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1.
Front Immunol ; 15: 1372957, 2024.
Article in English | MEDLINE | ID: mdl-38779688

ABSTRACT

Background: Schistosomiasis is a common cause of pulmonary hypertension (PH) worldwide. Type 2 inflammation contributes to the development of Schistosoma-induced PH. Specifically, interstitial macrophages (IMs) derived from monocytes play a pivotal role by producing thrombospondin-1 (TSP-1), which in turn activates TGF-ß, thereby driving the pathology of PH. Resident and recruited IM subpopulations have recently been identified. We hypothesized that in Schistosoma-PH, one IM subpopulation expresses monocyte recruitment factors, whereas recruited monocytes become a separate IM subpopulation that expresses TSP-1. Methods: Mice were intraperitoneally sensitized and then intravenously challenged with S. mansoni eggs. Flow cytometry on lungs and blood was performed on wildtype and reporter mice to identify IM subpopulations and protein expression. Single-cell RNA sequencing (scRNAseq) was performed on flow-sorted IMs from unexposed and at day 1, 3 and 7 following Schistosoma exposure to complement flow cytometry based IM characterization and identify gene expression. Results: Flow cytometry and scRNAseq both identified 3 IM subpopulations, characterized by CCR2, MHCII, and FOLR2 expression. Following Schistosoma exposure, the CCR2+ IM subpopulation expanded, suggestive of circulating monocyte recruitment. Schistosoma exposure caused increased monocyte-recruitment ligand CCL2 expression in the resident FOLR2+ IM subpopulation. In contrast, the vascular pathology-driving protein TSP-1 was greatest in the CCR2+ IM subpopulation. Conclusion: Schistosoma-induced PH involves crosstalk between IM subpopulations, with increased expression of monocyte recruitment ligands by resident FOLR2+ IMs, and the recruitment of CCR2+ IMs which express TSP-1 that activates TGF-ß and causes PH.


Subject(s)
Hypertension, Pulmonary , Macrophages , Animals , Hypertension, Pulmonary/etiology , Hypertension, Pulmonary/parasitology , Hypertension, Pulmonary/immunology , Hypertension, Pulmonary/pathology , Mice , Macrophages/immunology , Macrophages/parasitology , Phenotype , Schistosoma mansoni/immunology , Mice, Inbred C57BL , Schistosomiasis/immunology , Schistosomiasis/complications , Schistosomiasis/parasitology , Disease Models, Animal , Schistosomiasis mansoni/immunology , Schistosomiasis mansoni/parasitology , Schistosomiasis mansoni/complications , Schistosomiasis mansoni/pathology , Thrombospondin 1/genetics , Thrombospondin 1/metabolism , Monocytes/immunology , Receptors, CCR2/genetics , Receptors, CCR2/metabolism , Female , Schistosoma/immunology , Schistosoma/physiology , Lung/immunology , Lung/parasitology , Lung/pathology
2.
Pulm Circ ; 14(1): e12336, 2024 Jan.
Article in English | MEDLINE | ID: mdl-38312832

ABSTRACT

Whether all Schistosoma species cause pulmonary hypertension (PH) is unclear. Experimentally exposing mice to Schistosoma haematobium eggs caused PH, which was less severe than that induced by S. mansoni exposure. These findings align with the relatively uncommon reports of pulmonary arterial hypertension associated with S. haematobium.

3.
Surg Endosc ; 38(1): 426-436, 2024 01.
Article in English | MEDLINE | ID: mdl-37985488

ABSTRACT

INTRODUCTION: Gas leaks polluting the operating room are common in laparoscopy. Studies defining methods for sensitive leak characterisation and mechanical mitigation in real world settings are, however, lacking. METHODS: Mobile optical gas imagers (both a miniaturised Schlieren system and sensitive tripod-mounted near-infrared carbon dioxide camera (GF343, FLIR)) prospectively defined trocar-related gas leaks occurring either spontaneously or with instrumentation during planned laparoscopic surgery at three hospitals. A boutique Matlab-based analyser using sequential frame subtraction categorised leaks (class 0-no observable leak; class 1-marginally detectable leak; class 2-short-lived plume; class 3-energetic, turbulent jet). Concurrently, the usefulness of a novel vacuum-ring device (LeakTrap™, Palliare, Ireland) designed as a universal adjunct for existing standard laparoscopic ports at both abdominal wall and port valve level was determined similarly in a phase I/11 clinical trial along with the device's useability through procedural observation and surgeon questionnaire. RESULTS: With ethical and regulatory approval, 40 typical patients (mean age 58.6 years, 20 males) undergoing planned laparoscopic cholecystectomy (n = 36) and hernia repair (n = 4) were studied comprising both control (n = 20) and intervention (n = 20) cohorts. Dual optical gas imaging was successfully performed across all procedures with minimal impact on procedural flow. In total, 1643 trocar instrumentations were examined, 819 in the control group (mean 41 trocar instrumentations/procedure) and 824 in the intervention group (mean 41.2 trocar instrumentations/procedure). Gas leaks were detected during 948(62.6%) visualised trocar instrumentations (in 129-7.8%-the imaging was obscured). 14.8% (110/742) and 60% (445/742) of leaks in control patients were class 0 and 3, respectively, versus 59.1% (456/770) and 8.7% (67/772) in the interventional group (class 3 v non-class 3, p < 0.0001, χ2). The Leaktrap proved surgically acceptable without significant workflow disruption. CONCLUSION: Laparoscopic gas leaks can be sensitively detected and consistently, effectively mitigated using straightforward available-now technology with most impact on the commonest, highest energy instrument exchange leaks.


Subject(s)
Abdominal Wall , Cholecystectomy, Laparoscopic , Laparoscopy , Male , Humans , Middle Aged , Prospective Studies , Laparoscopy/adverse effects , Laparoscopy/methods , Cholecystectomy, Laparoscopic/methods , Abdominal Wall/surgery , Surgical Instruments
4.
PLoS One ; 18(11): e0293287, 2023.
Article in English | MEDLINE | ID: mdl-37963139

ABSTRACT

In laparoscopic surgery, one of the main byproducts is the gaseous particles, called surgical smoke, which is found hazardous for both the patient and the operating room staff due to their chemical composition, and this implies a need for its effective elimination. The dynamics of surgical smoke are monitored by the underlying flow inside the abdomen and the hidden Lagrangian Coherent Structures (LCSs) present therein. In this article, for an insufflated abdomen domain, we analyse the velocity field, obtained from a computational fluid dynamics model, first, by calculating the flow rates for the outlets and then by identifying the patterns which are responsible for the transportation, mixing and accumulation of the material particles in the flow. From the finite time Lyapunov exponent (FTLE) field calculated for different cross-sections of the domain, we show that these material curves are dependent on the angle, positions and number of the outlets, and the inlet. The ridges of the backward FTLE field reveal the regions of vortex formation, and the maximum accumulation, details which can inform the effective placement of the instruments for efficient removal of the surgical smoke.


Subject(s)
Laparoscopy , Smoke , Humans , Bays , Hydrodynamics
5.
Biosci Rep ; 43(11)2023 11 30.
Article in English | MEDLINE | ID: mdl-37975243

ABSTRACT

Acute high-altitude (HA) exposure can induce several pathologies. Dexamethasone (DEX) can be taken prophylactically to prevent HA disease, but the mechanism by which it acts in this setting is unclear. We studied the transcriptome of peripheral blood mononuclear cells (PBMCs) from 16 subjects at low altitude (LA, 225 m) and then 3 days after acute travel to HA (3500 m) during the India-Leh-Dexamethasone-Expedition-2020 (INDEX2020). Half of the participants received oral DEX prophylaxis 4 mg twice daily in an unblinded manner, starting 1 day prior to travel to HA, and 12 h prior to the first PBMC collection. PBMC transcriptome data were obtained from 16 subjects, half of whom received DEX. The principal component analysis demonstrated a clear separation of the groups by altitude and treatment. HA exposure resulted in a large number of gene expression changes, particularly in pathways of inflammation or the regulation of cell division, translation, or transcription. DEX prophylaxis resulted in changes in fewer genes, particularly in immune pathways. The gene sets modulated by HA and DEX were distinct. Deconvolution analysis to assess PBMC subpopulations suggested changes in B-cell, T-cell, dendritic cell, and myeloid cell numbers with HA and DEX exposures. Acute HA travel and DEX prophylaxis induce significant changes in the PBMC transcriptome. The observed benefit of DEX prophylaxis against HA disease may be mediated by suppression of inflammatory pathways and changing leukocyte population distributions.


Subject(s)
Dexamethasone , Leukocytes, Mononuclear , Humans , Altitude , Dexamethasone/pharmacology , Inflammation , Transcriptome
7.
Front Psychol ; 14: 1174152, 2023.
Article in English | MEDLINE | ID: mdl-37384184

ABSTRACT

Although several models of flow have been proposed that include environmental and trait-based antecedents of the state, elements of cognitive control that enable workers to experience flow and its subsequent outcomes at work have largely been overlooked. This research proposes and provides empirical support for the "Cognitive Control Model of Work-related Flow," which integrates antecedents of flow at work related to the ability to focus concentration of cognitive resources toward experiencing flow at work. Along with flow at work, the model includes the antecedents of grit, flow metacognition, and mindfulness at work and the outcomes of work performance, engagement, and burnout. Findings across three studies (a cross-sectional, a time-lagged, and a one-day experience sampling method study) utilizing MTurk participants provided support for the model, as grit, mindfulness, and flow metacognition predicted flow, and flow predicted subjective performance, engagement, and burnout. Theoretical implications and the potential for developing flow interventions at work are discussed.

9.
J Clin Monit Comput ; 37(5): 1265-1273, 2023 10.
Article in English | MEDLINE | ID: mdl-36930390

ABSTRACT

Awake Tracheal Intubation (ATI) can be performed in cases where there is potential for difficult airway management. It is considered an aerosol generating procedure and is a source of concern to healthcare workers due to the risk of transmission of airborne viral infections, such as SARS-CoV-2. At present, there is a lack of data on the quantities, size distributions and spread of aerosol particles generated during such procedures. This was a volunteer observational study which took place in an operating room of a university teaching hospital. Optical particle sizers were used to provide real time aerosol characterisation during a simulated ATI performed with concurrent high-flow nasal oxygen therapy. The particle sizers were positioned at locations that represented the different locations of clinical staff in an operating room during an ATI. The greatest concentration of patient derived aerosol particles was within 0.5-1.0 m of the subject and along their midline, 2242 #/cm3. As the distance, both radial and longitudinal, from the subject increased, the concentration decreased towards ambient levels, 36.9 ± 5.1 #/cm3. Patient derived aerosol particles < 5 µm in diameter remained entrained in the exhaled aerosol plume and fell to the floor or onto the subject. Patient derived particles > 5 µm in diameter broke away from the exhaled plume and spread radially throughout the operating room. Irrespective of distance and ventilation status, full airborne protective equipment should be worn by all staff when ATI is being performed on patients with suspected viral respiratory infections.


Subject(s)
COVID-19 , Humans , SARS-CoV-2 , Wakefulness , Respiratory Aerosols and Droplets , Intubation, Intratracheal
11.
Surg Endosc ; 36(9): 7047-7055, 2022 09.
Article in English | MEDLINE | ID: mdl-35503476

ABSTRACT

INTRODUCTION: The advent of the COVID-19 pandemic led to recommendations aimed at minimizing the risk of gas leaks at laparoscopy. As this has continuing relevance including regarding operating room pollution, we empirically quantified carbon dioxide (CO2) leak jet velocity (important for particle propulsion) occurring with different instruments inserted into differing trocars repeated across a range of intra-abdominal pressures (IAPs) and modern insufflators in an experimental model. METHOD: Laparoscopic gas plume leak velocity (metres/second) was computationally enumerated from schlieren optical flow videography on a porcine cadaveric laparoscopic model with IAPs of 4-5, 7-8, 12-15 and 24-25 mmHg (repeated with 5 different insufflators) during simulated operative use of laparoscopic clip appliers, scissors, energy device, camera and staplers as well as Veres needle (positive control) and trocar obturator (negative control) in fresh 5 mm and 12 mm ports. RESULTS: Close-fitting solid instruments (i.e. cameras and obturators) demonstrated slower gas leak velocities in both the 5 mm and 12 mm ports (p = 0.02 and less than 0.001) when compared to slimmer instruments, however, hollow instrument designs were seen to defy this pattern with the endoscopic linear stapler visibly inducing multiple rapid jests even when compared to similarly sized clip appliers (p = 0.03). However, on a per device basis the operating instrumentation displayed plume speeds which did not vary significantly when challenged with varying post size, IAP and a range of insufflators. CONCLUSION: In general, surgeon's selection of instrument, port or pressure does not usefully mitigate trocar CO2 leak velocity. Instead better trocar design is needed, helped by a fuller understanding of trocar valve mechanics via computational fluid dynamics informed by relevant surgical modelling.


Subject(s)
COVID-19 , Insufflation , Laparoscopy , Animals , Carbon Dioxide , Humans , Laparoscopy/adverse effects , Pandemics , Swine
12.
PLoS One ; 17(1): e0262547, 2022.
Article in English | MEDLINE | ID: mdl-35061806

ABSTRACT

High Flow Nasal Oxygen (HFNO) therapy offers a proven means of delivering respiratory support to critically ill patients suffering from viral illness such as COVID-19. However, the therapy has the potential to modify aerosol generation and dispersion patterns during exhalation and thereby put healthcare workers at increased risk of disease transmission. Fundamentally, a gap exists in the literature with regards to the effect of the therapy on the fluid dynamics of the exhalation jet which is essential in understanding the dispersion of aerosols and hence quantifying the disease transmission risk posed by the therapy. In this paper, a multi-faceted approach was taken to studying the aerosol-laden exhalation jet. Schlieren imaging was used to visualise the flow field for a range of expiratory activities for three healthy human volunteers receiving HFNO therapy at flow rates of 0-60 L/min. A RANS turbulence model was implemented using the CFD software OpenFOAM and used to perform a parametric study on the influence of exhalation velocity and duration on the dispersion patterns of non-evaporating droplets in a room environment. A dramatic increase in the turbulence of the exhalation jet was observed when HFNO was applied. Quantitative analysis indicated that the mean exhalation velocity was increased by 2.2-3.9 and 2.3-3 times that for unassisted breathing and coughing, respectively. A 1-2 second increase was found in the exhalation duration. The CFD model showed that small droplets (10-40 µm) were most greatly affected, where a 1 m/s increase in velocity and 1 s increase in duration caused an 80% increase in axial travel distance.


Subject(s)
Oxygen Inhalation Therapy/methods , Particulate Matter , Humans , Models, Theoretical
13.
Drug Deliv ; 29(1): 10-17, 2022 Dec.
Article in English | MEDLINE | ID: mdl-34962221

ABSTRACT

Aerosol therapy is used to deliver medical therapeutics directly to the airways to treat respiratory conditions. A potential consequence of this form of treatment is the release of fugitive aerosols, both patient derived and medical, into the environment and the subsequent exposure of caregivers and bystanders to potential viral infections. This study examined the release of these fugitive aerosols during a standard aerosol therapy to a simulated adult patient. An aerosol holding chamber and mouthpiece were connected to a representative head model and breathing simulator. A combination of laser and Schlieren imaging was used to non-invasively visualize the release and dispersion of fugitive aerosol particles. Time-varying aerosol particle number concentrations and size distributions were measured with optical particle sizers at clinically relevant positions to the simulated patient. The influence of breathing pattern, normal and distressed, supplemental air flow, at 0.2 and 6 LPM, and the addition of a bacterial filter to the exhalation port of the mouthpiece were assessed. Images showed large quantities of fugitive aerosols emitted from the unfiltered mouthpiece. The images and particle counter data show that the addition of a bacterial filter limited the release of these fugitive aerosols, with the peak fugitive aerosol concentrations decreasing by 47.3-83.3%, depending on distance from the simulated patient. The addition of a bacterial filter to the mouthpiece significantly reduces the levels of fugitive aerosols emitted during a simulated aerosol therapy, p≤ .05, and would greatly aid in reducing healthcare worker and bystander exposure to potentially harmful fugitive aerosols.


Subject(s)
Aerosols , COVID-19 , Drug Delivery Systems , Infectious Disease Transmission, Patient-to-Professional/prevention & control , Nebulizers and Vaporizers , Respiratory Therapy , Aerosols/administration & dosage , Aerosols/adverse effects , COVID-19/prevention & control , COVID-19/transmission , Computer Simulation , Drug Delivery Systems/instrumentation , Drug Delivery Systems/methods , Equipment Design , Humans , Infection Control/methods , Models, Biological , Particle Size , Respiratory Therapy/adverse effects , Respiratory Therapy/instrumentation , Respiratory Therapy/methods , SARS-CoV-2
14.
Eur J Ophthalmol ; 32(4): 2445-2451, 2022 Jul.
Article in English | MEDLINE | ID: mdl-34392739

ABSTRACT

OBJECTIVE: To assess the patterns of patient generated aerosol in the context of ophthalmic surgery and ophthalmic examinations. To inform medical teams regarding potential hazards and suggest mitigating measures. METHODS: Qualitatively, real-time time videography assessed exhalation patterns from simulated patients under different clinical scenarios using propylene glycol from an e-cigarette. Quantitatively, high-speed Schlieren imaging was performed to enable high resolution recordings analysable by MATLAB technical computing software. RESULTS: Without a face mask, the standard prior to COVID 19, vapour was observed exiting through the opening in the drape over the surgical field. The amount of vapour increased when a surgical mask was worn. With a taped face mask, the amount of vapour decreased and with inclusion of a continuous suction device, the least amount of vapour was seen. These results were equivocal when the patient was supine or sitting upright. High-speed Schlieren imaging corroborated these findings and in addition showed substantial increase in airflow egress during coughing and with ill-fitting face masks. CONCLUSION: Advising patients to wear a surgical mask at the time of ophthalmic interventions potentially contaminants the ocular field with patient generated aerosol risking endophthalmitis. Surgeon safety can be maintained with personal protective equipment to mitigate the increased egress of vapour from the surgical drape and taping, with or without suction is advisable, whilst meticulous hygiene around lenses is required at the time of slit lamp examination.


Subject(s)
COVID-19 , Electronic Nicotine Delivery Systems , Endophthalmitis , Aerosols , COVID-19/prevention & control , Endophthalmitis/surgery , Humans , Personal Protective Equipment
15.
Br J Surg ; 108(6): e229-e230, 2021 06 22.
Article in English | MEDLINE | ID: mdl-33693545

Subject(s)
Laparoscopy , Humans
17.
J Vasc Surg ; 66(3): 802-809, 2017 09.
Article in English | MEDLINE | ID: mdl-28433337

ABSTRACT

OBJECTIVE: Advocates for performing carotid endarterectomy (CEA) under regional anesthesia (RA) cite reduction in hemodynamic instability and the ability for neurologic monitoring, but many still prefer general anesthesia (GA) as benefits of RA have not been clearly demonstrated, reliable RA may not be available in all centers, and a certain amount of movement by the patient during the procedure may not be uniformly tolerated. We evaluated the association of anesthesia type and perioperative morbidity and mortality as well as resource utilization in patients undergoing CEA using the Michigan Surgical Quality Collaborative (MSQC) database. METHODS: Between 2012 and 2014, 4558 patients underwent CEA among the MSQC participating hospitals. Of these patients, 4008 underwent CEA under GA and 550 underwent CEA under RA. Data points were collected for each procedure, and a review of 30-day perioperative outcomes was conducted using the χ2 test. Propensity score regression adjusted for case mix preoperative conditions as fixed effects, and a mixed model adjusted for site as a random effect. RESULTS: The two groups were similar in gender and incidence of hypertension, diabetes, congestive heart failure, and smoking history. The RA group tended to be of better functional status. After GA, there was a greater than twofold higher percentage of any morbidity (8.7% vs 4.2%). Further analysis demonstrated that patients undergoing GA had higher unadjusted rates for mortality (1.0% vs 0.0%), unplanned intubations (2.1% vs 0.6%), pneumonia (1.3% vs 0.0%), sepsis (0.8% vs 0.0%), and readmissions (9.2% vs 6.1%). Adjusting for case mix and random effect, there was statistically significantly higher overall morbidity (P = .0002), unplanned intubation (P = .0196), extended length of stay (P = .0007), emergency department visits (P = .0379), and readmissions (P = .0149) in the GA group. There was no statistically significant difference in incidence of myocardial infarction or cerebrovascular accident. CONCLUSIONS: Based on this analysis from the MSQC database, there is an associated increased morbidity and resource utilization with GA vs RA for CEA. This has implications for enterprise resource planning initiatives and the CEA value proposition in general, which is of special interest to both hospitals and payers.


Subject(s)
Anesthesia, Conduction/adverse effects , Anesthesia, General/adverse effects , Carotid Artery Diseases/surgery , Endarterectomy, Carotid/adverse effects , Health Resources/statistics & numerical data , Postoperative Complications/therapy , Quality Indicators, Health Care , Adolescent , Adult , Aged , Anesthesia, Conduction/statistics & numerical data , Anesthesia, General/mortality , Anesthesia, General/statistics & numerical data , Carotid Artery Diseases/diagnosis , Carotid Artery Diseases/mortality , Chi-Square Distribution , Comorbidity , Databases, Factual , Emergency Service, Hospital/statistics & numerical data , Endarterectomy, Carotid/mortality , Endarterectomy, Carotid/statistics & numerical data , Female , Humans , Incidence , Intubation, Intratracheal/statistics & numerical data , Length of Stay , Male , Michigan/epidemiology , Middle Aged , Patient Readmission , Postoperative Complications/diagnosis , Postoperative Complications/mortality , Process Assessment, Health Care , Propensity Score , Retrospective Studies , Risk Factors , Smoking/adverse effects , Smoking/epidemiology , Time Factors , Treatment Outcome , Young Adult
18.
ACS Appl Mater Interfaces ; 9(15): 13751-13760, 2017 Apr 19.
Article in English | MEDLINE | ID: mdl-28383896

ABSTRACT

Rare earth oxides (REOs) are attracting attention for use as cost-effective, high-performance dropwise condensers because of their favorable thermal properties and robust nature. However, to engineer a suitable surface for industrial applications, the mechanism governing wetting must be first fully elucidated. Recent studies exploring the water-wetting state of REOs have suggested that these oxides are intrinsically hydrophobic owing to the unique electronic structure of the lanthanide series. These claims have been countered with evidence that they are inherently hydrophilic and that adsorption of contaminants from the environment is responsible for the apparent hydrophobic nature of these surfaces. Here, using X-ray photoelectron spectroscopy and dynamic water contact angle measurements, we provide further evidence to show that REOs are intrinsically hydrophilic, with ceria demonstrating advancing water contact angles of ≈6° in a clean surface state and similar surface energies to two transition metal oxides (≳72 mJ/m2). Using two model volatile species, it is shown that an adsorption mechanism is responsible for the apparent hydrophobic property observed in REOs as well as in transition metal oxides and silica. This is correlated with the screening of the polar surface energy contribution of the underlying oxide with apparent surface energies reduced to <40 mJ/m2 for the case of nonane adsorption. Moreover, we show that the degree of surface hydroxylation plays an important role in the observed contact angle hysteresis with the receding contact angle of ceria increasing from ∼10° to 45° following thermal annealing in an inert atmosphere. Our findings suggest that high atomic number metal oxides capable of strongly adsorbing volatile species may represent a viable paradigm toward realizing robust surface coating for industrial condensers if certain challenges can be overcome.

19.
Clin Rheumatol ; 35(2): 447-55, 2016 Feb.
Article in English | MEDLINE | ID: mdl-25253538

ABSTRACT

The purpose of this study is to assess the effect of sulfasalazine and its metabolites on platelet function in patients with inflammatory arthritis (IA). One hundred thirty-five consecutive patients with an established diagnosis of IA were screened. Those with a history of cardiovascular disease (CVD), taking anti-platelet agents or non-steroidal anti-inflammatory drugs (NSAIDs) were excluded. A total of 32 patients were investigated, 15 taking sulfasalazine and 17 taking other disease-modifying anti-rheumatic drugs (DMARDs) and no sulfasalazine. These two cohorts were compared to 15 patients with stable CVD on long-term aspirin. The effect of sulfasalazine and its metabolites on arachidonic acid (AA)-induced platelet aggregation was also tested in vitro in samples from healthy donors (n = 18). Demographics, CVD risk factors and disease activity indices were similar in the sulfasalazine and other DMARD groups. AA-induced platelet aggregation was significantly inhibited in the sulfasalazine group (9 ± 7 %) and comparable to that in the aspirin group (10 ± 6 %). In contrast, there was no effect on AA-induced platelet aggregation in the other DMARDs group (77 ± 12 %) (p < 0.001). Furthermore, sulfasalazine therapy had no effect on platelet aggregation in response to multiple other agonists. Sulfasalazine and its metabolites (5-aminosalicylic acid and sulfapyridine) exerted an additive and dose-dependent inhibitory effect on AA-induced platelet aggregation in vitro (p < 0.001). The inhibition of AA-induced platelet aggregation by sulfasalazine is comparable to that achieved by aspirin and is dependent on both sulfasalazine and its metabolites. This represents a potential mechanism that may contribute to the known cardioprotective effect of sulfasalazine in patients with IA.


Subject(s)
Antirheumatic Agents/therapeutic use , Arthritis, Rheumatoid/drug therapy , Blood Platelets/drug effects , Spondylarthropathies/drug therapy , Sulfasalazine/therapeutic use , Adult , Antirheumatic Agents/metabolism , Antirheumatic Agents/pharmacology , Cohort Studies , Female , Humans , Male , Middle Aged , Platelet Function Tests , Sulfasalazine/metabolism , Sulfasalazine/pharmacology
20.
Milbank Q ; 93(2): 263-300, 2015 Jun.
Article in English | MEDLINE | ID: mdl-26044630

ABSTRACT

UNLABELLED: POLICY POINTS: In 2008, researchers at the Institute for Healthcare Improvement (IHI) proposed the Triple Aim, strategic organizing principles for health care organizations and geographic communities that seek, simultaneously, to improve the individual experience of care and the health of populations and to reduce the per capita costs of care for populations. In 2010, the Triple Aim became part of the US national strategy for tackling health care issues, especially in the implementation of the Patient Protection and Affordable Care Act (ACA) of 2010. Since that time, IHI and others have worked together to determine how the implementation of the Triple Aim has progressed. Drawing on our 7 years of experience, we describe 3 major principles that guided the organizations and communities working on this endeavor: creating the right foundation for population management, managing services at scale for the population, and establishing a learning system to drive and sustain the work over time. CONTEXT: In 2008, researchers at the Institute for Healthcare Improvement (IHI) described the Triple Aim as simultaneously "improving the individual experience of care; improving the health of populations; and reducing the per capita costs of care for populations." IHI and its close colleagues had determined that both individual and societal changes were needed. METHODS: In 2007, IHI began recruiting organizations from around the world to participate in a collaborative to implement what became known as the Triple Aim. The 141 participating organizations included health care systems, hospitals, health care insurance companies, and others closely tied to health care. In addition, key groups outside the health care system were represented, such as public health agencies, social services groups, and community coalitions. This collaborative provided a structure for observational research. By noting the contrasts between the contexts and structures of those sites in the collaborative that progressed and those that did not, we were able to develop an ex post theory of what is needed for an organization or community to successfully pursue the Triple Aim. FINDINGS: Drawing on our 7 years of experience, we describe the 3 major principles that guided the organizations and communities working on the Triple Aim: creating the right foundation for population management, managing services at scale for the population, and establishing a learning system to drive and sustain the work over time. CONCLUSIONS: The concept of the Triple Aim is now widely used, because of IHI's work with many organizations and also because of the adoption of the Triple Aim as part of the national strategy for US health care, developed during the implementation of the Patient Protection and Affordable Care Act of 2010. Even those organizations working on the Triple Aim before IHI coined the term found our concept to be useful because it helped them think about all 3 dimensions at once and organize their work around them.


Subject(s)
Delivery of Health Care, Integrated/organization & administration , Health Benefit Plans, Employee/organization & administration , Public Health/standards , Quality Assurance, Health Care/standards , United States Indian Health Service/organization & administration , Community-Institutional Relations , Cost Control/legislation & jurisprudence , Cost Control/methods , Cost Control/standards , Delivery of Health Care, Integrated/economics , Delivery of Health Care, Integrated/standards , Health Benefit Plans, Employee/economics , Health Benefit Plans, Employee/standards , Health Plan Implementation/economics , Health Plan Implementation/methods , Health Plan Implementation/organization & administration , Humans , Needs Assessment , Organizational Case Studies , Outcome Assessment, Health Care/methods , Outcome Assessment, Health Care/statistics & numerical data , Patient Protection and Affordable Care Act , Patient Satisfaction , Public Health/economics , Public Health/legislation & jurisprudence , Quality Assurance, Health Care/economics , Quality Assurance, Health Care/legislation & jurisprudence , United States , United States Indian Health Service/economics , United States Indian Health Service/standards , Wisconsin
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