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Articles 1 - 4 of 4
Full-Text Articles in Immunopathology
Complement Propagates Visual System Pathology After Traumatic Brain Injury, Davis Marchant Borucki
Complement Propagates Visual System Pathology After Traumatic Brain Injury, Davis Marchant Borucki
MUSC Theses and Dissertations
Background: Traumatic brain injury is associated with the development of visual system disorders, including deficits in visual acuity. Visual deficits can present with delay and worsen over time, suggesting that ongoing neuroinflammatory changes contribute to their development and progression. Complement activation is strongly associated with the neuroinflammatory response after TBI and has been shown to contribute to neuronal and synaptic loss. However, the contributions of complement activation after TBI to vision loss remains unclear.
Methods: We employed an open skull controlled cortical impact model of traumatic brain injury in adult male mice to study how TBI affects vision. Animals were …
Pharmacodynamic Effects Of Zsj-0228 On Complement Protein Deposition In The Kidneys Of Focal Segmental Glomerulosclerosis-Afflicted Mice., Braeden Pinkerton
Pharmacodynamic Effects Of Zsj-0228 On Complement Protein Deposition In The Kidneys Of Focal Segmental Glomerulosclerosis-Afflicted Mice., Braeden Pinkerton
Theses & Dissertations
Chronic inflammation, when left untreated, may result in significant morbidity and in severe cases, mortality. While glucocorticoids (GCs) are still being extensively used clinically as a class of very potent anti-inflammatory agents, they are also notorious for diverse adverse side effects. To mitigate these side effects, we have developed a polyethylene glycol (PEG)-based prodrug (ZSJ-0228) of dexamethasone (Dex). When tested on rodent models of Lupus Nephritis and Focal Segmental Glomerulosclerosis (FSGS), ZSJ-0228 was found to provide potent and sustained therapeutic efficacy without any detectable typical GC-associated side effects. Given ZSJ-0228’s transient renal exposure after systemic administration, it is yet to …
The Role Of Complement In Stroke And Traumatic Brain Injury, Christine Couch
The Role Of Complement In Stroke And Traumatic Brain Injury, Christine Couch
MUSC Theses and Dissertations
Brain and neural injury are a non-specific disease category that includes traumatic brain injury (TBI) and stroke. Both TBI and stroke are common, costly, and leading causes of severe disability in adults. Both stroke and TBI are responsible for substantial disability in working age adults, with stroke being the second leading cause of death worldwide [1] and TBI a major cause of disability in people younger than their 40's [2]. The immune response after brain injury is multifactorial and involves both local and systemic events at the cellular and molecular level. The complement system is a component of both the …
Comparison Of Anti-Pneumococcal Functions Of Native And Modified Forms Of C-Reactive Protein, Donald Neba Ngwa
Comparison Of Anti-Pneumococcal Functions Of Native And Modified Forms Of C-Reactive Protein, Donald Neba Ngwa
Electronic Theses and Dissertations
The anti-pneumococcal function of native C-reactive protein (CRP) involves its binding to phosphocholine molecules present on Streptococcus pneumoniae and subsequent activation of the complement system. However, when pneumococci recruit complement inhibitory protein factor H on their surface, they escape complement attack. Non-native forms of CRP have been shown to bind immobilized factor H. Accordingly, we hypothesized that modified CRP would bind to factor H on pneumococci, masking its complement inhibitory activity, allowing native CRP to exert its anti-pneumococcal function. As reported previously, native CRP protected mice from lethal pneumococcal infection when injected 30 minutes before infection but not when injected …