| Literature DB >> 36163164 |
Hiroshi Sugimoto1, Yosuke Fukuda2, Yoshie Yamada3, Hiroyuki Ito4, Takeshi Tanaka5, Takuo Yoshida6, Satoshi Okamori7, Koichi Ando2, Yohei Okada8.
Abstract
BACKGROUND: This systematic review and meta-analysis aimed to evaluate the complications of lung biopsy in patients with acute respiratory failure (ARF), including acute respiratory distress syndrome (ARDS).Entities:
Keywords: Acute respiratory distress syndrome (ARDS); Acute respiratory failure; Complications; Lung biopsy
Year: 2022 PMID: 36163164 PMCID: PMC9501621 DOI: 10.1016/j.resinv.2022.08.008
Source DB: PubMed Journal: Respir Investig ISSN: 2212-5345
Fig. 1PRISMA flow diagram.
Characteristics of the included studies.
| First author Year | Study design | Country | No. of participants | Age | Sex male (%) | Condition | Overall hospital mortality | PaO2/FiO2 ratio (mmHg) | Apache II score | Sofa score |
|---|---|---|---|---|---|---|---|---|---|---|
| Arabi 2007 [ | Retrospective cohort | Saudi Arabia | 14 | 51 ± 19 | 7 (50%) | ARF | 57% | 153 ± 60 | 23 ± 6 | Unknown |
| Baumann 2008 [ | Retrospective cohort | Germany | 27 | 48 ± 14 | 12 (44%) | ALI or ARDS | 48% | 188 ± 109 | Unknown | 7.9 ± 3.0 |
| Charbonney 2009 [ | Retrospective cohort | Switzerland | 19 | 50 ± 15 | 11 (58%) | ARDS | 90% | 119.3 ± 34.2 | Unknown | Unknown |
| Cho 2006 [ | Retrospective cohort | USA | 53 | 52 ± 18 | 33 (62%) | ARDS | 17% (in 7 days) | 147 ± 63 | Unknown | Unknown |
| Donaldson 2016 [ | Retrospective cohort | Australia | 30 | 62 (57–69) | 20 (67%) | ARF | 53% | Unknown | Unknown | Unknown |
| Depuydt 2013 [ | Retrospective cohort | Belgium | 60 | 62 ± 14 | 36 (61%) | ARF | 75% | 189 (140–216) | Unknown | Unknown |
| Gerard 2018 [ | Retrospective cohort | Belgium | 51 | 67 (52–76) | 28 (55%) | ARDS | 55% | 128 (101–155) | 17.5 (15–21.5) | 7 (5–9) |
| Kao 2015 [ | Retrospective cohort | Taiwan | 101 | 57 ± 17 | 65 (64%) | ARDS | 60% | 148.7 ± 67.9 | 23.2 ± 5.5 | 7.0 ± 3.4 |
| Lim 2007 [ | Retrospective cohort | South Korea | 36 | 59 (20–77)∗ | 25 (69%) | ARF | 50% (in the ICU stay) | 158.6 (52–320)∗ | 17 (7–27)∗ | 5 (1–12) |
| Ortiz 2019 [ | Retrospective cohort | Colombia | 15 | 33 (25–45) | 7 (47%) | ARDS | 40% | 109 (87.5–138.5) | 22 (17–23) | Unknown |
| Papazian 1998 [ | Prospective cohort | France | 36 | 59 ± 15 | Unknown | ARDS | 51% | 118 (60–190)∗∗ | Unknown | Unknown |
| Papazian 2007 [ | Prospective cohort | France | 100 | 58 ± 16 | 67 (67%) | ARDS | 45% (in 28 days) | 129 ± 41 | Unknown | Unknown |
| Soh 2005 [ | Retrospective cohort | Taiwan | 32 | 51 ± 22 | 24 (75%) | ARF | 56% | 163.0 ± 90.4 | 19.2 ± 5.5 | Unknown |
PaO2, arterial partial pressure of oxygen; FiO2, fraction of inspired oxygen; APACHE, acute physiology and chronic health evaluation; SOFA, sequential organ failure assessment; ARF, acute respiratory failure; ALI, acute lung injury; ARDS, acute respiratory distress syndrome.
Data are described as mean ± SD or median (IQR).
∗Mean (range).
∗∗Median (range).
Defined by the American-European Consensus Conference (AECC) criteria.
Defined by the Berlin criteria.
Complications in the included studies.
| First author Year | No. of participants | Biopsy-related death | Respiratory failure | Cardiac complication | Bleeding | Other major complications | Pneumothorax | Infection | Other minor complications |
|---|---|---|---|---|---|---|---|---|---|
| Arabi 2007 [ | 14 | 0 | Unknown | Unknown | 0 | Unknown | 0 | Unknown | Unknown |
| Baumann2008 [ | 27 | 0 | Unknown | Unknown | 1 | 1∗ | 9 | 2 | 3∗∗ |
| Charbonney 2009 [ | 19 | Unknown | Unknown | Unknown | 2 | 1∗ | 2 | Unknown | Unknown |
| Cho 2006 [ | 53 | Unknown | Unknown | Unknown | Unknown | Unknown | Unknown | Unknown | 16∗∗ |
| Donaldson 2016 [ | 30 | 0 | 4 | 0 | 0 | Unknown | 4 | Unknown | Unknown |
| Depuydt 2013 [ | 60 | 0 | 2 | 0 | 4 | Unknown | 3 | Unknown | 5∗∗ |
| Gerard 2018 [ | 51 | 0 | 0 | 1 | 0 | Unknown | 2 | Unknown | 3∗∗ |
| Kao 2015 [ | 101 | 0 | Unknown | 2 | 1 | Unknown | Unknown | Unknown | 11 |
| Lim 2007 [ | 36 | 0 | Unknown | 5 | Unknown | Unknown | Unknown | Unknown | 15∗∗ |
| Ortiz 2019 [ | 15 | 0 | Unknown | Unknown | 1 | Unknown | Unknown | Unknown | 3∗∗ |
| Papazian 1998 [ | 36 | 0 | 0 | 0 | 1 | Unknown | 1 | Unknown | 5∗∗ |
| Papazian 2007 [ | 100 | 0 | 0 | 0 | 1 | Unknown | 2 | 0 | 8∗∗ |
| Soh 2005 [ | 32 | 0 | Unknown | Unknown | Unknown | Unknown | Unknown | 2 | 11 |
∗Persistent air leak that required surgery.
∗∗Persistent air leak that did not require surgery.
Wound infection (n = 2).
Wound infection (n = 1) and empyema (n = 1).
Persistent air leak that did not require surgery (n = 8) and subcutaneous emphysema (n = 3).
Persistent air leak that did not require surgery (n = 9) and bronchopleural fistula (n = 2).
Fig. 2The summary of the risk of bias in the included studies.
Summary of findings.
| Patients/populations | ARDS or acute respiratory failure | ||||||||
|---|---|---|---|---|---|---|---|---|---|
| Settings | ICU or OR | ||||||||
| Intervention | SLB (OLB or VATS) | ||||||||
| Study design | Cohort study | ||||||||
| Outcomes | No. of participants (studies) | Frequency (95% CI) | Frequency per 1000 patients (95% CI) | Factors that may decrease the quality of evidence | Quality of evidence (GRADE) | ||||
| Risk of bias | Indirectness | Inconsistency | Imprecision | Publication bias | |||||
| Biopsy-related death | 502 (11) | 0.000% (0.000–0.206%) | 0 (0–2) | Very serious | Not serious | Not serious (I2 = 0.0%) | Serious | Not applicable | Low |
| Respiratory failure | 277 (5) | 1.303% (0.000–5.692%) | 13 (0–57) | Very serious | Not serious | Very serious (I2 = 69.7%) | Serious | Not applicable | Very low |
| Cardiac complication | 414 (7) | 1.027% (0.000–3.727%) | 10 (0–37) | Very serious | Not serious | Serious (I2 = 60.1%) | Serious | Not applicable | Very low |
| Bleeding | 453 (10) | 1.460% (0.163–3.556%) | 15 (2–36) | Very serious | Not serious | Not serious (I2 = 25.1%) | Serious | Not applicable | Low |
| Other major complications | 46 (2) | 4.255% (0.000–13.02%) | 43 (0–130) | Serious | Not serious | Not serious (I2 = 0.0%) | Very serious | Not applicable | Low |
| Pneumothorax | 337 (8) | 6.506% (1.886–13.03%) | 65 (19–130) | Very serious | Not serious | Very serious (I2 = 70.0%) | Very serious | Not applicable | Very low |
| Infection | 159 (3) | 2.704% (0.000–12.56%) | 27 (0–126) | Very serious | Not serious | Very serious (I2 = 76.8%) | Very serious | Not applicable | Very low |
| Other minor complications | 511 (10) | 16.42% (9.712–24.34%) | 164 (97–243) | Very serious | Not serious | Very serious (I2 = 77.7%) | Serious | Not applicable | Very low |
ARDS, acute respiratory distress syndrome; ICU, intensive care unit; OR, operating room; SLB, surgical lung biopsy; OLB, open lung biopsy; VATS, video-assisted thoracoscopic surgery; CI, confidence interval; GRADE, grading of recommendations, assessment, development, and evaluation.
Persistent air leak that required surgery.
Persistent air leak that did not require surgery, subcutaneous emphysema, and bronchopleural fistula.
We judged this component as very serious because more than two-thirds of the studies were considered to have a high or unclear risk of bias in half of the items in the McMaster Quality Assessment Scale for Harms.
We judged this component as serious because a certain number of studies were considered to have a high or unclear risk of bias in the items in the McMaster Quality Assessment Scale for Harms.
Downgrade due to number of participants was less than optimal information size.
Downgrade due to the possibility of a change in clinical action at the upper versus lower of the confidence interval.
Fig. 3Forest plot for the primary outcomes. (A) biopsy-related death; (B) respiratory failure; (C) cardiac complication; (D) bleeding; (E) other major complications.
Fig. 4Forest plot for the secondary outcomes. (A) pneumothorax; (B) infection; (C) other minor complications.