Single-nucleotide polymorphism array and fluorescence in situ hybridization analysis to decode the cytogenetic profile of atypical partial hydatidiform moles diagnosed by short tandem repeat polymorphism analysis

IF 3.1 2区 医学 Q2 GENETICS & HEREDITY
Yoshiya Suzuki, Hirokazu Usui, Eri Katayama, Asuka Sato, Natsuko Nakamura, Emiri Nakada, Akiko Omoto, Jun Okayama, Mika Sato, Akiko Nagasawa, Akiko Hirosawa, Makio Shozu, Kaori Koga
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Abstract

Accurate diagnosis of partial hydatidiform moles (PHMs) is crucial for improving outcomes of gestational trophoblastic neoplasia. The use of short tandem repeat (STR) polymorphism analysis to distinguish between PHM and hydropic abortuses is instrumental; however, its diagnostic power has not been comprehensively assessed. Herein, we evaluated the diagnostic efficacy of STR in differentiating between PHM and hydropic abortus, thus providing an opportunity for early measurement of human chorionic gonadotropin for PHMs. We reviewed charts of STR polymorphism analysis performed on fresh villous specimens and patient blood samples using a commercial kit for 16 loci. The genetic classification of 79 PHMs was confirmed. STR was reliable in differentiating PHMs when at least 15 loci were available. Typically, PHMs are characterized by their triploidy, including two paternal and one maternal haploid contribution. In our sample, seven PHMs lacked the three-allelic loci, requiring fluorescence in situ hybridization (FISH) analysis to investigate imbalanced biparental conceptus and single-nucleotide polymorphism array analysis to reveal cytogenetic details. Of these PHMs, two, three, and one were identified as androgenetic/biparental mosaics (diploids), monospermic diandric monogynic triploids, and a typical dispermic diandric monogynic triploid, respectively. The remaining case was monospermic origin, but its ploidy details could not be available. Therefore, STR differentiated PHM from a biparental diploid abortus in most cases. However, PHM diagnosis may be compromised when STR is used as the sole method for cases displaying distinct cytogenetic patterns lacking the three-allelic loci, including androgenetic/biparental mosaicism. Therefore, FISH should be considered to confirm the diagnosis.

用单核苷酸多态性阵列和荧光原位杂交分析破解通过短串联重复多态性分析诊断的非典型部分水滴形痣的细胞遗传学特征
部分水样痣(PHM)的准确诊断对于改善妊娠滋养细胞肿瘤的预后至关重要。使用短串联重复(STR)多态性分析来区分 PHM 和水样流产很有帮助,但其诊断能力尚未得到全面评估。在此,我们评估了 STR 在区分 PHM 和水样流产方面的诊断功效,从而为 PHM 早期测量人绒毛膜促性腺激素提供了机会。我们回顾了使用商业试剂盒对新鲜绒毛标本和患者血液样本的 16 个位点进行 STR 多态性分析的图表。79 例 PHM 的基因分类得到了证实。当至少有 15 个位点可用时,STR 在区分 PHM 方面是可靠的。通常,PHM 的特征是三倍体,包括两个父方单倍体和一个母方单倍体。在我们的样本中,有7例PHM缺乏三个等位基因位点,因此需要进行荧光原位杂交(FISH)分析来研究不平衡的双亲受孕情况,并通过单核苷酸多态性阵列分析来揭示细胞遗传学细节。在这些 PHMs 中,有两例、三例和一例分别被鉴定为雄性/双亲马赛克(二倍体)、单精双雄单雌三倍体和典型的双精双雄单雌三倍体。剩下的一个病例是单倍体,但无法获得其倍性细节。因此,在大多数病例中,STR 将 PHM 与双亲二倍体流产区分开来。然而,如果将 STR 作为缺乏三等位基因位点的独特细胞遗传学模式病例(包括雄性/双亲嵌合)的唯一方法,可能会影响 PHM 的诊断。因此,应考虑使用 FISH 来确诊。
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来源期刊
Genes, Chromosomes & Cancer
Genes, Chromosomes & Cancer 医学-遗传学
CiteScore
7.00
自引率
8.10%
发文量
94
审稿时长
4-8 weeks
期刊介绍: Genes, Chromosomes & Cancer will offer rapid publication of original full-length research articles, perspectives, reviews and letters to the editors on genetic analysis as related to the study of neoplasia. The main scope of the journal is to communicate new insights into the etiology and/or pathogenesis of neoplasia, as well as molecular and cellular findings of relevance for the management of cancer patients. While preference will be given to research utilizing analytical and functional approaches, descriptive studies and case reports will also be welcomed when they offer insights regarding basic biological mechanisms or the clinical management of neoplastic disorders.
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