| Literature DB >> 29935067 |
Amani Hajlaoui1, Wafa Slimani1, Molka Kammoun1, Amira Sallem1, Fathi El Amri2, Anouar Chaieb3, Mohamed Bibi3, Ali Saad1, Soumaya Mougou-Zerelli4.
Abstract
BACHGROUND: The subtelomeric rearrangements are increasingly being investigated in cases of idiopathic intellectual disabilities (ID) and congenital abnormalities (CA) but are also thought to be responsible for unexplained recurrent miscarriage (RM). Such rearrangements can go unnoticed through conventional cytogenetic techniques and are undetectable even with high-resolution molecular cytogenetic techniques such as array comparative genomic hybridization (aCGH), especially when DNA of the stillbirth or families are not available. The aim of the study is to evaluate the rate of subtelomeric rearrangements in patients with RM.Entities:
Keywords: Chromosomal Aberration; Fluorescent In Situ Hybridization; Intellectual Disability; Spontaneous Abortion; Translocation
Year: 2018 PMID: 29935067 PMCID: PMC6018184 DOI: 10.22074/ijfs.2018.5260
Source DB: PubMed Journal: Int J Fertil Steril ISSN: 2008-0778
Fig.2Karyotype of the mother (III: 4).
Review of studies screening subtelomeric regions in patients with recurrent miscarriage
| Study | Number of studied cases | Number of subtelomeric rearrangements | Number of miscarriages | Malformed/stillborn child | Translocation | Technique |
|---|---|---|---|---|---|---|
| Wakui et al. (12) | 10 | 5 | 2 or more | + | 46, XY, t (7;16)(q36; q22) | Dual-colour subtelomere FISH |
| + | 46, XX, t (4; 7)(q35; p15.3) | |||||
| + | 46, XX, t(5; 10)(p15.1; p13 | |||||
| - | 46,XY,t(1;5)(q42;q33) | |||||
| + | 46,XY,t(7;13)(q36.2;q34) | |||||
| Giardino et al. (13) | 1 family with 2 female carriers | 1 | 2 | + | 46, XX, t(2;16)(q37.3;q24.3) | Multi-subtelomere FISH using the CytocellMultiprobe-T system |
| Benzacken et al. (14) | 114 | 0 | 2 or more | NM | - | Multi-subtelomere FISH using the CytocellMultiprobe-T system |
| Fan and Zhang (15) | 80 | 0 | 4 or more | NM | - | Multi-subtelomere FISH using the CytocellMultiprobe-T system |
| Joyce et al. (16) | 2 | 2 | 2 | + | 46,XX,t(11;17)(p15.5;p13.3) | Dual-colour subtelomere FISH |
| 4 | + | 46,XX, t(11;17)(p15.5;p13.3) | FISH analysis with telomere-specific probes | |||
| Yakut et al. (17) | 10 | 2 | 5 or more | - | 46,XY,ish t(3q; 10p) | Subtelomere specific FISH probe |
| 5 or more | - | 46,XX,ish t(20p;?Dp) | Multi-subtelomere FISH using the CytocellMultiprobe-T system | |||
| Jalal et al. (18) | 53 | 0 | Multiple | NM | - | |
| Bruyere et al. (19) | 1 | 1 | 3 | + | 46,XX, t(2;17) (q37.2; q25) | Multi-subtelomere FISH using the CytocellMultiprobe-T system |
| Cockwell et al. (20) | 100 | 1 | 7 | - | 46,XX t(3:10)(q29;p15.3) | ToTelVysion Multi-Color FISH |
| Monfort et al. (21) | 36 | 1 | 7 | - | 46,XX,t(2;3) | ToTelVysion Multi-Color + Miller-Dieker probe |
| Primerano et al. (22) | 1 | 1 | 2 | + | 46,XX. t(5;17) | ToTelVysion Multi-Color FISH |
| Present study | 42 | 1 | 2 | + | 46, XX, t(3;4)(q28;p16) | |
| Total | 448 | 15 | 5- | |||
| 10+ | ||||||
+; Exist, -; Does not exist, and NM; Not Mentioned.