Skip to main content
Top
Published in: Network Modeling Analysis in Health Informatics and Bioinformatics 1/2023

01-12-2023 | Original Article

Predicting drug-resistant miRNAs in cancer

Authors: Amrita Kundu, Joginder Singh, Jayanta Kumar Pal, Shubhra Sankar Ray

Published in: Network Modeling Analysis in Health Informatics and Bioinformatics | Issue 1/2023

Log in

Activate our intelligent search to find suitable subject content or patents.

search-config
loading …

Abstract

MicroRNAs (miRNAs) are small noncoding RNAs that play a vital role in controlling drug sensitivity/resistance in cancer. Hence, the effectiveness of cancer treatment can be significantly improved by identifying these miRNAs. We reviewed the studies that emphasize the identification of miRNAs associated with drug resistance in cancer. Two computational methods are also developed to identify the miRNAs associated with drug resistance. In the first method, the Euclidean distance with weighted fold change (EDWFC) score is developed. Here, the Euclidean distance and fold change, computed using the averages of control and resistant expressions, are multiplied by varying the power of fold change to minimize the average rank of miRNAs. The miRNAs are then sorted in descending order according to the EDWFC value which provides superior results as compared to existing feature/gene selection methods in terms of multiple performance measures. In the second method, namely the histogram-based clustering and Euclidean distance with fold change-based ranking (HCEDFCR), the miRNAs are first divided into different clusters using a novel histogram-based clustering method. Then, the product of the Euclidean distance and the fold change value, using the control and resistant miRNA expressions, are used to rank the clusters and the miRNAs inside the clusters. Finally, a portion of the miRNAs is selected from the top of the rank list in every cluster. For most of the datasets, the top 20 miRNAs selected using the first method and the first three miRNAs of the top three clusters obtained using the second method contain the miRNAs associated with cancer drug resistance.

Dont have a licence yet? Then find out more about our products and how to get one now:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Springer Professional "Wirtschaft"

Online-Abonnement

Mit Springer Professional "Wirtschaft" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 340 Zeitschriften

aus folgenden Fachgebieten:

  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Versicherung + Risiko




Jetzt Wissensvorsprung sichern!

Literature
go back to reference Ahmadi Moughari F, Eslahchi C (2021) A computational method for drug sensitivity prediction of cancer cell lines based on various molecular information. PloS one 16(4):1–31CrossRef Ahmadi Moughari F, Eslahchi C (2021) A computational method for drug sensitivity prediction of cancer cell lines based on various molecular information. PloS one 16(4):1–31CrossRef
go back to reference Bockhorn J et al (2013) Microrna-30c inhibits human breast tumour chemotherapy resistance by regulating twf1 and il-11. Nat Commun 4(1):1–14CrossRef Bockhorn J et al (2013) Microrna-30c inhibits human breast tumour chemotherapy resistance by regulating twf1 and il-11. Nat Commun 4(1):1–14CrossRef
go back to reference Bolón-Canedo V, Sánchez-Maroño N, Alonso-Betanzos A (2016) Feature selection for high-dimensional data. Prog Artif Intell 5(2):65–75CrossRef Bolón-Canedo V, Sánchez-Maroño N, Alonso-Betanzos A (2016) Feature selection for high-dimensional data. Prog Artif Intell 5(2):65–75CrossRef
go back to reference Chen S, Chen X, Xiu Y-L, Sun K-X, Zong Z-H, Zhao Y (2014) microrna 490–3p enhances the drug-resistance of human ovarian cancer cells. J Ovarian Res 7(1):1–6CrossRef Chen S, Chen X, Xiu Y-L, Sun K-X, Zong Z-H, Zhao Y (2014) microrna 490–3p enhances the drug-resistance of human ovarian cancer cells. J Ovarian Res 7(1):1–6CrossRef
go back to reference Enfield KS, Stewart GL, Pikor LA, Alvarez CE, Lam S, Lam WL, Chari R (2011) Microrna gene dosage alterations and drug response in lung cancer. J Biomed Biotechnol 2011(1):1–15CrossRef Enfield KS, Stewart GL, Pikor LA, Alvarez CE, Lam S, Lam WL, Chari R (2011) Microrna gene dosage alterations and drug response in lung cancer. J Biomed Biotechnol 2011(1):1–15CrossRef
go back to reference Fujita Y, Kojima T, Kawakami K, Mizutani K, Kato T, Deguchi T, Ito M (2015) mir-130a activates apoptotic signaling through activation of caspase-8 in taxane-resistant prostate cancer cells. Prostate 75(14):1568–1578CrossRef Fujita Y, Kojima T, Kawakami K, Mizutani K, Kato T, Deguchi T, Ito M (2015) mir-130a activates apoptotic signaling through activation of caspase-8 in taxane-resistant prostate cancer cells. Prostate 75(14):1568–1578CrossRef
go back to reference Ghasabi M, Mansoori B, Mohammadi A, Duijf PH, Shomali N, Shirafkan N, Mokhtarzadeh A, Baradaran B (2019) Micrornas in cancer drug resistance: Basic evidence and clinical applications. J Cell Physiol 234(3):2152–2168CrossRef Ghasabi M, Mansoori B, Mohammadi A, Duijf PH, Shomali N, Shirafkan N, Mokhtarzadeh A, Baradaran B (2019) Micrornas in cancer drug resistance: Basic evidence and clinical applications. J Cell Physiol 234(3):2152–2168CrossRef
go back to reference Guyon I, Weston J, Barnhill S, Vapnik V (2002) Gene selection for cancer classification using support vector machines. Mach Learn 46(1):389–422MATHCrossRef Guyon I, Weston J, Barnhill S, Vapnik V (2002) Gene selection for cancer classification using support vector machines. Mach Learn 46(1):389–422MATHCrossRef
go back to reference Han, J, Pei, J, Tong, H (2022) Data mining: concepts and techniques, 4th Edition. Morgan kaufmann, USA Han, J, Pei, J, Tong, H (2022) Data mining: concepts and techniques, 4th Edition. Morgan kaufmann, USA
go back to reference Hu Q et al (2014) Down-regulation of mirna-452 is associated with adriamycin-resistance in breast cancer cells. Asian Pac J Cancer Prev 15(13):5137–5142CrossRef Hu Q et al (2014) Down-regulation of mirna-452 is associated with adriamycin-resistance in breast cancer cells. Asian Pac J Cancer Prev 15(13):5137–5142CrossRef
go back to reference Huang Y-A, Hu P, Chan KC, You Z-H (2020) Graph convolution for predicting associations between mirna and drug resistance. Bioinformatics 36(3):851–858CrossRef Huang Y-A, Hu P, Chan KC, You Z-H (2020) Graph convolution for predicting associations between mirna and drug resistance. Bioinformatics 36(3):851–858CrossRef
go back to reference Hummel R, Sie C, Watson DI, Wang T, Ansar A, Michael MZ, Van der Hoek M, Haier J, Hussey DJ (2014) Microrna signatures in chemotherapy resistant esophageal cancer cell lines. World J Gastroenterol WJG 20(40):904–912CrossRef Hummel R, Sie C, Watson DI, Wang T, Ansar A, Michael MZ, Van der Hoek M, Haier J, Hussey DJ (2014) Microrna signatures in chemotherapy resistant esophageal cancer cell lines. World J Gastroenterol WJG 20(40):904–912CrossRef
go back to reference Kim CH, Kim HK, Rettig RL, Kim J, Lee ET, Aprelikova O, Choi IJ, Munroe DJ, Green JE (2011) mirna signature associated with outcome of gastric cancer patients following chemotherapy. BMC Med Genom 4(1):1–14CrossRef Kim CH, Kim HK, Rettig RL, Kim J, Lee ET, Aprelikova O, Choi IJ, Munroe DJ, Green JE (2011) mirna signature associated with outcome of gastric cancer patients following chemotherapy. BMC Med Genom 4(1):1–14CrossRef
go back to reference Kitamura K, Seike M, Okano T, Matsuda K, Miyanaga A, Mizutani H, Noro R, Minegishi Y, Kubota K, Gemma A (2014) Mir-134/487b/655 cluster regulates tgf-b-induced epithelial-mesenchymal transition and drug resistance to gefitinib by targeting magi2 in lung adenocarcinoma cells. Mol Cancer Ther 13(2):444–453CrossRef Kitamura K, Seike M, Okano T, Matsuda K, Miyanaga A, Mizutani H, Noro R, Minegishi Y, Kubota K, Gemma A (2014) Mir-134/487b/655 cluster regulates tgf-b-induced epithelial-mesenchymal transition and drug resistance to gefitinib by targeting magi2 in lung adenocarcinoma cells. Mol Cancer Ther 13(2):444–453CrossRef
go back to reference Kovalchuk O, Filkowski J, Meservy J, Ilnytskyy Y, Tryndyak VP, Vasyl CF, Pogribny IP (2008) Involvement of microrna-451 in resistance of the mcf-7 breast cancer cells to chemotherapeutic drug doxorubicin. Mol Cancer Ther 7(7):2152–2159CrossRef Kovalchuk O, Filkowski J, Meservy J, Ilnytskyy Y, Tryndyak VP, Vasyl CF, Pogribny IP (2008) Involvement of microrna-451 in resistance of the mcf-7 breast cancer cells to chemotherapeutic drug doxorubicin. Mol Cancer Ther 7(7):2152–2159CrossRef
go back to reference Kumar S, Kumar A, Shah PP, Rai SN, Panguluri SK, Kakar SS (2011) Microrna signature of cis-platin resistant vs. cis-platin sensitive ovarian cancer cell lines. J Ovarian Res 4(1):1–11CrossRef Kumar S, Kumar A, Shah PP, Rai SN, Panguluri SK, Kakar SS (2011) Microrna signature of cis-platin resistant vs. cis-platin sensitive ovarian cancer cell lines. J Ovarian Res 4(1):1–11CrossRef
go back to reference Kurokawa K et al (2012) Role of mir-19b and its target mrnas in 5-fluorouracil resistance in colon cancer cells. J Gastroenterol 47(8):883–895CrossRef Kurokawa K et al (2012) Role of mir-19b and its target mrnas in 5-fluorouracil resistance in colon cancer cells. J Gastroenterol 47(8):883–895CrossRef
go back to reference Li Y, Wang Z, Ajani JA, Song S (2021) Drug resistance and cancer stem cells. Cell Commun Signal 19(1):1–11CrossRef Li Y, Wang Z, Ajani JA, Song S (2021) Drug resistance and cancer stem cells. Cell Commun Signal 19(1):1–11CrossRef
go back to reference Lundqvist EÅ, Fujiwara K, Seoud M (2015) Principles of chemotherapy. Int J Gynecol Obstet 131:S146–S149CrossRef Lundqvist EÅ, Fujiwara K, Seoud M (2015) Principles of chemotherapy. Int J Gynecol Obstet 131:S146–S149CrossRef
go back to reference Luxburg, U V (2007) “A tutorial on spectral clustering,” pp. 1–29 Luxburg, U V (2007) “A tutorial on spectral clustering,” pp. 1–29
go back to reference Ma J, Dong C, Ji C (2010) Microrna and drug resistance. Cancer Gene Ther 17(8):523–531CrossRef Ma J, Dong C, Ji C (2010) Microrna and drug resistance. Cancer Gene Ther 17(8):523–531CrossRef
go back to reference Mahmud MS, Huang JZ, Fu X (2020) Variational autoencoder-based dimensionality reduction for high-dimensional small-sample data classification. Int J Comput Intell Appl 19(01):1–19CrossRef Mahmud MS, Huang JZ, Fu X (2020) Variational autoencoder-based dimensionality reduction for high-dimensional small-sample data classification. Int J Comput Intell Appl 19(01):1–19CrossRef
go back to reference Maji P, Pal SK (2009) “Fuzzy-rough sets for information measures and selection of relevant genes from microarray data,’’ IEEE Transactions on Systems, Man, and Cybernetics. Part B (Cybernetics) 40(3):741–752CrossRef Maji P, Pal SK (2009) “Fuzzy-rough sets for information measures and selection of relevant genes from microarray data,’’ IEEE Transactions on Systems, Man, and Cybernetics. Part B (Cybernetics) 40(3):741–752CrossRef
go back to reference Mencia N, Selga E, Noé V, Ciudad CJ (2011) Underexpression of mir-224 in methotrexate resistant human colon cancer cells. Biochem Pharmacol 82(11):1572–1582CrossRef Mencia N, Selga E, Noé V, Ciudad CJ (2011) Underexpression of mir-224 in methotrexate resistant human colon cancer cells. Biochem Pharmacol 82(11):1572–1582CrossRef
go back to reference Miller TE, Ghoshal K, Ramaswamy B, Roy S, Datta J, Shapiro CL, Jacob S, Majumder S (2008) Microrna-221/222 confers tamoxifen resistance in breast cancer by targeting p27kip1*. J Biol chemis 283(44):29 Miller TE, Ghoshal K, Ramaswamy B, Roy S, Datta J, Shapiro CL, Jacob S, Majumder S (2008) Microrna-221/222 confers tamoxifen resistance in breast cancer by targeting p27kip1*. J Biol chemis 283(44):29
go back to reference Mostavi M, Chiu Y-C, Huang Y, Chen Y (2020) Convolutional neural network models for cancer type prediction based on gene expression. BMC Med Genom 13(5):1–13 Mostavi M, Chiu Y-C, Huang Y, Chen Y (2020) Convolutional neural network models for cancer type prediction based on gene expression. BMC Med Genom 13(5):1–13
go back to reference Mundra PA, Rajapakse JC (2010) Svm-rfe with mrmr filter for gene selection. IEEE Trans Nanobiosci 9(1):31–37CrossRef Mundra PA, Rajapakse JC (2010) Svm-rfe with mrmr filter for gene selection. IEEE Trans Nanobiosci 9(1):31–37CrossRef
go back to reference Ottman R, Nguyen C, Lorch R, Chakrabarti R (2014) Microrna expressions associated with progression of prostate cancer cells to antiandrogen therapy resistance. Mol Cancer 13(1):1–21CrossRef Ottman R, Nguyen C, Lorch R, Chakrabarti R (2014) Microrna expressions associated with progression of prostate cancer cells to antiandrogen therapy resistance. Mol Cancer 13(1):1–21CrossRef
go back to reference Pal JK, Ray SS, Pal SK (2019) Identifying drug resistant mirnas using entropy based ranking. IEEE/ACM Trans Comput Biol Bioinf 18(3):973–984CrossRef Pal JK, Ray SS, Pal SK (2019) Identifying drug resistant mirnas using entropy based ranking. IEEE/ACM Trans Comput Biol Bioinf 18(3):973–984CrossRef
go back to reference Palagani A et al (2014) Ectopic microrna-150-5p transcription sensitizes glucocorticoid therapy response in mm1s multiple myeloma cells but fails to overcome hormone therapy resistance in mm1r cells. PLoS ONE 9(12):1–30CrossRef Palagani A et al (2014) Ectopic microrna-150-5p transcription sensitizes glucocorticoid therapy response in mm1s multiple myeloma cells but fails to overcome hormone therapy resistance in mm1r cells. PLoS ONE 9(12):1–30CrossRef
go back to reference Peng H, Long F, Ding C (2005) Feature selection based on mutual information criteria of max-dependency, max-relevance, and min-redundancy. IEEE Trans Pattern Anal Mach Intell 27(8):1226–1238CrossRef Peng H, Long F, Ding C (2005) Feature selection based on mutual information criteria of max-dependency, max-relevance, and min-redundancy. IEEE Trans Pattern Anal Mach Intell 27(8):1226–1238CrossRef
go back to reference Pichiorri F et al (2013) In vivo ncl targeting affects breast cancer aggressiveness through mirna regulation. J Exp Med 210(5):951–968CrossRef Pichiorri F et al (2013) In vivo ncl targeting affects breast cancer aggressiveness through mirna regulation. J Exp Med 210(5):951–968CrossRef
go back to reference Raza U, Zhang JD, Şahin Ö (2014) Micrornas: master regulators of drug resistance, stemness, and metastasis. J Mol Med 92(4):321–336CrossRef Raza U, Zhang JD, Şahin Ö (2014) Micrornas: master regulators of drug resistance, stemness, and metastasis. J Mol Med 92(4):321–336CrossRef
go back to reference Schotte D, De Menezes RX, Moqadam FA, Khankahdani LM, Lange-Turenhout E, Chen C, Pieters R, Den Boer ML (2011) Microrna characterize genetic diversity and drug resistance in pediatric acute lymphoblastic leukemia. Haematologica 96(5):703–711CrossRef Schotte D, De Menezes RX, Moqadam FA, Khankahdani LM, Lange-Turenhout E, Chen C, Pieters R, Den Boer ML (2011) Microrna characterize genetic diversity and drug resistance in pediatric acute lymphoblastic leukemia. Haematologica 96(5):703–711CrossRef
go back to reference Sharma A, Imoto S, Miyano S, Sharma V (2012) Null space based feature selection method for gene expression data. Int J Mach Learn Cybern 3(4):269–276CrossRef Sharma A, Imoto S, Miyano S, Sharma V (2012) Null space based feature selection method for gene expression data. Int J Mach Learn Cybern 3(4):269–276CrossRef
go back to reference Si W, Shen J, Zheng H, Fan W (2019) The role and mechanisms of action of micrornas in cancer drug resistance. Clin Epigenetics 11(1):1–24CrossRef Si W, Shen J, Zheng H, Fan W (2019) The role and mechanisms of action of micrornas in cancer drug resistance. Clin Epigenetics 11(1):1–24CrossRef
go back to reference Wolfson B, Eades G, Zhou Q (2014) Roles of microrna-140 in stem cell-associated early stage breast cancer. World J Stem Cells 6(5):591–597CrossRef Wolfson B, Eades G, Zhou Q (2014) Roles of microrna-140 in stem cell-associated early stage breast cancer. World J Stem Cells 6(5):591–597CrossRef
go back to reference Xin F, Li M, Balch C, Thomson M, Fan M, Liu Y, Hammond SM, Kim S, Nephew KP (2009) Computational analysis of microrna profiles and their target genes suggests significant involvement in breast cancer antiestrogen resistance. Bioinformatics 25(4):430–434CrossRef Xin F, Li M, Balch C, Thomson M, Fan M, Liu Y, Hammond SM, Kim S, Nephew KP (2009) Computational analysis of microrna profiles and their target genes suggests significant involvement in breast cancer antiestrogen resistance. Bioinformatics 25(4):430–434CrossRef
go back to reference Yang H, Xu Y, Shang D, Shi H, Zhang C, Dong Q, Zhang Y, Bai Z, Cheng S, Li X (2020) ncdrmarker: a computational method for identifying non-coding rna signatures of drug resistance based on heterogeneous network. Annals Transl Med 8(21):1–31CrossRef Yang H, Xu Y, Shang D, Shi H, Zhang C, Dong Q, Zhang Y, Bai Z, Cheng S, Li X (2020) ncdrmarker: a computational method for identifying non-coding rna signatures of drug resistance based on heterogeneous network. Annals Transl Med 8(21):1–31CrossRef
go back to reference Yin W, Wang P, Wang X, Song W, Cui X, Yu H, Zhu W (2013) Identification of micrornas and mrnas associated with multidrug resistance of human laryngeal cancer hep-2 cells. Braz J Med Biol Res 46:546–554CrossRef Yin W, Wang P, Wang X, Song W, Cui X, Yu H, Zhu W (2013) Identification of micrornas and mrnas associated with multidrug resistance of human laryngeal cancer hep-2 cells. Braz J Med Biol Res 46:546–554CrossRef
go back to reference Zhang L et al (2013) mir-153 supports colorectal cancer progression via pleiotropic effects that enhance invasion and chemotherapeutic resistance. Can Res 73(21):6435–6447CrossRef Zhang L et al (2013) mir-153 supports colorectal cancer progression via pleiotropic effects that enhance invasion and chemotherapeutic resistance. Can Res 73(21):6435–6447CrossRef
go back to reference Zhang W, Dolan ME (2010) Emerging role of micrornas in drug response. Curr Opin Mol Ther 12(6):695–702 Zhang W, Dolan ME (2010) Emerging role of micrornas in drug response. Curr Opin Mol Ther 12(6):695–702
Metadata
Title
Predicting drug-resistant miRNAs in cancer
Authors
Amrita Kundu
Joginder Singh
Jayanta Kumar Pal
Shubhra Sankar Ray
Publication date
01-12-2023
Publisher
Springer Vienna
Published in
Network Modeling Analysis in Health Informatics and Bioinformatics / Issue 1/2023
Print ISSN: 2192-6662
Electronic ISSN: 2192-6670
DOI
https://doi.org/10.1007/s13721-022-00398-8

Other articles of this Issue 1/2023

Network Modeling Analysis in Health Informatics and Bioinformatics 1/2023 Go to the issue

Premium Partner