1.46 XY Gonadal Dysgenesis mimicking Turner Syndrome: Diagnostic challenges and clinical implications
Suseelah Bala Subramaniam ; Rabeah Md Zuki ; Loh Hoong Heng
Journal of the ASEAN Federation of Endocrine Societies 2026;41(S1):13-
Introduction:
Swyer syndrome (46, XY gonadal dysgenesis) is a rare disorder of sex development, characterized by a phenotypic female
with streak gonads and hypergonadotropic hypogonadism. It presents with primary amenorrhea and delayed puberty.
Overlapping clinical features with Turner syndrome may cause diagnostic uncertainty, highlighting the role of karyotypic
evaluation in diagnosis.
Case:
A 35-year-old phenotypic female was first evaluated at age 27 during admission for an acute viral illness, when incidental
findings of primary amenorrhea, short stature (height 131 cm), webbed neck, pectus excavatum, and absent secondary
sexual characteristics raised suspicion of Turner syndrome. She had hypertension, with initial imaging suggesting
coarctation of the thoracic aorta. CT angiography showed focal narrowing of the descending aorta; multidisciplinary review
favored aortic folding, and she was managed conservatively. Endocrine evaluation demonstrated hypergonadotropic
hypogonadism, with markedly elevated follicle-stimulating hormone (FSH 108.6 IU/L) and luteinizing hormone (LH 23.16
IU/L) in the presence of low estradiol levels. Pelvic imaging revealed an atrophic uterus with absence of bilateral ovaries,
consistent with gonadal dysgenesis. Karyotypic analysis was performed, demonstrating a 46, XY genotype with confirmed
SRY gene presence, establishing the diagnosis of Swyer syndrome. DEXA scan demonstrated osteoporosis, in keeping
with prolonged hypogonadism. She was commenced on hormone replacement therapy, resulting in the development
of secondary sexual characteristics and regular withdrawal bleeding. She remains under structured multidisciplinary
follow-up, with endocrine-led management of hypothyroidism and osteoporosis, alongside cardiology follow-up and
gynecological surveillance.
Conclusion
This case highlights the diagnostic complexity of disorders of sex development with overlapping phenotypes and the need
for re-evaluation when clinical progression is atypical. Diagnosis enables hormone replacement therapy for induction of
secondary sexual characteristics and preservation of bone health. Integration of clinical, biochemical, and genetic data
within a multidisciplinary framework is essential to achieve diagnostic accuracy and optimize outcomes.
Turner Syndrome
2.Growth Against the Clock: Hormonal Therapy in Late-Diagnosed Mosaic Turner Syndrome
Asma&rsquo ; Mohd Nazlee ; Dorothy Maria Anthony Bernard ; Siti Sanaa Wan Azman ; Siew Hui Foo
Journal of the ASEAN Federation of Endocrine Societies 2026;41(S1):100-101
Introduction:
Short stature and delayed puberty characterize Turner
syndrome (TS). The 2024 international clinical practice
guidelines recommend growth hormone (GH) for latediagnosed patients if epiphyses remain open. For patients
with remaining growth potential, initiating GH alongside
low-dose estrogen effectively balances linear growth with
the need for timely pubertal induction.
Case:
A 15-year-old female, born prematurely at 6 months
gestation, presented with delayed puberty, primary
amenorrhea, and short stature. Examination revealed a
height of 122 cm (<5th percentile), weight of 26 kg, with
no syndromic facies, and Tanner stage 1. Investigations
confirmed hypergonadotropic hypogonadism. Metabolic
screening, including thyroid, renal, and liver profile, was
normal. Her baseline insulin-like growth factor 1 (IGF-1) was
low at 117.5 ng/mL (127.5–541.5). Karyotyping confirmed
mosaic TS (45,X/46,Xr). Her skeletal bone age was delayed
at 12 years, indicating a viable window for linear growth
prior to complete epiphyseal fusion.
Subcutaneous GH was initiated at 0.3 mg up titrated to
1.2 mg (0.45 µg/kg) daily over 4 weeks, then 1.35 mg (50
µg/kg) daily at month 5. Low-dose oral estradiol (0.5 mg
three times weekly) was introduced for pubertal induction
at month 4. After 9 months of combined GH and estrogen
therapy, the patient achieved a height increment of 6 cm,
reaching 128 cm without an adverse event. To achieve the
clinical target of a 10–15 cm increment in the first year,
her GH dose was further increased to 1.50 mg (55 µg/kg)
daily. She showed an appropriate biochemical response
with IGF-1 increased to 40.2 nmol/L (16.4–67.8) with a total
height gain of 6 cm over the first 9 months of GH therapy.
Conclusion
Concomitant GH and estrogen therapy in late-diagnosed
TS successfully induced clinically significant height gain.
This dual approach maximized the limited window for
linear growth, without delaying pubertal induction and
compromising patient’s psychosocial well-being.
Turner Syndrome
3.A case of Turner syndrome with double pseudo-isodicentric X chromosome and mosaic karyotype diagnosed prenatally and a literature review.
Famei XU ; Yingxin ZHANG ; Wanxiao HAO ; Xiaoming YU ; Yifang JIA
Chinese Journal of Medical Genetics 2025;42(6):756-761
OBJECTIVE:
To explore the mechanism for the occurrence and phenotypic characteristics of Turner syndrome based on a prenatally diagnosed case of a mosaic karyotype containing double pseudo-isodicentric X chromosome and a review of relevant literature.
METHODS:
A fetus diagnosed with increased risk for trisomy 21 at the Provincial Hospital Affiliated to Shandong First Medical University in August 2023 was selected as the study subject. Clinical data of the fetus was collected. Following amniocentesis, chromosomal G-banding karyotype analysis and chromosomal microarray analysis (CMA) were carried out. This study has been approved by the Ethics Committee of the Hospital (Ethics No.: SWYX No. 2022-287).
RESULTS:
The early-trimester screening suggested a high risk of trisomy 21 (1/19), with free β-hCG of 116 ng/mL (MoM value 2.35), PAPP-A of 0.394 ng/mL (MoM value 0.12), and NT value of 1.3 mm, though no abnormality was found in the fetus at 19 weeks gestation. The karyotype of amniocyte was determined as 46,X,psu idic(X)(p11.21)[55]/45,X[27]/47,X,psu idic(X)(p11.21)×2[5]/46,XX[13]. CMA has yielded a result of arr[GRCh37] Xp22.33p11.21(168552_55585678)×1[0.67],Xp11.21q28(55703291_155233098)×3[0.5].
CONCLUSION
Karyotypes of Turner syndrome are complex and diverse, and a rare 46,X,psu idic(X)(p11.21)[55]/45,X[27]/47,X,psu idic(X)(p11.21)×2[5]/46,XX[13] mosaic karyotype with double pseudo-isodicentric X chromosome has been identified. Literature review suggested that this karyotype may lead to phenotypic diversification and a risk of reduced sensitivity to hormone therapy.
Humans
;
Turner Syndrome/diagnosis*
;
Female
;
Pregnancy
;
Chromosomes, Human, X/genetics*
;
Mosaicism
;
Prenatal Diagnosis
;
Karyotyping
;
Adult
;
Karyotype
;
Amniocentesis
4.Review of Cytogenetic findings of patients with turner syndrome and its variants in Filipinos and the implications in genetic counseling
Ebner Bon Gatus Maceda ; Michelle Espinoza Abadingo ; Cheryll Magbanua-Calalo ; Edsel Allan G. Salonga ; Jonathan Z. Oblefias ; Maria Melanie Liberty Bandagosa Alcausin
Philippine Journal of Health Research and Development 2025;29(4):72-77
BACKGROUND
Turner syndrome (TS) is the most common sex chromosomal abnormality in females resulting from a missing X chromosomal material. This in turn results in a range of clinical manifestations. This study aimed to provide the data on the cases of TS confirmed via chromosomal analysis in a cytogenetics laboratory in the Philippines as well as the role of genetic counseling.
METHODOLOGYA review of the karyotyping results of the Cytogenetics Laboratory, Institute of Human Genetics, National Institutes of Health, University of the Philippine Manila from 1991 to 2020.
RESULTSTS accounted for 2.64% of all the samples received from 1991 to 2020. For 30 years, the most common karyotype in TS was the classical TS or the standard monosomy 45, X noted in 195 patients or 37.69% of all patients diagnosed with TS. Mosaicism with a normal female karyotype was noted in 50 patients (9.62%). For the TS variants, the most common is isochromosome Xq seen in 125 patients (24.04%). This is followed by TS with marker chromosome in 55 patients (10.58%) and ring X chromosome in 23 patients (4.42%). Deletion Xp and deletion Xq were noted in 22 patients (4.23%) and 20 patients (3.85%), respectively.
CONCLUSIONFrom this study, it can be noted that chromosomal analysis or standard karyotyping is a vital and useful diagnostic tool in TS. The information obtained from it may be useful in clinical decision-making of families and healthcare providers. Its importance in providing adequate genetic counseling cannot be overemphasized.
Human ; Chromosomes ; Karyotyping ; Turner Syndrome
5.Clinical and genetic characteristic in patients with disorders of sex development caused by Y chromosome copy number variant.
Jun Ke XIA ; Feng Yan TIAN ; Ya Qin HOU ; Yong Jiang ZHAO ; Xiang Dong KONG
Chinese Journal of Pediatrics 2023;61(5):459-463
Objective: To investigate the clinical phenotype and genetic characteristics of disorders of sex development (DSD) caused by Y chromosome copy number variant (CNV). Methods: A retrospective analysis was performed on 3 patients diagnosed with DSD caused by Y chromosome CNV admitted to the First Affiliated Hospital of Zhengzhou University from January, 2018 to September, 2022. Clinical data were collected. Clinical study and genetic test were performed by karyotyping, whole exome sequencing (WES), low coverage whole genome copy number variant sequencing (CNV-seq), fluorescence in situ hybridization (FISH) and gonadal biopsy. Results: The 3 children, aged 12, 9, 9 years, the social gender were all female, presented with short stature, gonadal dysplasia and normal female external genital. No other phenotypic abnormality was found except for case 1 with scoliosis. The karyotype of all cases were identified as 46, XY. No pathogenic vraiants were found by WES. CNV-seq determined that case 1 was 47, XYY,+Y(2.12) and case 2 was 46, XY,+Y(1.6). FISH concluded that the long arm of Y chromosome was broken and recombined near Yq11.2, and then produced a pseudodicentric chromosome idic(Y). The karyotype was reinterpreted as mos 47, X, idic(Y)(q11.23)×2(10)/46, X, idic(Y)(q11.23)(50) in case 1. The karyotype was redefined as 45, XO(6)/46, X, idic(Y)(q11.22)(23)/46, X, del(Y)(q11.22)(1) in case 2. 46, XY, -Y(mos) was found by CNV-seq in case 3, and the karyotype of 45, XO/46, XY was speculated. Conclusions: The clinical manifestations of children with DSD caused by Y chromosome CNV are short stature and gonadal dysgenesis. If there is an increase of Y chromosome CNV detected by CNV-seq, FISH is recommended to classify the structural variation of Y chromosome.
Humans
;
Female
;
DNA Copy Number Variations
;
In Situ Hybridization, Fluorescence
;
Retrospective Studies
;
Chromosomes, Human, Y
;
Turner Syndrome
6.Application of fluorescence in situ hybridization combined with chromosomal karyotyping analysis in children with disorders of sex development due to sex chromosome abnormalities.
Gaowei WANG ; Jin WANG ; Zhenhua ZHANG ; Rui LI ; Linfei LI ; Dongxiao LI ; Wancun ZHANG ; Yaodong ZHANG ; Meiye WANG
Chinese Journal of Medical Genetics 2023;40(8):947-953
OBJECTIVE:
To retrospectively analyze sex chromosomal abnormalities and clinical manifestations of children with disorders of sex development (DSD).
METHODS:
A total of 14 857 children with clinical features of DSD including short stature, cryptorchidism, hypospadia, buried penis and developmental delay were recruited from Zhengzhou Children's Hospital from January 2013 to March 2022. Fluorescence in situ hybridization (FISH) and chromosomal karyotyping were carried out for such children.
RESULTS:
In total 423 children were found to harbor sex chromosome abnormalities, which has yielded a detection rate of 2.85%. There were 327 cases (77.30%) with Turner syndrome and a 45,X karyotype or its mosaicism. Among these, 325 were females with short stature as the main clinical manifestation, 2 were males with short stature, cryptorchidism and hypospadia as the main manifestations. Sixty-two children (14.66%) had a 47,XXY karyotype or its mosaicism, and showed characteristics of Klinefelter syndrome (KS) including cryptorchidism, buried penis and hypospadia. Nineteen cases (4.49%) had sex chromosome mosaicisms (XO/XY), which included 11 females with short stature, 8 males with hypospadia, and 6 cases with cryptorchidism, buried penis, testicular torsion and hypospadia. The remainder 15 cases (3.55%) included 9 children with a XYY karyotype or mosaicisms, with main clinical manifestations including cryptorchidisms and hypospadia, 4 children with a 47,XXX karyotype and clinical manifestations including short stature and labial adhesion, 1 child with a 46,XX/46,XY karyotype and clinical manifestations including micropenis, hypospadia, syndactyly and polydactyly, and 1 case with XXXX syndrome and clinical manifestations including growth retardation.
CONCLUSION
Among children with DSD due to sex chromosomal abnormalities, sex chromosome characteristics consistent with Turner syndrome was most common, among which mosaicism (XO/XX) was the commonest. In terms of clinical manifestations, the females mainly featured short stature, while males mainly featured external genital abnormalities. Early diagnosis and treatment are particularly important for improving the quality of life in such children.
Humans
;
Male
;
Female
;
Turner Syndrome/genetics*
;
In Situ Hybridization, Fluorescence
;
Cryptorchidism
;
Hypospadias
;
Retrospective Studies
;
Quality of Life
;
Sex Chromosome Aberrations
;
Karyotyping
;
Mosaicism
;
Disorders of Sex Development/genetics*
7.Clinical and genetic analysis of a case of Turner syndrome with rapidly progressive puberty and a literature review.
Xiaomei LIN ; Yong DAI ; Zhihui XIAO ; Dong'e TANG ; Mei YE ; Bo LI
Chinese Journal of Medical Genetics 2023;40(8):1021-1027
OBJECTIVE:
To investigate the clinical features and genetic etiology of a case of Turner syndrome (TS) with rapidly progressive puberty.
METHODS:
A child who had presented at the Pediatric Endocrinology Clinic of the Shenzhen People's Hospital on January 19, 2022 was selected as the study subject. Clinical data of the child were collected. Peripheral blood sample of the child was subjected to chromosomal microarray analysis (CMA) and multiple ligation-dependent probe amplification (MLPA). Previous studies related to TS with rapidly progressive puberty were retrieved from the CNKI, Wanfang Data Knowledge Service Platform, Boku, CBMdisc and PubMed databases with Turner syndrome and rapidly progressive puberty as the keywords. The duration for literature retrieval was set from November 9, 2021 to May 31, 2022. The clinical characteristics and karyotypes of the children were summarized.
RESULTS:
The child was a 13-year-and-2-month-old female. She was found to have breast development at 9, short stature at 10, and menarche at 11. At 13, she was found to have a 46,X,i(X)(q10) karyotype. At the time of admission, she had a height of 143.5 cm (< P3), with 6 ~ 8 nevi over her face and right clavicle. She also had bilateral simian creases but no saddle nasal bridge, neck webbing, cubitus valgus, shield chest or widened breast distance. She had menstruated for over 2 years, and her bone age has reached 15.6 years. CMA revealed that she had a 58.06 Mb deletion in the Xp22.33p11.1 region and a 94.49 Mb duplication in the Xp11.1q28 region. MLPA has confirmed monosomy Xp and trisomy Xq. A total of 13 reports were retrieved from the CNKI, Wanfang Data Knowledge Service Platform, Boku, CBMdisc and PubMed databases, which had included 14 similar cases. Analysis of the 15 children suggested that their main clinical manifestations have included short stature and growth retardation, and their chromosomal karyotypes were mainly mosaicisms.
CONCLUSION
The main clinical manifestations of TS with rapidly progressive puberty are short stature and growth retardation. Deletion in the Xp22.33p11.1 and duplication in the Xp11.1q28 probably underlay the TS with rapid progression in this child, which has provided a reference for clinical diagnosis and genetic counselling for her.
Humans
;
Female
;
Adolescent
;
Puberty
;
Turner Syndrome/genetics*
;
Chromosomes, Human, X
;
Karyotyping
8.Genetic analysis of a child with mosaicism Turner syndrome.
Jingzhen GAO ; Jingjing ZHAO ; Xiangyu ZHAO ; Lin LI
Chinese Journal of Medical Genetics 2023;40(12):1566-1569
OBJECTIVE:
To explore the genetic characteristics of a child with mosaicism Turner syndrome.
METHODS:
A child who had presented at Linyi People's Hospital on May 19, 2022 due to short stature was selected as the study subject. The child was subjected to combined chromosomal karyotyping, fluorescence in situ hybridization (FISH), and chromosomal microarray analysis (CMA).
RESULTS:
The child was found to have a 46,X,i(X)(q10)[94]/45,X[6] karyotype. The result of FISH was nucish(XYpter,XYqter)1[78]/(XYpter)1,(XYqter)3[122]. CMA result for her peripheral blood sample was arr[hg19]Xp22.33p11.1(168551_58526888)×1, and that for her oral mucosal cells was arr[hg19]Xp22.33p11.1(168551_58526888)1-2,Xq11.2q28(63000001_155233098)×2-3. By integrating the above findings, her molecular karyotype was determined as mos 46,X,i(X)(q10)[94]/45,X[6].arr[hg19]Xp22.33p11.1(168551_58526888)×1-2,Xq11.2q28(63000001_155233098)×2-3.nucish(XYpter)1,(XYqter)3[122]/(XYpter,XYqter)1[78], which has indicated mosaicism Turner syndrome.
CONCLUSION
The 46,X,i(X)(q10)/45,X mosaicism probably underlay the pathogenesis in this child.
Humans
;
Child
;
Female
;
Turner Syndrome/genetics*
;
Mosaicism
;
In Situ Hybridization, Fluorescence
;
Karyotyping
;
Karyotype
10.Turner Syndrome associated with Mayer-Rokitansky-KusterHauser Syndrome: A case report and review of related literature
Glaiza S. de Guzman ; Rosiebel C. Esguerra
Philippine Journal of Reproductive Endocrinology and Infertility 2023;20(2):39-44
Turner syndrome and Mayer-Rokitansky-Kuster-Hauser syndrome are the most common causes
of primary amenorrhea. However, mullerian agenesis in patients with Turner syndrome is rare,
with only 15 reported cases worldwide. Described in this report is an 18-year-old female who
presented with primary amenorrhea, absent secondary sexual characteristics, short stature,
webbed neck, and shield chest. Work up revealed hypergonadotropic hypogonadism, absence of
normal ovaries and uterus, and hypothyroidism. She had a 45,X karyotype and was diagnosed
with a very rare case of Turner syndrome with associated Mayer-Rokitansky-Kuster-Hauser
syndrome. Early detection of the etiology of amenorrhea is critical for prompt management
and initiation of hormonal replacement. She was counseled on the possible systemic problems
associated with her condition. The importance of regular follow-up and continuous care were
also emphasized. With the coexistence of these two conditions, adoption is the only option
for having children in the Philippines, where oocyte donation and uterine transplantation are
currently unavailable.
Turner Syndrome
;
Mullerian aplasia


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