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McQuilten, Zoe, Venkatesh, Balasubramanian, Jha, Vivekanand, Roberts, Jason, Morpeth, Susan, Totterdell, James, McPhee, Grace, Abraham, John, Bam, Niraj, Bandara, Methma, Bangi, Ashpak, Barina, Lauren, Basnet, Bhupendra, Bhally, Hasan, Bhusal, Khemr, Bogati, Umesh, Bowen, Asha, Burke, Andrew, Christopher, Devasahayam, Chunilal, Sanjeev, Cochrane, Belinda, Curnow, Jennifer, Dara Reddy, Varaprasad Babu, Das, Santa, Dhungana, Ashesh, Di Tanna, Gian Luca, Dotel, Ravindra, Dsouza, Hyjel, Dummer, Jack, Dutta, Sourabh, Foo, Hong, Gilbey, Timothy, Giles, Michelle, Goli, Kasiram, Gordon, Adrienne, Gyanwali, Pradip, Hudson, Bernard, Jani, Manoj, Jevaji, Purnima, Jhawar, Sachin, Jindal, Aikaj, John, M. Joseph, John, Mary, John, Flavita, John, Oommen, Jones, Mark, Joshi, Rajesh, Kamath, Prashanthi, Kang, Gagandeep, Karki, Achyut, Karmalkar, Abhishek, Kaur, Baldeep, Koganti, Kalyan Chakravarthy, Koshy, Jency, Mathew, S. K.; Lau, Jilllian, Lewin, Sharon, Lim, Lyn-li, Marschner, Ian, Marsh, Julie, Maze, Michael, McGree, James, McMahon, James, Medcalf, Robert, Merriman, Eileen, Misal, Amol, Mora, Jocelyn, Mudaliar, Vijaybabu, Nguyen, Vi, O'Sullivan, Matthew, Pant, Suman, Pant, Pankaj, Paterson, David, Price, David, Rees, Megan, Robinson, James Owen, Rogers, Benjamin, Samuel, Sandhya, Sasadeusz, Joe, Sharma, Deepak, Sharma, Prabhat, Shrestha, Roshan, Shrestha, Sailesh, Shrestha, Prajowl, Shukla, Urvi, Shum, Omar, Sommerville, Christine, Spelman, Tim, Sullivan, Richard, Thatavarthi, Umashankar, Tran, Huyen, Trask, Nanette, Whitehead, Claire, Mahar, Robert, Hammond, Naomi, McFadyen, James David, Snelling, Thomas, Davis, Joshua, Denholm, Justin, Tong, Steven Y. C..
Blood ; 140:326-328, 2022.
Article in English | ScienceDirect | ID: covidwho-2120231
2.
Indian J Crit Care Med ; 26(7): 791-797, 2022 Jul.
Article in English | MEDLINE | ID: covidwho-1939282

ABSTRACT

Objective: To determine whether high-flow nasal oxygen (HFNO) or noninvasive ventilator (NIV) can avoid invasive mechanical ventilation (IMV) in COVID-19-related acute respiratory distress syndrome (ADRS), and the outcome predictors of these modalities. Design: Multicenter retrospective study conducted in 12 ICUs in Pune, India. Patients: Patients with COVID-19 pneumonia who had PaO2/FiO2 ratio <150 and were treated with HFNO and/or NIV. Intervention: HFNO and/or NIV. Measurements: The primary outcome was to assess the need of IMV. Secondary outcomes were death at Day 28 and mortality rates in different treatment groups. Main results: Among 1,201 patients who met the inclusion criteria, 35.9% (431/1,201) were treated successfully with HFNO and/or NIV and did not require IMV. About 59.5% (714/1,201) patients needed IMV for the failure of HFNO and/or NIV. About 48.3, 61.6, and 63.6% of patients who were treated with HFNO, NIV, or both, respectively, needed IMV. The need of IMV was significantly lower in the HFNO group (p <0.001). The 28-day mortality was 44.9, 59.9, and 59.6% in the patients treated with HFNO, NIV, or both, respectively (p <0.001). On multivariate regression analysis, presence of any comorbidity, SpO2 <90%, and presence of nonrespiratory organ dysfunction were independent and significant determinants of mortality (p <0.05). Conclusions: During COVID-19 pandemic surge, HFNO and/or NIV could successfully avoid IMV in 35.5% individuals with PO2/FiO2 ratio <150. Those who needed IMV due to failure of HFNO or NIV had high (87.5%) mortality. How to cite this article: Jog S, Zirpe K, Dixit S, Godavarthy P, Shahane M, Kadapatti K, et al. Noninvasive Respiratory Assist Devices in the Management of COVID-19-related Hypoxic Respiratory Failure: Pune ISCCM COVID-19 ARDS Study Consortium (PICASo). Indian J Crit Care Med 2022;26(7):791-797.

3.
Intensive Care Med ; 48(1): 45-55, 2022 01.
Article in English | MEDLINE | ID: covidwho-1605102

ABSTRACT

PURPOSE: We compared dexamethasone 12 versus 6 mg daily for up to 10 days in patients with coronavirus disease 2019 (COVID-19) and severe hypoxaemia in the international, randomised, blinded COVID STEROID 2 trial. In the primary, conventional analyses, the predefined statistical significance thresholds were not reached. We conducted a pre-planned Bayesian analysis to facilitate probabilistic interpretation. METHODS: We analysed outcome data within 90 days in the intention-to-treat population (data available in 967 to 982 patients) using Bayesian models with various sensitivity analyses. Results are presented as median posterior probabilities with 95% credible intervals (CrIs) and probabilities of different effect sizes with 12 mg dexamethasone. RESULTS: The adjusted mean difference on days alive without life support at day 28 (primary outcome) was 1.3 days (95% CrI -0.3 to 2.9; 94.2% probability of benefit). Adjusted relative risks and probabilities of benefit on serious adverse reactions was 0.85 (0.63 to 1.16; 84.1%) and on mortality 0.87 (0.73 to 1.03; 94.8%) at day 28 and 0.88 (0.75 to 1.02; 95.1%) at day 90. Probabilities of benefit on days alive without life support and days alive out of hospital at day 90 were 85 and 95.7%, respectively. Results were largely consistent across sensitivity analyses, with relatively low probabilities of clinically important harm with 12 mg on all outcomes in all analyses. CONCLUSION: We found high probabilities of benefit and low probabilities of clinically important harm with dexamethasone 12 mg versus 6 mg daily in patients with COVID-19 and severe hypoxaemia on all outcomes up to 90 days.


Subject(s)
COVID-19 Drug Treatment , Bayes Theorem , Dexamethasone , Humans , Hypoxia , SARS-CoV-2 , Steroids
4.
JAMA ; 326(18): 1807-1817, 2021 11 09.
Article in English | MEDLINE | ID: covidwho-1527380

ABSTRACT

Importance: A daily dose with 6 mg of dexamethasone is recommended for up to 10 days in patients with severe and critical COVID-19, but a higher dose may benefit those with more severe disease. Objective: To assess the effects of 12 mg/d vs 6 mg/d of dexamethasone in patients with COVID-19 and severe hypoxemia. Design, Setting, and Participants: A multicenter, randomized clinical trial was conducted between August 2020 and May 2021 at 26 hospitals in Europe and India and included 1000 adults with confirmed COVID-19 requiring at least 10 L/min of oxygen or mechanical ventilation. End of 90-day follow-up was on August 19, 2021. Interventions: Patients were randomized 1:1 to 12 mg/d of intravenous dexamethasone (n = 503) or 6 mg/d of intravenous dexamethasone (n = 497) for up to 10 days. Main Outcomes and Measures: The primary outcome was the number of days alive without life support (invasive mechanical ventilation, circulatory support, or kidney replacement therapy) at 28 days and was adjusted for stratification variables. Of the 8 prespecified secondary outcomes, 5 are included in this analysis (the number of days alive without life support at 90 days, the number of days alive out of the hospital at 90 days, mortality at 28 days and at 90 days, and ≥1 serious adverse reactions at 28 days). Results: Of the 1000 randomized patients, 982 were included (median age, 65 [IQR, 55-73] years; 305 [31%] women) and primary outcome data were available for 971 (491 in the 12 mg of dexamethasone group and 480 in the 6 mg of dexamethasone group). The median number of days alive without life support was 22.0 days (IQR, 6.0-28.0 days) in the 12 mg of dexamethasone group and 20.5 days (IQR, 4.0-28.0 days) in the 6 mg of dexamethasone group (adjusted mean difference, 1.3 days [95% CI, 0-2.6 days]; P = .07). Mortality at 28 days was 27.1% in the 12 mg of dexamethasone group vs 32.3% in the 6 mg of dexamethasone group (adjusted relative risk, 0.86 [99% CI, 0.68-1.08]). Mortality at 90 days was 32.0% in the 12 mg of dexamethasone group vs 37.7% in the 6 mg of dexamethasone group (adjusted relative risk, 0.87 [99% CI, 0.70-1.07]). Serious adverse reactions, including septic shock and invasive fungal infections, occurred in 11.3% in the 12 mg of dexamethasone group vs 13.4% in the 6 mg of dexamethasone group (adjusted relative risk, 0.83 [99% CI, 0.54-1.29]). Conclusions and Relevance: Among patients with COVID-19 and severe hypoxemia, 12 mg/d of dexamethasone compared with 6 mg/d of dexamethasone did not result in statistically significantly more days alive without life support at 28 days. However, the trial may have been underpowered to identify a significant difference. Trial Registration: ClinicalTrials.gov Identifier: NCT04509973 and ctri.nic.in Identifier: CTRI/2020/10/028731.


Subject(s)
COVID-19 Drug Treatment , Dexamethasone/administration & dosage , Glucocorticoids/administration & dosage , Life Support Care , Aged , COVID-19/complications , COVID-19/mortality , Dexamethasone/adverse effects , Dose-Response Relationship, Drug , Female , Glucocorticoids/adverse effects , Humans , Hypoxia/etiology , Hypoxia/therapy , Male , Middle Aged , Mycoses/etiology , Respiration, Artificial , Shock, Septic/etiology , Single-Blind Method
5.
Acta Anaesthesiol Scand ; 65(6): 834-845, 2021 Jul.
Article in English | MEDLINE | ID: covidwho-1083073

ABSTRACT

BACKGROUND: The coronavirus disease 2019 (COVID-19) pandemic has resulted in millions of deaths and overburdened healthcare systems worldwide. Systemic low-dose corticosteroids have proven clinical benefit in patients with severe COVID-19. Higher doses of corticosteroids are used in other inflammatory lung diseases and may offer additional clinical benefits in COVID-19. At present, the balance between benefits and harms of higher vs. lower doses of corticosteroids for patients with COVID-19 is unclear. METHODS: The COVID STEROID 2 trial is an investigator-initiated, international, parallel-grouped, blinded, centrally randomised and stratified clinical trial assessing higher (12 mg) vs. lower (6 mg) doses of dexamethasone for adults with COVID-19 and severe hypoxia. We plan to enrol 1,000 patients in Denmark, Sweden, Switzerland and India. The primary outcome is days alive without life support (invasive mechanical ventilation, circulatory support or renal replacement therapy) at day 28. Secondary outcomes include serious adverse reactions at day 28; all-cause mortality at day 28, 90 and 180; days alive without life support at day 90; days alive and out of hospital at day 90; and health-related quality of life at day 180. The primary outcome will be analysed using the Kryger Jensen and Lange test adjusted for stratification variables and reported as adjusted mean differences and median differences. The full statistical analysis plan is outlined in this protocol. DISCUSSION: The COVID STEROID 2 trial will provide evidence on the optimal dosing of systemic corticosteroids for COVID-19 patients with severe hypoxia with important implications for patients, their relatives and society.


Subject(s)
Anti-Inflammatory Agents/administration & dosage , COVID-19 Drug Treatment , Dexamethasone/administration & dosage , Pandemics , Randomized Controlled Trials as Topic/methods , SARS-CoV-2 , Anti-Inflammatory Agents/adverse effects , COVID-19/complications , Denmark , Dexamethasone/adverse effects , Dose-Response Relationship, Drug , Double-Blind Method , Hospital Mortality , Humans , Hydrocortisone/therapeutic use , Hypoxia/drug therapy , Hypoxia/etiology , India , Life Support Care/statistics & numerical data , Practice Patterns, Physicians'/statistics & numerical data , Quality of Life , Survival Analysis , Sweden , Switzerland
6.
Acta Anaesthesiol Scand ; 65(5): 702-710, 2021 05.
Article in English | MEDLINE | ID: covidwho-1081822

ABSTRACT

BACKGROUND: Coronavirus disease 2019 (COVID-19) can lead to severe hypoxic respiratory failure and death. Corticosteroids decrease mortality in severely or critically ill patients with COVID-19. However, the optimal dose remains unresolved. The ongoing randomised COVID STEROID 2 trial investigates the effects of higher vs lower doses of dexamethasone (12 vs 6 mg intravenously daily for up to 10 days) in 1,000 adult patients with COVID-19 and severe hypoxia. METHODS: This protocol outlines the rationale and statistical methods for a secondary, pre-planned Bayesian analysis of the primary outcome (days alive without life support at day 28) and all secondary outcomes registered up to day 90. We will use hurdle-negative binomial models to estimate the mean number of days alive without life support in each group and present results as mean differences and incidence rate ratios with 95% credibility intervals (CrIs). Additional count outcomes will be analysed similarly and binary outcomes will be analysed using logistic regression models with results presented as probabilities, relative risks and risk differences with 95% CrIs. We will present probabilities of any benefit/harm, clinically important benefit/harm and probabilities of effects smaller than pre-defined clinically minimally important differences for all outcomes analysed. Analyses will be adjusted for stratification variables and conducted using weakly informative priors supplemented by sensitivity analyses using sceptic priors. DISCUSSION: This secondary, pre-planned Bayesian analysis will supplement the primary, conventional analysis and may help clinicians, researchers and policymakers interpret the results of the COVID STEROID 2 trial while avoiding arbitrarily dichotomised interpretations of the results. TRIAL REGISTRATION: ClinicalTrials.gov: NCT04509973; EudraCT: 2020-003363-25.


Subject(s)
COVID-19 Drug Treatment , Dexamethasone/administration & dosage , Hypoxia/drug therapy , Randomized Controlled Trials as Topic , SARS-CoV-2 , Bayes Theorem , Humans
7.
Indian J Crit Care Med ; 24(7): 509-513, 2020 Jul.
Article in English | MEDLINE | ID: covidwho-749201

ABSTRACT

BACKGROUND: The novel coronavirus, named SARS-CoV-2, was first described in December 2019 as a cluster of pneumonia cases in Wuhan, China. It has since been declared a pandemic, with substantial mortality. MATERIALS AND METHODS: In our case series, we describe the clinical presentation, characteristics, and outcomes of our initial experience of managing 24 critically ill COVID-19 patients at a designated COVID-19 ICU in Western India. RESULTS: Median age of the patients was 54 years, and 58% were males. All patients presented with moderate to severe acute respiratory distress syndrome (ARDS); however, only 37.5% failed trials of awake proning and required mechanical ventilation. Patients who received mechanical ventilation typically matched the H-phenotype of COVID-19 pneumonia, and 55.5% of these patients were successfully extubated. CONCLUSION: The most common reason for ICU admission in our series of 24 patients with severe COVID-19 was hypoxemic respiratory failure, which responded well to conservative measures such as awake proning and oxygen supplementation. Mortality in our case series was 16.7%. HOW TO CITE THIS ARTICLE: Shukla U, Chavali S, Mukta P, Mapari A, Vyas A. Initial Experience of Critically Ill Patients with COVID-19 in Western India: A Case Series. Indian J Crit Care Med 2020;24(7):509-513.

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