Patterns of Somatic Variants in Colorectal Adenoma and Carcinoma Tissue and Matched Plasma Samples from the Hungarian Oncogenome Program

Author:

Kalmár Alexandra12,Galamb Orsolya2,Szabó Gitta1,Pipek Orsolya3ORCID,Medgyes-Horváth Anna3ORCID,Barták Barbara K.1,Nagy Zsófia B.1,Szigeti Krisztina A.1,Zsigrai Sára1,Csabai István3,Igaz Péter124ORCID,Molnár Béla12,Takács István1

Affiliation:

1. Department of Internal Medicine and Oncology, Faculty of Medicine, Semmelweis University, 1083 Budapest, Hungary

2. MTA-SE Molecular Medicine Research Group, Eötvös Loránd Research Network, 1083 Budapest, Hungary

3. Department of Physics of Complex Systems, ELTE Eötvös Loránd University, 1117 Budapest, Hungary

4. Department of Endocrinology, Faculty of Medicine, Semmelweis University, 1083 Budapest, Hungary

Abstract

Analysis of circulating cell-free DNA (cfDNA) of colorectal adenoma (AD) and cancer (CRC) patients provides a minimally invasive approach that is able to explore genetic alterations. It is unknown whether there are specific genetic variants that could explain the high prevalence of CRC in Hungary. Whole-exome sequencing (WES) was performed on colon tissues (27 AD, 51 CRC) and matched cfDNAs (17 AD, 33 CRC); furthermore, targeted panel sequencing was performed on a subset of cfDNA samples. The most frequently mutated genes were APC, KRAS, and FBN3 in AD, while APC, TP53, TTN, and KRAS were the most frequently mutated in CRC tissue. Variants in KRAS codons 12 (AD: 8/27, CRC: 11/51 (0.216)) and 13 (CRC: 3/51 (0.06)) were the most frequent in our sample set, with G12V (5/27) dominance in ADs and G12D (5/51 (0.098)) in CRCs. In terms of the cfDNA WES results, tumor somatic variants were found in 6/33 of CRC cases. Panel sequencing revealed somatic variants in 8 out of the 12 enrolled patients, identifying 12/20 tumor somatic variants falling on its targeted regions, while WES recovered only 20% in the respective regions in cfDNA of the same patients. In liquid biopsy analyses, WES is less efficient compared to the targeted panel sequencing with a higher coverage depth that can hold a relevant clinical potential to be applied in everyday practice in the future.

Funder

HUNGARIAN NATIONAL OFFICE FOR RESEARCH AND TECHNOLOGY

National Research, Development and Innovation Fund by the Ministry of Innovation and Technology of Hungary

Publisher

MDPI AG

Subject

Cancer Research,Oncology

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