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RNA-Seq Reveals Acute Manganese Exposure Increases Endoplasmic Reticulum Related and Lipocalin mRNAs in Caenorhabditis elegans Journal article
Rudgalvyte M., Peltonen J., Lakso M., Nass R., Wong G.. RNA-Seq Reveals Acute Manganese Exposure Increases Endoplasmic Reticulum Related and Lipocalin mRNAs in Caenorhabditis elegans[J]. Journal of Biochemical and Molecular Toxicology, 2016, 30(2), 97-105.
Authors:  Rudgalvyte M.;  Peltonen J.;  Lakso M.;  Nass R.;  Wong G.
Favorite | TC[WOS]:9 TC[Scopus]:13 | Submit date:2018/12/18
Heavy Metal  Model Organism  Next-generation Sequencing  Rnai  Transcriptomics  
Methylmercury exposure increases lipocalin related (lpr) and decreases activated in blocked unfolded protein response (abu) genes and specific mirnas in caenorhabditis elegans Journal article
Rudgalvyte M., VanDuyn N., Aarnio V., Heikkinen L., Peltonen J., Lakso M., Nass R., Wong G.. Methylmercury exposure increases lipocalin related (lpr) and decreases activated in blocked unfolded protein response (abu) genes and specific mirnas in caenorhabditis elegans[J]. Toxicology Letters, 2013, 222(2), 189-196.
Authors:  Rudgalvyte M.;  VanDuyn N.;  Aarnio V.;  Heikkinen L.;  Peltonen J.; et al.
Favorite | TC[WOS]:19 TC[Scopus]:22 | Submit date:2018/12/18
Blocked Unfolded Protein Response  Er Stress  Heavy Metal  Next-generation Sequencing  Oxidative Stress  
SKN-1/Nrf2 inhibits dopamine neuron degeneration in a Caenorhabditis elegans model of methylmercury toxicity Journal article
VanDuyn N., Settivari R., Wong G., Nass R.. SKN-1/Nrf2 inhibits dopamine neuron degeneration in a Caenorhabditis elegans model of methylmercury toxicity[J]. Toxicological Sciences, 2010, 118(2), 613-624.
Authors:  VanDuyn N.;  Settivari R.;  Wong G.;  Nass R.
Favorite | TC[WOS]:74 TC[Scopus]:89 | Submit date:2018/12/18
C. Elegans  Dopamine Neurodegeneration  Genetics  Methylmercury  Nematode  Nrf2  Oxidative Stress  Parkinson's Disease  Skn-1  
Global microRNA expression profiling of caenorhabditis elegans Parkinson's disease models Journal article
Asikainen S., Rudgalvyte M., Heikkinen L., Louhiranta K., Lakso M., Wong G., Nass R.. Global microRNA expression profiling of caenorhabditis elegans Parkinson's disease models[J]. Journal of Molecular Neuroscience, 2010, 41(1), 210-218.
Authors:  Asikainen S.;  Rudgalvyte M.;  Heikkinen L.;  Louhiranta K.;  Lakso M.; et al.
Favorite | TC[WOS]:85 TC[Scopus]:85 | Submit date:2018/12/18
Caenorhabditis Elegans  Microarray  Microrna  Neurodegeneration  Parkinson's Disease  Qrt-pcr  
Identification of gene expression changes in transgenic C. elegans overexpressing human α-synuclein Journal article
Vartiainen S., Pehkonen P., Lakso M., Nass R., Wong G.. Identification of gene expression changes in transgenic C. elegans overexpressing human α-synuclein[J]. Neurobiology of Disease, 2006, 22(3), 477-486.
Authors:  Vartiainen S.;  Pehkonen P.;  Lakso M.;  Nass R.;  Wong G.
Favorite | TC[WOS]:63 TC[Scopus]:71 | Submit date:2018/12/18
Α-synuclein  Bioinformatics  C. Elegans  Clustering  Microarray  Parkinson's Disease  
Selective sensitivity of Caenorhabditis elegans neurons to RNA interference Journal article
Asikainen S., Vartiainen S., Lakso M., Nass R., Wong G.. Selective sensitivity of Caenorhabditis elegans neurons to RNA interference[J]. NeuroReport, 2005, 16(18), 1995-1999.
Authors:  Asikainen S.;  Vartiainen S.;  Lakso M.;  Nass R.;  Wong G.
Favorite | TC[WOS]:56 TC[Scopus]:55 | Submit date:2018/12/18
Green Fluorescent Protein  Neuron Type  Rna Interference  Rna-directed Rna Polymerase 3  Rrf-3  Sensitivity  
Dopaminergic neuronal loss and motor deficits in Caenorhabditis elegans overexpressing human α-synuclein Journal article
Lakso M., Vartiainen S., Moilanen A.-M., Sirvio J., Thomas J.H., Nass R., Blakely R.D., Wong G.. Dopaminergic neuronal loss and motor deficits in Caenorhabditis elegans overexpressing human α-synuclein[J]. Journal of Neurochemistry, 2003, 86(1), 165-172.
Authors:  Lakso M.;  Vartiainen S.;  Moilanen A.-M.;  Sirvio J.;  Thomas J.H.; et al.
Favorite | TC[WOS]:294 TC[Scopus]:325 | Submit date:2018/12/18
Α-synuclein  Model Organism  Motor Neuron  Neurodegeneration  Worm Transgenic