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Active clinical trials for "Encephalitis"

Results 71-80 of 259

Vaccine Study for Tick-Borne Encephalitis Virus (TBEV)

Tick-Borne EncephalitisEncephalitis6 more

This was an open label trial of a non-US licensed vaccine for tick-borne encephalitis. The vaccine was licensed by Baxter, and now following an acquisition by Pfizer Inc in Vienna, Austria since 2001, and has an extensive safety record in multiple European countries. Field effectiveness studies suggest > 99 percent protection against disease transmitted by the natural routes of either tick bite or ingestion of contaminated, unpasteurized milk. The vaccine is also considered to be effective against laboratory exposures and is used routinely for this purpose in European laboratories. The US Centers for Disease Control and Prevention and the National Institutes of Health acknowledge the effectiveness of the vaccine by allowing those who have received it to study tick-borne encephalitis virus (TBEV) in isolation facilities rated at BSL-3 rather than the more stringent BSL-4, with the exception of the Russian Spring-Summer Encephalitis strain. Subjects were recruited from personnel at 2 intramural campuses of the National Institute of Allergy and Infectious Diseases who may be exposed accidentally to any strain or serotype of viable TBEV. Approximately 160 individuals were eligible to participate. The rapid immunization schedule (injections on Days 0, 14, and 161) was used and subjects had labs drawn 21 days after the 2nd, 3rd and 4th vaccine injections to determine seroconversion. Subjects that seroconverted to TBEV were offered a booster dose of the vaccine 3 years from the date of receipt of the third dose of the vaccine. Subjects that were seropositive at entry into the study were offered a booster dose of the vaccine every 3 years from Day 0.

Terminated35 enrollment criteria

Establishment of Prevention and Control System of Central Nervous System Infection

Central Nervous System (CNS) InfectionEncephalitis1 more

Central nervous system (CNS) infection is a common nervous system acute and severe disease, mainly manifested as encephalitis, meningitis and meningoencephalitis, but also manifested as brain abscess and brain granuloma et al. The basis for the diagnosis of CNS infection lies in the detection of pathogens from brain parenchyma or cerebellar spinal fluid (CSF). However, CSF is relatively difficult to obtain and the sample size is small, which limits the rapid and definite diagnosis of CNS infection pathogens. In addition, CNS infection usually has non-specific clinical manifestations, so it is difficult to identify the pathogen for about half of CNS infection. Metagenomic next generation sequencing (mNGS) and biochip technology provide new means to identify the pathogens of CNS infection. This study analyzes the incidence and epidemic characteristics of CNS infection in China, to standardize the CSF sample processing process, shorten the detection time, increase the sensitivity and specificity of pathogen detection, reduce the detection cost, identify the common pathogens of CNS infection, and establish a standardized rapid diagnosis system, effective prevention and control system.

Not yet recruiting2 enrollment criteria

Efficacy Evaluation of the Mushroom Beverage on Emotion Regulation

InflammationBrain1 more

Major Depression Disorder is one of the most common psychiatric disease and has affecting approximately 350 million people in the world. According to World Health Organization's report, it may be the first burden of disease in 2030. Due to the high morbidity and low acceptance in the treatment, it is necessary to find some nature compounds to prevent the disease. Cordyceps militaris, one of the most treasure Chinese herbs in Asia, contains many kinds of component such as cordycepin, polysaccharide, mannitol. In winter, it appears as an worm in the soil, afterwards, it grows out of the soil and convert into grass in summer. A previous study has demonstrated that Cordyceps militaris has anti-depressive effect in mouse tail suspension test, and in this study we will explore its effect in human subjects.

Completed10 enrollment criteria

An Extension Study to Determine the Persistence of Tick-borne Encephalitis (TBE)-Specific Antibody...

Tick Borne Encephalitis (TBE)

This study will evaluate the durability of antibody responses in children and adolescents after primary immunization with TBE vaccine

Completed4 enrollment criteria

A Pilot Study of the Use of Rituximab in the Treatment of Chronic Focal Encephalitis

Chronic Focal EncephalitisRasmussen's Encephalitis

The purpose of this study is to assess the safety, tolerability and effectiveness of rituximab in the treatment of chronic focal encephalitis.

Completed15 enrollment criteria

Long Term Treatment of Herpes Simplex Encephalitis (HSE) With Valacyclovir

Encephalitis

This study involves patients 12 years and older who have been diagnosed with herpes simplex encephalitis (HSE) by a specific laboratory test and have completed treatment or are being treated with intravenous (given through a needle inserted into a vein) acyclovir. The purpose of the study is to determine if treatment with 4 tablets, 500 milligrams each, of valacyclovir given 3 times daily by mouth for 90 days is both effective and safe after completing intravenous acyclovir treatment and if it can increase survival with or without mild impairment of the brain and mental functions. Participants will be assigned to either drug or placebo (inactive substance) randomly (by chance). Study procedures will include blood samples and lumbar punctures (procedure in which a needle is inserted into the lower back to collect cerebral spinal fluid). Subjects will participate for up to 24 months.

Completed17 enrollment criteria

A Pilot Study of 566C80 for the Salvage Treatment of Toxoplasmic Encephalitis in Patients Infected...

ToxoplasmosisCerebral1 more

To evaluate the safety and tolerance of atovaquone (566C80) in AIDS patients with central nervous system (CNS) toxoplasmosis. To evaluate the efficacy of 566C80 in the acute treatment and suppression of CNS toxoplasmosis in AIDS patients who fail or who cannot tolerate conventional therapy.

Completed29 enrollment criteria

Effect of Neflamapimod on Brain Inflammation in Alzheimer's Disease Patients

Alzheimer Disease

For this project, neflamapimod and placebo will be provided free of charge by the EIP company (www.eippharma.com). Neflamapimod is currently tested in 2 clinical trials in AD, one in Europe (The Netherlands) and one in the USA (clinical trials.gov/VX-745). The company commenced in May 2015 dosing in two phase 2a clinical studies in patients with Early AD: one in the Netherlands that is focused on PET amyloid imaging as the primary biomarker of drug effect, and one in the US (California) that is focused on Cerebrospinal fluid (CSF) evaluation to determine CSF drug concentrations and effects on inflammatory markers and disease biomarkers. Pharmacokinetic evaluation in these patients has demonstrated blood drug concentration levels in the predicted therapeutic range; and importantly, the data from the US study demonstrate that the drug achieves target drug concentrations in CSF, thus confirming the drug robustly enters the brain in humans. The present project offers us a unique chance to test this promising drug in AD patients. The aim of the study is to focus on PET neuroinflammation imaging as the primary biomarker of this drug effect. The chosen biomarker for imaging neuroinflammation in patients is [1 8F]-DPA714.

Completed20 enrollment criteria

Impact of Confirmed Autoimmune Encephalitis on Brain Glucose Metabolism

Autoimmune Encephalitis

Prospective cohort study evaluating FDG PET in 56 patients with confirmed autoimmune encephalitis - based on 2016 Graus criteria, and 2021 paraneoplastic neurological syndromes criteria - at the acute phase, before immunomodulating treatment, or within 10 days of treatment initiation.

Not yet recruiting17 enrollment criteria

Cervicovaginal Immune Responses to 3 Deltoid or Thigh Intramuscular (IM) TicoVac

Tick-Borne Encephalitis

Many viral infections of global importance, including HIV, are transmitted across the mucosal surface of the genital tract. As immunity against these infections is likely to be primarily mediated by antibodies in mucosal secretions, developing techniques to increase the levels and persistence of antiviral antibody on mucosal surfaces may enhance the protection against a number of important infections. Preclinical studies have anatomically targeted vaccine antigens to sites where genital tract immunity is induced. This response is likely due to the ability of regional lymph Preclinical studies have anatomically targeted vaccine antigens to sites where genital tract immunity is induced. This response is likely due to the ability of regional lymph nodes to "pattern" the cell surface markers of responding vaccine specific lymphocytes with homing markers. In contrast, injecting a distant muscle (such as in the arm) which shares no anatomical relationship with the vagina, may not pattern cells with homing markers for the genital tract. Direct injection of inguinal lymph nodes is impractical in humans but intramuscular injection into the thigh will target antigens to the deep inguinal lymph nodes shared in common with the cervix/vagina. This study will be a Phase IV randomised, single centre, open label, laboratory assessment blinded exploratory trial to assess mucosal immunogenicity following three targeted intramuscular immunisations with TicoVac vaccine. 20 subjects will be randomised to each of2 groups immunised in right deltoid or right anterolateral thigh. Following an initial screening visit subjects will be immunised at 0, 1 and 6 months. There will be follow up visits 5 days after each immunisation and a final visit at 7 months. Blood samples and cervicovaginal secretions will be taken prior to each immunisation for immunological measures. In addition, blood samples will be taken at each immunisation and follow up visit for measurement of peripheral blood mononuclear cells. The study is funded by ADITEC, which is a collaborative research programme that aims to accelerate the development of novel and powerful immunisation technologies for the next generation of human vaccines.

Completed21 enrollment criteria
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