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Biomedical subjects

Bryan Jones

Publications and source records attributed to Bryan Jones.

4 recordsLinked to original sources

Single-cell profiling of trabecular meshwork identifies mitochondrial dysfunction in a glaucoma model that is protected by vitamin B3 treatment.

Since the trabecular meshwork (TM) is central to intraocular pressure (IOP) regulation and glaucoma, a deeper understanding of its genomic landscape is needed. We present a multimodal, single-cell resolution analysis of mouse limbal cells (includes TM). In total, we sequenced 9,394 wild-type TM cell transcriptomes. We discovered three TM cell subtypes with characteristic signature genes validated by immunofluorescence on tissue sections and whole-mounts. The subtypes are robust, being detected in datasets for two diverse mouse strains and in independent data from two institutions. Results show compartmentalized enrichment of critical pathways in specific TM cell subtypes. Distinctive signatures include increased expression of genes responsible for 1) extracellular matrix structure and metabolism (TM1 subtype), 2) secreted ligand signaling to support Schlemm's canal cells (TM2), and 3) contractile and mitochondrial/metabolic activity (TM3). ATAC-sequencing data identified active transcription factors in TM cells, including LMX1B. Mutations in LMX1B cause high IOP and glaucoma. LMX1B is emerging as a key transcription factor for normal mitochondrial function and its expression is much higher in TM3 cells than other limbal cells. To understand the role of LMX1B in TM function and glaucoma, we single-cell sequenced limbal cells from Lmx1b V265D/+ mutant mice (2,491 TM cells). In V265D/+ mice, TM3 cells were uniquely affected by pronounced mitochondrial pathway changes. Mitochondria in TM cells of V265D/+ mice are swollen with a reduced cristae area, further supporting a role for mitochondrial dysfunction in the initiation of IOP elevation in these mice. Importantly, treatment with vitamin B3 (nicotinamide), to enhance mitochondrial function and metabolic resilience, significantly protected Lmx1b mutant mice from IOP elevation.

Journal Article↗

Social discounting.

The amount of money a person was willing to forgo in order to give 75 dollars to another person decreased as a hyperbolic function of the perceived social distance between them. Similar hyperbolic functions have previously been shown to describe both time and probability discounting.

Adult↗

Trauma center resource consumption and mortality.

Studies suggesting that increased trauma center (TC) patient volume leads to improved patient outcomes have produced inconsistent results. It is possible that the combination of TC patient volume and TC resources has a greater influence over outcomes than TC volume alone. Patients admitted to 131 TCs from 1994 to 2002 were included. TC density was calculated as the ratio of TC adult beds to patient volume and categorized into quartiles. Adjusted risk ratios (RRs) and 95 per cent confidence intervals (CIs) compared mortality of groups (Q1 [low density]-Q4 [high density]). Relative to Q4 TCs, for penetrating injuries with ISS < 15, elevated mortality was seen for Q2 (low-moderate density) TCs (RR 1.47, CI 1.09-1.99) and Q3 (high-moderate density) TCs (RR 1.81, CI 1.36-2.41); but for ISS > or = 15, mortality was lowest for Q1 (RR 0.78, CI 0.68-0.89). For blunt injury, mortality was similar for low- and high-density TCs but elevated for low-moderate- and high-moderate-density TCs. Mortality at low-density TCs was decreased overall and for penetrating injuries specifically but similar for blunt injuries when compared with high-density TCs. Enhanced resources measurements will clarify the relationship between patient volume, resources, and mortality.

Adolescent↗

Influence of control variables on mannequin temperature in a paediatric operating theatre.

BACKGROUND: Core temperature drops in all children having general anaesthesia. Convection heating may be useful, but its effectiveness in the paediatric setting is not established. Additionally, its utility in many paediatric situations is limited by blanket design. METHODS: Using a mannequin model in a sham operation, we assessed the likely safety and effectiveness of a draping technique in association with a 'Bair Hugger' and a heat dissipation unit (HDU). In Part 1 of the study, the influence of ambient temperature was assessed. In Part 2, a simulated laparotomy was set up and a more detailed assessment of air temperatures around the mannequin was made. In addition, the effect of a change in the HDU design was assessed. RESULTS: Part 1: the technique achieved 'near-plateau' temperature within 5-10 min. A difference of 8 degrees C in ambient temperature (between 18 and 26 degrees C) translated only to a 2-3 degrees C difference under the drapes. Part 2: the technique produced sidestream cooler zones at the head and shoulders. Air temperature at these sites was 28-34 degrees C, whereas at other points (irrespective of their distance from the heat source), it was 37-40 degrees C. Warm air reached sufficient skin sites to anticipate adequate heat transfer in the clinical situation. Air temperature at 'skin' surface stayed below 40 degrees C over the 90-min study period. CONCLUSIONS: A customized HDU used in association with a 'Bair Hugger' unit and a careful surgical draping technique provides stable, safe and consistent air temperatures around a mannequin. Net heat gain by a child's body should occur with this arrangement. Further evaluation in a clinical study is underway.

Anesthesia, General↗