Subina Mehta
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Explore the profile of Subina Mehta including associated specialties, affiliations and a list of published articles.
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34
Citations
199
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Recent Articles
1.
Do K, Mehta S, Wagner R, Griffin T, Jagtap P
J Vis Exp
. 2025 Jan;
215.
PMID: 39868694
Clinical metaproteomics reveals host-microbiome interactions underlying diseases. However, challenges to this approach exist. In particular, the characterization of microbial proteins present in low abundance relative to host proteins is difficult....
2.
Nasr E, Amato P, Bhardwaj A, Blankenberg D, Brites D, Cumbo F, et al.
bioRxiv
. 2025 Jan;
PMID: 39764050
Microbial research generates vast and complex data from diverse omics technologies, necessitating innovative analytical solutions. microGalaxy (Galaxy for Microbiology) addresses these needs with a user-friendly platform that integrates >220 tool...
3.
Perez J, Duda J, Ryu J, Shetty M, Mehta S, Jagtap P, et al.
Sci Rep
. 2025 Jan;
15(1):813.
PMID: 39755759
Within ovarian cancer research, patient-derived xenograft (PDX) models recapitulate histologic features and genomic aberrations found in original tumors. However, conflicting data from published studies have demonstrated significant transcriptional differences between...
4.
Kumar P, Johnson J, McGowan T, Chambers M, Heydarian M, Mehta S, et al.
Methods Mol Biol
. 2024 Oct;
2859:109-128.
PMID: 39436599
Proteogenomics is a growing "multi-omics" research area that combines mass spectrometry-based proteomics and high-throughput nucleotide sequencing technologies. Proteogenomics has helped in genomic annotation for organisms whose complete genome sequences became...
5.
Samorodnitsky S, Kruk M, Lock E, Kunisaki K, Morris A, Leung J, et al.
Respir Res
. 2024 Sep;
25(1):337.
PMID: 39256809
Background: Obstructive lung disease (OLD) is increasingly prevalent among persons living with HIV (PLWH). However, the role of proteases in HIV-associated OLD remains unclear. Methods: We combined proteomics and peptidomics...
6.
Bihani S, Gupta A, Mehta S, Rajczewski A, Griffin T, Jagtap P, et al.
Methods Mol Biol
. 2024 Jun;
2820:165-185.
PMID: 38941023
The upper respiratory tract (URT) is home to a diverse range of microbial species. Respiratory infections disturb the microbial flora in the URT, putting people at risk of secondary infections....
7.
Kruk M, Mehta S, Murray K, Higgins L, Do K, Johnson J, et al.
mSystems
. 2024 Jun;
9(7):e0092923.
PMID: 38934598
Airway microbiota are known to contribute to lung diseases, such as cystic fibrosis (CF), but their contributions to pathogenesis are still unclear. To improve our understanding of host-microbe interactions, we...
8.
Samorodnitsky S, Kruk M, Lock E, Kunisaki K, Morris A, Leung J, et al.
Res Sq
. 2024 Jun;
PMID: 38883770
Background: Obstructive lung disease (OLD) is increasingly prevalent among persons living with HIV (PLWH). However, the role of proteases in HIV-associated OLD remains unclear. Methods: We combined proteomics and peptidomics...
9.
Do K, Mehta S, Wagner R, Bhuming D, Rajczewski A, Skubitz A, et al.
mSphere
. 2024 May;
9(6):e0079323.
PMID: 38780289
Importance: Clinical metaproteomics has immense potential to offer functional insights into the microbiome and its contributions to human disease. However, there are numerous challenges in the metaproteomic analysis of clinical...
10.
Do K, Mehta S, Wagner R, Bhuming D, Rajczewski A, Skubitz A, et al.
bioRxiv
. 2023 Dec;
PMID: 38045370
Clinical metaproteomics has the potential to offer insights into the host-microbiome interactions underlying diseases. However, the field faces challenges in characterizing microbial proteins found in clinical samples, which are usually...