View clinical trials related to Microbial Colonization.
Filter by:Determining whether in the mouth there are differences between the participant groups in the nature and activity of mucosal innate immunity, in immune responses to SARS-COV2 antigens, or in the oral microbiome
Amyloidosis is a serious systemic disease. Cardiac involvement has a great impact on prognosis and can occur in its three main forms: acquired monoclonal light chain, hereditary transthyretinal and senile form. The physiopathogenesis basically results from the deposition of an abnormal protein (amyloid) with toxic properties to the myocyte. The scope of this study will be a hereditary transthyretinal amyloidosis (hATTR). It is known that amyloidotic cardiomyopathy due to transthyretin deposit is an underdiagnosed cause of heart failure in adults, being an important differential diagnosis of diseases that manifest with increased myocardial thickness, such as hypertrophic cardiomyopathy or myocardial hypertrophy that accompanies the different degrees of aortic valve stenosis. The human gut microbiota is immensely diverse. It is estimated at around 100 trillion microorganisms, including bacteria, fungi and viruses. The microbiota of each individual is unique and determined by genetic factors such as age, type of delivery, use of antibiotics and diet. Recent data point to the hypothesis that the resilience of the intestinal microbiota plays a role in the process of disease development and health restoration.
The great harm of pancreatic diseases and the unknown etiology and pathogenesis make it difficult to intervene in most early cases in time. Previous studies by scholars and applicants at home and abroad have shown that the microflora in pancreatic tissue is closely related to chronic pancreatitis and pancreatic cancer. However, the research on the mechanism of microbial diversity in pancreatic tissue and the occurrence and development of various pancreatic diseases has not been reported. Based on the previous research, this subject continues to take various pancreatic diseases as the research object based on the database of pancreatic center and pathology department of Ruijin Hospital Affiliated to Medical College of Shanghai Jiaotong University, To explore the characteristics of microbial flora in pancreas in different pancreatic diseases and its mechanism of influence on disease microenvironment. Select specific microbial flora or targets in the pancreas for various pancreatic diseases, so as to provide new theoretical basis and practical guidance for the early diagnosis and treatment of pancreatic diseases.
Sepsis is a life-threatening clinical syndrome and a leading cause of neonatal deaths worldwide. The burden of neonatal sepsis and severe infection (SI) is particularly high in areas of South Asia and other resource-limited settings. The goal of the Synbiotics for the Early Prevention of Severe Infections in Infants (SEPSIS) phase II L. plantarum trial is to generate knowledge on the safety, tolerability and effects on the microbiome of Lactiplantibacillus plantarum, with or without fructooligosaccharide, in infants (birth to 60 days of age) in Dhaka, Bangladesh. All data generated will support the design and implementation of a phase III trial to test the efficacy of the probiotic/synbiotic or other interventions for the prevention of SI, promotion of optimal growth and development, and effects on other health outcomes in early infancy.
The aim of this study is to determine the efficacy of an oral nutraceutical with probiotics in restore vaginal health.
Background and aims: Patients with severe Coronavirus Disease 2019 (COVID-19) are prone to secondary bacterial pneumonia. The use of probiotics against oral pathogens might prevent lung colonization and progression to bacterial pneumonia. This study aimed to assess the effect of Streptococcus salivarius K12 combined with Lactobacillus brevis CD2 in preventing secondary bacterial pneumonia in patients with severe COVID-19. Methods: This randomized placebo-controlled phase 2 trial involved 70 patients with severe COVID-19 admitted to the intensive care unit (ICU). Patients were randomly assigned to a 7-day course of oral gel containing Streptococcus salivarius K12 2 billion colony-forming units (CFU) and Lactobacillus brevis CD2 4 billion CFU every 8 hours or placebo, starting in the first ICU day. The primary outcome was bacterial pneumonia, established according to clinical, laboratory, radiological, and microbiological findings, whereas secondary outcomes were ICU stay in days and hospital mortality.
Antibiotics are a mainstay of life-saving interventions used frequently in medical practice to combat infections. These medications not only target the pathogenic bacteria for which they are prescribed but also function against commensal bacterial communities that inhabit the gut, skin, and oropharynx. The role that these native bacterial communities play in normal host function, such as in nutrition and host immunity, is only beginning to be explored, as are the changes in the communities and their function as a result of various alterations of antibiotic use. Short courses of antibiotics have been shown to affect the diversity of native bacterial communities, and to affect the abundance of antibiotic resistance genes present. For example, use of clindamycin in human subjects for 7 days has been demonstrated to result in persistent clindamycin resistance for months or years. The impact of prolonged antibiotic therapy on the host microbiome including both those organisms present and the diversity of antibiotic genes has not been studied, and we have very little understanding of the longitudinal effects of antimicrobial therapy on the genetic repertoire present in human microbial communities. In this study, we will examine changes in the microbiota as well as frequency of antibacterial resistance genes harbored in skin, saliva, and colonic microbiomes longitudinally in subjects on prolonged antimicrobial therapy, as well as household members of the person on antibiotic therapy. Previously well patients with minimal prior antibiotic exposure will be enrolled upon diagnosis of an infection requiring long-term antibiotic therapy, such as osteomyelitis or prosthetic joint infection, prior to starting antibiotic therapy. We will examine the microbiota of the skin, saliva, and gut prior to antibiotics as well as the frequency of antibiotic resistance genes harbored within these microbial communities. We will compare microbial communities and antibiotic resistance gene frequencies before, during and after prolonged course of antibiotics in patients on antibiotics. We will also look for alterations that occur among microbiomes or antibiotic resistance genes among household members of people on antibiotics.
Premature very low birth weight (VLBW) infants are susceptible to complications related to infrequent and non-standardized oral care. Although the benefits of frequent standardized oral care are known to reduce oral dybiosis (increased level of potentially pathogenic bacteria) and its associated complications in critically ill adults leading to established evidence-based guidelines, no such information exists for VLBW infants. The proposed study will prospectively follow 40 VLBW infants for 4 weeks following birth. Infants will be randomized into 1 of 2 groups. Standardized oral care will be performed every 3-4 hours (Group 1) and every 12 hours (Group 2). Aim 1 will evaluate the feasibility of frequent standardized oral care, Aim 2 will compare the oral microbiome between groups, and Aim 3 will compare respiratory outcomes including the incidence of ventilator associated pneumonia, bronchopulmonary dysplasia and need for respiratory support between infants receiving standardized oral care every 3-4 hours and every 12 hours. Issues related to recruitment, retention, randomization, acceptance by nursing staff, and treatment fidelity will be examined. Saliva samples will be obtained weekly and analyzed using 16S sequencing, respiratory cultures will be obtained weekly on ventilated infants, and respiratory outcomes will be collected from the medical records.
This study aims to investigate the microbiome of women with previously proven fertility who plan to become pregnant.
Some components of the diet could promote the growth of certain bacterial strains present in the intestine, which are closely associated with benefits for host health. An intestinal commensal Parabacteroides goldsteinii (Pg) was highlighted to be significantly negatively associated with severity of COPD. Furthermore, the investigators identify the potential prebiotics (PHGG) which may enrich the abundance of P. goldsteinii and increase the probiotic effect of P. goldsteinii. The investigators designed a randomized control study, which enroll adults diagnosed with COPD. Then the two groups will receive PHGG or not. Stool samples will be collected. The ameliorative efficacy will be evaluated by questionnaire and lung function test. Intestinal microbiota and metabolome will be analyzed and the correlation with lung function indices will be further investigated.