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临床试验/NCT06442345
NCT06442345尚未招募不适用

Real-time Pneumocystis Jirovecii Genotyping to Support Clinical Decision Making in the Management of Nosocomial Outbreaks

Nottingham University Hospitals NHS Trust0 个研究点目标入组 70 人开始时间: 2025年9月1日最近更新:
适应症

试验速览

阶段
不适用
状态
尚未招募
入组人数
70
主要终点
Objective 1: Development of a MLST PCP genotyping assay within NUH.

研究概览

简要总结

We share our lives with microorganisms, and these generally do not pose a problem if an individual is healthy with a normal immune system. However, if the immune system was not functioning properly (e.g., cancer patients), they are at risk of infection. One microorganism, a fungus called Pneumocystis jirovecii (PCP), can cause severe chest infections in patients without properly functioning immune systems, leading to hospitalisation and death if untreated. If patients remain without a functioning immune system, they have a greater chance of repeated infection.

PCP spreads through air from person-to-person and can survive on environmental surfaces. Patients can be infected after contact with these surfaces. Hospitals have a responsibility to ensure PCP infected patients do not pass it on to other unwell patients. In cases where PCP has infected multiple patients, knowing if the same fungi has been passed along (or transmitted) from patient-to-patient is vital in understanding if there is an outbreak in the hospital. Understanding how similar (the relatedness) the PCP strain is allows healthcare workers to detect any transmission between patients or the environment.

To understand how related each patient's PCP infection is we will utilise a laboratory test called multilocus sequence typing (MLST). This test looks at sections of the fungi's genetic code using deoxyribonucleic acid (DNA) sequencing to create a code (genotype) which tells us how related one PCP is to others tested, allowing comparison between patients and ultimately spotting transmission.

Our aim is to develop this sequencing test using PCP positive patient samples and ensure it performs to high-quality standards. Surplus material from seventy known PCP positive patient samples will be tested. Each sample will be analysed to see if the DNA genotype matches or is similar to other patient samples we have tested, helping to understand how PCP may spread between patients.

详细描述

We share our lives with microorganisms, and these generally do not pose a problem if an individual is healthy with a normal immune system. However, if the immune system was not functioning properly (e.g., cancer patients), they are at risk of infection. One microorganism, a fungus called Pneumocystis jirovecii (PCP), can cause severe chest infections in patients without properly functioning immune systems, leading to hospitalisation and death if untreated. If patients remain without a functioning immune system, they have a greater chance of repeated infection.

PCP spreads through air from person-to-person and can survive on environmental surfaces. Patients can be infected after contact with these surfaces. Hospitals have a responsibility to ensure PCP infected patients do not pass it on to other unwell patients. In cases where PCP has infected multiple patients, knowing if the same fungi has been passed along (or transmitted) from patient-to-patient is vital in understanding if there is an outbreak in the hospital. Understanding how similar (the relatedness) the PCP strain is allows healthcare workers to detect any transmission between patients or the environment.

To understand how related each patient's PCP infection is we will utilise a laboratory test called multilocus sequence typing (MLST). This test looks at sections of the fungi's genetic code using deoxyribonucleic acid (DNA) sequencing to create a code (genotype) which tells us how related one PCP is to others tested, allowing comparison between patients and ultimately spotting transmission.

Our aim is to develop this sequencing test using PCP positive patient samples and ensure it performs to high-quality standards. Surplus material from seventy known PCP positive patient samples will be tested. Each sample will be analysed to see if the DNA genotype matches or is similar to other patient samples we have tested, helping to understand how PCP may spread between patients.

研究设计

研究类型
Observational
观察模型
Case Only
时间视角
Retrospective

入排标准

年龄范围
18 Years 至 —(Adult, Older Adult)
性别
All
接受健康志愿者

入选标准

  • Total nucleic acid extracts from adult patients (over 18 years old) with a positive PCP diagnosis (& detected at > 50 copies/10ul) from routine respiratory panel testing.

排除标准

  • Total nucleic acid extracts from patients with a negative PCP diagnosis from routine respiratory panel testing
  • Total nucleic acid extracts from non-adult patients (under 18 years old).
  • PCP positive total nucleic extract samples with < 50 copies/10ul.
  • Patients included on the UK National Opt-Out register

结局指标

主要结局

Objective 1: Development of a MLST PCP genotyping assay within NUH.

时间窗: 18 months

The previously published MLST scheme by Pasic et al (2020) using alleles β-TUB, CYB, mt26S and SOD will be assessed, with each allele optimised and verified for implementation for Objective 2.

次要结局

  • Objective 2: Analyse PCP positive patient samples and identify the PCP genotype, assessing links between patient metadata and genotype(18 months)

研究者

申办方类型
Other
责任方
Sponsor

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