Open Access. Powered by Scholars. Published by Universities.®

Wounds and Injuries Commons™

Open Access. Powered by Scholars. Published by Universities.®

Articles 1 - 8 of 8

Full-Text Articles in Wounds and Injuries

Increased Intermembrane Space [Ca2+] Drives Mitochondrial Structural Damage In Cpvt, Shanna Hamilton, Radmila Terentyeva, Roland Veress, Fruzsina Perger, Zuzana Nichtova, Mark Bannister, Jinxi Wang, Sage Quiggle, Rachel Battershell, Matthew Gorr, Sandor Györke, Bum-Rak Choi, Christopher George, Andriy Belevych, György Csordás, Dmitry Terentyev Dec 2025

Increased Intermembrane Space [Ca2+] Drives Mitochondrial Structural Damage In Cpvt, Shanna Hamilton, Radmila Terentyeva, Roland Veress, Fruzsina Perger, Zuzana Nichtova, Mark Bannister, Jinxi Wang, Sage Quiggle, Rachel Battershell, Matthew Gorr, Sandor Györke, Bum-Rak Choi, Christopher George, Andriy Belevych, György Csordás, Dmitry Terentyev

Department of Pathology, Anatomy, and Cell Biology Faculty Papers

BACKGROUND: Mitochondrial dysfunction caused by abnormally high RyR2 (ryanodine receptor) activity is a common finding in cardiovascular diseases. Mechanisms linking RyR2 gain of function with mitochondrial remodeling remain elusive. We hypothesized that RyR2 hyperactivity in cardiac disease increases [Ca 2+ ] in the mitochondrial intermembrane space (IMS) and activates the Ca 2+ -sensitive protease calpain, driving remodeling of mitochondrial cristae architecture through cleavage of structural protein OPA1 (optic atrophy protein 1).

METHODS: We generated a highly arrhythmogenic rat model of catecholaminergic polymorphic ventricular tachycardia, induced by RyR2 gain-of-function mutation S2236L(Ser2336Leu)(+/-) . We created a new biosensor to measure IMS-[Ca2+ ] …


Mitochondrial-Targeted Therapies In Traumatic Brain Injury: From Bench To Bedside, Sidra Tabassum, Silin Wu, Chang-Hun Lee, Bosco Seong Kyu Yang, Aaron M Gusdon, Huimahn A Choi, Xuefang S Ren Jan 2025

Mitochondrial-Targeted Therapies In Traumatic Brain Injury: From Bench To Bedside, Sidra Tabassum, Silin Wu, Chang-Hun Lee, Bosco Seong Kyu Yang, Aaron M Gusdon, Huimahn A Choi, Xuefang S Ren

Faculty, Staff and Student Publications

Traumatic brain injury (TBI) is a leading cause of morbidity and mortality worldwide, with limited effective therapeutic options currently available. Recent research has highlighted the pivotal role of mitochondrial dysfunction in the pathophysiology of TBI, making mitochondria an attractive target for therapeutic intervention. This review comprehensively examines advancements in mitochondrial-targeted therapies for TBI, bridging the gap from basic research to clinical applications. We discuss the underlying mechanisms of mitochondrial damage in TBI, including oxidative stress, impaired bioenergetics, mitochondrial dynamics, and apoptotic pathways. Furthermore, we highlight the complex interplay between mitochondrial dysfunction, inflammation, and blood-brain barrier (BBB) integrity, elucidating how these …


Autologous Bone Marrow Mononuclear Cells To Treat Severe Traumatic Brain Injury In Children, Charles S Cox, David M Notrica, Jenifer Juranek, Jeffrey H Miller, Fabio Triolo, Steven Kosmach, Sean I Savitz, P David Adelson, Claudia Pedroza, Scott D Olson, Michael C Scott, Akshita Kumar, Benjamin M Aertker, Henry W Caplan, Margaret L Jackson, Brijesh S Gill, Robert A Hetz, Michael S Lavoie, Linda Ewing-Cobbs May 2024

Autologous Bone Marrow Mononuclear Cells To Treat Severe Traumatic Brain Injury In Children, Charles S Cox, David M Notrica, Jenifer Juranek, Jeffrey H Miller, Fabio Triolo, Steven Kosmach, Sean I Savitz, P David Adelson, Claudia Pedroza, Scott D Olson, Michael C Scott, Akshita Kumar, Benjamin M Aertker, Henry W Caplan, Margaret L Jackson, Brijesh S Gill, Robert A Hetz, Michael S Lavoie, Linda Ewing-Cobbs

Faculty, Staff and Student Publications

Autologous bone marrow mononuclear cells (BMMNCs) infused after severe traumatic brain injury have shown promise for treating the injury. We evaluated their impact in children, particularly their hypothesized ability to preserve the blood–brain barrier and diminish neuroinflammation, leading to structural CNS preservation with improved outcomes.

We performed a randomized, double-blind, placebo-sham-controlled Bayesian dose-escalation clinical trial at two children's hospitals in Houston, TX and Phoenix, AZ, USA (NCT01851083). Patients 5–17 years of age with severe traumatic brain injury (Glasgow Coma Scale score ≤ 8) were randomized to BMMNC or placebo (3:2). Bone marrow harvest, cell isolation and infusion were …


Oxidized Activated Charcoal Nanozymes: Synthesis, And Optimization For In Vitro And In Vivo Bioactivity For Traumatic Brain Injury, Emily A Mchugh, Anton V Liopo, Kimberly Mendoza, Claudia S Robertson, Gang Wu, Zhe Wang, Weiyin Chen, Jacob L Beckham, Paul J Derry, Thomas A Kent, James M Tour Mar 2024

Oxidized Activated Charcoal Nanozymes: Synthesis, And Optimization For In Vitro And In Vivo Bioactivity For Traumatic Brain Injury, Emily A Mchugh, Anton V Liopo, Kimberly Mendoza, Claudia S Robertson, Gang Wu, Zhe Wang, Weiyin Chen, Jacob L Beckham, Paul J Derry, Thomas A Kent, James M Tour

Faculty, Staff and Student Publications

Carbon-based superoxide dismutase (SOD) mimetic nanozymes have recently been employed as promising antioxidant nanotherapeutics due to their distinct properties. The structural features responsible for the efficacy of these nanomaterials as antioxidants are, however, poorly understood. Here, the process-structure-property-performance properties of coconut-derived oxidized activated charcoal (cOAC) nano-SOD mimetics are studied by analyzing how modifications to the nanomaterial's synthesis impact the size, as well as the elemental and electrochemical properties of the particles. These properties are then correlated to the in vitro antioxidant bioactivity of poly(ethylene glycol)-functionalized cOACs (PEG-cOAC). Chemical oxidative treatment methods that afford smaller, more homogeneous cOAC nanoparticles with higher …


Green Synthesis Of Zinc Oxide Nanoparticles From Althaea Officinalis Flower Extract Coated With Chitosan For Potential Healing Effects On Diabetic Wounds By Inhibiting Tnf-Α And Il-6/Il-1Β Signaling Pathways, Sammar Fathy Elhabal, Nashwa Abdelaal, Saeed Abdul Kareem Saeed Al-Zuhairy, Mohamed Fathi Mohamed Elrefai, Ahmed Mohsen Elsaid Hamdan, Mohamed Mansour Khalifa, Sandra Hababeh, Mohammad Ahmad Khasawneh, Gehad M Khamis, Jakline Nelson, Passant M Mohie, Rania A Gad, Amira Rizk, Soad L Kabil, Mohamed Kandeel El-Ashery, Bhaskara R Jasti, Nahla A Elzohairy, Tayseer Elnawawy, Fatma E Hassan, Mohamed A El-Nabarawi Jan 2024

Green Synthesis Of Zinc Oxide Nanoparticles From Althaea Officinalis Flower Extract Coated With Chitosan For Potential Healing Effects On Diabetic Wounds By Inhibiting Tnf-Α And Il-6/Il-1Β Signaling Pathways, Sammar Fathy Elhabal, Nashwa Abdelaal, Saeed Abdul Kareem Saeed Al-Zuhairy, Mohamed Fathi Mohamed Elrefai, Ahmed Mohsen Elsaid Hamdan, Mohamed Mansour Khalifa, Sandra Hababeh, Mohammad Ahmad Khasawneh, Gehad M Khamis, Jakline Nelson, Passant M Mohie, Rania A Gad, Amira Rizk, Soad L Kabil, Mohamed Kandeel El-Ashery, Bhaskara R Jasti, Nahla A Elzohairy, Tayseer Elnawawy, Fatma E Hassan, Mohamed A El-Nabarawi

Faculty, Staff and Students Publications

BACKGROUND: Diabetes Mellitus is a multisystem chronic pandemic, wound inflammation, and healing are still major issues for diabetic patients who may suffer from ulcers, gangrene, and other wounds from uncontrolled chronic hyperglycemia.

METHOD AND RESULTS: First, develop eco-friendly green Zinc Oxide Nanoparticles (ZnO-NPs) and incorporate them into a 2% chitosan (CS) gel. In-vitro study performed by UV-visible spectrum analysis showed a sharp peak at 390 nm, and Energy-dispersive X-ray (EDX) spectrometry showed a peak of zinc and oxygen. Besides, Fourier transforms infrared (FTIR) was used to qualitatively validate biosynthesized ZnO-NPs, and transmission electron microscope (TEM) showed spherical nanoparticles with mean …


Pet Imaging Of Microglia Using Pbr28suv Determines Therapeutic Efficacy Of Autologous Bone Marrow Mononuclear Cells Therapy In Traumatic Brain Injury, Supinder S Bedi, Michael C Scott, Max A Skibber, Akshita Kumar, Henry W Caplan, Hasen Xue, David Sequeira, Alison L Speer, Fanni Cardenas, Franciska Gudenkauf, Karen Uray, Amit K Srivastava, Alan R Prossin, Charles S Cox Sep 2023

Pet Imaging Of Microglia Using Pbr28suv Determines Therapeutic Efficacy Of Autologous Bone Marrow Mononuclear Cells Therapy In Traumatic Brain Injury, Supinder S Bedi, Michael C Scott, Max A Skibber, Akshita Kumar, Henry W Caplan, Hasen Xue, David Sequeira, Alison L Speer, Fanni Cardenas, Franciska Gudenkauf, Karen Uray, Amit K Srivastava, Alan R Prossin, Charles S Cox

Faculty, Staff and Student Publications

Traumatic brain injury (TBI) results in activated microglia. Activated microglia can be measured in vivo by using positron emission topography (PET) ligand peripheral benzodiazepine receptor standardized uptake values (PBR28suv). Cell based therapies have utilized autologous bone marrow mononuclear cells (BMMNCs) to attenuate activated microglia after TBI. This study aims to utilize in vivo PBR28suv to assess the efficacy of BMMNCs therapy after TBI. Seventy-two hours after CCI injury, BMMNCs were harvested from the tibia and injected via tail-vein at 74 h after injury at a concentration of 2 million cells per kilogram of body weight. There were three groups of …


Endogenous Interleukin-10 Contributes To Wound Healing And Regulates Tissue Repair, Walker D Short, Meredith Rae, Thomas Lu, Benjamin Padon, Tanuj J Prajapati, Fayiz Faruk, Oluyinka O Olutoye, Ling Yu, Paul Bollyky, Sundeep G Keswani, Swathi Balaji May 2023

Endogenous Interleukin-10 Contributes To Wound Healing And Regulates Tissue Repair, Walker D Short, Meredith Rae, Thomas Lu, Benjamin Padon, Tanuj J Prajapati, Fayiz Faruk, Oluyinka O Olutoye, Ling Yu, Paul Bollyky, Sundeep G Keswani, Swathi Balaji

Faculty, Staff and Students Publications

INTRODUCTION: Interleukin-10 (IL-10) is essential in fetal regenerative wound healing and likewise promotes a regenerative phenotype in adult dermal wounds. However, the role of endogenous IL-10 in postnatal dermal wound healing is not well-established. We sought to determine the function of endogenous IL-10 in murine full thickness excisional wounds that are splinted to prevent contracture and mimic human patterns of wound closure.

METHODS: Full-thickness excisional wounds were made in wildtype (WT) and IL-10

RESULTS: We observed no difference in wound healing rate between WT and IL-10

CONCLUSIONS: These data suggest that endogenous IL-10 expression does not alter closure of full …


Small Molecule Targeting Nav17 Via Inhibition Of The Crmp2-Ubc9 Interaction Reduces Pain In Chronic Constriction Injury (Cci) Rats, Jiahe Li, Harrison J Stratton, Sabina A Lorca, Peter M Grace, Rajesh Khanna Dec 2022

Small Molecule Targeting Nav17 Via Inhibition Of The Crmp2-Ubc9 Interaction Reduces Pain In Chronic Constriction Injury (Cci) Rats, Jiahe Li, Harrison J Stratton, Sabina A Lorca, Peter M Grace, Rajesh Khanna

Faculty, Staff and Student Publications

The voltage-gated sodium channel isoform NaV1.7 is a critical player in the transmission of nociceptive information. This channel has been heavily implicated in human genetic pain disorders and is a validated pain target. However, targeting this channel directly has failed, and an indirect approach - disruption of interactions with accessory protein partners - has emerged as a viable alternative strategy. We recently reported that a small-molecule inhibitor of CRMP2 SUMOylation, compound