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Microbial Colonization clinical trials

View clinical trials related to Microbial Colonization.

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NCT ID: NCT03235635 Recruiting - Clinical trials for Microbial Colonization

Metagenomic Analysis of Gut Microbiome in Preterm

MAGMP
Start date: July 25, 2017
Phase: N/A
Study type: Observational

This is single center study. The investigators will try to know that relationships between intestinal microbiome and mortality in preterm infants and what relationships is between intestinal microbiome in preterm infants and morbidity, mortality.

NCT ID: NCT03229863 Active, not recruiting - Clinical trials for Microbial Colonization

An Examination of Infants' Microbiome, Nutrition, and Development Study.

IMiND
Start date: April 18, 2017
Phase: N/A
Study type: Interventional

This study is examining the relationship between infant nutrition, gut health, and development. The fecal microbiota changes and develops, in large part due to the food that infants eat. These changes are important for many aspects of development. This study is designed to examine how the fecal microbiota changes when exclusively breastfed infants are first introduced to solid food, and how changes of the fecal microbiota are related to other aspects of development.

NCT ID: NCT03222804 Withdrawn - Clinical trials for Microbial Colonization

Milk Oriented Microbiota

MOM
Start date: May 2017
Phase: N/A
Study type: Interventional

The purpose of this study is to determine if supplementing healthy term infants delivered vaginally who consume breast milk, formula, or both with a probiotic for 21 consecutive days increases levels of bacteria in infants' stool.

NCT ID: NCT03220282 Suspended - Breastfeeding Clinical Trials

The Milk, Growth and Microbiota Study

MGM
Start date: October 30, 2017
Phase: N/A
Study type: Interventional

Late preterm infants, who are born at 34, 35 or 36 weeks gestation, often have difficulty feeding, establishing growth, and fighting off infection. Breastfeeding provides improved nutrition to help fight infection, in part because breast milk encourages the growth of healthy bacteria (microbiota) in the infant's intestine. However, when mothers give birth preterm, their breasts are usually not quite ready to make milk; it can take several days to have enough breast milk to match a baby's nutritional needs. If there is not yet enough breast milk, formula is often used. However, formula can interfere with the growth of healthy intestinal bacteria. An alternate nutritional option is donor milk from a certified milk bank, which is available in all neonatal intensive care units (NICUs) in San Francisco. However, no scientific studies have yet studied donor milk for late preterm infants, so currently all San Francisco NICUs (as well as the large majority of NICUs nationwide) reserve donor milk for infants born at <34 weeks. This study's investigators therefore propose the "Milk, Growth and Microbiota (MGM) Study," a randomized controlled trial to compare banked donor milk to formula for breastfeeding late preterm infants born in San Francisco. Once enrolled in MGM, infants will be randomly assigned to receive either formula or banked donor milk if they need additional nutrition until their mothers are making enough milk. After enrolling the babies, investigators will weigh them daily to assess their growth. The investigators will also collect infant bowel movements at baseline, 1 week and 1 month to determine whether donor milk vs. formula impacts the type of bacteria in the baby's intestine. If the study's results show that donor milk optimizes growth while helping establish healthy bacteria in the baby's intestine, donor milk might be postnatal strategy to bolster neonatal nutrition for late preterm infants.

NCT ID: NCT03214822 Completed - Oxidative Stress Clinical Trials

Human-derived Human Milk Fortifiers (H2MF), Gut Microbiota and Oxidative Stress in Premature Infants

Start date: August 1, 2017
Phase: N/A
Study type: Interventional

This is a randomized controlled trial of a human-derived human milk fortifier (H2MF) vs standard bovine-derived human milk fortifier (HMF) evaluating fecal microbiota and fecal and urinary biomarkers of oxidative stress in premature infants.

NCT ID: NCT03196492 Completed - Clinical trials for Microbial Colonization

Vaginal Microbiota, and STI/HIV Risk Among Adolescent Girls and Young Women

AIMS
Start date: June 14, 2017
Phase:
Study type: Observational

The investigators are doing a study on the bacteria that normally live in the vagina and what effect, if any, Depo-Provera has on the bacteria. Women 13-24 years of age, who are HIV negative, being seen in a clinic for birth control or sexually transmitted disease (STD) check-up, or have a child and are planning to receive a Depo-Provera shot for contraception or have declined the use of hormonal contraception may join.

NCT ID: NCT03178006 Completed - Clinical trials for Microbial Colonization

Correlation Between Intestinal Microbiota, Inflamatory Biomarkers, Intestinal Morphology, Hepatic Fibrosis Degree and Vascular Reactivity.

Start date: January 5, 2015
Phase: N/A
Study type: Observational

This project aims to establish the correlation between intestinal microbiota with inflammatory biomarkers, intestinal morphology, vascular reactivity and degree of hepatic fibrosis in patients with different degrees of glucose tolerance and body adiposity.

NCT ID: NCT03167398 Completed - Clinical trials for Microbial Colonization

Fecal Microbiota Transplantation for Eradication of CRE

Start date: February 1, 2018
Phase: Phase 1/Phase 2
Study type: Interventional

Antibiotic resistance has emerged world wide and is of major concern. Multi-drug resistant (MDR) bacteria is widely spread and is now a major factor in morbidity and mortality in health-care settings. Among MDRs, carbapenem-resistant Enterobacteriaceae (CRE) are of special concern, receiving the highest classification of "urgent threat level" in the US President Report. Consistent mortality rates of 40-50% are observed among inpatients with infections caused by CRE in hospitals worldwide, related mainly to unavailable, delayed or ineffective antibiotic treatment options. The extremely high mortality rates of patients with CRE infections have driven efforts to prevent the acquisition and spread of these bacteria in hospitals. These include screening for carriage, contact isolation of carriers, cohorting, dedicated healthcare staff and other infection control measures. These strategies have been proven as effective but are cumbersome and expensive. In most locations these strategies failed to completely eradicate CRE endemicity. CRE decolonization (eradication of colonization) might offer a double benefit - reducing the risk for the individual carrier to develop an infection due to the resistant strain (by that, potentially lowering the mortality risk) and preventing the bacteria from spreading to other patients, exposing them to the same hazard. Fecal microbiota transplantation (FMT), in which fecal material enriched with commensal microorganisms is transferred from a healthy donor, have proven efficacy in the treatment of recurrent Clostridium difficile infection (CDI) in multiple trails. Major adverse events that has been reported so far are mostly related to the route of administration (aspiration during nasogastric tube administration/colonoscopy). Other adverse events include mostly GI related symptoms (diarrhea, nausea, belching) and are self limited and resolve in few hours. FMT seems to be safe and effective both in immunocompetent and immunocompromised patients. The high efficacy of FMT in the treatment of a multi-drug resistant pathogen such as Clostridium difficile, suggest that it might be an efficient tool for other MDR pathogens (e.g. CRE). The authors aim to assess the effects of FMT on colonization and clinical infections with CRE. The potential of FMT to restore the gut microbiome and compete with residual resistant strains offer a novel way to fight the current MDR epidemic. The authors will apply FMT on a cohort of CRE carriers in a single center in Israel. FMT will be given by capsules for 2 consecutive days followed by rectal sampling at predefined timepoint in the following 6 months.

NCT ID: NCT03154866 Not yet recruiting - Clinical trials for Microbial Colonization

Lactobacillus Kefiri LKF01 (DSM32079) in Newborns Born by Caesarian Section

Start date: June 1, 2017
Phase: Phase 4
Study type: Interventional

The mode of delivery affects the diversity and colonization pattern of the gut microbiota during the first year of infants' life. Probiotics have been observed to positively influence the host's health, but to date few data about the ability of probiotics to modify the gut microbiota composition exist. 40 newborns born by elective caesarian sectional be randomized to a Lactobacillus kefiri LKF01 DSM32079 (LKEF) supplementation or placebo for 21 days. Changes in the gut microbiota composition were detected by using a Next Generation Sequencing technology.

NCT ID: NCT03043456 Not yet recruiting - Clinical trials for Microbial Colonization

Patient Satisfaction and Microbial Changes in Complete Dentures.

Start date: March 1, 2017
Phase: N/A
Study type: Interventional

In this research, the investigators are comparing the new thermoplastic material side by side with the conventional poly methyl methacrylate for fully edentulous patients measuring their satisfaction and microbiological count.