hall JG, Patel MS
Am J Med Genet A 2023 Feb;191(2):546-553. Epub 2022 Nov 1 doi: 10.1002/ajmg.a.63019. PMID: 36317804
Leuthard F, Lehner G, Jagannathan V, Leeb T, Welle M
Anim Genet 2019 Dec;50(6):768-771. Epub 2019 Oct 1 doi: 10.1111/age.12862. PMID: 31571289
Alberry MS, Juvanic G, Crolla J, Soothill P, Newbury-Ecob R
Clin Dysmorphol 2011 Apr;20(2):111-113. doi: 10.1097/MCD.0b013e328342eb66. PMID: 21200317
Cain CC, Saul D, Attanasio L, Oehler E, Hamosh A, Blakemore K, Stetten G
Prenat Diagn 2007 Apr;27(4):373-9. doi: 10.1002/pd.1674. PMID: 17286317
Duncan JL, Golabi M, Fredrick DR, Hoyt CS, Hwang DG, Kramer SG, Howes EL Jr, Cunningham ET Jr
Ophthalmology 1998 Aug;105(8):1459-65. doi: 10.1016/S0161-6420(98)98029-0. PMID: 9709758

Clinical prediction guides

Indrieri A, Franco B
Genes (Basel) 2021 Feb 11;12(2) doi: 10.3390/genes12020263. PMID: 33670341Free PMC Article
Bal E, Laplantine E, Hamel Y, Dubosclard V, Boisson B, Pescatore A, Picard C, Hadj-Rabia S, Royer G, Steffann J, Bonnefont JP, Ursini VM, Vabres P, Munnich A, Casanova JL, Bodemer C, Weil R, Agou F, Smahi A
J Allergy Clin Immunol 2017 Dec;140(6):1671-1682.e2. Epub 2017 Feb 27 doi: 10.1016/j.jaci.2016.11.056. PMID: 28249776
Leoni C, Stevenson DA, Martini L, De Sanctis R, Mascolo G, Pantaleoni F, De Santis S, La Torraca I, Persichilli S, Caradonna P, Tartaglia M, Zampino G
Mol Genet Metab 2014 Jan;111(1):41-5. Epub 2013 Aug 16 doi: 10.1016/j.ymgme.2013.08.007. PMID: 24246682
García-Rabasco A, De-Unamuno B, Martínez F, Febrer-Bosch I, Alegre-de-Miquel V
Pediatr Dermatol 2013 Nov-Dec;30(6):e230-1. Epub 2012 May 21 doi: 10.1111/j.1525-1470.2012.01735.x. PMID: 22612277
Gorlin RJ
Medicine (Baltimore) 1987 Mar;66(2):98-113. doi: 10.1097/00005792-198703000-00002. PMID: 3547011

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