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Retinal neovascularization

MedGen UID:
20550
Concept ID:
C0035320
Pathologic Function
Synonyms: Neovascularization, Retinal; Retinal Neovascularization
SNOMED CT: Retinal neovascularization (61267008); Neovascularization of retina (61267008); Vasoproliferative retinopathy (61267008); Retinal vascular proliferation (61267008)
 
HPO: HP:0030666

Definition

In wound repair, neovascularization (NV) involves the sprouting of new vessels from pre-existent vessels to repair or replace damaged vessels. In the retina, NV is a response to ischemia. The NV adheres to the inner surface of the retina and outer surface of the vitreous. NV are deficient in tight junctions and hence leak plasma into surrounding tissue including the vitreous. Plasma causes the vitreous gel to degenerate, contract, and eventually collapse which pulls on the retina. Since retinal NV is adherent to both retina and vitreous, as the vitreous contracts the NV may be sheared resulting in vitreous hemorrhage or the NV may remain intact and pull the retina with the vitreous resulting in retinal elevation referred to as traction retinal detachment. [from HPO]

Conditions with this feature

Exudative vitreoretinopathy 2, X-linked
MedGen UID:
337030
Concept ID:
C1844579
Disease or Syndrome
Familial exudative vitreoretinopathy (FEVR) is an inherited disorder characterized by the incomplete development of the retinal vasculature. Its clinical appearance varies considerably, even within families, with severely affected patients often registered as blind during infancy, whereas mildly affected patients with few or no visual problems may have such a small area of avascularity in their peripheral retina that it is visible only by fluorescein angiography. It is believed that this peripheral avascularity is the primary anomaly in FEVR and results from defective retinal angiogenesis. The sight-threatening features of the FEVR phenotype are considered secondary to retinal avascularity and develop because of the resulting retinal ischemia; they include the development of hyperpermeable blood vessels, neovascularization, vitreoretinal traction, retinal folds, and retinal detachments (summary by Poulter et al., 2010). For a discussion of genetic heterogeneity of FEVR, see EVR1 (133780).
Exudative vitreoretinopathy 1
MedGen UID:
343561
Concept ID:
C1851402
Disease or Syndrome
Familial exudative vitreoretinopathy (FEVR) is an inherited disorder characterized by the incomplete development of the retinal vasculature. Its clinical appearance varies considerably, even within families, with severely affected patients often registered as blind during infancy, whereas mildly affected patients with few or no visual problems may have such a small area of avascularity in their peripheral retina that it is visible only by fluorescein angiography. It is believed that this peripheral avascularity is the primary anomaly in FEVR and results from defective retinal angiogenesis. The sight-threatening features of the FEVR phenotype are considered secondary to retinal avascularity and develop because of the resulting retinal ischemia; they include the development of hyperpermeable blood vessels, neovascularization, vitreoretinal traction, retinal folds, and retinal detachments (summary by Poulter et al., 2010). In 31 Chinese pedigrees clinically diagnosed with FEVR, Rao et al. (2017) analyzed 6 FEVR-associated genes and identified mutations in 12 of the probands, including 5 (16.1%) in LRP5, 3 (9.7%) in NDP, 2 (6.5%) in FZD4, and 1 (3.2%) in TSPAN12. In addition, a mutation in the KIF11 gene (148760) was identified in a patient who also exhibited microcephaly (MCLMR; 152950). The authors noted that their detection rate did not exceed 50%, suggesting that other FEVR-associated genes remained to be discovered. Genetic Heterogeneity of Familial Exudative Vitreoretinopathy Also see EVR2 (305390), caused by mutation in the NDP gene (300658) on chromosome Xp11; EVR3 (605750), mapped to 11p13-p12; EVR4 (601813), caused by mutations in the LRP5 gene (603506) on 11q13.4; EVR5 (613310), caused by mutation in the TSPAN12 gene (613138) on 7q31; EVR6 (616468), caused by mutation in the ZNF408 gene (616454) on 11p11; and EVR7 (617572), caused by mutation in the CTNNB1 gene (116806) on chromosome 3p22.
Macular dystrophy, retinal, 3
MedGen UID:
854716
Concept ID:
C3888009
Disease or Syndrome
Autosomal dominant vitreoretinochoroidopathy
MedGen UID:
854768
Concept ID:
C3888099
Disease or Syndrome
Bestrophinopathies, the spectrum of ophthalmic disorders caused by pathogenic variants in BEST1, are typically characterized by retinal degeneration. The four recognized phenotypes are the three autosomal dominant disorders: Best vitelliform macular dystrophy (BVMD), BEST1 adult-onset vitelliform macular dystrophy (AVMD), and autosomal dominant vitreoretinochoroidopathy (ADVIRC); and autosomal recessive bestrophinopathy (ARB). Onset is usually in the first decade (except AVMD in which onset is age 30 to 50 years). Slow visual deterioration is the usual course. Choroidal neovascularization can occur in rare cases. ADVIRC is also associated with panophthalmic involvement including nanophthalmos, microcornea, hyperopia, and narrow anterior chamber angle with angle closure glaucoma.
Cleft palate, proliferative retinopathy, and developmental delay
MedGen UID:
1765503
Concept ID:
C5436739
Disease or Syndrome
Cleft palate, proliferative retinopathy, and developmental delay (CPPRDD) is characterized by motor and speech delay, with intellectual disability ranging from mild to severe. Brain imaging shows ventriculomegaly as well as other malformations (Harel et al., 2019).

Professional guidelines

PubMed

Arrigo A, Aragona E, Bandello F
Ann Med 2022 Dec;54(1):1089-1111. doi: 10.1080/07853890.2022.2064541. PMID: 35451900Free PMC Article
Fangueiro JF, Silva AM, Garcia ML, Souto EB
Eur J Pharm Biopharm 2015 Sep;95(Pt B):307-22. Epub 2014 Dec 20 doi: 10.1016/j.ejpb.2014.12.023. PMID: 25536109
Keating AM, Jacobs DS
Ocul Surf 2011 Oct;9(4):227-37. doi: 10.1016/s1542-0124(11)70035-0. PMID: 22023817

Recent clinical studies

Etiology

Kang MS, Kwon HJ
Retin Cases Brief Rep 2023 Nov 1;17(6):702-709. Epub 2023 Oct 23 doi: 10.1097/ICB.0000000000001292. PMID: 35594561Free PMC Article
Gau D, Vignaud L, Francoeur P, Koes D, Guillonneau X, Roy P
Exp Eye Res 2021 Dec;213:108861. Epub 2021 Nov 22 doi: 10.1016/j.exer.2021.108861. PMID: 34822853Free PMC Article
Pugazhendhi A, Hubbell M, Jairam P, Ambati B
Int J Mol Sci 2021 Jan 25;22(3) doi: 10.3390/ijms22031170. PMID: 33504013Free PMC Article
Ebrahimiadib N, Maleki A, Fadakar K, Manhapra A, Ghassemi F, Foster CS
Surv Ophthalmol 2021 Jul-Aug;66(4):653-667. Epub 2021 Jan 5 doi: 10.1016/j.survophthal.2020.12.006. PMID: 33412171
Hendrick AM, Lavine JA, Domalpally A, Kulkarni AD, Ip MS
Ophthalmic Surg Lasers Imaging Retina 2018 Jan 1;49(1):35-40. doi: 10.3928/23258160-20171215-05. PMID: 29304264

Diagnosis

Plastino F, Pesce NA, André H
Acta Ophthalmol 2021 Dec;99(8):e1255-e1262. Epub 2021 Mar 17 doi: 10.1111/aos.14845. PMID: 33729690
Hendrick AM, Lavine JA, Domalpally A, Kulkarni AD, Ip MS
Ophthalmic Surg Lasers Imaging Retina 2018 Jan 1;49(1):35-40. doi: 10.3928/23258160-20171215-05. PMID: 29304264
Tsai ASH, Cheung N, Gan ATL, Jaffe GJ, Sivaprasad S, Wong TY, Cheung CMG
Surv Ophthalmol 2017 Jul-Aug;62(4):462-492. Epub 2017 Feb 9 doi: 10.1016/j.survophthal.2017.01.008. PMID: 28189495
Zarbin MA, Arlow T, Ritch R
Mayo Clin Proc 2013 Dec;88(12):1480-90. doi: 10.1016/j.mayocp.2013.05.025. PMID: 24290123
Marback EF, Guerra RL, Maia Junior Ode O, Marback RL
Arq Bras Oftalmol 2013 May-Jun;76(3):200-3. doi: 10.1590/s0004-27492013000300016. PMID: 23929086

Therapy

Arrigo A, Aragona E, Bandello F
Ann Med 2022 Dec;54(1):1089-1111. doi: 10.1080/07853890.2022.2064541. PMID: 35451900Free PMC Article
Pugazhendhi A, Hubbell M, Jairam P, Ambati B
Int J Mol Sci 2021 Jan 25;22(3) doi: 10.3390/ijms22031170. PMID: 33504013Free PMC Article
Writing Committee for the Diabetic Retinopathy Clinical Research Network, Gross JG, Glassman AR, Jampol LM, Inusah S, Aiello LP, Antoszyk AN, Baker CW, Berger BB, Bressler NM, Browning D, Elman MJ, Ferris FL 3rd, Friedman SM, Marcus DM, Melia M, Stockdale CR, Sun JK, Beck RW
JAMA 2015 Nov 24;314(20):2137-2146. doi: 10.1001/jama.2015.15217. PMID: 26565927Free PMC Article
Varma DD, Cugati S, Lee AW, Chen CS
Eye (Lond) 2013 Jun;27(6):688-97. Epub 2013 Mar 8 doi: 10.1038/eye.2013.25. PMID: 23470793Free PMC Article
Campochiaro PA
J Mol Med (Berl) 2013 Mar;91(3):311-21. Epub 2013 Jan 18 doi: 10.1007/s00109-013-0993-5. PMID: 23329331Free PMC Article

Prognosis

Heath Jeffery RC, Chen FK
Surv Ophthalmol 2024 Jan-Feb;69(1):1-23. Epub 2023 Aug 6 doi: 10.1016/j.survophthal.2023.07.007. PMID: 37544613
Vishwakarma S, Kaur I
Semin Ophthalmol 2023 Feb;38(2):124-133. Epub 2022 Dec 19 doi: 10.1080/08820538.2022.2152706. PMID: 36536520
Pugazhendhi A, Hubbell M, Jairam P, Ambati B
Int J Mol Sci 2021 Jan 25;22(3) doi: 10.3390/ijms22031170. PMID: 33504013Free PMC Article
Tsai ASH, Cheung N, Gan ATL, Jaffe GJ, Sivaprasad S, Wong TY, Cheung CMG
Surv Ophthalmol 2017 Jul-Aug;62(4):462-492. Epub 2017 Feb 9 doi: 10.1016/j.survophthal.2017.01.008. PMID: 28189495
Marticorena J, Di Leva V, Cennamo GL, de Crecchio G
Curr Drug Targets 2011 Feb;12(2):199-205. doi: 10.2174/138945011794182683. PMID: 20887242

Clinical prediction guides

Luo Q, Jiang Z, Jiang J, Wan L, Li Y, Huang Y, Qiu J, Yu K, Zhuang J
Theranostics 2023;13(11):3689-3706. Epub 2023 Jun 26 doi: 10.7150/thno.84236. PMID: 37441592Free PMC Article
Zhang J, Sharma D, Dinabandhu A, Sanchez J, Applewhite B, Jee K, Deshpande M, Flores-Bellver M, Hu MW, Guo C, Salman S, Hwang Y, Anders NM, Rudek MA, Qian J, Canto-Soler MV, Semenza GL, Montaner S, Sodhi A
J Clin Invest 2023 Jul 3;133(13) doi: 10.1172/JCI163290. PMID: 37227777Free PMC Article
Vishwakarma S, Kaur I
Semin Ophthalmol 2023 Feb;38(2):124-133. Epub 2022 Dec 19 doi: 10.1080/08820538.2022.2152706. PMID: 36536520
Zhang J, Qin Y, Martinez M, Flores-Bellver M, Rodrigues M, Dinabandhu A, Cao X, Deshpande M, Qin Y, Aparicio-Domingo S, Rui Y, Tzeng SY, Salman S, Yuan J, Scott AW, Green JJ, Canto-Soler MV, Semenza GL, Montaner S, Sodhi A
J Clin Invest 2021 Jun 15;131(12) doi: 10.1172/JCI139202. PMID: 34128478Free PMC Article
Marback EF, Guerra RL, Maia Junior Ode O, Marback RL
Arq Bras Oftalmol 2013 May-Jun;76(3):200-3. doi: 10.1590/s0004-27492013000300016. PMID: 23929086

Recent systematic reviews

Myint KT, Sahoo S, Thein AW, Moe S, Ni H
Cochrane Database Syst Rev 2015 Oct 9;2015(10):CD010790. doi: 10.1002/14651858.CD010790.pub2. PMID: 26451693Free PMC Article
McIntosh RL, Mohamed Q, Saw SM, Wong TY
Ophthalmology 2007 May;114(5):835-54. Epub 2007 Mar 30 doi: 10.1016/j.ophtha.2007.01.010. PMID: 17397923
Mohamed Q, McIntosh RL, Saw SM, Wong TY
Ophthalmology 2007 Mar;114(3):507-19, 524. doi: 10.1016/j.ophtha.2006.11.011. PMID: 17324695
Wormald R, Evans J, Smeeth L, Henshaw K
Cochrane Database Syst Rev 2005 Oct 19;(4):CD002030. doi: 10.1002/14651858.CD002030.pub2. PMID: 16235294
Wormald R, Evans J, Smeeth L, Henshaw K
Cochrane Database Syst Rev 2003;(2):CD002030. doi: 10.1002/14651858.CD002030. PMID: 12804420

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