scholarly journals Extreme Dysbiosis of the Microbiome in Critical Illness

mSphere ◽  
2016 ◽  
Vol 1 (4) ◽  
Author(s):  
Daniel McDonald ◽  
Gail Ackermann ◽  
Ludmila Khailova ◽  
Christine Baird ◽  
Daren Heyland ◽  
...  

ABSTRACT Critical illness may be associated with the loss of normal, “health promoting” bacteria, allowing overgrowth of disease-promoting pathogenic bacteria (dysbiosis), which, in turn, makes patients susceptible to hospital-acquired infections, sepsis, and organ failure. This has significant world health implications, because sepsis is becoming a leading cause of death worldwide, and hospital-acquired infections contribute to significant illness and increased costs. Thus, a trial that monitors the ICU patient microbiome to confirm and characterize this hypothesis is urgently needed. Our study analyzed the microbiomes of 115 critically ill subjects and demonstrated rapid dysbiosis from unexpected environmental sources after ICU admission. These data may provide the first steps toward defining targeted therapies that correct potentially “illness-promoting” dysbiosis with probiotics or with targeted, multimicrobe synthetic “stool pills” that restore a healthy microbiome in the ICU setting to improve patient outcomes. Critical illness is hypothesized to associate with loss of “health-promoting” commensal microbes and overgrowth of pathogenic bacteria (dysbiosis). This dysbiosis is believed to increase susceptibility to nosocomial infections, sepsis, and organ failure. A trial with prospective monitoring of the intensive care unit (ICU) patient microbiome using culture-independent techniques to confirm and characterize this dysbiosis is thus urgently needed. Characterizing ICU patient microbiome changes may provide first steps toward the development of diagnostic and therapeutic interventions using microbiome signatures. To characterize the ICU patient microbiome, we collected fecal, oral, and skin samples from 115 mixed ICU patients across four centers in the United States and Canada. Samples were collected at two time points: within 48 h of ICU admission, and at ICU discharge or on ICU day 10. Sample collection and processing were performed according to Earth Microbiome Project protocols. We applied SourceTracker to assess the source composition of ICU patient samples by using Qiita, including samples from the American Gut Project (AGP), mammalian corpse decomposition samples, childhood (Global Gut study), and house surfaces. Our results demonstrate that critical illness leads to significant and rapid dysbiosis. Many taxons significantly depleted from ICU patients versus AGP healthy controls are key “health-promoting” organisms, and overgrowth of known pathogens was frequent. Source compositions of ICU patient samples are largely uncharacteristic of the expected community type. Between time points and within a patient, the source composition changed dramatically. Our initial results show great promise for microbiome signatures as diagnostic markers and guides to therapeutic interventions in the ICU to repopulate the normal, “health-promoting” microbiome and thereby improve patient outcomes. IMPORTANCE Critical illness may be associated with the loss of normal, “health promoting” bacteria, allowing overgrowth of disease-promoting pathogenic bacteria (dysbiosis), which, in turn, makes patients susceptible to hospital-acquired infections, sepsis, and organ failure. This has significant world health implications, because sepsis is becoming a leading cause of death worldwide, and hospital-acquired infections contribute to significant illness and increased costs. Thus, a trial that monitors the ICU patient microbiome to confirm and characterize this hypothesis is urgently needed. Our study analyzed the microbiomes of 115 critically ill subjects and demonstrated rapid dysbiosis from unexpected environmental sources after ICU admission. These data may provide the first steps toward defining targeted therapies that correct potentially “illness-promoting” dysbiosis with probiotics or with targeted, multimicrobe synthetic “stool pills” that restore a healthy microbiome in the ICU setting to improve patient outcomes. Podcast: A podcast concerning this article is available.

Author(s):  
Malireddy S Reddy

The worldwide popularity of Dr. M.S. Reddy’s Multiple Mixed Strain Probiotic Therapy to treat or prevent the hospital acquired infections (nosocomial infections) arose a great interest in the medical community around the world (Reddy and Reddy, 2016; 2017). The following questions were raised on this subject: Does Multiple Mixed Strain Probiotics directly inhibit the pathogenic bacteria (C. diff) in the gastrointestinal tract or indirectly through modulation of the host immune system or both? To be more specific, what is the exact and/or hypothetical mechanism at molecular level behind the breakthrough discovery of Dr. M.S. Reddy’s Multiple Mixed Strain Probiotic Therapy?  To answer these questions, the specific immunomodulation regulatory functions of the individual Probiotic strains (on host) have beenresearched, investigated andoutlined in this article.  A detailed explanation(s) and hypotheses have been proposed outlining the possible cumulativedirect bacteriological and indirect immunomodulatory effects (at the molecular level) of the Multiple Mixed Strain Probiotics used in Dr. M.S. Reddy’s Multiple Mixed Strain Probiotic Therapy to successfully treat C. diff infection.  A detailed scientific and research attempts were made to correlate the Probiotic induced immune activities in relation to the reduction of the symptoms associated with the hospital acquired Clostridium difficile infection during and after the Multiple Mixed Strain Probioitc Therapy.  Results of the clinical trials, microbiological tests on feces, and the clinical blood tests significantly revealed that the reasons for the success of Dr. Reddy’s Multiple Mixed Strain Probiotic Therapy are multifold. Presumably, it is predominantly due to the immunomodulatory effect they have exerted on the host immune system along with the direct inhibition of C. diff bacteria by multiple Probiotics, due to the production of bacteriocins, lactic acid and nutritional competency.In addition, the size of the individual cells of the Probiotic strains in the Multiple Mixed Strain Probiotics and their significant effect on immunomodulation has been thoroughly discussed. Results clearly proved that if Probiotics are absent in the GI tract during C. diff infection, the chances of patient survival is zero.  This is because of the excess immune stimulation and incurable damage to the epithelial cell barrier of the gastrointestinal tract caused by C. diff bacteria.  The results also revealed, without any doubt, as of to-datethe latest discovery of Dr. M.S. Reddy’s Multiple Mixed Strain Probiotic Therapy is the best way to cure the deadly hospital acquired infections affecting millions of people around the world, with high degree of mortality.  This has been attested by several practicng medical professionals and scientists around the world (Reddy and Reddy, 2017).


2020 ◽  
Vol 47 (3) ◽  
pp. 207-214
Author(s):  
M. Mukhtar-Yola ◽  
B. Andrew

Background: Health care workers at the bedside of critically ill babies freely carry their mobile phones in between procedures and handling  patients. Concerns are rising as this may contribute to nosocomial infections with pathogenic bacteria. Aim: To determine if mobile phones of health care workers in Intensive care units carry potentially pathogenic bacteria leading to hospital acquired infections. Design: Systematic review.Data sources: Electronic databases (Medline via ovid, CINAHL, Web of science) and hand Searching of references and citations were done to identify studies. Screening and inclusion criteria were used to identify studies with a cross-sectional or cohort design. The search was limited to journal articles published between 2008-2015 and to English language. Quality assessment was done using the National Institute of Health tool for observational studies. Data was extracted on to excel sheets and analysed using SPSS version 22.Results: Six studies with a cohort (1) or cross-sectional design (5) involving 1, 131 health care workers were reviewed. The overall quality of the studies was fair, and a narrative synthesis was done. The colonization rate of the mobile phones ranged between 46.3 % and a 100% with 13-50% carrying potentially pathogenic multidrug resistant microorganisms. Methicillin resistant staphylococcus aureus, Vancomycine resistant enterococci, acinobacter and coagulase negative staphylococci were reported across all studies and were recognized as leading causes of morbidity and mortalityin the ICU. Conclusion: Mobile phones Of HCW are portals of potentially pathogenic microorganisms, which could result in morbidity and mortality.Although no causal relationship could be established, strong associations have been reported. Guidelines by hospital infection control committees are needed on restriction, care and routine cleaning of mobile phones as well as further research. Key words: Health care worker, Intensive care unit, Hospital Acquired Infections, mobile phones


2006 ◽  
Vol 53 (2) ◽  
pp. 85-92 ◽  
Author(s):  
P YLIPALOSAARI ◽  
T ALAKOKKO ◽  
J LAURILA ◽  
P OHTONEN ◽  
H SYRJALA

2009 ◽  
Vol 91 (2) ◽  
pp. 155-158 ◽  
Author(s):  
MJ Sultan ◽  
A Alm ◽  
A Hindmarsh ◽  
RA Greatorex

INTRODUCTION Hospital-acquired infections complicate 10% of hospital admissions resulting in increased morbidity, mortality and cost to hospitals. Most hospitals issue doctors with plastic swipe cards that function as electronic keys to access clinical areas. The card is handled many times a day, often before direct patient contact. The aim of this study was to determine if swipe cards harbour potentially harmful bacteria. SUBJECTS AND METHODS On a single day, doctors working in the surgical directorate completed a questionnaire to determine their pattern of swipe card use. Cards were inoculated onto agar plates and incubated for 48 h under standard laboratory conditions, following which the number of colony forming units (CFUs) cultured from each card was determined. Representative colonies were sampled and sub-cultured for staphlococcal, enterococcal, coliform and pseudomonad species. Isolated bacterial pathogens were tested for antimicrobial sensitivity. Swipe-card scanners were swabbed for microbiological culture on the same day. RESULTS All cards were colonised with environmental bacteria (mean, 73 CFU). Of cards, 21% were contaminated with pathogenic bacteria including Staphylococcus aureus (5.1%), Pseudomonas putida (2.6%), and coliform species (12.8%). The pattern of card use did not significantly affect the amount of bacterial contamination, but infrequent use of the card and keeping the card in a pocket or wallet was associated with higher levels of contamination. Environmental bacteria were cultured from 88% of card scanners, the highest counts coming from scanners in main theatres and the day-surgery unit. CONCLUSIONS Doctors' swipe cards are contaminated with, and may therefore be a reservoir for, pathogenic bacteria implicated in hospital-acquired infection.


2020 ◽  
Vol 2020 ◽  
pp. 1-12
Author(s):  
Yong-Tao Li ◽  
Jian-Rong Huang ◽  
Mei-Lian Peng

Spontaneous bacterial peritonitis (SBP) is a common cirrhotic ascites complication which exacerbates the patient’s condition. SBP is caused by gram-negative bacilli and, to a lesser extent, gram-positive cocci. Hospital-acquired infections show higher levels of drug-resistant bacteria. Geographical location influences pathogenic bacteria distribution; therefore, different hospitals in the same country record different bacteria strains. Intestinal changes and a weak immune system in patients with liver cirrhosis lead to bacterial translocation thus causing SBP. Early diagnosis and timely treatment are important in SBP management. When the treatment effect is not effective, other rare pathogens should be explored.


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