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At least 19 recordsLinked to original sources

Rubeosis iridis in "pseudogliomas".

A total of 85 eyes (75 patients) with pseudogliomas (i.e., certain conditions which simulate retinoblastoma, were examined histopathologically to determine the incidence of rubeosis iridis. Neovascularization of the anterior surface of the iris was found in 70 eyes (82%). The principal associated changes in these eyes were moderate to severe inflammation of the uveal tract and retinal detachment. These findings are interpreted as indicating that inflammation, retinal detachment, and/or ischemia are effective stimulants in producing iris neovascularization, and rubeosis is not a significant factor in differentiating eyes with retinoblastoma from those eyes with pseudogliomas.

Adolescent↗

Osteoporosis pseudoglioma syndrome: treatment of spinal osteoporosis with intravenous bisphosphonates.

OBJECTIVES: To determine whether intravenous bisphosphonate treatment is helpful for children with osteoporosis pseudoglioma syndrome who have severe osteoporosis. METHODS: Three children (ages 9 to 11 years) with osteoporosis pseudoglioma syndrome who had multiple vertebral collapse were treated over a 2-year period with intermittent intravenous bisphosphonate infusions (pamidronate in 2, clodronate in 1). The responses to therapy were assessed with clinical and radiographic evaluation and bone densitometry of the spine. RESULTS: All 3 subjects reported early reductions in bone pain and improved mobility. Radiographs showed dense new bone in the vertebral end plates and remodeling of the vertebral bodies. Areal bone mineral density at the lumbar spine (age-appropriate SD score) improved from a mean of -4.5 before treatment to -2.8 after 2 years (P <.05). No new fractures occurred, and side effects were minimal. Growth and pubertal development proceeded normally. CONCLUSIONS: Intravenous bisphosphonate therapy appears safe and beneficial in patients with this condition and may prevent progressive vertebral deformity.

Analgesics, Non-Narcotic↗

Failure of operative treatment in a child with osteoporosis-pseudoglioma syndrome.

A 6-year-old girl with osteoporosis-pseudoglioma syndrome had operative treatment of a distal femur fracture that failed. Osteoporosis-pseudoglioma syndrome is an autosomal recessive syndrome combining severe premature osteoporosis with a bilateral eye disorder leading to early onset of blindness. Beginning in early childhood, the patient sustained multiple fractures of the left distal femur that were treated nonoperatively. At the age of 5 years the patient had a fracture of the left distal femur with an 80 degrees angulation in the sagittal plane. The patient was treated with internal stabilization because of gross bowing of the femur at the fracture site. Intraoperatively, anatomic reduction was achieved by insertion of a flexible nail but not without some intraoperative problems. Because of the severe osteoporosis, iatrogenic penetration and fracture of the femoral cortex by the nail occurred intraoperatively in the subtrochanteric region. In addition, a hip spica cast was applied. The nail was removed 1 week later. After 6 weeks wearing the hip spica cast, the patient's fracture healed with some shortening but with correction of the angulation in the sagittal plane. Internal stabilization seems to be potentially troublesome in patients with severe forms of this syndrome and severe bony deformities.

Biomechanical Phenomena↗

Pseudoglioma: a clinico-pathological report.

The term "pseudoglioma" designates a heterogeneous group of diseases that may be confused clinically with retinoblastoma. The authors report the case of a one year old boy with leucocoria and exotropia of the left eye. Clinical examination disclosed a retrolental whitish vascularized mass. As a retinoblastoma could not be excluded with certainty, the blind eye was enucleated. Pathological examination showed a retinal vascular anomaly compatible with Coats' disease. The authors discuss the differential diagnosis of leucocoria and pseudoglioma.

Diagnosis, Differential↗

Rubeosis iridis in retinoblastoma and pseudoglioma.

The high incidence of rubeosis iridis accompanying retinoblastoma has been reaffired. Factor common to ocular tumors in general and retinoblastoma, as well as reactions to retioblastoma that have some contributory effect upon vascularization of the iris have been studied and complied. No single causative factor emerged, although tumor necrosis obviously played an important role. To a lesser extent, the site, location, and intraocular extension bore some relationship to neovascularization. That iris neovascularization carries a more grave prognosis, until now only a clinical impression, was definitely confirmed. Clinicians, therefore, studying patients with retinoblastoma would be well advised to pay more attention to the iris and anterior segment since recognition of changes leads to more timely and knowledgeable management. It was hoped that increased recognition of rubeosis would differentiate between eyes with retinoblastoma and those with pseudoglioma; however, an equally high incidence of neovascularization accompanied certain pseudogliomas. In both studies, as is often the case, numerous interesting observations were made; several with clinical implications. Finally, a frequently associated glaucoma, suggested by the anterior segment histologic features, went urecognized and unrecorded in these patients.

Diagnosis, Differential↗

Clinical and molecular findings in osteoporosis-pseudoglioma syndrome.

Mutations in the low-density lipoprotein receptor-related protein 5 gene (LRP5) cause autosomal recessive osteoporosis-pseudoglioma syndrome (OPPG). We sequenced the coding exons of LRP5 in 37 probands suspected of having OPPG on the basis of the co-occurrence of severe congenital or childhood-onset visual impairment with bone fragility or osteoporosis recognized by young adulthood. We found two putative mutant alleles in 26 probands, only one mutant allele in 4 probands, and no mutant alleles in 7 probands. Looking for digenic inheritance, we sequenced the genes encoding the functionally related receptor LRP6, an LRP5 coreceptor FZD4, and an LRP5 ligand, NDP, in the four probands with one mutant allele, and, looking for locus heterogeneity, we sequenced FZD4 and NDP in the seven probands with no mutations, but we found no additional mutations. When we compared clinical features between probands with and without LRP5 mutations, we found no difference in the severity of skeletal disease, prevalence of cognitive impairment, or family history of consanguinity. However, four of the seven probands without detectable mutations had eye pathology that differed from pathology previously described for OPPG. Since many LRP5 mutations are missense changes, to differentiate between a disease-causing mutation and a benign variant, we measured the ability of wild-type and mutant LRP5 to transduce Wnt and Norrin signal ex vivo. Each of the seven OPPG mutations tested, had reduced signal transduction compared with wild-type mutations. These results indicate that early bilateral vitreoretinal eye pathology coupled with skeletal fragility is a strong predictor of LRP5 mutation and that mutations in LRP5 cause OPPG by impairing Wnt and Norrin signal transduction.

Abnormalities, Multiple↗

Osteoporosis-pseudoglioma syndrome: report of three affected sibs and an overview.

We report on a sibship with one brother and two MZ twin sisters affected with osteoporosis-pseudoglioma syndrome. An analysis of the present and literature data showed that vitreoretinal dysplasia or phthisis bulbi and X-ray evidence of osteoporosis must be considered minimal diagnostic criteria. Mental retardation, ligamentous laxity, and other reported anomalies are highly variable manifestations in the syndrome. Segregation analysis confirmed autosomal recessive transmission. The geographic origin of reported families suggests a higher gene frequency in Mediterranean countries.

Adult↗

Osteoporosis-pseudoglioma syndrome.

Two patients with osteoporosis pseudoglioma syndrome are described. Both are single children, born to nonconsanguineous, healthy parents. The first patient, a 17-year-old girl, had serious visual impairment since birth. She is severely dwarfed and has major skeletal deformities resulting in inability to walk since age 2 years. The second patient is an 18-year-old girl with unilateral neonatal blindness, short stature and deformities, mainly of pelvis and lower limbs. She has been able to walk with support up to now. The clinical and radiological findings in these 2 patients reflect the clinical variability of the condition. Results of collagen studies in both patients are normal and differentiate this condition clearly from severe osteogenesis imperfecta, which it resembles.

Adolescent↗

The osteoporosis pseudoglioma syndrome. Update and report on two affected siblings.

Two siblings (male, 29 years, and female, 13 years) with the rate autosomal recessive osteoporosis pseudoglioma syndrome are reported in detail. All essential signs and symptoms of the full clinical picture were present and are documented by impressive X-ray pictures. Some aspects of our patients are compared with relevant findings of previous reports. Collagen studies (skin biopsies) failed to reveal any significant disorder of the main collagen types composition. Striking similarities with established genetic disorders of collagen (like the osteogenesis imperfecta group and the Ehlers-Danlos syndrome) suggest, however, that the OPS could be a primary collagen disorder. Genetic counselling and devoted socio-medical care for these handicapped children is presently the only help which can be offered.

Adolescent↗

A family with osteoporosis pseudoglioma syndrome due to compound heterozygosity of two novel mutations in the LRP5 gene.

Osteoporosis pseudoglioma syndrome (OPPG) is an autosomal recessive disorder due to mutations in the low-density lipoprotein receptor-related protein 5 (LRP5) gene. Here, we report two novel missense mutations found in a southern Chinese family of a non-consanguineous marriage. Three out of four children had blindness, low bone mineral density (BMD) and multiple fractures in their childhood. Genotyping by DNA sequencing demonstrated 2 new mutations in exon 7 of the LRP5 gene. Tryptophans at amino acid residue positions 478 and 504 were replaced by arginine (W478R) and cysteine (W504C), respectively. While the parents that possessed either heterozygous W478R or W504C were apparently normal, all affected subjects were compound heterozygotes for the W478R and W504C mutations in the LRP5 gene. W478R is located immediately C-terminal to the third YWTD repeat of the second YWTD/EGF domain in LRP5, while W504C is located between the third and the fourth YWTD repeats of the second YWTD/EGF domain in LRP5. Using LRP5-related proteins, such as the low-density lipoprotein receptor (LDLR) and nidogen as reference models, a homology model of LRP5 suggested that the observed mutations may affect the molecular interactions of LRP5 and so lead to the observed OPPG phenotypes.

Adolescent↗

LRP5 mutations in osteoporosis-pseudoglioma syndrome and high-bone-mass disorders.

The LDL receptor-related protein 5 (LRP5) is a member of the LDL receptor family, which also includes the VLDL receptor and the apolipoprotein E receptor 2. The LRP5 is a co-receptor of Wnt located on the osteoblast membrane between two other receptors, Frizzled and Kremen. Frizzled and LRP5 bind to Wnt, thereby stabilizing beta-catenin and activating bone formation. When the dickkopf protein (Dkk) binds to Kremen and LRP5, this last undergoes internalization and therefore becomes unable to bind Wnt; this leads to degradation of beta-catenin and to inhibition of bone formation. In humans, loss of LRP5 function causes osteoporosis-pseudoglioma syndrome, which is characterized by congenital blindness and extremely severe childhood-onset osteoporosis (lumbar spine Z-score often < -4) with fractures. The G171V mutation prevents Dkk from binding to LRP5, thereby increasing LRP5 function; the result is high bone mass due to uncoupling of bone formation and resorption. The Z-scores in this condition can exceed +6 at the hip and spine. The LRP5 and Wnt/beta-catenin reflect the level of bone formation and play a central role in bone mass accrual and normal distribution. Furthermore, LRP5 may contribute to mediate mechanical loads within bone tissue. Identification of the Wnt/beta-catenin pathway is a breakthrough in the elucidation of pathophysiological mechanisms affecting bone tissue and suggests new treatment targets for patients with osteoporosis or specific malignant conditions such as myeloma and sclerotic bone metastases.

Abnormalities, Multiple↗

Congenital blindness and osteoporosis-pseudoglioma syndrome.

Isteoporosis-pseudoglioma syndrome (OPPG) is a rare heritable entity that features severe osteoporosis and many variable ophthalmic findings leading to congenital or juvenile blindness. These include microphthalmos, cataracts, bilateral pseudogliomatous retinal detachments, and phthisis bulbi. OPPG is usually not suspected until fractures occur, frequently after seemingly minor trauma. We report the ophthalmic findings of an infant girl with OPPG.

Arthrography↗

Incontinentia pigmenti: the development of pseudoglioma.

A case is described of incontinentia pigmenti in an infant with relatively normal retinae at seven days after birth who went on to total blindness by three months. This was due to excessive neovascularisation of retinae and vitreous, leading to bilateral pseudoglioma.

Eye Neoplasms↗

Osteoporosis-pseudoglioma syndrome with congenital heart disease: a new association.

We report a sibship of two brothers and one sister with the osteoporosis-pseudoglioma syndrome and congenital heart disease. They presented in infancy with visual impairment and psychomotor retardation. Major features included bilateral cataracts, generalised osteopenia, severe platyspondyly, borderline mental retardation, muscular hypotonia, joint laxity, and ventricular septal defect. Parental consanguinity and affected sibs of both sexes strongly suggested autosomal recessive inheritance. Analysis of the present and previously reported cases showed a wide range of interfamilial variability which may point to the existence of multiple allelism or genetic heterogeneity in this syndrome.

Child, Preschool↗

Osteoporosis-pseudoglioma syndrome: clinical, morphological, and biochemical studies.

We report a sibship of a sister and brother with osteoporosis-pseudoglioma syndrome. Several other family members became blind or showed signs of bone involvement. There was considerable consanguinity in the pedigree. The proband was small in size and had prominent skeletal deformities and clinical muscle weakness. These features were not present in her brother, suggesting clinical variability. Mental function was normal in both. Bone histology showed osteopenia. Several biochemical events of procollagen biosynthesis were analysed in fibroblast cultures, but no significant abnormalities compared to control fibroblast cultures were detected.

Blindness↗

Role of the Norrie disease pseudoglioma gene in sprouting angiogenesis during development of the retinal vasculature.

PURPOSE: To characterize developmental defects and the time course of Norrie disease in retinal and hyaloid vasculature during retinal development and to identify underlying molecular angiogenic pathways that may be affected in Norrie disease, exudative vitreoretinopathy, retinopathy of prematurity, and Coats' disease. METHODS: Norrie disease pseudoglioma homologue (Ndph)-knockout mice were studied during retinal development at early postnatal (p) stages (p5, p10, p15, and p21). Histologic techniques, quantitative RT-PCR, ELISA, and Western blot analyses provided molecular data, and scanning laser ophthalmoscopy (SLO) angiography and electroretinography (ERG) were used to obtain in vivo data. RESULTS: The data showed that regression of the hyaloid vasculature of Ndph-knockout mice occurred but was drastically delayed. The development of the superficial retinal vasculature was strongly delayed, whereas the deep retinal vasculature did not form because of the blockage of vessel outgrowth into the deep retinal layers. Subsequently, microaneurysm-like lesions formed. Several angiogenic factors were differentially transcribed during retinal development. Increased levels of hypoxia inducible factor-1alpha (HIF1alpha) and VEGFA, as well as a characteristic ERG pattern, confirmed hypoxic conditions in the inner retina of the Ndph-knockout mouse. CONCLUSIONS: These data provide evidence for a crucial role of Norrin in hyaloid vessel regression and in sprouting angiogenesis during retinal vascular development, especially in the development of the deep retinal capillary networks. They also suggest an early and a late phase of Norrie disease and may provide an explanation for similar phenotypic features of allelic retinal diseases in mice and patients as secondary consequences of pathologic hypoxia.

Animals↗

Effects of 3 years of intravenous pamidronate treatment on bone markers and bone mineral density in a patient with osteoporosis-pseudoglioma syndrome (OPPG).

We present a 21 year-old woman with osteoporosis-pseudoglioma syndrome (OPPG) suffering from bone pain and frequent long bone fractures (approximately 1 or 2 fractures/year) who was treated with i.v. pamidronate for 3 years. OPPG is a rare autosomal recessive disorder characterized by severe widespread osteoporosis leading to pathological fractures and congenital or early onset blindness. Bone mineral density (BMD) (g/cm2) was determined at lumbar spine and femur neck by dual energy X-ray absorptiometry. BMD studies were also performed in her parents and 18 year-old brother who were phenotypically normal. Within 2 months of the first pamidronate treatment the patient reported considerable decrease in bone pain and improved mobility. During the treatment period no important side effects and no recurrent bone fracture were reported. There were substantial increases in BMD, T score and z-score at both lumbar spine and femoral neck during therapy. Baseline lumbar spine BMD increased from 0.416 to 0.489 g/cm2 and femoral neck BMD increased from 0.455 to 0.532 g/cm2 after 3 years. Although her parents and brother did not have any history of fracture, BMD measurements revealed that her parents were osteopenic and her brother was osteoporotic. We demonstrated that pamidronate therapy seems to be safe and beneficial in both spinal and peripheral skeleton osteoporosis in patients with OPPG. Moreover, the present study clearly indicates that bone density studies and LRPS gene screening for mutations should be performed in phenotypically normal family members of patients with OPPG.

Abnormalities, Multiple↗

[Application of homozygosity mapping to the fine mapping of the osteoporosis-pseudoglioma syndrome locus].

OBJECTIVE: To evaluate the role of homozygosity mapping in the fine mapping of the genes responsible for the rare autosomal recessive diseases. METHODS: Polymerase chain reaction-single sequence length polymorphism was used to genotype the family members from 8 families with osteoporosis-pseudoglioma syndrome(OPS) for 14 polymorphic loci within candidate region. The OPS candidate region was narrowed by searching for homozygous region in affected. RESULTS: The OPS candidate region was narrowed to a 1 cM interval between D11S1296 and D11S4136. CONCLUSION: Homozygosity mapping is a powerful method for mapping and narrowing the candidate region of the genes responsible for the rare autosomal recessive diseases.

Abnormalities, Multiple↗