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Rishabh C Choudhary

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Articles 26
Citations 142
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Recent Articles
1.
Morales L, Miyara S, Guevara S, Metz C, Shoaib M, Watt S, et al.
Int J Angiol . 2024 Nov; 33(4):318-321. PMID: 39502356
We describe the clinical course of a 65-year-old male patient who suffered from hydrocarbon-induced myelodysplasia and was successfully treated with the thrombopoietin receptor agonist (TPO-RA), romiplostim. Myelodysplastic syndromes (MDS) are...
2.
Miyara S, Shinozaki K, Hayashida K, Shoaib M, Choudhary R, Zafeiropoulos S, et al.
Biomedicines . 2024 Aug; 12(8). PMID: 39200170
The close interaction between neurons and astrocytes has been extensively studied. However, the specific behavior of these cells after ischemia-reperfusion injury and hypothermia remains poorly characterized. A growing body of...
3.
Choudhary R, Kuschner C, Kazmi J, Mcdevitt L, Espin B, Essaihi M, et al.
Int J Mol Sci . 2024 May; 25(9). PMID: 38731864
The human brain possesses three predominate phospholipids, phosphatidylcholine (PC), phosphatidylethanolamine (PE) and phosphatidylserine (PS), which account for approximately 35-40%, 35-40%, and 20% of the brain's phospholipids, respectively. Mitochondrial membranes are...
4.
Lee J, Shoaib M, Choi J, Choudhary R, Yin T, Yoon N, et al.
J Pharm Anal . 2024 Apr; 14(3):427-430. PMID: 38618246
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5.
Nishikimi M, Choudhary R, Shoaib M, Yagi T, Becker L, Kim J
Int J Mol Sci . 2023 Dec; 24(24). PMID: 38139279
Lysophosphatidic acid (LPA) serves as a fundamental constituent of phospholipids. While prior studies have shown detrimental effects of LPA in a range of pathological conditions, including brain ischemia, no studies...
6.
Guevara S, Miyara S, Aronsohn J, Homsi J, McCann-Molmenti A, Mumford J, et al.
Int J Angiol . 2023 Nov; 32(4):262-268. PMID: 37927847
This case study describes a 45-year-old Caucasian male with a past medical history of obesity, hypertension, and non-insulin-dependent diabetes mellitus, who in the setting of coronavirus disease 2019 (COVID-19) pneumonia,...
7.
Shoaib M, Kim N, Choudhary R, Espin B, Nishikimi M, Iverson A, et al.
Free Radic Res . 2023 Aug; 57(5):384-394. PMID: 37642450
Oxidative stress is believed to be a major cause of injury after cardiac arrest (CA). While the effects of ROS generated within tissues have been extensively investigated, the potential of...
8.
Choudhary R, Shoaib M, Hayashida K, Yin T, Miyara S, dAbramo C, et al.
Cells . 2023 Jun; 12(11). PMID: 37296668
Background: Cardiac arrest (CA) can lead to neuronal degeneration and death through various pathways, including oxidative, inflammatory, and metabolic stress. However, current neuroprotective drug therapies will typically target only one...
9.
Aoki T, Wong V, Endo Y, Hayashida K, Takegawa R, Shoaib M, et al.
FASEB J . 2023 May; 37(7):e23001. PMID: 37249913
Cardiac arrest (CA) and concomitant post-CA syndrome lead to a lethal condition characterized by systemic ischemia-reperfusion injury. Oxygen (O ) supply during cardiopulmonary resuscitation (CPR) is the key to success...
10.
Silva Jr M, Shoaib M, Miyara S, Guevara S, McCann-Molmenti A, Silva H, et al.
Int J Angiol . 2023 May; 32(2):128-130. PMID: 37207015
Organ transplantation can be associated with vascular torsions and angulations of both recipient and donor vessels. Such kinks and/or torsions of vessels can compromise the vascular integrity, obstruct inflow and/or...