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Sri Harika Pamarthi

Explore the profile of Sri Harika Pamarthi including associated specialties, affiliations and a list of published articles. Areas
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Articles 9
Citations 137
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Recent Articles
1.
Piamsiri C, Fefelova N, Pamarthi S, Gwathmey J, Chattipakorn S, Chattipakorn N, et al.
Biomolecules . 2024 Oct; 14(10). PMID: 39456267
Inositol 1,4,5-trisphosphate receptors (IPRs) play a crucial role in maintaining intracellular/cytosolic calcium ion (Ca) homeostasis. The release of Ca from IPRs serves as a second messenger and a modulatory factor...
2.
Fefelova N, Wongjaikam S, Pamarthi S, Siri-Angkul N, Comollo T, Kumari A, et al.
Basic Res Cardiol . 2023 May; 118(1):21. PMID: 37227592
Iron overload associated cardiac dysfunction remains a significant clinical challenge whose underlying mechanism(s) have yet to be defined. We aim to evaluate the involvement of the mitochondrial Ca uniporter (MCU)...
3.
Xie L, Fefelova N, Pamarthi S, Gwathmey J
Cells . 2022 Sep; 11(17). PMID: 36078133
Ferroptosis has recently been demonstrated to be a novel regulated non-apoptotic cell death characterized by iron-dependence and the accumulation of lipid peroxidation that results in membrane damage. Excessive iron induces...
4.
Romagano M, Sherman L, Shadpoor B, El-Far M, Souayah S, Pamarthi S, et al.
Stem Cell Rev Rep . 2022 Jul; 18(8):3066-3082. PMID: 35908144
Preeclampsia (PE) is a pregnancy-specific disease, occurring in ~ 2-10% of all pregnancies. PE is associated with increased maternal and perinatal morbidity and mortality, hypertension, proteinuria, disrupted artery remodeling, placental...
5.
Moore C, Ferrer A, Alonso S, Pamarthi S, Sandiford O, Rameshwar P
Adv Exp Med Biol . 2021 Dec; 1350:67-89. PMID: 34888844
The bone marrow (BM) is a complex organ that sustains hematopoiesis via mechanisms involving the microenvironment. The microenvironment includes several cell types, neurotransmitters from innervated fibers, growth factors, extracellular matrix...
6.
Greco S, Ayer S, Guiro K, Sinha G, Donnelly R, El-Far M, et al.
Aging (Albany NY) . 2021 Nov; 13(21):23981-24016. PMID: 34762598
This study addresses the potential to reverse age-associated morbidity by establishing methods to restore the aged hematopoietic system. Parabiotic animal models indicated that young secretome could restore aged tissues, leading...
7.
Sinha G, Ferrer A, Ayer S, El-Far M, Pamarthi S, Naaldijk Y, et al.
Life Sci Alliance . 2021 Jun; 4(7). PMID: 34078741
The challenge for treating breast cancer (BC) is partly due to long-term dormancy driven by cancer stem cells (CSCs) capable of evading immune response and resist chemotherapy. BC cells show...
8.
Sandiford O, Donnelly R, El-Far M, Burgmeyer L, Sinha G, Pamarthi S, et al.
Cancer Res . 2021 Jan; 81(6):1567-1582. PMID: 33500249
In the bone marrow (BM), breast cancer cells (BCC) can survive in dormancy for decades as cancer stem cells (CSC), resurging as tertiary metastasis. The endosteal region where BCCs exist...
9.
Munoz J, Walker N, Mareedu S, Pamarthi S, Sinha G, Greco S, et al.
Front Pharmacol . 2019 Mar; 10:134. PMID: 30853911
Glioblastoma multiforme (GBM) is a fatal malignancy of the central nervous system, commonly associated with chemoresistance. The alkylating agent Temozolomide (TMZ) is the front-line chemotherapeutic agent and has undergone intense...