Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

How could metabolomics change pediatric health?

View through CrossRef
AbstractIn the last years, ‘omics’ technologies, and especially metabolomics, emerged as expanding scientific disciplines and promising technologies in the characterization of several pathophysiological processes.In detail, metabolomics, able to detect in a dynamic way the whole set of molecules of low molecular weight in cells, tissues, organs, and biological fluids, can provide a detailed phenotypic portray, representing a metabolic “snapshot.”Thanks to its numerous strength points, metabolomics could become a fundamental tool in human health, allowing the exact evaluation of individual metabolic responses to pathophysiological stimuli including drugs, environmental changes, lifestyle, a great number of diseases and other epigenetics factors.Moreover, if current metabolomics data will be confirmed on larger samples, such technology could become useful in the early diagnosis of diseases, maybe even before the clinical onset, allowing a clinical monitoring of disease progression and helping in performing the best therapeutic approach, potentially predicting the therapy response and avoiding overtreatments. Moreover, the application of metabolomics in nutrition could provide significant information on the best nutrition regimen, optimal infantile growth and even in the characterization and improvement of commercial products’ composition.These are only some of the fields in which metabolomics was applied, in the perspective of a precision-based, personalized care of human health.In this review, we discuss the available literature on such topic and provide some evidence regarding clinical application of metabolomics in heart diseases, auditory disturbance, nephrouropathies, adult and pediatric cancer, obstetrics, perinatal conditions like asphyxia, neonatal nutrition, neonatal sepsis and even some neuropsychiatric disorders, including autism.Our research group has been interested in metabolomics since several years, performing a wide spectrum of experimental and clinical studies, including the first metabolomics analysis of human breast milk. In the future, it is reasonable to predict that the current knowledge could be applied in daily clinical practice, and that sensible metabolomics biomarkers could be easily detected through cheap and accurate sticks, evaluating biofluids at the patient’s bed, improving diagnosis, management and prognosis of sick patients and allowing a personalized medicine. A dream? May be I am a dreamer, but I am not the only one.
Title: How could metabolomics change pediatric health?
Description:
AbstractIn the last years, ‘omics’ technologies, and especially metabolomics, emerged as expanding scientific disciplines and promising technologies in the characterization of several pathophysiological processes.
In detail, metabolomics, able to detect in a dynamic way the whole set of molecules of low molecular weight in cells, tissues, organs, and biological fluids, can provide a detailed phenotypic portray, representing a metabolic “snapshot.
”Thanks to its numerous strength points, metabolomics could become a fundamental tool in human health, allowing the exact evaluation of individual metabolic responses to pathophysiological stimuli including drugs, environmental changes, lifestyle, a great number of diseases and other epigenetics factors.
Moreover, if current metabolomics data will be confirmed on larger samples, such technology could become useful in the early diagnosis of diseases, maybe even before the clinical onset, allowing a clinical monitoring of disease progression and helping in performing the best therapeutic approach, potentially predicting the therapy response and avoiding overtreatments.
Moreover, the application of metabolomics in nutrition could provide significant information on the best nutrition regimen, optimal infantile growth and even in the characterization and improvement of commercial products’ composition.
These are only some of the fields in which metabolomics was applied, in the perspective of a precision-based, personalized care of human health.
In this review, we discuss the available literature on such topic and provide some evidence regarding clinical application of metabolomics in heart diseases, auditory disturbance, nephrouropathies, adult and pediatric cancer, obstetrics, perinatal conditions like asphyxia, neonatal nutrition, neonatal sepsis and even some neuropsychiatric disorders, including autism.
Our research group has been interested in metabolomics since several years, performing a wide spectrum of experimental and clinical studies, including the first metabolomics analysis of human breast milk.
In the future, it is reasonable to predict that the current knowledge could be applied in daily clinical practice, and that sensible metabolomics biomarkers could be easily detected through cheap and accurate sticks, evaluating biofluids at the patient’s bed, improving diagnosis, management and prognosis of sick patients and allowing a personalized medicine.
A dream? May be I am a dreamer, but I am not the only one.

Related Results

The Pediatric Anesthesiology Workforce: Projecting Supply and Trends 2015–2035
The Pediatric Anesthesiology Workforce: Projecting Supply and Trends 2015–2035
BACKGROUND: A workforce analysis was conducted to predict whether the projected future supply of pediatric anesthesiologists is balanced with the requirements o...
The Geographic Distribution of Pediatric Anesthesiologists Relative to the US Pediatric Population
The Geographic Distribution of Pediatric Anesthesiologists Relative to the US Pediatric Population
BACKGROUND: The geographic relationship between pediatric anesthesiologists and the pediatric population has potentially important clinical and policy implications. In ...
“The Earth Is Dying, Bro”
“The Earth Is Dying, Bro”
Climate Change and Children Australian children are uniquely situated in a vast landscape that varies drastically across locations. Spanning multiple climatic zones—from cool tempe...
Evaluating the Need for Pediatric Procedural Sedation Training in Pediatric Critical Care Medicine Fellowship*
Evaluating the Need for Pediatric Procedural Sedation Training in Pediatric Critical Care Medicine Fellowship*
Objectives: Pediatric procedural sedation has been increasingly performed by pediatric intensivists over the past decade. Pediatric Critical Care Medicine fellowship gu...
Unveiling the Burden of Cardiovascular Disorders in Pediatric Stroke—Insights from Pakistan
Unveiling the Burden of Cardiovascular Disorders in Pediatric Stroke—Insights from Pakistan
Pediatric stroke, though relatively uncommon, poses significant clinical challenges due to its high rates of morbidity and mortality [1]. Its incidence varies with age, remaining l...
ACKNOWLEDGMENTS
ACKNOWLEDGMENTS
The UP Manila Health Policy Development Hub recognizes the invaluable contribution of the participants in theseries of roundtable discussions listed below: RTD: Beyond Hospit...
Investigation of pathogenesis of hyperuricemia based on untargeted and targeted metabolomics
Investigation of pathogenesis of hyperuricemia based on untargeted and targeted metabolomics
AbstractHyperuricemia (HUA) seriously harms human health but the exact etiology and pathogenesis of HUA are not fully understood. Therefore, it is still of great significance to fi...
From Targeted Quantification to Untargeted Metabolomics
From Targeted Quantification to Untargeted Metabolomics
Metabolomics is an emerging and rapidly evolving technology tool, which involves quantitative and qualitative metabolite assessments science. It offers tremendous promise for diffe...

Back to Top