| Literature DB >> 24976865 |
Abstract
BACKGROUND: In a review of the literature in 2000 the different cytogenetic aspects of spontaneous miscarriages were well documented. This review also included the spontaneous miscarriage results of one large German study published in 1990. However, to our knowledge there are no new data on spontaneous miscarriages in the German population. Therefore, the aim of the present retrospective large study was to find out the incidence and types of chromosome aberrations in an unselected series of spontaneous miscarriages in the German population, and whether our more recent results were different to data published previously. In case of culture failure we implemented a quantitative fluorescent polymerase chain reaction (QF-PCR) for chromosomes 13, 18, 21, X and Y.Entities:
Keywords: Chromosome aberrations; Cytogenetic analysis; Cytogenetics; Karyotyping; Miscarriage; QF-PCR
Year: 2014 PMID: 24976865 PMCID: PMC4073514 DOI: 10.1186/1755-8166-7-38
Source DB: PubMed Journal: Mol Cytogenet ISSN: 1755-8166 Impact factor: 2.009
Incidence and types of chromosome aberrations in spontaneous miscarriages by cytogenetic analysis (CA): new data from the German population and previous results from other studies published since 2000
| Present study | 534 | 144(27) | 153(39) | 237(61) | 16(7), 1(<1), 17(7) | 111(47) | 29(12), 25(10), 54(23) | 10(4)*2 | 17(7)*3 | 11(5) |
| Gao and coworkers [ | 100 | 14(14) | 37(43) | 49(57) | 2(4), 1(2), 0 | 40(82) | 3(6), 2(4), 5(10) | 1(2) | 0 | 0 |
| Lathi and coworkers [ | 30 | 0 | 10(33) | 20(67) | 0, 0, 0 | 14(70) | 1(5), 1(5), 2(10) | 2(10) | 2(10) | 0 |
| Shearer and coworkers*3[ | 4,189 | 828(20) | 1,627(48) | 1,734(52) 1,836*4 | 186(10)*4, 13(1)*4, 74(4)*4 | 1,074(58)*4 | 223(12)*4,5, 55(3)*4,5, 278(15)*4,5 | 135(7)*4,6 | 57(3)*4 | 19(1)*4 |
| Menten and coworkers [ | 100 | 28(28) | 55(76) | 17(24) | 2(12), 0, 0 | 10(59) | 3(18), 0, 3(18) | 2(12) | 0 | 0 |
| Dória and coworkers [ | 232 | 59(25) | 107(62) | 66(38) | 5(8), 1(1), 3(5) | 33(50) | 6(9), 6(9), 12(18) | 4(6) | 7(11) | 1(1) |
| Zhang and coworkers [ | 115 | 23(20) | 37(40) | 55(60) 53*7 | 5(9)*7, 0, 2(4)*7 | 36(68)*7 | 3(6)*7, 3(6)*7, 6(11)*7 | 2(4)*7 | 2(4)*7 | 0 |
| Robberecht and coworkers [ | 103 | 26(25) | 55(71) | 22(29) | 3(14), 0, 3(14) | 7(32) | 4(18), 0, 4(18) | 3(14) | 1(4) | 1(4) |
| Diego-Alvarez and coworkers [ | 178 | 76(43) | 62(61) | 40(39) | 6(15), 0, 0 | 24(60) | 3(7), 2(5), 5(12) | 1(2) | 4(10) | 0 |
| Bruno and coworkers [ | 78 | 11(14) | 38(57) | 29(43) | 2(7), 0, 1(3) | 18(62) | 1(3), 0, 1(3) | 5(17) | 1(3) | 1(3) |
| Hu and coworkers [ | 38 | 7(18) | 15(48) | 16(52) | 2(12), 0, 0 | 12(75) | 2(12), 0, 2(12) | 0 | 0 | 0 |
| Menasha and coworkers [ | 2,180 | 260*8(12) | 821(43) | 1,099(57) | 96(9), 13(1), 4(1) | 721(66) | 116(11)*9, 18(2)*9, 152(14)*10 | 46(4) | 67(6)*11 | 0 |
| Sullivan and coworkers [ | 150 | 17(11) | 77(58) | 56(42) 55*12 | 5(9)*12, 0, 0 | 35(64)*12 | Not reported, Not reported, 12(22)*12 | 3(5)*12 | 0 | 0 |
| Schaeffer and coworkers [ | 41 | 0 | 25(61) | 16(39) | 1(6), 0, 0 | 14(87) | 0, 0, 0 | 1(6) | 0 | 0 |
| Jobanputra and coworkers [ | 57 | 5(9) | 22(42) | 30(58) | 2(7), 1(3), 0 | 17(57) | 4(13), 2(7), 6(20) | 0 | 2(7) | 2(6) |
| Tabet and coworkers*13[ | 21 | 0 | 12(57) | 9(43) | 1(11) | 6(67) | 1(11), 0, 1(11) | 1(11) | 0 | 0 |
| Lomax and coworkers [ | 301 | 48*13(16) | 98(39) | 155(61) | 12(8), Not reported, Not reported | Aneuploidy 111(72) | Not reported, Not reported, 25(16) | 7(4) | 0 | 0 |
| Goddijn and Leschot (Review)*15 | Not reported | Not always reported | 2,377(51) | 2,319(49) | 308(13), Not reported, Not reported | 1,216(52) | Not reported, Not reported 481(21) | 132(6) | Not reported | 182(8)*16 |
| Variations from (%) | (1-39) | (38-77) | (2-90) | (33-76) | (8-31) | (2-8) | ||||
| Eiben and coworkers [ | 983 | 233(24) | 370(49) | 380(51) | 40(11), Not reported, Not reported | 229(60) | 46(12), 32(8), 78(20) | 18(5) | 11(3) | 4(1) |
CA data before 2000 are listed at the end of the table (Goddijn and Leschot, Review [8], Eiben and coworkers [4]).
*1Mosaicism included.
*2Single structural chromosome aberrations, all of them were unbalanced, see Table 2.
*3Shearer and coworkers [6] analysed a total of 5,555 specimens. Unidentified tissue accounted for 25% (1,366/5,555) of their cases, chromosome analysis exclusively in chorionic villi/fetal tissue specimens was successful for 80% (3,361/4,189) of the cases and identified a chromosome aberration (single or more) in 52% (1,734/3,361) of the cases by CA.
*4The frequencies were calculated from 1,734 chorionic villi/fetal specimens and from 102 unidentified tissue samples with an aberrant karyotype (n = 1,836).
*5Samples included cases with a near-triploidy or near-tetraploidy.
*6Ninety-one of the 135 cases (67%) were unbalanced structural chromosome aberrations, 6 of the 135 cases were balanced Robertsonian translocations with a female karyotype and likely represented maternal tissue.
*7The data we have used, are based on 53 cases with a chromosome aberration (see Table 1 in the publication of Zhang and coworkers [17]).
*8Sixty-five of the cases were contaminated and 195 of the cases showed no cell growth.
*9Samples only included cases with a non-mosaic triploidy or tetraploidy.
*10Samples included cases with a non-mosaic and mosaic triploidy or tetraploidy and/or with a near/pseudopolyploid karyotype.
*11The data we have used, are based on the results from Table 2 in the publication of Menesha and coworkers [5]. The detailed analysis of their cases with multiple aneuploidy is shown in Appendix A and the exact number of multiple aneuploidies is higher (8%, 85/1,099).
*12The data we have used, are based on 55 cases with a chromosome aberration (see Table 2 in the publication of Sullivan and coworkers [22]).
*13 Fourty-eight samples could not be analysed by both CA and comparative genomic hybridization/flow cytometry.
*14The frequencies were calculated from 3,749 aberrant karyotypes.
*15Including the data of Eiben and coworkers [4].
*16Including double and triple trisomies, mosaicism, hydatidiform mola, autosomal monosomy and miscellaneous.
Incidence and types of chromosome aberrations in spontaneous miscarriages by cytogenetic analysis (CA) and by quantitative fluorescent polymerase chain reaction (QF-PCR)
| | |
| 45,X | 16 |
| mos 45,X/46,XX | 2 |
| 45,XX,-21 | 1 |
| mos 45,XX,-21/46,XX | 1 |
| | |
| 47,XX,+2 | 2 |
| mos 47,XY,+2/46,XY | 1 |
| mos 47,XX,+3/46,XX | 1 |
| 47,XX,+4 | 3 |
| mos 47,XX,+4/46,XX | 1 |
| mos 47,XX,+5/46,XX | 1 |
| 47,XY,+6 | 1 |
| 47,XY,+7 | 1 |
| 47,XX or 47,XY,+8 | 5 |
| 47,XX or 47,XY,+9 | 5 |
| mos 47,XX,+9/46,XX | 2 |
| 47,XX or 47,XY,+10 | 4 |
| 47,XX or 47,XY,+13 | 6 |
| mos 47,XX,+13/46,XX | 1 |
| 47,XX or 47,XY,+14 | 5 |
| mos 47,XX,+14/46,XX | 1 |
| 47,XX or 47,XY,+15 | 17 |
| mos 47,XX,+15/46,XX | 2 |
| 47,XX or 47,XY,+16 | 22 |
| mos 47,XX,+16/46,XX | 3 |
| 47,XX or 47,XY,+18 | 8 |
| 47,XX or 47,XY,+20 | 2 |
| 47,XX or 47,XY,+21 | 10 |
| 47,XX or 47,XY,+22 | 20 |
| mos 47,XX,+22/46,XX | 1 |
| | |
| 69,XXX or 69,XXY | 29 |
| 1 | |
| | |
| 92,XXXX or 92,XXYY | 5 |
| mos 92,XXXX or 92,XXYY/46,XY | 20 |
| | |
| 46,X,i(Y)(q10) | 1 |
| mos 46,X,i(Y)(p10)/46,XY | 1 |
| 46,XY,der(1)t(1;15)(p36.1;q22.3)mat | 1 |
| mos 46,XX,add(4)(q?31)/46,XX | 1 |
| 46,XY,add(5)(p15.3) | 1 |
| 46,XX,add(6)(q21) | 1 |
| mos 47,XY,+i(12)(p10)/46,XY | 1 |
| 46,XX,add(14)(p11.2) | 1 |
| mos 46,XX,i(20)(q10)/46,XX | 1 |
| mos 47,XY,+mar/46,XY | 1 |
| | |
| Multiple aneuploidies (n = 17) | |
| 46,X,+21 | 1 |
| 48,XXY,+22 | 1 |
| 48,XX,+2,+22 | 1 |
| 48,XX,+8,+18 | 1 |
| 48,XY,+9,+15 | 1 |
| 48,XY,+12,+20 | 1 |
| 48,XY,+13,+21 | 1 |
| 48,XY,+16,+21 | 1 |
| 48,XX,+16,+22 | 1 |
| 49,XY,+12,+16,+21 | 1 |
| 48,XX,+20,+21 | 1 |
| 68,XXY,-21 | 1 |
| 68,XXX,-22 | 1 |
| 94,XXXY,+7,+7 | 1 |
| 94,XXYY,+17,+17 | 1 |
| 94,XXYY,+20,+20 | 1 |
| mos 95,XXYY,+2,+21,+21/94,XXYY,+21,+21 | 1 |
| Structural and/or numerical chromosome aberrations (n = 11) | |
| mos 45,X/47,XX,+mar | 1 |
| 46,XX,der(2)t(2;3)(q37;p21),der(3)t(3;9)(p21;q13) | 1 |
| mos 47,XX,+4/47,XX,der(4)t(4;?)(q12;?) | 1 |
| 47,XY,t(5;5)(p10;p10),+5 | 1 |
| mos 46,XY,der(5)t(5;14)(q23;q11.2),+5,-4/45,XY,der(13;14)(p10;q10)/46,XY | 1 |
| mos 46,XX,del(8)(p10)/46,XX,i(8)(q10) | 1 |
| 47,XY,t(9;13)(p22;q14.1),+13 | 1 |
| 46,XX,der(14;15)(q10;q10),+14 | 1 |
| 47,XX,der(15)t(3;15)(p10;q10),+21 | 1 |
| 91,XX,-3,+5,-6,t(8;19)(q22;q13.1) | 1 |
| mos 94,XXXX,+mar1x2/47,XX,+mar1/46,XX | 1 |