<HashMap><database>iProX</database><scores/><additional><omics_type>Proteomics</omics_type><submitter>Qiying Zhu</submitter><species>Homo Sapiens</species><full_dataset_link>http://www.iprox.org/page/project.html?id=IPX0016511000</full_dataset_link><submitter_email>zhuqiying123451@163.com</submitter_email><submitter_affiliation>The First Affiliated Hospital of Xinjiang Medical University</submitter_affiliation><sample_protocol></sample_protocol><repository>iProX</repository><data_protocol></data_protocol></additional><is_claimable>false</is_claimable><name>Epitranscriptomic m6A reader HNRNPC amplifies oxidative stress–autophagy dysregulation and aggravates placental dysfunction in preeclampsia</name><description>We integrated transcriptomic, proteomic, and untargeted metabolomic profiling of placentas from PE patients and normotensive controls, followed by validation in an independent clinical cohort. Mechanistic roles were interrogated using hypoxia-treated HTR-8/SVneo trophoblasts and an L-NAME–induced PE-like mouse model. Autophagy dynamics were assessed using dual-fluorescent autophagic flux reporters, transmission electron microscopy, and molecular markers.</description><dates><publication>Fri Apr 03 00:00:00 GMT+01:00 2026</publication></dates><accession>PXD076549</accession><cross_references><TAXONOMY>9606</TAXONOMY></cross_references></HashMap>