TY - JOUR
T1 - Organoids and metastatic orthotopic mouse model for mismatch repair-deficient colorectal cancer
AU - Song, Yurong
AU - Kerr, Travis D.
AU - Sanders, Chelsea
AU - Dai, Lisheng
AU - Baxter, Shaneen S.
AU - Somerville, Brandon
AU - Baugher, Ryan N.
AU - Mellott, Stephanie D.
AU - Young, Todd B.
AU - Lawhorn, Heidi E.
AU - Plona, Teri M.
AU - Xu, Bingfang
AU - Wei, Lei
AU - Hu, Qiang
AU - Liu, Song
AU - Hutson, Alan
AU - Karim, Baktiar
AU - Burkett, Sandra
AU - Difilippantonio, Simone
AU - Pinto, Ligia
AU - Gebert, Johannes
AU - Kloor, Matthias
AU - Lipkin, Steven M.
AU - Sei, Shizuko
AU - Shoemaker, Robert H.
N1 - Publisher Copyright:
Copyright © 2023 Song, Kerr, Sanders, Dai, Baxter, Somerville, Baugher, Mellott, Young, Lawhorn, Plona, Xu, Wei, Hu, Liu, Hutson, Karim, Burkett, Difilippantonio, Pinto, Gebert, Kloor, Lipkin, Sei and Shoemaker.
PY - 2023
Y1 - 2023
N2 - Background: Genome integrity is essential for the survival of an organism. DNA mismatch repair (MMR) genes (e.g., MLH1, MSH2, MSH6, and PMS2) play a critical role in the DNA damage response pathway for genome integrity maintenance. Germline mutations of MMR genes can lead to Lynch syndrome or constitutional mismatch repair deficiency syndrome, resulting in an increased lifetime risk of developing cancer characterized by high microsatellite instability (MSI-H) and high mutation burden. Although immunotherapy has been approved for MMR-deficient (MMRd) cancer patients, the overall response rate needs to be improved and other management options are needed. Methods: To better understand the biology of MMRd cancers, elucidate the resistance mechanisms to immune modulation, and develop vaccines and therapeutic testing platforms for this high-risk population, we generated organoids and an orthotopic mouse model from intestine tumors developed in a Msh2-deficient mouse model, and followed with a detailed characterization. Results: The organoids were shown to be of epithelial origin with stem cell features, to have a high frameshift mutation frequency with MSI-H and chromosome instability, and intra- and inter-tumor heterogeneity. An orthotopic model using intra-cecal implantation of tumor fragments derived from organoids showed progressive tumor growth, resulting in the development of adenocarcinomas mixed with mucinous features and distant metastasis in liver and lymph node. Conclusions: The established organoids with characteristics of MSI-H cancers can be used to study MMRd cancer biology. The orthotopic model, with its distant metastasis and expressing frameshift peptides, is suitable for evaluating the efficacy of neoantigen-based vaccines or anticancer drugs in combination with other therapies.
AB - Background: Genome integrity is essential for the survival of an organism. DNA mismatch repair (MMR) genes (e.g., MLH1, MSH2, MSH6, and PMS2) play a critical role in the DNA damage response pathway for genome integrity maintenance. Germline mutations of MMR genes can lead to Lynch syndrome or constitutional mismatch repair deficiency syndrome, resulting in an increased lifetime risk of developing cancer characterized by high microsatellite instability (MSI-H) and high mutation burden. Although immunotherapy has been approved for MMR-deficient (MMRd) cancer patients, the overall response rate needs to be improved and other management options are needed. Methods: To better understand the biology of MMRd cancers, elucidate the resistance mechanisms to immune modulation, and develop vaccines and therapeutic testing platforms for this high-risk population, we generated organoids and an orthotopic mouse model from intestine tumors developed in a Msh2-deficient mouse model, and followed with a detailed characterization. Results: The organoids were shown to be of epithelial origin with stem cell features, to have a high frameshift mutation frequency with MSI-H and chromosome instability, and intra- and inter-tumor heterogeneity. An orthotopic model using intra-cecal implantation of tumor fragments derived from organoids showed progressive tumor growth, resulting in the development of adenocarcinomas mixed with mucinous features and distant metastasis in liver and lymph node. Conclusions: The established organoids with characteristics of MSI-H cancers can be used to study MMRd cancer biology. The orthotopic model, with its distant metastasis and expressing frameshift peptides, is suitable for evaluating the efficacy of neoantigen-based vaccines or anticancer drugs in combination with other therapies.
KW - Lynch syndrome
KW - MSH2
KW - chromosome instability
KW - colorectal cancer
KW - microsatellite instability
KW - mismatch repair deficiency
KW - mouse model
KW - organoid
UR - https://www.scopus.com/pages/publications/85171893842
U2 - 10.3389/fonc.2023.1223915
DO - 10.3389/fonc.2023.1223915
M3 - Article
AN - SCOPUS:85171893842
SN - 2234-943X
VL - 13
JO - Frontiers in Oncology
JF - Frontiers in Oncology
M1 - 1223915
ER -