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Mahmud, S.

Publications and source records attributed to Mahmud, S..

2 recordsLinked to original sources

Quantifying Epithelial Plasticity as a Platform to Reverse Epithelial Injury

Epithelial surfaces lining the lung serve as the primary environmental gaseous interface, and are subject to common life-limiting diseases, including COPD (Chronic Obstructive Pulmonary Disease). Despite the critical role of epithelial cells in pulmonary health and disease, quantitative models are lacking but are required given the large patient to patient variability to characterize the epithelial plasticity that follows injury. We have identified a series of assessments to quantitatively identify the changes that occur in the epithelium and to identify targets that reverse injury. The injured epithelium has decreased ciliary function and monolayer height, which in the case of cells derived from COPD patients results in an overall disorganization of structure. Injury causes the cells to shift to an unjammed state, with corresponding increases in the velocity correlation length implicating cell shape and stiffness as fundamental to the injury response. Specific inhibitors of actin polymerization (LatA), of MAPK/ERK kinase (U0126) and Nrf-2 pathway activation (CDDO-Me) push the epithelium back towards a jammed state with decreased cell movement and correlation length, as well as improve barrier function and CBF. These studies attest to cell intrinsic properties that allow for a transition to an unjammed state, and that quantitative phenotypic analysis can identify potential specific pharmacologic targets in a given patient and provide insight into basic mechanisms of cellular damage. One Sentence SummaryEnvironmental toxins undermine tissue integrity by manipulating transitions from jammed to unjammed states, thereby mimicking or inducing disease.

cell biology

Evaluation of the impact of Shigella virulence genes on the basis of clinical features observed in patients with shigellosis

Shigella is still attributable to nearly 164,300 deaths annually, mostly in sub-Saharan Africa and South Asian young children, remaining as a major public health threat, especially in the developing countries. Our goal was to study the association between Shigella virulence genes and clinical features observed in shigellosis. Therefore, 61 S. flexneri strains were investigated, isolated from patients from a tertiary level facility in Bangladesh between 2009 to 2013. Subsequently, the presence of 140 MDa large virulence plasmid (p140), virulence (ipaH, ial), toxin (set, sen) and T3SS related genes (virB, ipaBCD, ipgC, ipgB1, ipgA, icsB, ipgD, ipgE, ipgF, mxiH, mxiI, mxiK, mxiE, mxiC, spa15, spa47, spa32 and spa24) were evaluated. p140 was found in 79% (n=48) cases. ipaBCD was found in 90% (n=55) strains, while seven of them were missing p140. However, ial was found in 89% isolates, and ipgC and ipgE in 85% cases. The prevalence of the rest of the genes was less than 85%. These findings were then compared against the clinical features of each of the corresponding pathogens, and several statistically significant correlations were observed (all p<0.05). Briefly, the enterotoxin genes (set, sen) and another virulence gene (ial) were found significantly associated with several clinical features of shigellosis, including bloody mucoid stool, rectal straining, fever, and abdominal pain. Our findings reiterate that the diarrheal disease severity is significantly associated with the enterotoxin producing Shigella infection, also suggesting that the T3SS related virulence genes might be translocated elsewhere other than the 140 MDa large virulence plasmid.

microbiology