Your browser doesn't support javascript.
loading
Show: 20 | 50 | 100
Results 1 - 20 de 47
Filter
1.
Chinese Journal of Medical Genetics ; (6): 876-880, 2023.
Article in Chinese | WPRIM | ID: wpr-981840

ABSTRACT

OBJECTIVE@#To explore the genetic etiology of two patients with developmental delay and intellectual disability.@*METHODS@#Two children who were respectively admitted to Henan Provincial People's Hospital on August 29, 2021 and August 5, 2019 were selected as the study subjects. Clinical data were collected, and array comparative genomic hybridization (aCGH) was carried out on the children and their parents for the detection of chromosomal microduplication/microdeletions.@*RESULTS@#Patient 1 was a 2-year-and-10-month female and patient 2 was a 3-year-old female. Both children had featured developmental delay, intellectual disability, and abnormal findings on cranial MRI. aCGH revealed that patient 1 has harbored arr[hg19] 6q14.2q15(84621837_90815662)×1, a 6.19 Mb deletion at 6q14.2q15, which encompassed ZNF292, the pathogenic gene for Autosomal dominant intellectual developmental disorder 64. Patient 2 has harbored arr[hg19] 22q13.31q13.33(46294326_51178264)×1, a 4.88 Mb deletion at 22q13.31q13.33 encompassing the SHANK3 gene, haploinsufficiency of which can lead to Phelan-McDermid syndrome. Both deletions were classified as pathogenic CNVs based on the guidelines of American College of Medical Genetics and Genomics (ACMG) and were not found in their parents.@*CONCLUSION@#The 6q14.2q15 deletion and 22q13-31q13.33 deletion probably underlay the developmental delay and intellectual disability in the two children, respectively. Haploinsufficiency of the ZNF292 gene may account for the key clinical features of the 6q14.2q15 deletion.


Subject(s)
Humans , Child , Female , Child, Preschool , Intellectual Disability/genetics , Comparative Genomic Hybridization , Chromosome Disorders/genetics , Chromosome Deletion , Magnetic Resonance Imaging , Chromosomes, Human, Pair 22 , Developmental Disabilities/genetics , Carrier Proteins/genetics , Nerve Tissue Proteins/genetics
2.
Chinese Journal of Medical Genetics ; (6): 737-743, 2023.
Article in Chinese | WPRIM | ID: wpr-981818

ABSTRACT

OBJECTIVE@#To explore the clinical phenotype and genetic characteristics of a fetus with 17q12 microdeletion syndrome.@*METHODS@#A fetus with 17q12 microdeletion syndrome who was diagnosed at Huzhou Maternal & Child Health Care Hospital in June 2020 was selected as the study subject. Clinical data of the fetus was collected. The fetus was subjected to chromosomal karyotyping and chromosomal microarray analysis (CMA). To determine the origin of fetal chromosomal abnormality, its parents were also subjected to CMA assay. The postnatal phenotype of the fetus was also investigated.@*RESULTS@#Prenatal ultrasound revealed polyhydramnios and fetal renal dysplasia. The fetus was found to have a normal chromosomal karyotype. CMA has detected a 1.9 Mb deletion in the 17q12 region, which has encompassed five OMIM genes including HNF1B, ACACA, ZNHIT3, CCL3L1 and PIGW. Based on the guidelines from the American College of Medical Genetics and Genomics (ACMG), the 17q12 microdeletion was predicted as pathogenic copy number variation (CNV). CMA analysis has detected no pathogenic CNV in both parents. After birth, the child was found to have renal cysts and abnormal brain structure. Combined with the prenatal findings, the child was diagnosed with 17q12 microdeletion syndrome.@*CONCLUSION@#The fetus has 17q12 microdeletion syndrome presenting as abnormalities of the kidney and central nervous system, which are strongly correlated with functional defects of the deletion region involving the HNF1B and other pathogenic genes.


Subject(s)
Female , Pregnancy , Humans , Chromosome Deletion , DNA Copy Number Variations , Chromosome Disorders/genetics , Kidney , Fetus , Microarray Analysis , Prenatal Diagnosis
3.
Chinese Journal of Medical Genetics ; (6): 527-531, 2023.
Article in Chinese | WPRIM | ID: wpr-981782

ABSTRACT

OBJECTIVE@#To assess the value of chromosomal microarray analysis (CMA) and fluorescence in situ hybridization (FISH) for the prenatal diagnosis of chromosomal mosaicisms.@*METHODS@#A total of 775 pregnant women who had visited the Prenatal Diagnosis Center of Yancheng Maternal and Child Health Care Hospital from January 2018 to December 2020 were selected as study subjects. Chromosome karyotyping analysis and CMA were carried out for all women, and FISH was used to validate the suspected mosaicism cases.@*RESULTS@#Among the 775 amniotic fluid samples, karyotyping has identified 13 mosaicism cases, which yielded a detection rate of 1.55%. Respectively, there were 4, 3, 4 and 2 cases for sex chromosome number mosaicisms, abnormal sex chromosome structure mosaicisms, abnormal autosomal number mosaicisms and abnormal autosomal structure mosaicisms. CMA has only detected only 6 of the 13 cases. Among 3 cases verified by FISH, 2 cases were consistent with the karyotyping and CMA results, and clearly showed low proportion mosaicism, and 1 case was consistent with the result of karyotyping but with a normal result by CMA. Eight pregnant women had chosen to terminate the pregnancy (5 with sex chromosome mosaicisms and 3 with autosomal mosaicisms).@*CONCLUSION@#For fetuses suspected for chromosomal mosaicisms, CMA, FISH and G-banding karyotyping should be combined to determine the type and proportion of mosaicisms more precisely in order to provide more information for genetic counseling.


Subject(s)
Female , Pregnancy , Humans , Mosaicism , In Situ Hybridization, Fluorescence , Chromosome Disorders/genetics , Prenatal Diagnosis/methods , Chromosome Aberrations , Sex Chromosome Aberrations , Microarray Analysis/methods , Chromosomes
4.
Chinese Journal of Medical Genetics ; (6): 446-451, 2023.
Article in Chinese | WPRIM | ID: wpr-981768

ABSTRACT

OBJECTIVE@#To explore the genetic etiology and related factors in 1 065 women with spontaneous abortions.@*METHODS@#All patients have presented at the Center of Prenatal Diagnosis of Nanjing Drum Tower Hospital from January 2018 to December 2021. Chorionic villi and fetal skin samples were collected, and the genomic DNA was assayed by chromosomal microarray analysis (CMA). For 10 couples with recurrent spontaneous abortions but normal CMA results for abortive tissues, non-in vitro fertilization-embryo transfer (IVF-ET) pregnancies and no previous history of live births and no structural abnormalities of the uterus, peripheral venous blood samples were collected. Genomic DNA was subjected to trio-whole exome sequencing (trio-WES). Candidate variants were verified by Sanger sequencing and bioinformatics analysis. Multifactorial unconditional logistic regression analysis was carried out to analyze the factors that may affect chromosomal abnormality in spontaneous abortions, such as the age of the couple, number of previous spontaneous abortions, IVF-ET pregnancy and history of live birth. The incidence of chromosomal aneuploidies in spontaneous abortions during the first trimester was compared in young or advanced-aged patients by chi-square test for liner trend.@*RESULTS@#Among the 1 065 spontaneous abortion patients, 570 cases (53.5%) of chromosomal abnormalities were detected in spontaneous abortion tissues, which included 489 cases (45.9%) of chromosomal aneuploidies and 36 cases (3.4%) of pathogenic/likely pathogenic copy number variations (CNVs). Trio-WES results have revealed one homozygote variant and one compound heterozygote variants in two pedigrees, both of which were inherited from the parents. One likely pathogenic variant was detected in the patient from two pedigrees. Multifactorial unconditional Logistic regression analysis suggested that age of patient was an independent risk factor of chromosome abnormalities (OR = 1.122, 95%CI: 1.069-1.177, P < 0.001), the number of previous abortions and IVF-ET pregnancy were independent protective factors for chromosomal abnormalities (OR = 0.791, 0.648; 95%CI: 0.682-0.916, 0.500-0.840; P = 0.002, 0.001), whilst the age of husband and history of live birth were not (P > 0.05). The incidence of aneuploidies in the abortive tissues has decreased with the number of previous spontaneous abortions in young patients (χ² = 18.051, P < 0.001), but was not significantly correlated with the number of previous spontaneous abortions in advanced-aged patients with spontaneous abortions (P > 0.05).@*CONCLUSION@#Chromosomal aneuploidy is the main genetic factor for spontaneous abortion, though CNVs and genetic variants may also underlie its genetic etiology. The age of patients, number of previous abortions and IVF-ET pregnancy are closely associated with chromosome abnormalities in abortive tissues.


Subject(s)
Pregnancy , Humans , Female , Aged , Abortion, Spontaneous/genetics , DNA Copy Number Variations , Chromosome Aberrations , Chromosome Disorders/genetics , Aneuploidy , Abortion, Habitual/genetics
5.
Chinese Journal of Medical Genetics ; (6): 129-134, 2023.
Article in Chinese | WPRIM | ID: wpr-970892

ABSTRACT

Chromosomal aberrations including numerical abnormalities and segment duplications/deletions, as genome-wide copy number variations (CNVs), are a leading cause for spontaneous abortion. Analysis of abortive tissues for such CNVs can detect potential genomic variations in the couple and provide guidance for the choice of appropriate method to avoid further miscarriage or birth of child with chromosomal disorders. With evidence-based clinical data, an expert group jointly formed by the Genetic Disease Prevention and Control Group, Committee for Birth Defects Prevention and Control, Chinese Association of Preventive Medicine; the Clinical Genetics Group, the Society of Medical Genetics, Chinese Medical Association; the Professional Committee for Prenatal Diagnosis of Genetic Diseases, the Society of Medical Geneticists, Chinese Medical Doctor Association has discussed and formulated this consensus, with an aim to provide guidance for the application of genomic CNVs detection for the abortive tissue and genetic counseling for family reproduction.


Subject(s)
Pregnancy , Child , Female , Humans , DNA Copy Number Variations , Consensus , Chromosome Aberrations , Chromosome Disorders/genetics , Abortion, Spontaneous/genetics
6.
Chinese Journal of Medical Genetics ; (6): 17-20, 2023.
Article in Chinese | WPRIM | ID: wpr-970870

ABSTRACT

OBJECTIVE@#To assess the application value of copy number variation sequencing (CNV-seq) for women with a high risk for fetal anomalies.@*METHODS@#Based on the results of non-invasive prenatal testing (NIPT), 271 high-risk pregnant women were divided into NIPT positive group (n = 83) and other anomaly group (advanced age, high risk by serological screening, repeated NIPT failure, adverse pregnancy history, abnormal ultrasound finding, and abnormal phenotype) (n = 188). CNV-seq was carried out to detect copy number variations (CNVs) in amniocytic DNA from the two groups of pregnant women, and karyotyping analysis of the amniotic cells was carried out for verification and comparison.@*RESULTS@#The amniocytes from 271 pregnant women were detected. The detection rate was 20.66% (56/271) for pathogenic CNVs by CNV-seq and 19.19% (52/271) for pathogenic karyotypes by karyotyping analysis. The difference was statistically significant (P < 0.05). CNV-seq had shown that, compared with NIPT positive group, the detection rates for likely pathogenic CNVs and variants of unknown significance (VUS) in other abnormality group were significantly higher [2.41%(2/83) vs. 5.32%(10/188)](P < 0.05).@*CONCLUSION@#CNV-seq can well suit the first-tier diagnosis for pregnant women suspected for fetal abnormality. In prenatal diagnosis settings, CNV-seq can identify additional and clinically significant cytogenetic abnormalities. In those with other abnormalities, the detection rates for likely pathogenic CNVs and VUS are higher than with the NIPT positive cases.


Subject(s)
Female , Pregnancy , Humans , DNA Copy Number Variations , Pregnancy, High-Risk , Prenatal Diagnosis/methods , Chromosome Aberrations , Chromosome Disorders/genetics
7.
Chinese Journal of Medical Genetics ; (6): 534-536, 2022.
Article in Chinese | WPRIM | ID: wpr-928453

ABSTRACT

OBJECTIVE@#Utilize high-resolution chromosome analysis and microarray detection to determine the genetic etiology of infertility of a 32-year old female patient.@*METHODS@#The peripheral blood of the patient was cultured for high-resolution chromosome G and C banding karyotype analysis, and then 750K SNP-Array chip detection was performed.@*RESULTS@#Karyotype analysis results showed that the patient's karyotype was 45,XX,-13 [7]/46,XX,r(13) (p13q34) [185]/46,XX,dic r(13;13)(p13q34;p13q34) [14]/ 47,XX,+der(13;13;13;13) (p13q34;p13q34;p13q34; p13q34), dic r(13;13) [1]/ 46,XX [3]. The microarray results showed that the patient had a 3.3 Mb deletion in the 13q34 segment of chromosome 13, which may be related to infertility.@*CONCLUSION@#Infertility of the patient reported in this article may be related to the deletion of chromosome segment (13q34-qter).


Subject(s)
Adult , Female , Humans , Chimera , Chromosome Banding , Chromosome Deletion , Chromosome Disorders/genetics , Dacarbazine , Infertility/genetics , Ring Chromosomes
8.
Chinese Journal of Medical Genetics ; (6): 366-369, 2022.
Article in Chinese | WPRIM | ID: wpr-928420

ABSTRACT

OBJECTIVE@#To assess the value of copy number variation sequencing (CNV-seq) and karyotyping in the prenatal diagnosis for carriers of balanced translocations.@*METHODS@#Clinical records of 135 amniocentesis samples of balanced translocation carriers undergoing simultaneous CNV-seq and karyotyping were analyzed. Chromosomal aberrations were defined as those can definitely lead to birth defects definitely, which included chromosomal numerical abnormality, large deletion/duplication and pathogenic copy number variations (pCNVs).@*RESULTS@#The detection rates for karyotyping and CNV-seq were 4.44% (6/135) and 5.93% (8/135) respectively, and the latter had a detection rate of 1.48(2/135) higher than the former. A total of 68 fetal chromosomal translocations were detected by karyotying analysis.@*CONCLUSION@#For couples carrying a balanced translocation, simultaneous CNV-seq and karyotyping is conducive to the detection of fetal chromosomal abnormalities and genetic counseling.


Subject(s)
Female , Humans , Pregnancy , Chromosome Aberrations , Chromosome Disorders/genetics , DNA Copy Number Variations , Karyotyping , Prenatal Diagnosis , Translocation, Genetic
9.
Rev. méd. Maule ; 36(2): 34-40, dic. 2021. graf, tab
Article in Spanish | LILACS | ID: biblio-1377959

ABSTRACT

Introduction: Obstetric ultrasound is part of the screening to select the population at high risk of having a congenital malformation. Considering that fetal defects occur in approximately 2-4 out of every 100 live newborns, and are the cause of 35-40% of perinatal mortality in Chile, it is therefore justified to perform the second trimester ultrasound, which presents a high index prenatal screening (56%), with few false positives. Methods: A retrospective, cross-sectional and descriptive study was carried out, by reviewing 6,385 ultrasound scans, which were performed during one year (June 2020-June 2021), at the Regional Hospital of Talca, where 126 fetuses with suspected malformation were detected. Results: Of the total number of patients evaluated, a congenital malformation rate of 1.9% was detected, with cardiac malformations the most frequent, and diabetes mellitus the main risk factor. Conclusions: Antenatal ultrasound study is essential in the first and second trimesters of pregnancy, followed by a referral to an ultrasound committee, emphasizing early and interdisciplinary management. The frequencies found are similar to those reported in the international bibliography


Subject(s)
Humans , Female , Pregnancy , Adult , Young Adult , Congenital Abnormalities/genetics , Congenital Abnormalities/diagnostic imaging , Fetal Diseases/diagnostic imaging , Comorbidity , Chile , Retrospective Studies , Ultrasonography, Prenatal , Chromosome Disorders/genetics
10.
Chinese Journal of Medical Genetics ; (6): 1045-1050, 2021.
Article in Chinese | WPRIM | ID: wpr-921994

ABSTRACT

OBJECTIVE@#To assess the clinical value of non-invasive prenatal testing (NIPT) for the screening of trisomy and copy number variations (CNVs) of chromosomes 21, 18 and 13.@*METHODS@#From January 2015 to December 2019, 40 628 pregnant women underwent NIPT testing using high-throughput sequencing and bioinformatics analysis to test the cell-free fetal DNA in maternal plasma. High-risk pregnant women underwent invasive prenatal diagnosis, while low-risk ones were followed up by telephone.@*RESULTS@#The three most common indications included intermediate risk of serological screening, high risk of serological screening and advanced maternal age. Among all pregnant women, 257 cases were detected as trisomy 21, 18 and 13 (170, 49 and 38 cases, respectively). 227 cases chose invasive prenatal diagnosis, with respectively 122, 28 and 10 cases confirmed. The positive predictive value (PPV) was 81.33% (122/150), 65.12% (28/43), 29.41% (10/34), respectively. Two false negative cases of trisomy 18 were found during follow-up. Meanwhile, NIPT has detected 46 cases (15, 16 and 15 cases, respectively) CNVs on chromosomes 21, 18 and 13, among which 37 cases underwent invasive prenatal diagnosis. There were 5, 3 and 5 positive cases, which yielded a PPV of 41.67% (5/12), 25%(3/12) and 33.33%(5/15), respectively. Two other chromosome CNVs were accidentally discovered among the false positive samples.@*CONCLUSION@#The incidence of chromosomal abnormalities in the serological screening high-risk group was 52.02%, which was significantly higher than other groups. NIPT has a high sensitivity and specificity for the screening of trisomies 21, 18 and 13, while its accuracy for detecting CNVs of chromosomes 21, 18 and 13 needs to be improved. As a screening method, NIPT has a great clinical value, though there are still limitations of false positive and false negative results.Comprehensive pre- and post-test genetic counseling should be provided to the patients.


Subject(s)
Female , Humans , Pregnancy , Aneuploidy , Chromosome Disorders/genetics , Chromosomes , DNA Copy Number Variations , Down Syndrome/genetics , Prenatal Diagnosis , Trisomy/genetics , Trisomy 18 Syndrome/genetics
11.
Chinese Journal of Medical Genetics ; (6): 997-1001, 2021.
Article in Chinese | WPRIM | ID: wpr-921985

ABSTRACT

OBJECTIVE@#To apply combined non-invasive prenatal testing (NIPT), chromosomal karyotyping and chromosomal microarray for the screening and prenatal diagnosis of a fetus with supernumerary small marker chromosome (sSMC).@*METHODS@#Standard NIFTY and full gene NIFTY kits were applied to detect free DNA (cfDNA) isolated from peripheral blood sample of a pregnancy woman. Amniocentesis was carried out for the woman for an abnormal NIPT result. G-banded karyotyping and single nucleotide polymorphism array (SNP array) were used to determine the karyotype and copy number variants in the fetus. The result was validated with a fluorescence in situ hybridization (FISH) assay.@*RESULTS@#Both the standard NIFTY and full gene NIFTY indicated abnormal dup(chr12:707 334-33 308 759), for which the T score value of copy number anomaly in full gene NIFTY is 6.823, which is higher than the standard NIFTY's T-score value of 3.9535. The two NIFTY results were both above the normal threshold ± 3. Conventional G-banding analysis of amniocytes showed that the fetus has a karyotype of 47,XY,+mar. SNP-array delineated duplication of 12p (arr [hg19]12p13.33p11.1 (173 786_34 385 641)× 4, which was verified by FISH. Based on the above results, the fetus was diagnosed as a novel case of Pallister-Killian syndrome.@*CONCLUSION@#NIPT has a certain value for the prenatal detection of PKS. Combined use of multiple techniques can facilitate delineation of the source of sSMC.


Subject(s)
Female , Humans , Pregnancy , Chromosome Disorders/genetics , Chromosomes, Human, Pair 12/genetics , In Situ Hybridization, Fluorescence , Karyotyping
12.
Chinese Journal of Medical Genetics ; (6): 917-920, 2021.
Article in Chinese | WPRIM | ID: wpr-921969

ABSTRACT

Phelan-McDermid syndrome (PMS)(OMIM#606232) is a rare genetic disorder caused by a deletion of the distal long arm of chromosome 22q13 involving a variety of clinical features with considerably heterogeneous degrees of severity. This syndrome is characterized by global developmental delay, intellectual disability, hypotonia, absent or severely delayed speech, minor dysmorphic features and autism spectrum disorder. PMS is easy to be misdiagnosed due to the lack of specific clinical manifestations. SHANK3 has been identified as the critical candidate gene for the neurological features of this syndrome. However, some studies have shown that other genes located in the 22q13 region may have a role in the formation of symptoms in individuals with PMS. This article provides a review for recent progress made in research on PMS including etiology, clinical manifestation, diagnosis, and treatment, with a particular emphasis on clinical diagnosis and treatment.


Subject(s)
Humans , Autism Spectrum Disorder/genetics , Chromosome Deletion , Chromosome Disorders/genetics , Chromosomes, Human, Pair 22 , Nerve Tissue Proteins/genetics
13.
Chinese Journal of Medical Genetics ; (6): 1387-1390, 2020.
Article in Chinese | WPRIM | ID: wpr-879506

ABSTRACT

OBJECTIVE@#To carry out prenatal diagnose for a fetus with ultrasonography abnormalities using multiple genetic techniques.@*METHODS@#Routine G-banding chromosomal analysis and single nucleotide polymorphism array (SNP-array) were applied in conjunction for the prenatal diagnosis of the fetus. The result was confirmed by fluorescence in situ hybridization (FISH).@*RESULTS@#SNP-array detected that the fetus has carried a hemizygous 5.1 Mb deletion at 22q13.31q13.33, which is associated with Phelan-McDermid syndrome, and a hemizygous 4.5 Mb deletion at 21q21.1q21.2. FISH analysis of the fetus and its parents suggested that both deletions were de novo in origin.@*CONCLUSION@#The hemizygous deletions on 21q21.1q21.2 and 22q13.31q13.33 probably underlay the abnormal phenotype of the fetus. Genetic analysis can provide crucial information for the prenatal diagnosis and genetic counseling.


Subject(s)
Female , Humans , Male , Pregnancy , Chromosome Deletion , Chromosome Disorders/genetics , Chromosomes, Human, Pair 21/genetics , Chromosomes, Human, Pair 22/genetics , Fetus , In Situ Hybridization, Fluorescence , Polymorphism, Single Nucleotide , Prenatal Diagnosis , Sequence Deletion/genetics
14.
Chinese Journal of Medical Genetics ; (6): 1276-1279, 2020.
Article in Chinese | WPRIM | ID: wpr-879485

ABSTRACT

OBJECTIVE@#To carry out prenatal diagnosis for a fetus with Pallister-killian syndrome (PKS).@*METHODS@#The fetus was found to have limb malformations at 23rd gestational week. With informed consent from its parents, amniotic fluid sample was taken from the fetus and subjected to chromosomal karyotyping, chromosomal microarray analysis (CMA) and fluorescence in situ hybridization (FISH) assay.@*RESULTS@#G-banding analysis suggested the fetus has a mos47,XY,+mar[55]/46,XY[10] karyotype. CMA analysis of the cultured amniocytes with CytoScan 750K microarray revealed a segmental tetrasomy duplication of 12p13.33p11.1. FISH confirmed a 70% mosaicism of tetrasomy 12p in the metaphase amniocytes with 12pter/12qter probes.@*CONCLUSION@#Combined use of G-banding karyotyping, CMA and FISH analysis has enabled diagnosis of PKS in the fetus. Although short limb is a common feature of PKS, unequal femur length has not been reported previously, which has expanded the spectrum of PKS-associated limb abnormalities.


Subject(s)
Female , Humans , Pregnancy , Chromosome Disorders/genetics , Chromosomes, Human, Pair 12/genetics , Fetus , In Situ Hybridization, Fluorescence , Mosaicism , Prenatal Diagnosis
15.
Arch. argent. pediatr ; 116(4): 603-608, ago. 2018. ilus, tab
Article in Spanish | LILACS, BINACIS | ID: biblio-950051

ABSTRACT

En pacientes con malformaciones congénitas y retraso del desarrollo psicomotor, deben descartarse cromosomopatías. Las más frecuentes son las translocaciones recíprocas balanceadas, presentes en 1:500 recién nacidos vivos. Por lo general, los portadores tienen fenotipo normal, aunque, ocasionalmente, presentan infertilidad, abortos o hijos con malformaciones. La translocación balanceada entre los cromosomas 2 y 9 puede originar descendencia con monosomías y trisomías de estos cromosomas. La monosomía del brazo corto del cromosoma 9 puede presentarse con trigonocefalia, dismorfias faciales, anomalías genitales y retraso del desarrollo psicomotor. En este trabajo, se revisaron las alteraciones de los cromosomas 2 y/o 9 en los cariotipos realizados en nuestra Institución en 2005-2014. Se presentan dos pacientes con monosomía 9p asociada a translocación (2;9). Las pacientes comparten datos de monosomía 9p24-pter; la correlación genotipo-fenotipo es compleja por el tamaño de los segmentos involucrados. Se resalta la importancia del diagnóstico cromosómico para el asesoramiento genético.


In patients with malformations and delayed psychomotor development it is important to discard chromosomopathies. Balanced reciprocal translocations are the most frequent chromosomopathies present in 1:500 live newborns. In general, carriers have normal phenotype, but they may have infertility, abortions or children with congenital malformations. The reciprocal translocation between chromosomes 2 and 9 can lead to offspring with monosomies and trisomies of these chromosomes. Short arm monosomy of chromosome 9 may present delayed psychomotor development, trigonocephaly, facial dysmorphia and genital abnormalities. We reviewed GTG karyotype records from our Institution to identify cases with chromosomes 2 and/or 9 alterations from 2005 to 2014. We describe two cases with monosomy 9p secondary to a translocation between chromosomes 2 and 9. The patients share features of monosomy 9p24-pter, however the genotype-phenotype correlation is complex due to the extension of the involved segments. We emphasize the importance of chromosomal diagnosis to offer genetic assessment.


Subject(s)
Humans , Female , Infant, Newborn , Child, Preschool , Translocation, Genetic , Chromosome Disorders/diagnosis , Phenotype , Chromosomes, Human, Pair 9/genetics , Chromosome Deletion , Chromosome Disorders/genetics , Genotype , Karyotyping
16.
Arch. argent. pediatr ; 116(1): 135-138, feb. 2018. ilus
Article in Spanish | LILACS, BINACIS | ID: biblio-887445

ABSTRACT

El síndrome de Pallister-Killian es una entidad poco frecuente causada por tetrasomía 12p en mosaico. Presenta facies tosca, alopecia frontotemporal, frente prominente, fisuras palpebrales oblicuas ascendentes, hipertelorismo ocular, ptosis palpebral, estrabismo, epicanto, puente nasal ancho, nariz corta, narinas antevertidas, filtrum largo, labio superior delgado e inferior prominente, pabellones auriculares con lóbulos gruesos y protruidos, cuello corto, pezones supernumerarios, manos anchas, braquidactilia, alteraciones en la pigmentación de la piel, cardiopatía congénita, discapacidad intelectual y crisis convulsivas. Su diagnóstico es complejo, ya que, en sangre periférica, el cariotipo suele ser normal. Se presenta el caso de una paciente mestiza mexicana de 4 años de edad con retraso en el desarrollo psicomotor y características fenotípicas que correspondieron a síndrome de Pallister-Killian. El cariotipo en fibroblastos de la biopsia de piel demostró mos47,XX,i(12)(p10)--#91;85--#93;/46,XX--#91;21--#93;. Un equipo multidisciplinario realiza el seguimiento con controles regulares por los departamentos de Neurología, Pediatría General y Genética Médica.


Pallister-Killian syndrome is caused by a tetrasomy 12p mosaicism and is characterized by facial dysmorphism, pigmentary skin anomalies, congenital heart defects, diaphragmatic hernia, epilepsy and mental retardation. The diagnosis is complex as the cytogenetic analysis in blood is usually normal, requiring karyotyping in other tissues, therefore the clinical suspicion is critical to guide the diagnostic tests and the patient requires an interdisciplinary clinical evaluation regarding the several manifestation of the syndrome. W e present the case of a Mexican mestizo female patient of 4 years of age referred by psychomotor delay and cleft palate; the clinical multidisciplinary evaluation demonstrated characteristics corresponding to the Pallister-Killian syndrome. The GTG banding karyotype analysis was normal, the skin fibroblast was mos47,XX,i(12)(p10)--#91;85--#93;/46,XX--#91;21--#93;. This case is an example of the importance of the clinical evaluation in order to establish a diagnosis that is a challenge for the clinical multidisciplinary team to offer medical management and genetic counseling.


Subject(s)
Humans , Female , Child, Preschool , Chromosomes, Human, Pair 12/genetics , Chromosome Disorders/diagnosis , Chromosome Disorders/genetics , Phenotype , Racial Groups , Karyotyping , Mexico
17.
Rev. chil. obstet. ginecol ; 81(2): 94-98, abr. 2016. ilus, tab
Article in Spanish | LILACS | ID: lil-780541

ABSTRACT

ANTECEDENTES: Las aneuploidías y malformaciones congénitas son causa importante de morbi-mortalidad perinatal e infantil en Chile. OBJETIVO: Evaluar la realidad local del diagnóstico genético antenatal para mejorar el resultado perinatal. MÉTODOS: Estudio retrospectivo y descriptivo. Se realizó amniocentesis a embarazadas con indicación de estudio genético prenatal por sospecha ecográfica de alteraciones cromo-sómicas, entre octubre de 2010 y marzo de 2015, en el Hospital Sótero del Río. RESULTADOS: Los hallazgos ecográficos más frecuentes fueron: cardiopatías congénitas, malformaciones del sistema nervioso central y restricción de crecimiento fetal precoz. 164 pacientes aceptaron el estudio invasivo antenatal, obteniéndose resultados de 154. El promedio de edad materna y edad gestacional del examen fueron 30 años y 27+3 semanas, respectivamente. En embarazos con trisomía 21 y 13, el 71% de las pacientes tenía sobre 35 años. Un 31% de las muestras presentaron cariotipo anormal, siendo la más frecuente la trisomía 21 (14%), trisomía 18 (9%), monosomía X (4,5%) y trisomía 13 (2,6%). CONCLUSIÓN: El diagnóstico genético prenatal permite un adecuado manejo perinatal, coordinación apropiada entre las unidades de Obstetricia y Neonatología, y la preparación de las pacientes y sus familias para un pronóstico perinatal adverso.


BACKGROUND: Malformations and aneuploidy are a major cause of perinatal morbidity and mortality in Chile. Invasive techniques are offered to determine the fetal karyotype, when there is an abnormal finding in the ultrasound. AIMS: To assess the local situation of prenatal genetic diagnosis to improve the management of this population. METHODS: This is a retrospective and descriptive study of patients from october 2010 to march 2015, who had an amniocentesis for genetic testing due suspected fetal malformations or aneu-ploidy. RESULTS: The sonographic findings most frequently found were: congenital heart disease, malformations of the central nervous system and early growth restrictions. 164 patients agree to perform invasive prenatal genetic, obtaining 154 results. The average maternal age was 30 years and the mean gestational age at amniocentesis was 27+3 weeks. In trisomy 21 pregnancies, 71% of patients were higher than 35 years. 31% of the samples had abnormal karyotype: trisomy 21 (14%), trisomy 18 (9%), Turner's syndrome (4.5%) and trisomy 13 (3%). CONCLUSIONS: Prenatal genetic diagnosis allows appropriate perinatal management and contributes to prepare the patient and their families for an adverse perinatal outcome.


Subject(s)
Humans , Female , Pregnancy , Adolescent , Adult , Young Adult , Prenatal Diagnosis/methods , Chromosome Disorders/diagnosis , Chromosome Disorders/genetics , Amniocentesis/methods , Aneuploidy , Trisomy/diagnosis , Trisomy/genetics , Pregnancy Outcome , Chile , Genetic Testing , Epidemiology, Descriptive , Retrospective Studies , Ultrasonography, Prenatal , Cordocentesis , Noninvasive Prenatal Testing
18.
Hist. ciênc. saúde-Manguinhos ; 22(1): 95-114, Jan-Mar/2015.
Article in English | LILACS, BDS | ID: lil-741511

ABSTRACT

Malaria, a disease which was under control in the beginning of Juscelino Kubitschek government, became the most important endemic disease in 1958, when Brazil made a commitment with the World Health Organization to convert its control programs into eradication programs. For this purpose a Malaria Control and Eradication Group was set up under the leadership of the malaria specialist Mário Pinotti. Malaria would become an important bargaining chip in the context of the development policies of Kubitschek. This article focuses on path of the Malaria Control and Eradication Working Group in Brazil, in its varying relationships with the arguments and guidelines established at international level.


A malária, doença que estava controlada no início do governo de Juscelino Kubitschek, torna-se a mais importante endemia em 1958, quando o Brasil assumiu o compromisso com a Organização Mundial da Saúde de converter seus programas de controle em programas de erradicação. Para isso foi instalado um Grupo de Controle e Erradicação da Malária sob a direção do malariologista Mário Pinotti. A malária seria uma importante moeda de negociação no contexto da política de desenvolvimento de Kubitschek. Este artigo tem como foco a trajetória do Grupo de Trabalho de Controle e Erradicação da Malária no Brasil, em suas diferentes relações com as discussões e normativas travadas e estabelecidas em âmbito internacional.


Subject(s)
Humans , Female , Aged , Breast Neoplasms/diagnosis , Cell Differentiation , Chromosome Disorders/diagnosis , Forkhead Transcription Factors/genetics , Gene Deletion , Myocytes, Smooth Muscle/pathology , Neoplasms, Muscle Tissue/diagnosis , Biomarkers, Tumor/genetics , Biopsy , Breast Neoplasms/chemistry , Breast Neoplasms/genetics , Breast Neoplasms/pathology , Breast Neoplasms/surgery , Chromosome Deletion , Chromosome Disorders/genetics , Chromosome Disorders/pathology , /genetics , Genetic Predisposition to Disease , In Situ Hybridization, Fluorescence , Myocytes, Smooth Muscle/chemistry , Neoplasms, Muscle Tissue/chemistry , Neoplasms, Muscle Tissue/genetics , Neoplasms, Muscle Tissue/pathology , Neoplasms, Muscle Tissue/surgery , Phenotype , Predictive Value of Tests , Biomarkers, Tumor/analysis , Ultrasonography, Mammary
19.
Indian J Hum Genet ; 2014 Apr-Jun ; 20 (2): 203-205
Article in English | IMSEAR | ID: sea-156663

ABSTRACT

Patients with 13q deletion syndrome are characterized with different phenotypical features depending on the size and location of the deleted region on chromosome 13. These patients fall into three groups: In Group 1, deleted region is in the proximal and does not extend into q32; in Group 2, deleted region involves proximal to the q32 and in Group 3 q33‑q34 is deleted. We present two cases with 13q syndrome with two different deleted region and different severity on clinical features: One case with interstitial deletion belongs to the Group 1 with mild mental retardation and minor malformations and the other case with terminal deletion belongs to Group 3 with moderate to severe mental retardation and major malformations.


Subject(s)
Abnormalities, Multiple/genetics , Child , Child, Preschool , Chromosomes, Human, Pair 13/genetics , Chromosome Deletion , Chromosome Disorders/genetics , Female , Humans , Intellectual Disability/genetics , Male , Phenotype
20.
Alexandria Journal of Veterinary Sciences [AJVS]. 2014; 41: 95-101
in English | IMEMR | ID: emr-160073

ABSTRACT

Genotoxic effect of acute and chronic doses of Bentazon and Glyphosate herbicides were estimated using micronucleus [MN], nuclear budding, mitotic index [MI] and chromosomal aberration assays. Five groups of Swiss male albino mice were used in acute exposure of 1/5 and 1/10 LD50 of both herbicides after 24, 96 hours of exposure compared to the control. For chronic exposure 1/20 of LD50 of each herbicide was for two months. Genotoxicity of acute doses at different duration of Bentazon and Glyphosate were confirmed through significant increased number of aberrant cells, different types of chromosomal aberration, micronucleus and nuclear budding. Chronic dose of Bentazone induced more genotoxic effects than Glyphosate


Subject(s)
Animals, Laboratory , Herbicides/toxicity , Chromosome Aberrations , Chromosome Disorders/genetics , Mice
SELECTION OF CITATIONS
SEARCH DETAIL