%0 English Abstract %T [Construction and application of sepsis bundle therapy management and practice program]. %A Yang Y %A Gu X %A Peng H %A Yang L %A Yu X %A Zhang L %J Zhonghua Wei Zhong Bing Ji Jiu Yi Xue %V 36 %N 5 %D 2024 May %M 38845494 暂无%R 10.3760/cma.j.cn121430-20231027-00917 %X OBJECTIVE: To construct a bundled therapy management and practice program for sepsis and explore its clinical application effect.
METHODS: (1) Construction of sepsis bundled therapy management and practice program: a project team was established to conduct literature review, select experts, compile and distribute questionnaires, organize, analyze expert opinions, and ensure quality control throughout the research process. From October to November 2022, expert letter consultation was carried out, and questionnaires were distributed and collected by on-site filling and WeChat. The Likert 5-point scale was used to rate each item. (2) Clinical application of the protocol: ninety patients with sepsis admitted to the intensive care unit (ICU) of the First Affiliated Hospital of Xinjiang Medical University from January to July 2022 were retrospectively selected as the control group, and routine bundle treatment and nursing strategy for sepsis were adopted. Ninety patients with sepsis admitted from January to July 2023 were prospectively selected as the intervention group. Based on the treatment and nursing strategy of the control group, sepsis bundled therapy management and practice program constructed using the Delphi inquiry method was implemented. The completion rate of 1-hour, 3-hour and 6-hour bundle, the levels of inflammatory indicators at 1, 3, 7 days of treatment, and prognostic indicators were compared between the two groups.
RESULTS: (1) Construction of sepsis bundled therapy management and practice program: the final plan consists of 4 primary indicators, 15 secondary indicators and 34 tertiary indicators. The response rates for both rounds of inquiry questionnaires were 100%. The coefficients of expert authority value were 0.948 and 0.940, respectively. The coefficient of variation for each item was 0-0.287 and 0-0.187, respectively. Kendall's W coefficients were 0.242 and 0.249, respectively, with statistical significances (all P < 0.05). (2) Clinical application of the protocol: there were no statistically significant differences in baseline data such as age, gender, infection site, pathogen species, duration of mechanical ventilation, sequential organ failure assessment (SOFA), acute physiology and chronic health evaluation II (APACHE II) between the two groups. The completion rate of 1-hour, 3-hour and 6-hour bundle in the intervention group were higher than those in the control group (1-hour bundle completion rate: 53.30% vs. 21.10%, 3-hour bundle completion rate: 92.20% vs. 80.00%, 6-hour bundle completion rate: 88.89% vs. 65.56%, all P < 0.05). The levels of C-reactive protein (CRP), white blood cell count (WBC), procalcitonin (PCT), and interleukin-6 (IL-6) in two groups of patients showed statistically significant differences at different time points, between groups, and in interaction effects. Compared with the control group, the length of ICU stay in the intervention group was significantly shortened [days: 7.00 (4.00, 14.00) vs. 8.00 (7.00, 20.00), P < 0.01], and the hospitalization cost of ICU was significantly reduced [ten thousand yuan: 4.63 (3.36, 6.19) vs. 6.46 (3.32, 11.34), P < 0.05]. The 28-day mortality in the intervention group was lower than that in the control group (33.33% vs. 46.67%), but the difference was not statistically significant (P > 0.05).
CONCLUSIONS: The constructed bundled therapy management and practice program for sepsis can improve the completion rate of bundle treatment, shorten the length of ICU stay of sepsis patients, reduce the hospitalization cost in ICU, and have a tendency to reduce the 28-day mortality.