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Publications (7 of 7) Show all publications
Aghanoori, M.-R., Agarwal, P., Gauvin, E., Nagalingam, R. S., Bonomo, R., Yathindranath, V., . . . Fernyhough, P. (2022). CEBP beta regulation of endogenous IGF-1 in adult sensory neurons can be mobilized to overcome diabetes-induced deficits in bioenergetics and axonal outgrowth. Cellular and Molecular Life Sciences (CMLS), 79(4), Article ID 193.
Open this publication in new window or tab >>CEBP beta regulation of endogenous IGF-1 in adult sensory neurons can be mobilized to overcome diabetes-induced deficits in bioenergetics and axonal outgrowth
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2022 (English)In: Cellular and Molecular Life Sciences (CMLS), ISSN 1420-682X, E-ISSN 1420-9071, Vol. 79, no 4, article id 193Article in journal (Refereed) Published
Abstract [en]

Aberrant insulin-like growth factor 1 (IGF-1) signaling has been proposed as a contributing factor to the development of neurodegenerative disorders including diabetic neuropathy, and delivery of exogenous IGF-1 has been explored as a treatment for Alzheimer's disease and amyotrophic lateral sclerosis. However, the role of autocrine/paracrine IGF-1 in neuroprotection has not been well established. We therefore used in vitro cell culture systems and animal models of diabetic neuropathy to characterize endogenous IGF-1 in sensory neurons and determine the factors regulating IGF-1 expression and/or affecting neuronal health. Single-cell RNA sequencing (scRNA-Seq) and in situ hybridization analyses revealed high expression of endogenous IGF-1 in non-peptidergic neurons and satellite glial cells (SGCs) of dorsal root ganglia (DRG). Brain cortex and DRG had higher IGF-1 gene expression than sciatic nerve. Bidirectional transport of IGF-1 along sensory nerves was observed. Despite no difference in IGF-1 receptor levels, IGF-1 gene expression was significantly (P < 0.05) reduced in liver and DRG from streptozotocin (STZ)-induced type 1 diabetic rats, Zucker diabetic fatty (ZDF) rats, mice on a high-fat/ high-sugar diet and db/db type 2 diabetic mice. Hyperglycemia suppressed IGF-1 gene expression in cultured DRG neurons and this was reversed by exogenous IGF-1 or the aldose reductase inhibitor sorbinil. Transcription factors, such as NFAT1 and CEBP beta, were also less enriched at the IGF-1 promoter in DRG from diabetic rats vs control rats. CEBP beta overexpression promoted neurite outgrowth and mitochondrial respiration, both of which were blunted by knocking down or blocking IGF-1. Suppression of endogenous IGF-1 in diabetes may contribute to neuropathy and its upregulation at the transcriptional level by CEBP beta can be a promising therapeutic approach.

Place, publisher, year, edition, pages
Springer Nature, 2022
Keywords
Dorsal root ganglia, Diabetic neuropathy, Mitochondria, NFAT1, Neurite outgrowth, Neurotrophic factor, IGF-1
National Category
Neurosciences Surgery Cell and Molecular Biology
Identifiers
urn:nbn:se:kth:diva-310649 (URN)10.1007/s00018-022-04201-9 (DOI)000770337000002 ()35298717 (PubMedID)2-s2.0-85126727855 (Scopus ID)
Note

QC 20220406

Available from: 2022-04-06 Created: 2022-04-06 Last updated: 2022-06-25Bibliographically approved
Tomczyk, M. M., Cheung, K. G., Xiang, B., Tamanna, N., Teixeira, A. L. F., Agarwal, P., . . . Dolinsky, V. W. (2022). Mitochondrial Sirtuin-3 (SIRT3) Prevents Doxorubicin-Induced Dilated Cardiomyopathy by Modulating Protein Acetylation and Oxidative Stress. Circulation Heart Failure, 15(5), Article ID e008547.
Open this publication in new window or tab >>Mitochondrial Sirtuin-3 (SIRT3) Prevents Doxorubicin-Induced Dilated Cardiomyopathy by Modulating Protein Acetylation and Oxidative Stress
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2022 (English)In: Circulation Heart Failure, ISSN 1941-3289, E-ISSN 1941-3297, Vol. 15, no 5, article id e008547Article in journal (Refereed) Published
Abstract [en]

Background: High doses of doxorubicin put cancer patients at risk for developing dilated cardiomyopathy. Previously, we showed that doxorubicin treatment decreases SIRT3 (sirtuin 3), the main mitochondrial deacetylase and increases protein acetylation in rat cardiomyocytes. Here, we hypothesize that SIRT3 expression can attenuate doxorubicin induced dilated cardiomyopathy in vivo by preventing the acetylation of mitochondrial proteins. Methods: Nontransgenic, M3-SIRT3 (truncated SIRT3; short isoform), and M1-SIRT3 (full-length SIRT3; mitochondrial localized) transgenic mice were treated with doxorubicin for 4 weeks (8 mg/kg body weight per week). Echocardiography was performed to assess cardiac structure and function and validated by immunohistochemistry and immunofluorescence (n=4-10). Mass spectrometry was performed on cardiac mitochondrial peptides in saline (n=6) and doxorubicin (n=5) treated hearts. Validation was performed in doxorubicin treated primary rat and human induced stem cell derived cardiomyocytes transduced with adenoviruses for M3-SIRT3 and M1-SIRT3 and deacetylase deficient mutants (n=4-10). Results: Echocardiography revealed that M3-SIRT3 transgenic mice were partially resistant to doxorubicin induced changes to cardiac structure and function whereas M1-SIRT3 expression prevented cardiac remodeling and dysfunction. In doxorubicin hearts, 37 unique acetylation sites on mitochondrial proteins were altered. Pathway analysis revealed these proteins are involved in energy production, fatty acid metabolism, and oxidative stress resistance. Increased M1-SIRT3 expression in primary rat and human cardiomyocytes attenuated doxorubicin-induced superoxide formation, whereas deacetylase deficient mutants were unable to prevent oxidative stress. Conclusions: Doxorubicin reduced SIRT3 expression and markedly affected the cardiac mitochondrial acetylome. Increased M1-SIRT3 expression in vivo prevented doxorubicin-induced cardiac dysfunction, suggesting that SIRT3 could be a potential therapeutic target for mitigating doxorubicin-induced dilated cardiomyopathy.

Place, publisher, year, edition, pages
Ovid Technologies (Wolters Kluwer Health), 2022
Keywords
acetylation, dilated cardiomyopathy, doxorubicin, mitochondria, superoxide
National Category
Biochemistry Molecular Biology Medical Biotechnology Otorhinolaryngology
Identifiers
urn:nbn:se:kth:diva-313069 (URN)10.1161/CIRCHEARTFAILURE.121.008547 (DOI)000793999900002 ()35418250 (PubMedID)2-s2.0-85130646204 (Scopus ID)
Note

QC 20220530

Available from: 2022-05-30 Created: 2022-05-30 Last updated: 2025-02-20Bibliographically approved
Acharjee, A., Agarwal, P., Nash, K., Bano, S., Rahmans, T. & Gkoutos, G. V. (2021). Immune infiltration and prognostic and diagnostic use of LGALS4 in colon adenocarcinoma and bladder urothelial carcinoma. American Journal of Translational Research, 13(10), 11353-11363
Open this publication in new window or tab >>Immune infiltration and prognostic and diagnostic use of LGALS4 in colon adenocarcinoma and bladder urothelial carcinoma
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2021 (English)In: American Journal of Translational Research, E-ISSN 1943-8141, Vol. 13, no 10, p. 11353-11363Article in journal (Refereed) Published
Abstract [en]

Colon adenocarcinoma (COAD) is a common tumor of the gastrointestinal tract with a high mortality rate. Current research has identified many genes associated with immune infiltration that play a vital role in the development of COAD. In this study, we analysed the prognostic and diagnostic features of such immune-related genes in the context of colonic adenocarcinoma (COAD). We analysed 17 overlapping gene expression profiles of COAD and healthy samples obtained from TCGA-COAD and public single-cell sequencing resources, to identify potential therapeutic COAD targets. We evaluated the abundance of immune infiltration with those genes using the TIMER (Tumor Immune Estimation Resource) deconvolution method. Subsequently, we developed predictive and survival models to assess the prognostic value of these genes. The LGALS4 (Galectin-4) gene was found to be significantly (P<0.05) downregulated in COAD and bladder urothelial carcinoma (BLCA) compared to healthy samples. We identified LGALS4 as a prognostic and diagnostic marker for multiple cancer types, including COAD and BLCA. Our analysis reveals a series of novel candidate drug targets, as well as candidate molecular markers, that may explain the pathogenesis of COAD and BLCA. LGALS4 gene is associated with multiple cancer types and is a possible prognostic, as well as diagnostic, marker of COAD and BLCA.

Place, publisher, year, edition, pages
E-Century Publishing Corporation, 2021
Keywords
Omics integration, translational research, immune infiltration, LGALS4, biomarker, BLCA
National Category
Cancer and Oncology
Identifiers
urn:nbn:se:kth:diva-305398 (URN)000714690100006 ()34786063 (PubMedID)2-s2.0-85118398694 (Scopus ID)
Note

QC 20211202

Available from: 2021-12-02 Created: 2021-12-02 Last updated: 2023-06-29Bibliographically approved
Bisht, V., Nash, K., Xu, Y., Agarwal, P., Bosch, S., Gkoutos, G. V. & Acharjee, A. (2021). Integration of the Microbiome, Metabolome and Transcriptomics Data Identified Novel Metabolic Pathway Regulation in Colorectal Cancer. International Journal of Molecular Sciences, 22(11), Article ID 5763.
Open this publication in new window or tab >>Integration of the Microbiome, Metabolome and Transcriptomics Data Identified Novel Metabolic Pathway Regulation in Colorectal Cancer
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2021 (English)In: International Journal of Molecular Sciences, ISSN 1661-6596, E-ISSN 1422-0067, Vol. 22, no 11, article id 5763Article in journal (Refereed) Published
Abstract [en]

Integrative multiomics data analysis provides a unique opportunity for the mechanistic understanding of colorectal cancer (CRC) in addition to the identification of potential novel therapeutic targets. In this study, we used public omics data sets to investigate potential associations between microbiome, metabolome, bulk transcriptomics and single cell RNA sequencing datasets. We identified multiple potential interactions, for example 5-aminovalerate interacting with Adlercreutzia; cholesteryl ester interacting with bacterial genera Staphylococcus, Blautia and Roseburia. Using public single cell and bulk RNA sequencing, we identified 17 overlapping genes involved in epithelial cell pathways, with particular significance of the oxidative phosphorylation pathway and the ACAT1 gene that indirectly regulates the esterification of cholesterol. These findings demonstrate that the integration of multiomics data sets from diverse populations can help us in untangling the colorectal cancer pathogenesis as well as postulate the disease pathology mechanisms and therapeutic targets.

Place, publisher, year, edition, pages
MDPI AG, 2021
Keywords
microbiota, colorectal neoplasms, biomarkers, metabolomics, transcriptome, omics integration
National Category
Bioinformatics and Computational Biology
Identifiers
urn:nbn:se:kth:diva-298104 (URN)10.3390/ijms22115763 (DOI)000660158100001 ()34071236 (PubMedID)2-s2.0-85106563674 (Scopus ID)
Note

QC 20210629

Available from: 2021-06-29 Created: 2021-06-29 Last updated: 2025-02-07Bibliographically approved
Warrier, N. M., Agarwal, P. & Kumar, P. (2021). Integrative Analysis to Identify Genes Associated with Stemness and Immune Infiltration in Glioblastoma. Cells, 10(10), Article ID 2765.
Open this publication in new window or tab >>Integrative Analysis to Identify Genes Associated with Stemness and Immune Infiltration in Glioblastoma
2021 (English)In: Cells, E-ISSN 2073-4409, Vol. 10, no 10, article id 2765Article in journal (Refereed) Published
Abstract [en]

It is imperative to identify the mechanisms that confer stemness to the cancer cells for more effective targeting. Moreover, there are not many studies on the link between stemness characteristics and the immune response in tumours. Therefore, in the current study involving GBM, we started with the study of BIRC5 (one of the rare genes differentially expressed in normal and cancer cells) and CXCR4 (gene involved in the survival and proliferation of CSCs). Together, these genes have not been systematically explored. We used a set of 27 promoter methylated regions in GBM. Our analysis showed that four genes corresponding to these regions, namely EOMES, BDNF, HLA-A, and PECAM1, were involved with BIRC5 and CXCR4. Interestingly, we found EOMES to be very significantly involved in stemness and immunology and it was positively correlated to CXCR4. Additionally, BDNF, which was significant in methylation, was negatively correlated to BIRC5.

Place, publisher, year, edition, pages
MDPI AG, 2021
Keywords
integrative analysis, network analysis, DNA methylation, stemness, immune infiltration, GBM
National Category
Cancer and Oncology Cell and Molecular Biology
Identifiers
urn:nbn:se:kth:diva-305109 (URN)10.3390/cells10102765 (DOI)000716167200001 ()34685742 (PubMedID)2-s2.0-85117078176 (Scopus ID)
Note

QC 20211122

Available from: 2021-11-22 Created: 2021-11-22 Last updated: 2022-06-25Bibliographically approved
Cole, L. K., Agarwal, P., Doucette, C. A., Fonseca, M., Xiang, B., Sparagna, G. C., . . . Hatch, G. M. (2021). Tafazzin Deficiency Reduces Basal Insulin Secretion and Mitochondrial Function in Pancreatic Islets From Male Mice. Endocrinology, 162(7), Article ID bqab102.
Open this publication in new window or tab >>Tafazzin Deficiency Reduces Basal Insulin Secretion and Mitochondrial Function in Pancreatic Islets From Male Mice
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2021 (English)In: Endocrinology, ISSN 0013-7227, E-ISSN 1945-7170, Vol. 162, no 7, article id bqab102Article in journal (Refereed) Published
Abstract [en]

Tafazzin (TAZ) is a cardiolipin (CL) biosynthetic enzyme important for maintaining mitochondrial function. TAZ affects both the species and content of CL in the inner mitochondrial membrane, which are essential for normal cellular respiration. In pancreatic beta cells, mitochondrial function is closely associated with insulin secretion. However, the role of TAZ and CL in the secretion of insulin from pancreatic islets remains unknown. Male 4-month-old doxycycline-inducible TAZ knock-down (KD) mice and wild-type littermate controls were used. Immunohistochemistry was used to assess beta-cell morphology in whole pancreas sections, whereas ex vivo insulin secretion, CL content, RNA-sequencing analysis, and mitochondrial oxygen consumption were measured from isolated islet preparations. Ex vivo insulin secretion under nonstimulatory low-glucose concentrations was reduced similar to 52% from islets isolated from TAZ KD mice. Mitochondrial oxygen consumption under low-glucose conditions was also reduced similar to 58% in islets from TAZ KD animals.TAZ deficiency in pancreatic islets was associated with significant alteration in CL molecular species and elevated polyunsaturated fatty acid CL content. In addition, RNA-sequencing of isolated islets showed that TAZ KD increased expression of extracellular matrix genes, which are linked to pancreatic fibrosis, activated stellate cells, and impaired beta-cell function.These data indicate a novel role for TAZ in regulating pancreatic islet function, particularly under low-glucose conditions.

Place, publisher, year, edition, pages
The Endocrine Society, 2021
Keywords
cardiolipin, tafazzin, pancreatic islet function, insulin secretion, mitochondrial respiration
National Category
Endocrinology and Diabetes
Identifiers
urn:nbn:se:kth:diva-298556 (URN)10.1210/endocr/bqab102 (DOI)000662930100013 ()34019639 (PubMedID)2-s2.0-85108303206 (Scopus ID)
Note

QC 20210720

Available from: 2021-07-13 Created: 2021-07-13 Last updated: 2022-06-25Bibliographically approved
Warrier, N. M., Agarwal, P. & Kumar, P. (2020). Emerging Importance of Survivin in Stem Cells and Cancer: the Development of New Cancer Therapeutics. Stem Cell Reviews and Reports, 16(5), 828-852
Open this publication in new window or tab >>Emerging Importance of Survivin in Stem Cells and Cancer: the Development of New Cancer Therapeutics
2020 (English)In: Stem Cell Reviews and Reports, ISSN 2629-3269, Vol. 16, no 5, p. 828-852Article in journal (Refereed) Published
Abstract [en]

Survivin is one of the rare proteins that is differentially expressed in normal and cancer cells and is directly or indirectly involved in numerous pathways required for tumor maintenance. It is expressed in almost all cancers and its expression has been detected at early stages of cancer. These traits make survivin an exceptionally attractive target for cancer therapeutics. Even with these promising features to be an oncotherapeutic target, there has been limited success in the clinical trials targeting survivin. Only recently it has emerged that survivin was not being specifically targeted which could have resulted in the negative clinical outcome. Also, focus of research has now shifted from survivin expression in the overall heterogeneous tumor cell populations to survivin expression in cancer stem cells as these cells have proved to be the major drivers of tumors. Therefore, in this review we have analyzed the expression of survivin in normal and cancer cells with a particular focus on its expression in cancer stem cell compartment. We have discussed the major signaling pathways involved in regulation of survivin. We have explored the current development status of various types of interventions for inhibition of survivin. Furthermore, we have discussed the challenges involving the development of potent and specific survivin inhibitors for cancer therapeutics. Finally we have given insights for some of the promising future anticancer treatments.

Place, publisher, year, edition, pages
Springer, 2020
Keywords
Anticancer therapy, Cancer signaling, Cancer stem cells, Inhibitors, Survivin, 1, 4 diamino 1, 4 bis(2 aminophenylthio) 2, 3 dicyanobutadiene, 2 (2 amino 3 methoxyphenyl)chromone, 2 (2 chloro 4 iodoanilino) n cyclopropylmethoxy 3, 4 difluorobenzamide, 4 (3 bromoanilino) 6, 7 dimethoxyquinazoline, 4 (3 chloroanilino) 6, 7 dimethoxyquinazoline, 8 [4 (1 aminocyclobutyl)phenyl] 9 phenyl 1, 2, 4 triazolo[3, 4 f][1, 6]naphthyridin 3(2h) one, arctigenin, bay 11 7057, celecoxib, curcumin, etodolac, flavopiridol, gefitinib, idasanutlin, lapatinib, limonoid, mithramycin, monoclonal antibody, n tert butyl 3 [5 methyl 2 [4 (4 methyl 1 piperazinyl)phenylamino] 4 pyrimidinylamino]benzenesulfonamide, nanoparticle, nutlin 3, prodigiosin, resveratrol, salinomycin, sepantronium bromide, tolfenamic acid, trastuzumab, unclassified drug, unindexed drug, vasculotropin, antiapoptotic activity, cancer immunotherapy, cancer recurrence, cancer stem cell, cancer therapy, cell cycle phase, cell cycle progression, cell cycle regulation, cell differentiation, cell proliferation, cell reprogramming technique, chemoradiotherapy, chemosensitivity, DNA damage, DNA fragmentation, drug delivery system, embryonic stem cell, enzyme inhibition, flow cytometry, gene expression regulation, gene overexpression, gene repression, human, immune response, major histocompatibility complex, mitosis inhibition, molecularly targeted therapy, nonhuman, oncolytic virotherapy, priority journal, protein expression, protein function, protein structure, Review, ribozyme therapy, RNAi therapeutics, sequence analysis, signal transduction, stem cell self-renewal, transcription termination, upregulation
National Category
Cancer and Oncology
Identifiers
urn:nbn:se:kth:diva-286560 (URN)10.1007/s12015-020-09995-4 (DOI)000550680100001 ()32691369 (PubMedID)2-s2.0-85088265224 (Scopus ID)
Note

QC 20201214

Available from: 2020-12-14 Created: 2020-12-14 Last updated: 2024-03-18Bibliographically approved
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Identifiers
ORCID iD: ORCID iD iconorcid.org/0000-0003-1813-7606

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