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The Clonal Origins of Dysplasia From Intestinal Metaplasia in the Human Stomach

生物 发育不良 化生 肠化生 病理 显微解剖 激光捕获显微切割 癌症的体细胞进化 癌症 遗传学 基因 医学 基因表达
作者
Lydia Gutiérrez-González,Trevor A. Graham,Manuel Rodriguez‐Justo,Simon J. Leedham,Marco Novelli,Laura J. Gay,Tania Ventayol–Garcia,Alicia Green,I. de G. Mitchell,David L. Stoker,Sean Preston,Shigeki Bamba,Eiji Yamada,Yuuki Kishi,Rebecca Harrison,Janusz Jankowski,Nicholas A. Wright,Stuart A.C. McDonald
出处
期刊:Gastroenterology [Elsevier BV]
卷期号:140 (4): 1251-1260.e6 被引量:91
标识
DOI:10.1053/j.gastro.2010.12.051
摘要

Background & Aims

Studies of the clonal architecture of gastric glands with intestinal metaplasia are important in our understanding of the progression from metaplasia to dysplasia. It is not clear if dysplasias are derived from intestinal metaplasia or how dysplasias expand. We investigated whether cells within a metaplastic gland share a common origin, whether glands clonally expand by fission, and determine if such metaplastic glands are genetically related to the associated dysplasia. We also examined the clonal architecture of entire dysplastic lesions and the genetic changes associated with progression within dysplasia.

Methods

Cytochrome c oxidase-deficient (CCO) metaplastic glands were identified using a dual enzyme histochemical assay. Clonality was assessed by laser capture of multiple cells throughout CCO glands and polymerase chain reaction sequencing of the entire mitochondrial DNA (mtDNA) genome. Nuclear DNA abnormalities in individual glands were identified by laser capture microdissection polymerase chain reaction sequencing for mutation hot spots and microsatellite loss of heterozygosity analysis.

Results

Metaplastic glands were derived from the same clone—all lineages shared a common mtDNA mutation. Mutated glands were found in patches that had developed through gland fission. Metaplastic and dysplastic glands can be genetically related, indicating the clonal origin of dysplasia from metaplasia. Entire dysplastic fields contained a founder mutation from which multiple, distinct subclones developed.

Conclusions

There is evidence for a distinct clonal evolution from metaplasia to dysplasia in the human stomach. By field cancerization, a single clone can expand to form an entire dysplastic lesion. Over time, this field appears to become genetically diverse, indicating that gastric cancer can arise from a subclone of the founder mutation.
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