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1.
Tech Coloproctol ; 28(1): 55, 2024 May 20.
Article in English | MEDLINE | ID: mdl-38769231

ABSTRACT

BACKGROUND: Anastomotic leakage (AL) remains a burdensome complication following colorectal surgery, with increased morbidity, oncological compromise, and mortality. AL may impose a substantial financial burden on hospitals and society due to extensive resource utilization. Estimated costs associated with AL are important when exploring preventive measures and treatment strategies. The purpose of this study was to systematically review the existing literature on (socio)economic costs associated with AL after colorectal surgery, appraise their quality, compare reported outcomes, and identify knowledge gaps. METHODS: Health economic evaluations reporting costs related to AL after colorectal surgery were identified through searching multiple online databases until June 2023. Pairs of reviewers independently evaluated the quality using an adapted version of the Consensus on Health Economic Criteria list. Extracted costs were converted to 2022 euros (€) and also adjusted for purchasing power disparities among countries. RESULTS: From 1980 unique abstracts, 59 full-text publications were assessed for eligibility, and 17 studies were included in the review. The incremental costs of AL after correcting for purchasing power disparity ranged from €2250 (+39.9%, Romania) to €83,633 (+ 513.1%, Brazil). Incremental costs were mainly driven by hospital (re)admission, intensive care stay, and reinterventions. Only one study estimated the economic societal burden of AL between €1.9 and €6.1 million. CONCLUSIONS: AL imposes a significant financial burden on hospitals and social care systems. The magnitude of costs varies greatly across countries and data on the societal burden and non-medical costs are scarce. Adherence to international reporting standards is essential to understand international disparities and to externally validate reported cost estimates.


Subject(s)
Anastomotic Leak , Humans , Anastomotic Leak/economics , Anastomotic Leak/etiology , Health Care Costs/statistics & numerical data , Colorectal Surgery/adverse effects , Colorectal Surgery/economics , Cost of Illness , Rectum/surgery
3.
Br J Surg ; 110(12): 1863-1876, 2023 11 09.
Article in English | MEDLINE | ID: mdl-37819790

ABSTRACT

BACKGROUND: The optimal treatment of anastomotic leak after rectal cancer resection is unclear. This worldwide cohort study aimed to provide an overview of four treatment strategies applied. METHODS: Patients from 216 centres and 45 countries with anastomotic leak after rectal cancer resection between 2014 and 2018 were included. Treatment was categorized as salvage surgery, faecal diversion with passive or active (vacuum) drainage, and no primary/secondary faecal diversion. The primary outcome was 1-year stoma-free survival. In addition, passive and active drainage were compared using propensity score matching (2 : 1). RESULTS: Of 2470 evaluable patients, 388 (16.0 per cent) underwent salvage surgery, 1524 (62.0 per cent) passive drainage, 278 (11.0 per cent) active drainage, and 280 (11.0 per cent) had no faecal diversion. One-year stoma-free survival rates were 13.7, 48.3, 48.2, and 65.4 per cent respectively. Propensity score matching resulted in 556 patients with passive and 278 with active drainage. There was no statistically significant difference between these groups in 1-year stoma-free survival (OR 0.95, 95 per cent c.i. 0.66 to 1.33), with a risk difference of -1.1 (95 per cent c.i. -9.0 to 7.0) per cent. After active drainage, more patients required secondary salvage surgery (OR 2.32, 1.49 to 3.59), prolonged hospital admission (an additional 6 (95 per cent c.i. 2 to 10) days), and ICU admission (OR 1.41, 1.02 to 1.94). Mean duration of leak healing did not differ significantly (an additional 12 (-28 to 52) days). CONCLUSION: Primary salvage surgery or omission of faecal diversion likely correspond to the most severe and least severe leaks respectively. In patients with diverted leaks, stoma-free survival did not differ statistically between passive and active drainage, although the increased risk of secondary salvage surgery and ICU admission suggests residual confounding.


Subject(s)
Anastomotic Leak , Rectal Neoplasms , Humans , Anastomotic Leak/etiology , Anastomotic Leak/surgery , Cohort Studies , Anastomosis, Surgical/methods , Rectum/surgery , Rectal Neoplasms/surgery , Rectal Neoplasms/complications , Retrospective Studies
4.
Ann Surg ; 278(5): 772-780, 2023 11 01.
Article in English | MEDLINE | ID: mdl-37498208

ABSTRACT

OBJECTIVE: To develop and validate a prediction model (STOMA score) for 1-year stoma-free survival in patients with rectal cancer (RC) with anastomotic leakage (AL). BACKGROUND: AL after RC resection often results in a permanent stoma. METHODS: This international retrospective cohort study (TENTACLE-Rectum) encompassed 216 participating centres and included patients who developed AL after RC surgery between 2014 and 2018. Clinically relevant predictors for 1-year stoma-free survival were included in uni and multivariable logistic regression models. The STOMA score was developed and internally validated in a cohort of patients operated between 2014 and 2017, with subsequent temporal validation in a 2018 cohort. The discriminative power and calibration of the models' performance were evaluated. RESULTS: This study included 2499 patients with AL, 1954 in the development cohort and 545 in the validation cohort. Baseline characteristics were comparable. One-year stoma-free survival was 45.0% in the development cohort and 43.7% in the validation cohort. The following predictors were included in the STOMA score: sex, age, American Society of Anestesiologist classification, body mass index, clinical M-disease, neoadjuvant therapy, abdominal and transanal approach, primary defunctioning stoma, multivisceral resection, clinical setting in which AL was diagnosed, postoperative day of AL diagnosis, abdominal contamination, anastomotic defect circumference, bowel wall ischemia, anastomotic fistula, retraction, and reactivation leakage. The STOMA score showed good discrimination and calibration (c-index: 0.71, 95% CI: 0.66-0.76). CONCLUSIONS: The STOMA score consists of 18 clinically relevant factors and estimates the individual risk for 1-year stoma-free survival in patients with AL after RC surgery, which may improve patient counseling and give guidance when analyzing the efficacy of different treatment strategies in future studies.


Subject(s)
Anastomotic Leak , Rectal Neoplasms , Humans , Anastomotic Leak/etiology , Anastomotic Leak/surgery , Rectum/surgery , Retrospective Studies , Rectal Neoplasms/surgery , Anastomosis, Surgical/methods , Risk Factors
5.
Microbes Infect ; 25(7): 105174, 2023.
Article in English | MEDLINE | ID: mdl-37348752

ABSTRACT

BACKGROUND: It is largely unknown whether the gut microbiome regulates immune responses in humans. We determined relationships between the microbiota composition and immunological phenotypes in 108 healthy volunteers, using 16S sequencing, an ex vivo monocyte challenge model, and an in vivo challenge model of systemic inflammation induced by lipopolysaccharide (LPS). RESULTS: Significant associations were observed between the microbiota composition and ex vivo monocytic cytokine responses induced by several stimuli, most notably IL-10 production induced by Pam3Cys, Pseudomonas aeruginosa and Candida albicans, although the explained variance was rather low (0.3-4.8%). Furthermore, a number of pairwise correlations between Blautia, Bacteroides and Prevotella genera and cytokine production induced by these stimuli were identified. LPS administration induced a profound transient in vivo inflammatory response. A second LPS challenge one week after the first resulted in a severely blunted response, reflecting endotoxin tolerance. However, no significant relationships between microbiota composition and in vivo parameters of inflammation or tolerance were found (explained variance ranging from 0.4 to 1.5%, ns). CONCLUSIONS: The gut microbiota composition explains a limited degree of variance in ex vivo monocytic cytokine responses to several pathogenic stimuli, but no relationships with the LPS-induced in vivo immune response or tolerance was observed.


Subject(s)
Endotoxins , Gastrointestinal Microbiome , Humans , Endotoxins/toxicity , Lipopolysaccharides , Endotoxin Tolerance , Cytokines , Inflammation , Immunity
6.
Ann Surg ; 274(6): e1038-e1046, 2021 12 01.
Article in English | MEDLINE | ID: mdl-31851007

ABSTRACT

OBJECTIVE: To investigate the role of bacterial- mediated plasminogen (PLG) activation in the pathogenesis of anastomotic leak (AL) and its mitigation by tranexamic acid (TXA). BACKGROUND: AL is the most feared complication of colorectal resections. The pathobiology of AL in the setting of a technically optimal procedure involves excessive submucosal collagen degradation by resident microbes. We hypothesized that activation of the host PLG system by pathogens is a central and targetable pathway in AL. METHODS: We employed kinetic analysis of binding and activation of human PLG by microbes known to cause AL, and collagen degradation assays to test the impact of PLG on bacterial collagenolysis. Further, we measured the ability of the antifibrinolytic drug TXA to inhibit this process. Finally, using mouse models of pathogen-induced AL, we locally applied TXA via enema and measured its ability to prevent a clinically relevant AL. RESULTS: PLG is deposited rapidly and specifically at the site of colorectal anastomoses. TXA inhibited PLG activation and downstream collagenolysis by pathogens known to have a causal role in AL. TXA enema reduced collagenolytic bacteria counts and PLG deposition at anastomotic sites. Postoperative PLG inhibition with TXA enema prevented clinically and pathologically apparent pathogen-mediated AL in mice. CONCLUSIONS: Bacterial activation of host PLG is central to collagenolysis and pathogen-mediated AL. TXA inhibits this process both in vitro and in vivo. TXA enema represents a promising method to prevent AL in high-risk sites such as the colorectal anastomoses.


Subject(s)
Anastomotic Leak/microbiology , Anastomotic Leak/prevention & control , Colon/surgery , Plasminogen/metabolism , Tranexamic Acid/administration & dosage , Animals , Collagen/drug effects , Disease Models, Animal , Enema , Enterococcus faecalis , Mice , Mice, Inbred C57BL , Microscopy, Confocal , Pseudomonas aeruginosa
7.
Am J Physiol Gastrointest Liver Physiol ; 318(1): G1-G9, 2020 01 01.
Article in English | MEDLINE | ID: mdl-31604031

ABSTRACT

Perforations, anastomotic leak, and subsequent intra-abdominal sepsis are among the most common and feared complications of invasive interventions in the colon and remaining intestinal tract. During physiological healing, tissue protease activity is finely orchestrated to maintain the strength and integrity of the submucosa collagen layer in the wound. We (Shogan, BD et al. Sci Trans Med 7: 286ra68, 2015.) have previously demonstrated in both mice and humans that the commensal microbe Enterococcus faecalis selectively colonizes wounded colonic tissues and disrupts the healing process by amplifying collagenolytic matrix-metalloprotease activity toward excessive degradation. Here, we demonstrate for the first time, to our knowledge, a novel collagenolytic virulence mechanism by which E. faecalis is able to bind and locally activate the human fibrinolytic protease plasminogen (PLG), a protein present in high concentrations in healing colonic tissue. E. faecalis-mediated PLG activation leads to supraphysiological collagen degradation; in this study, we demonstrate this concept both in vitro and in vivo. This pathoadaptive response can be mitigated with the PLG inhibitor tranexamic acid (TXA) in a fashion that prevents clinically significant complications in validated murine models of both E. faecalis- and Pseudomonas aeruginosa-mediated colonic perforation. TXA has a proven clinical safety record and is Food and Drug Administration approved for topical application in invasive procedures, albeit for the prevention of bleeding rather than infection. As such, the novel pharmacological effect described in this study may be translatable to clinical trials for the prevention of infectious complications in colonic healing.NEW & NOTEWORTHY This paper presents a novel mechanism for virulence in a commensal gut microbe that exploits the human fibrinolytic system and its principle protease, plasminogen. This mechanism is targetable by safe and effective nonantibiotic small molecules for the prevention of infectious complications in the healing gut.


Subject(s)
Collagen Type IV/metabolism , Collagen Type I/metabolism , Colon/microbiology , Enterococcus faecalis/metabolism , Fibrinolysis , Gram-Positive Bacterial Infections/microbiology , Plasminogen/metabolism , Surgical Wound Infection/microbiology , Wound Healing , Animals , Anti-Bacterial Agents/pharmacology , Antifibrinolytic Agents/pharmacology , Colon/drug effects , Colon/metabolism , Colon/pathology , Disease Models, Animal , Enterococcus faecalis/drug effects , Enterococcus faecalis/pathogenicity , Fibrinolysis/drug effects , Gram-Positive Bacterial Infections/metabolism , Gram-Positive Bacterial Infections/pathology , Gram-Positive Bacterial Infections/prevention & control , Host-Pathogen Interactions , Humans , Mice, Inbred C57BL , Plasminogen/antagonists & inhibitors , Proteolysis , Pseudomonas Infections/metabolism , Pseudomonas Infections/microbiology , Pseudomonas Infections/prevention & control , Surgical Wound Infection/metabolism , Surgical Wound Infection/pathology , Surgical Wound Infection/prevention & control , Tranexamic Acid/pharmacology , Urokinase-Type Plasminogen Activator/metabolism , Virulence , Wound Healing/drug effects
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