<HashMap><database>JPOST Repository</database><file_versions><headers><Content-Type>application/xml</Content-Type></headers><body><files><Tabular>https://storage.jpostdb.org/JPST003978/files/20230920_RatPlasma_MagReSyn_dirDIANN181_result.pr_matrix.tsv</Tabular><Tabular>https://storage.jpostdb.org/JPST003978/files/20230920_RatPlasma_MagReSyn_dirDIANN181_result.pg_matrix.tsv</Tabular><Raw>https://storage.jpostdb.org/JPST003978/files/20230915_RatPlasma_MagReSyn_50uL_3_1800V_15SPD.raw</Raw><Raw>https://storage.jpostdb.org/JPST003978/files/20230915_RatPlasma_MagReSyn_10uL_2_1800V_15SPD.raw</Raw><Raw>https://storage.jpostdb.org/JPST003978/files/20230920_RatPlasma_MagReSyn_20uL_Tris_2h_2000V_15SPD03.raw</Raw><Raw>https://storage.jpostdb.org/JPST003978/files/20230920_RatPlasma_MagReSyn_20uL_ABC_ON_2000V_15SPD02.raw</Raw><Raw>https://storage.jpostdb.org/JPST003978/files/20230915_RatPlasma_MagReSyn_20uL_2_1800V_15SPD.raw</Raw><Raw>https://storage.jpostdb.org/JPST003978/files/20230915_RatPlasma_MagReSyn_20uL_wInh1_1800V_15SPD.raw</Raw><Raw>https://storage.jpostdb.org/JPST003978/files/20230920_RatPlasma_MagReSyn_20uL_Tris_2h_2000V_15SPD01.raw</Raw><Raw>https://storage.jpostdb.org/JPST003978/files/20230915_RatPlasma_MagReSyn_50uL_1_1800V_15SPD.raw</Raw><Raw>https://storage.jpostdb.org/JPST003978/files/20230915_RatPlasma_MagReSyn_20uL_3_1800V_15SPD.raw</Raw><Raw>https://storage.jpostdb.org/JPST003978/files/20230920_RatPlasma_MagReSyn_20uL_ABC_ON_2000V_15SPD03.raw</Raw><Raw>https://storage.jpostdb.org/JPST003978/files/20230915_RatPlasma_MagReSyn_10uL_3_1800V_15SPD.raw</Raw><Raw>https://storage.jpostdb.org/JPST003978/files/20230920_RatPlasma_MagReSyn_20uL_ABC_ON_2000V_15SPD01.raw</Raw><Raw>https://storage.jpostdb.org/JPST003978/files/20230920_RatPlasma_MagReSyn_20uL_Tris_2h_2000V_15SPD02.raw</Raw><Raw>https://storage.jpostdb.org/JPST003978/files/20230915_RatPlasma_MagReSyn_10uL_1_1800V_15SPD.raw</Raw><Raw>https://storage.jpostdb.org/JPST003978/files/20230915_RatPlasma_MagReSyn_20uL_wInh3_1800V_15SPD.raw</Raw><Raw>https://storage.jpostdb.org/JPST003978/files/20230915_RatPlasma_MagReSyn_50uL_2_1800V_15SPD.raw</Raw><Raw>https://storage.jpostdb.org/JPST003978/files/20230915_RatPlasma_MagReSyn_20uL_wInh2_1800V_15SPD.raw</Raw><Raw>https://storage.jpostdb.org/JPST003978/files/20230915_RatPlasma_MagReSyn_20uL_1_1800V_15SPD.raw</Raw></files><type>primary</type></body><statusCode>OK</statusCode><statusCodeValue>200</statusCodeValue></file_versions><scores/><additional><omics_type>Proteomics</omics_type><submitter>Akiko Matsui</submitter><species>Cellular Organisms</species><full_dataset_link>https://repository.jpostdb.org/entry/JPST003978</full_dataset_link><submitter_affiliation>Nippon Boehringer-Ingelheim Co., Ltd.</submitter_affiliation><sample_protocol></sample_protocol><repository>jPOST</repository><data_protocol></data_protocol></additional><is_claimable>false</is_claimable><name>Plasma proteomics of ZDF and SD rat using Mag-Net and ENRICH-iST methods</name><description>One of the biggest challenges in Plasma Proteomics is to reduce the dynamic range of plasma proteins to capture the expression of low-abundant proteins. Mag-Net and ENRICH-iST methods were evaluated using 20 Î¼L of type 2 diabetes (ZDF) and SD rat plasma by data-independent acquisition (DIA)-MS Mag-Net method using MagReSyn SAX beads (Resin Biosciences) can enrich a heterogeneous group of membrane-associated particles from plasma, whereas ENRICH-iST method can enrich low abundant proteins by a physicochemical enrichment.</description><dates><publication>Wed May 20 00:00:00 BST 2026</publication></dates><accession>PXD067811</accession><cross_references><TAXONOMY>131567</TAXONOMY></cross_references></HashMap>