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Erschienen in: Clinical & Experimental Metastasis 2/2019

27.02.2019 | Research Paper

The role of heterogeneous environment and docetaxel gradient in the emergence of polyploid, mesenchymal and resistant prostate cancer cells

verfasst von: Ke-Chih Lin, Gonzalo Torga, Yusha Sun, Robert Axelrod, Kenneth J. Pienta, James C. Sturm, Robert H. Austin

Erschienen in: Clinical & Experimental Metastasis | Ausgabe 2/2019

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Abstract

The ability of a population of PC3 prostate epithelial cancer cells to become resistant to docetaxel therapy and progress to a mesenchymal state remains a fundamental problem. The progression towards resistance is difficult to directly study in heterogeneous ecological environments such as tumors. In this work, we use a micro-fabricated “evolution accelerator” environment to create a complex heterogeneous yet controllable in-vitro environment with a spatially-varying drug concentration. With such a structure we observe the rapid emergence of a surprisingly large number of polyploid giant cancer cells (PGCCs) in regions of very high drug concentration, which does not occur in conventional cell culture of uniform concentration. This emergence of PGCCs in a high drug environment is due to migration of diploid epithelial cells from regions of low drug concentration, where they proliferate, to regions of high drug concentration, where they rapidly convert to PGCCs. Such a mechanism can only occur in spatially-varying rather than homogeneous environments. Further, PGCCs exhibit increased expression of the mesenchymal marker ZEB1 in the same high-drug regions where they are formed, suggesting the possible induction of an epithelial to mesenchymal transition (EMT) in these cells. This is consistent with prior work suggesting the PGCC cells are mediators of resistance in response to chemotherapeutic stress. Taken together, this work shows the key role of spatial heterogeneity and the migration of proliferative diploid cells to form PGCCs as a survival strategy for the cancer population, with implications for new therapies.
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Literatur
1.
Zurück zum Zitat Wolberg WH, Nick Street W, Mangasarian OL (1999) Importance of nuclear morphology in breast cancer prognosis. Clin Cancer Res 5(11):3542–3548PubMed Wolberg WH, Nick Street W, Mangasarian OL (1999) Importance of nuclear morphology in breast cancer prognosis. Clin Cancer Res 5(11):3542–3548PubMed
2.
Zurück zum Zitat Mittal K, Donthamsetty S, Kaur R, Yang C, Gupta MV, Reid MD, Choi DH, Rida PCG, Aneja R (2017) Multinucleated polyploidy drives resistance to Docetaxel chemotherapy in prostate cancer. Br J Cancer 116(9):1186–1194CrossRefPubMedPubMedCentral Mittal K, Donthamsetty S, Kaur R, Yang C, Gupta MV, Reid MD, Choi DH, Rida PCG, Aneja R (2017) Multinucleated polyploidy drives resistance to Docetaxel chemotherapy in prostate cancer. Br J Cancer 116(9):1186–1194CrossRefPubMedPubMedCentral
3.
Zurück zum Zitat Erenpreisa J, Ivanov A, Wheatley SP, Kosmacek EA, Ianzini F, Anisimov AP, Mackey M, Davis PJ, Plakhins G, Illidge TM (2008) Endopolyploidy in irradiated p53-deficient tumour cell lines: persistence of cell division activity in giant cells expressing Aurora-B kinase. Cell Biol Int 32(9):1044–1056CrossRefPubMedPubMedCentral Erenpreisa J, Ivanov A, Wheatley SP, Kosmacek EA, Ianzini F, Anisimov AP, Mackey M, Davis PJ, Plakhins G, Illidge TM (2008) Endopolyploidy in irradiated p53-deficient tumour cell lines: persistence of cell division activity in giant cells expressing Aurora-B kinase. Cell Biol Int 32(9):1044–1056CrossRefPubMedPubMedCentral
5.
Zurück zum Zitat Nakayama Y, Igarashi A, Kikuchi I, Obata Y, Fukumoto Y, Yamaguchi N (2009) Bleomycin-induced over-replication involves sustained inhibition of mitotic entry through the ATM/ATR pathway. Exp Cell Res 315(15):2515–2528CrossRefPubMed Nakayama Y, Igarashi A, Kikuchi I, Obata Y, Fukumoto Y, Yamaguchi N (2009) Bleomycin-induced over-replication involves sustained inhibition of mitotic entry through the ATM/ATR pathway. Exp Cell Res 315(15):2515–2528CrossRefPubMed
6.
Zurück zum Zitat Xin L, Kang Y (2009) Cell fusion as a hidden force in tumor progression. Cancer Res 69(22):8536–8539CrossRef Xin L, Kang Y (2009) Cell fusion as a hidden force in tumor progression. Cancer Res 69(22):8536–8539CrossRef
7.
Zurück zum Zitat Xin L, Kang Y (2009) Efficient acquisition of dual metastasis organotropism to bone and lung through stable spontaneous fusion between mda-mb-231 variants. Proc Natl Acad Sci 106(23):9385–9390CrossRef Xin L, Kang Y (2009) Efficient acquisition of dual metastasis organotropism to bone and lung through stable spontaneous fusion between mda-mb-231 variants. Proc Natl Acad Sci 106(23):9385–9390CrossRef
8.
Zurück zum Zitat Illidge TM, Cragg MS, Fringes B, Olive P, Erenpreisa JA (2000) Polyploid giant cells provide a survival mechanism for p53 mutant cells after DNA damage. Cell Biol Int 24(9):621–33CrossRefPubMed Illidge TM, Cragg MS, Fringes B, Olive P, Erenpreisa JA (2000) Polyploid giant cells provide a survival mechanism for p53 mutant cells after DNA damage. Cell Biol Int 24(9):621–33CrossRefPubMed
9.
Zurück zum Zitat Makarovskiy AN, Siryaporn E, Hixson DC, Akerley W (2002) Survival of docetaxel-resistant prostate cancer cells in vitro depends on phenotype alterations and continuity of drug exposure. Cell Mol Life Sci 59(7):1198–1211CrossRefPubMed Makarovskiy AN, Siryaporn E, Hixson DC, Akerley W (2002) Survival of docetaxel-resistant prostate cancer cells in vitro depends on phenotype alterations and continuity of drug exposure. Cell Mol Life Sci 59(7):1198–1211CrossRefPubMed
10.
Zurück zum Zitat Ogden A, Rida PCG, Knudsen BS, Kucuk O, Aneja R (2015) Docetaxel-induced polyploidization may underlie chemoresistance and disease relapse. Cancer Lett 367(2):89–92CrossRefPubMedPubMedCentral Ogden A, Rida PCG, Knudsen BS, Kucuk O, Aneja R (2015) Docetaxel-induced polyploidization may underlie chemoresistance and disease relapse. Cancer Lett 367(2):89–92CrossRefPubMedPubMedCentral
11.
Zurück zum Zitat Puig PE, Guilly MN, Bouchot A, Droin N, Cathelin D, Bouyer F, Favier L, Ghiringhelli F, Kroemer G, Solary E, Martin F, Chauffert B (2008) Tumor cells can escape DNA-damaging cisplatin through DNA endoreduplication and reversible polyploidy. Cell Biol Int 32(9):1031–1043CrossRefPubMed Puig PE, Guilly MN, Bouchot A, Droin N, Cathelin D, Bouyer F, Favier L, Ghiringhelli F, Kroemer G, Solary E, Martin F, Chauffert B (2008) Tumor cells can escape DNA-damaging cisplatin through DNA endoreduplication and reversible polyploidy. Cell Biol Int 32(9):1031–1043CrossRefPubMed
12.
Zurück zum Zitat Zhang S, Mercado-Uribe I, Hanash S, Liu J (2013) ITRAQ-based proteomic analysis of polyploid giant cancer cells and budding progeny cells reveals several distinct pathways for ovarian cancer development. PLoS ONE 8(11):1–16 Zhang S, Mercado-Uribe I, Hanash S, Liu J (2013) ITRAQ-based proteomic analysis of polyploid giant cancer cells and budding progeny cells reveals several distinct pathways for ovarian cancer development. PLoS ONE 8(11):1–16
13.
Zurück zum Zitat Zhang S, Mercado-Uribe I, Xing Z, Sun B, Kuang J, Liu J (2014) Generation of cancer stem-like cells through the formation of polyploid giant cancer cells. Oncogene 33(1):116–128CrossRefPubMed Zhang S, Mercado-Uribe I, Xing Z, Sun B, Kuang J, Liu J (2014) Generation of cancer stem-like cells through the formation of polyploid giant cancer cells. Oncogene 33(1):116–128CrossRefPubMed
14.
Zurück zum Zitat Lopez-Sánchez LM, Jimenez C, Valverde A, Hernandez V, Peñarando J, Martinez A, Lopez-Pedrera C, Muñoz-Castañeda JR, Juan R, Aranda E, Rodriguez-Ariza A (2014) CoCl2, a mimic of hypoxia, induces formation of polyploid giant cells with stem characteristics in colon cancer. PLoS ONE 9(6):e99143CrossRefPubMedPubMedCentral Lopez-Sánchez LM, Jimenez C, Valverde A, Hernandez V, Peñarando J, Martinez A, Lopez-Pedrera C, Muñoz-Castañeda JR, Juan R, Aranda E, Rodriguez-Ariza A (2014) CoCl2, a mimic of hypoxia, induces formation of polyploid giant cells with stem characteristics in colon cancer. PLoS ONE 9(6):e99143CrossRefPubMedPubMedCentral
15.
Zurück zum Zitat Storchova Z, Pellman D (2004) From polyploidy to aneuploidy, genome instability and cancer. Nat Rev Mol Cell Biol 5(1):45–54CrossRefPubMed Storchova Z, Pellman D (2004) From polyploidy to aneuploidy, genome instability and cancer. Nat Rev Mol Cell Biol 5(1):45–54CrossRefPubMed
16.
Zurück zum Zitat Lin K, Torga G, Wu A, Rabinowitz JD, Murray WJ, Sturm JC, Pienta KJ, Austin R (2017) Epithelial and mesenchymal prostate cancer cell population dynamics on a complex drug landscape. Converg Sci Phys Oncol 3(4):045001CrossRefPubMedPubMedCentral Lin K, Torga G, Wu A, Rabinowitz JD, Murray WJ, Sturm JC, Pienta KJ, Austin R (2017) Epithelial and mesenchymal prostate cancer cell population dynamics on a complex drug landscape. Converg Sci Phys Oncol 3(4):045001CrossRefPubMedPubMedCentral
17.
Zurück zum Zitat Brabletz T, Kalluri R, Angela NM, Weinberg RA (2018) Emt in cancer. Nat Rev Cancer 18(2):128–134CrossRefPubMed Brabletz T, Kalluri R, Angela NM, Weinberg RA (2018) Emt in cancer. Nat Rev Cancer 18(2):128–134CrossRefPubMed
18.
Zurück zum Zitat Roca H, Hernandez J, Weidner S, McEachin RC, Fuller D, Sud S, Schumann T, Wilkinson JE, Zaslavsky A, Li H, Maher CA, Daignault-Newton S, Healy PN, Pienta KJ (2013) Transcription factors OVOL1 and OVOL2 induce the mesenchymal to epithelial transition in human cancer. PLoS ONE 8(10):e76773CrossRef Roca H, Hernandez J, Weidner S, McEachin RC, Fuller D, Sud S, Schumann T, Wilkinson JE, Zaslavsky A, Li H, Maher CA, Daignault-Newton S, Healy PN, Pienta KJ (2013) Transcription factors OVOL1 and OVOL2 induce the mesenchymal to epithelial transition in human cancer. PLoS ONE 8(10):e76773CrossRef
19.
Zurück zum Zitat Kanda T, Sullivan KF, Wahl GM (1998) Histone-GFP fusion protein enables sensitive analysis of chromosome dynamics in living mammalian cells. Curr Biol 8(7):377–385CrossRefPubMed Kanda T, Sullivan KF, Wahl GM (1998) Histone-GFP fusion protein enables sensitive analysis of chromosome dynamics in living mammalian cells. Curr Biol 8(7):377–385CrossRefPubMed
20.
Zurück zum Zitat Wottawah F, Schinkinger S, Lincoln B, Ananthakrishnan R, Romeyke M, Guck J, Kas J (2005) Optical rheology of biological cells. Phys Rev Lett 94(9):098103CrossRefPubMed Wottawah F, Schinkinger S, Lincoln B, Ananthakrishnan R, Romeyke M, Guck J, Kas J (2005) Optical rheology of biological cells. Phys Rev Lett 94(9):098103CrossRefPubMed
21.
Zurück zum Zitat Long H, Xiang T, Qi W, Huang J, Chen J, He L (2015) Cancer cell metastasis via CCL5 induced epithelial–mesenchymal transition. Oncotarget 6(8):13–14CrossRef Long H, Xiang T, Qi W, Huang J, Chen J, He L (2015) Cancer cell metastasis via CCL5 induced epithelial–mesenchymal transition. Oncotarget 6(8):13–14CrossRef
22.
Zurück zum Zitat Cioffi M, Dalterio C, Camerlingo R, Tirino V, Consales C, Riccio A, Ieranò C, Cecere SC, Losito NS, Greggi S, Pignata S, Pirozzi G, Scala S (2015) Identification of a distinct population of CD133+ CXCR4+ cancer stem cells in ovarian cancer. Sci Rep 5:1–11CrossRef Cioffi M, Dalterio C, Camerlingo R, Tirino V, Consales C, Riccio A, Ieranò C, Cecere SC, Losito NS, Greggi S, Pignata S, Pirozzi G, Scala S (2015) Identification of a distinct population of CD133+ CXCR4+ cancer stem cells in ovarian cancer. Sci Rep 5:1–11CrossRef
23.
Zurück zum Zitat Lee HH, Bellat V, Law B (2017) Chemotherapy induces adaptive drug resistance and metastatic potentials via phenotypic CXCR4-expressing cell state transition in ovarian cancer. PLoS ONE 12(2):1–17 Lee HH, Bellat V, Law B (2017) Chemotherapy induces adaptive drug resistance and metastatic potentials via phenotypic CXCR4-expressing cell state transition in ovarian cancer. PLoS ONE 12(2):1–17
24.
25.
Zurück zum Zitat Wu A, Zhang Q, Lambert G, Khin Z, Gatenby R, Kim HJ, Pourmand N, Bussey K, Davies PCW, Sturm JC, Austin RH (2015) Ancient hot and cold genes and chemotherapy resistance emergence. Proc Natl Acad Sci 112(33):10467–10472CrossRefPubMedPubMedCentral Wu A, Zhang Q, Lambert G, Khin Z, Gatenby R, Kim HJ, Pourmand N, Bussey K, Davies PCW, Sturm JC, Austin RH (2015) Ancient hot and cold genes and chemotherapy resistance emergence. Proc Natl Acad Sci 112(33):10467–10472CrossRefPubMedPubMedCentral
26.
Zurück zum Zitat Han J, Jun Y, Kim SH, Hoang H, Jung Y, Kim S, Kim J, Austin RH, Lee S, Park S (2016) Rapid emergence and mechanisms of resistance by U87 glioblastoma cells to doxorubicin in an in vitro tumor microfluidic ecology. Proc Natl Acad Sci 113(50):14283–14288CrossRefPubMedPubMedCentral Han J, Jun Y, Kim SH, Hoang H, Jung Y, Kim S, Kim J, Austin RH, Lee S, Park S (2016) Rapid emergence and mechanisms of resistance by U87 glioblastoma cells to doxorubicin in an in vitro tumor microfluidic ecology. Proc Natl Acad Sci 113(50):14283–14288CrossRefPubMedPubMedCentral
27.
Zurück zum Zitat Bos J, Zhang Q, Vyawahare S, Rogers E, Rosenberg SM, Austin RH (2015) Emergence of antibiotic resistance from multinucleated bacterial filaments. Proc Natl Acad Sci 112(1):178–183CrossRefPubMed Bos J, Zhang Q, Vyawahare S, Rogers E, Rosenberg SM, Austin RH (2015) Emergence of antibiotic resistance from multinucleated bacterial filaments. Proc Natl Acad Sci 112(1):178–183CrossRefPubMed
28.
Zurück zum Zitat Meads MB, Hazlehurst LA, Dalton WS (2008) The bone marrow microenvironment as a tumor sanctuary and contributor to drug resistance. Clin Cancer Res 14(9):2519–2526CrossRefPubMed Meads MB, Hazlehurst LA, Dalton WS (2008) The bone marrow microenvironment as a tumor sanctuary and contributor to drug resistance. Clin Cancer Res 14(9):2519–2526CrossRefPubMed
29.
Zurück zum Zitat Shain KH, Dalton WS (2009) Environmental-mediated drug resistance: a target for multiple myeloma therapy. Expert Rev Hematol 2(6):649–662CrossRefPubMed Shain KH, Dalton WS (2009) Environmental-mediated drug resistance: a target for multiple myeloma therapy. Expert Rev Hematol 2(6):649–662CrossRefPubMed
30.
Zurück zum Zitat Nefedova Y, Cheng P, Alsina M, Dalton WS, Gabrilovich DI (2004) Involvement of notch-1 signaling in bone marrow stroma-mediated de novo drug resistance of myeloma and other malignant lymphoid cell lines. Blood 103(9):3503–3510CrossRefPubMed Nefedova Y, Cheng P, Alsina M, Dalton WS, Gabrilovich DI (2004) Involvement of notch-1 signaling in bone marrow stroma-mediated de novo drug resistance of myeloma and other malignant lymphoid cell lines. Blood 103(9):3503–3510CrossRefPubMed
31.
Zurück zum Zitat Mango RL, van Deventer HW, Wu QP, Serody JS (2009) Pulmonary stromal cells expressing cc-chemokine receptor 5 promote metastasis via erythroid differentiation regulator 1. Blood 114(22):3601–3601 Mango RL, van Deventer HW, Wu QP, Serody JS (2009) Pulmonary stromal cells expressing cc-chemokine receptor 5 promote metastasis via erythroid differentiation regulator 1. Blood 114(22):3601–3601
32.
33.
Zurück zum Zitat Reiman JM, Knutson KL, Radisky DC (2010) Immune promotion of epithelial–mesenchymal transition and generation of breast cancer stem cells. Cancer Res 70(8):3005–3008CrossRefPubMedPubMedCentral Reiman JM, Knutson KL, Radisky DC (2010) Immune promotion of epithelial–mesenchymal transition and generation of breast cancer stem cells. Cancer Res 70(8):3005–3008CrossRefPubMedPubMedCentral
34.
35.
Zurück zum Zitat Schindelin J, Arganda-Carreras I, Frise E, Kaynig V, Longair M, Pietzsch T, Preibisch S, Rueden C, Saalfeld S, Schmid B, Tinevez J, White DJ, Hartenstein V, Eliceiri K, Tomancak P, Cardona A (2012) Fiji: an open-source platform for biological-image analysis. Nat Methods 9:676CrossRefPubMed Schindelin J, Arganda-Carreras I, Frise E, Kaynig V, Longair M, Pietzsch T, Preibisch S, Rueden C, Saalfeld S, Schmid B, Tinevez J, White DJ, Hartenstein V, Eliceiri K, Tomancak P, Cardona A (2012) Fiji: an open-source platform for biological-image analysis. Nat Methods 9:676CrossRefPubMed
Metadaten
Titel
The role of heterogeneous environment and docetaxel gradient in the emergence of polyploid, mesenchymal and resistant prostate cancer cells
verfasst von
Ke-Chih Lin
Gonzalo Torga
Yusha Sun
Robert Axelrod
Kenneth J. Pienta
James C. Sturm
Robert H. Austin
Publikationsdatum
27.02.2019
Verlag
Springer Netherlands
Erschienen in
Clinical & Experimental Metastasis / Ausgabe 2/2019
Print ISSN: 0262-0898
Elektronische ISSN: 1573-7276
DOI
https://doi.org/10.1007/s10585-019-09958-1

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