Literature DB >> 24713986

Wilms tumor: an update.

Turki Al-Hussain1, Afshan Ali, Mohammed Akhtar.   

Abstract

Wilms tumor (WT) is the most common neoplasm of the kidney in children. It is an embryologic tumor that histologically mimics renal embryogenesis and is composed of a variable mixture of stromal, blastemal, and epithelial elements. Nephrogenic rests, generally considered to be precursor lesions of the WT, are foci of the embryonic metanephric tissue that persist after the completion of renal embryogenesis. These are classified as perilobar and intralobar based on their location and maybe present as single or multiple foci. Intralobar and perilobar rests and the tumors arising from these rests differ morphologically and are characterized by 2 different sets of genetic abnormalities involving 2 adjacent foci, WT1 and WT2, on the short arm of chromosome 11. WTs arising in the intralobar rests tend to be stromal predominant and have a mutation or deletion of WT1. Germline mutation in WT1 may be associated with syndromic conditions such as WAGR and Denys-Drash syndromes. Perilobar rests and their corresponding tumors usually have loss of imprinting/loss of heterozygosity involving WT2, which contains several parentally imprinted genes. Loss of function of these genes, if present constitutionally, may be associated with Beckwith-Wiedemann syndrome or may result in isolated hypertrophy. Abnormalities in several other genes may also be seen in WT. These include WTX, (on chromosome X), CTNNB1 (chromosome 3), and TP53 (chromosome 17) among others. WT with loss of heterozygosity at 1p and 16q may have poor prognosis, requiring aggressive therapy. Treatment modalities for WT have evolved over many decades, primarily through the efforts of Dr J Bruce Beckwith at National WT study. This work is now being carried out by Children Oncology Group in North America and International Society of Pediatric Oncology in Europe. Although their therapeutic approaches are somewhat different, both have reported excellent results with equally high cure rates.

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Year:  2014        PMID: 24713986     DOI: 10.1097/PAP.0000000000000017

Source DB:  PubMed          Journal:  Adv Anat Pathol        ISSN: 1072-4109            Impact factor:   3.875


  22 in total

1.  Correlations between Histological and Array Comparative Genomic Hybridization Characterizations of Wilms Tumor.

Authors:  Ming-Ru Chiang; Chi-Wen Kuo; Wen-Chung Wang; Tai-Cheng Hou; Chen-Yun Kuo; Meng-Yao Lu; Yen-Chein Lai
Journal:  Pathol Oncol Res       Date:  2019-01-23       Impact factor: 3.201

Review 2.  A role of WT1 in cell division and genomic stability.

Authors:  Jayasha Shandilya; Stefan G E Roberts
Journal:  Cell Cycle       Date:  2015       Impact factor: 4.534

3.  Characterization of Associated Nonclassical Phenotypes in Patients with Deletion in the WAGR Region Identified by Chromosomal Microarray: New Insights and Literature Review.

Authors:  Vanessa Sodré de Souza; Gabriela Corassa Rodrigues da Cunha; Beatriz R Versiani; Claudiner Pereira de Oliveira; Maria Teresa Alves Silva Rosa; Silviene F de Oliveira; Patricia N Moretti; Juliana F Mazzeu; Aline Pic-Taylor
Journal:  Mol Syndromol       Date:  2022-02-11

4.  Advances in the treatment of pediatric solid tumors: A 50-year perspective.

Authors:  Michael P LaQuaglia; Justin T Gerstle
Journal:  J Surg Oncol       Date:  2022-10       Impact factor: 2.885

5.  FXR1 expression domain in Wilms tumor.

Authors:  Hannah M Phelps; Janene M Pierce; Andrew J Murphy; Hernan Correa; Jun Qian; Pierre P Massion; Harold N Lovvorn
Journal:  J Pediatr Surg       Date:  2019-02-28       Impact factor: 2.545

6.  Investigating the dysfunctional pathogenesis of Wilms' tumor through a multidimensional integration strategy.

Authors:  Wenbiao Chen; Jia Zhuang; Lan Gong; Yong Dai; Hongyan Diao
Journal:  Ann Transl Med       Date:  2019-04

7.  Knockdown of lncRNA HAGLROS inhibits metastasis and promotes apoptosis in nephroblastoma cells by inhibition of autophagy.

Authors:  Pugui Li; Kun Zhang; Shijie Tang; Weizhu Tang
Journal:  Bioengineered       Date:  2022-03       Impact factor: 6.832

8.  Analyzing the gene expression profile of anaplastic histology Wilms' tumor with real-time polymerase chain reaction arrays.

Authors:  Jun Lu; Yan-Fang Tao; Zhi-Heng Li; Lan Cao; Shao-Yan Hu; Na-Na Wang; Xiao-Juan Du; Li-Chao Sun; Wen-Li Zhao; Pei-Fang Xiao; Fang Fang; Li-Xiao Xu; Yan-Hong Li; Gang Li; He Zhao; Jian Ni; Jian Wang; Xing Feng; Jian Pan
Journal:  Cancer Cell Int       Date:  2015-04-20       Impact factor: 5.722

9.  Andrographolide promotes vincristine-induced SK-NEP-1 tumor cell death via PI3K-AKT-p53 signaling pathway.

Authors:  Mingsheng Zhang; Enda Xue; Wei Shao
Journal:  Drug Des Devel Ther       Date:  2016-09-28       Impact factor: 4.162

10.  Identification of proteins associated with pediatric bilateral Wilms tumor.

Authors:  Zechen Yan; Qingjun Meng; Jinjian Yang; Junjie Zhang; Wei Zhao; Fei Guo; Dongjian Song; Yuxiao Zhan; Dandan Fan; Ruiyi Zhou; Shuqiang Zuo; Zehua Wang; Jiekai Yu; Shu Zheng; Jiaxiang Wang
Journal:  Oncol Lett       Date:  2016-10-21       Impact factor: 2.967

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