Literature DB >> 30674533

Metastatic Tumor-in-a-Dish, a Novel Multicellular Organoid to Study Lung Colonization and Predict Therapeutic Response.

Prabhu Ramamoorthy1,2, Sufi Mary Thomas1,3, Gaurav Kaushik2, Dharmalingam Subramaniam1,2, Katherine M Chastain4, Animesh Dhar1, Ossama Tawfik5, Anup Kasi6, Weijing Sun6, Satish Ramalingam1, Sumedha Gunewardena7, Shahid Umar2, Joshua M Mammen2, Subhash B Padhye8, Scott J Weir9, Roy A Jensen5, G Sitta Sittampalam10, Shrikant Anant11,2.   

Abstract

Metastasis is a major cause of cancer-related deaths. A dearth of preclinical models that recapitulate the metastatic microenvironment has impeded the development of therapeutic agents that are effective against metastatic disease. Because the majority of solid tumors metastasize to the lung, we developed a multicellular lung organoid that mimics the lung microenvironment with air sac-like structures and production of lung surfactant protein. We used these cultures, called primitive lung-in-a-dish (PLiD), to recreate metastatic disease using primary and established cancer cells. The metastatic tumor-in-a-dish (mTiD) cultures resemble the architecture of metastatic tumors in the lung, including angiogenesis. Pretreating PLiD with tumor exosomes enhanced cancer cell colonization. We next tested the response of primary and established cancer cells to current chemotherapeutic agents and an anti-VEGF antibody in mTiD against cancer cells in two-dimensional (2D) or 3D cultures. The response of primary patient-derived colon and ovarian tumor cells to therapy in mTiD cultures matched the response of the patient in the clinic, but not in 2D or single-cell-type 3D cultures. The sensitive mTiD cultures also produced significantly lower circulating markers for cancer similar to that seen in patients who responded to therapy. Thus, we have developed a novel method for lung colonization in vitro, a final stage in tumor metastasis. Moreover, the technique has significant utility in precision/personalized medicine, wherein this phenotypic screen can be coupled with current DNA pharmacogenetics to identify the ideal therapeutic agent, thereby increasing the probability of response to treatment while reducing unnecessary side effects. SIGNIFICANCE: A lung organoid that exhibits characteristics of a normal human lung is developed to study the biology of metastatic disease and therapeutic intervention. ©2019 American Association for Cancer Research.

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Year:  2019        PMID: 30674533      PMCID: PMC6445669          DOI: 10.1158/0008-5472.CAN-18-2602

Source DB:  PubMed          Journal:  Cancer Res        ISSN: 0008-5472            Impact factor:   12.701


  54 in total

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Review 3.  Targeting vascular endothelial growth factor and angiogenesis for the treatment of colorectal cancer.

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4.  Optimization of fibrin scaffolds for differentiation of murine embryonic stem cells into neural lineage cells.

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Review 5.  The tumour microenvironment as a target for chemoprevention.

Authors:  Adriana Albini; Michael B Sporn
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Authors:  Jesús Pérez-Gil
Journal:  Biochim Biophys Acta       Date:  2008-05-11

Review 7.  Surgical treatment of pulmonary metastases in pediatric solid tumors.

Authors:  Todd E Heaton; Andrew M Davidoff
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Authors:  Jan Budczies; Moritz von Winterfeld; Frederick Klauschen; Michael Bockmayr; Jochen K Lennerz; Carsten Denkert; Thomas Wolf; Arne Warth; Manfred Dietel; Ioannis Anagnostopoulos; Wilko Weichert; Daniel Wittschieber; Albrecht Stenzinger
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9.  Exosomes from human colorectal cancer induce a tumor-like behavior in colonic mesenchymal stromal cells.

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Review 10.  Human tissue models in cancer research: looking beyond the mouse.

Authors:  Samuel J Jackson; Gareth J Thomas
Journal:  Dis Model Mech       Date:  2017-08-01       Impact factor: 5.758

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Review 4.  Metastatic disease in head & neck oncology.

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Journal:  Acta Otorhinolaryngol Ital       Date:  2020-04       Impact factor: 2.124

Review 5.  Patient-derived tumour models for personalized therapeutics in urological cancers.

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Journal:  Nat Rev Urol       Date:  2020-11-10       Impact factor: 14.432

Review 6.  In Vitro Modeling of the Tumor Microenvironment in Tumor Organoids.

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7.  Celastrol and Triptolide Suppress Stemness in Triple Negative Breast Cancer: Notch as a Therapeutic Target for Stem Cells.

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8.  Ex Vivo Analysis of Primary Tumor Specimens for Evaluation of Cancer Therapeutics.

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Review 9.  State of the art on lung organoids in mammals.

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10.  Metabolic programming of distinct cancer stem cells promotes metastasis of pancreatic ductal adenocarcinoma.

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Journal:  Oncogene       Date:  2020-10-27       Impact factor: 8.756

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