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Preparing for Life: Plasma Proteome Changes and Immune System Development During the First Week of Human Life
Tue Bjerg Bennike1,2,3,4, Benoit Fatou1,2,3, Asimenia Angelidou2,3,5
1Department of Pathology, Boston Children's Hospital, Boston, MA, United States.
Insights
Newborns show a developing immune system, with the classical complement pathway being key for early protection. This study reveals how protein levels change in the first week of life, offering insights into neonatal immunity.
Area of Science:
- Immunology
- Proteomics
- Neonatal Biology
Background:
- Neonates are highly susceptible to infections due to incompletely understood immune adaptations.
- Immune system development in newborns is influenced by resource constraints.
- Understanding neonatal immunity is crucial for preventing and treating infant diseases.
Purpose of the Study:
- To analyze the plasma proteome of healthy full-term newborns during the first week of life.
- To investigate the dynamics of complement system and immunoglobulin levels in neonates.
- To compare plasma protein levels with whole blood messenger RNA (mRNA) to understand immune regulation.
Main Methods:
- Proteomic analysis of peripheral blood-plasma using Liquid Chromatography-Mass Spectrometry (LC-MS).
- Parallel characterization of plasma protein and whole blood mRNA levels.
- Validation of findings in a geographically distinct cohort.
Main Results:
- Increased acute phase proteins and decreased inhibitors were observed on day of life (DOL) 1.
- Classical complement pathway components and the membrane attack complex (MAC) increased from birth, while lectin and alternative pathways decreased.
- Whole blood mRNA levels did not consistently reflect plasma protein dynamics for complement proteins.
- Increased IgM synthesis and maternally transferred IgG levels decreased, with endogenous IgG1 synthesis compensating for degradation.
- Neonatal plasma showed an elevated IgG1 to IgG2-4 ratio, indicating efficient transplacental transfer.
Conclusions:
- The classical complement pathway plays a central role in newborn immunity.
- The study provides crucial insights into immune ontogeny by analyzing plasma proteome and transcriptome in parallel.
- Findings can inform new strategies for preventing and treating neonatal diseases.
Abstract:
Neonates have heightened susceptibility to infections. The biological mechanisms are incompletely understood but thought to be related to age-specific adaptations in immunity due to resource constraints during immune system development and growth. We present here an extended analysis of our proteomics study of peripheral blood-plasma from a study of healthy full-term newborns delivered vaginally, collected at the day of birth and on day of life (DOL) 1, 3, or 7, to cover the first week of life. The plasma proteome was characterized by LC-MS using our established 96-well plate format plasma proteomics platform. We found increasing acute phase proteins and a reduction of respective inhibitors on DOL1. Focusing on the complement system, we found increased plasma concentrations of all major components of the classical complement pathway and the membrane attack complex (MAC) from birth onward, except C7 which seems to have near adult levels at birth. In contrast, components of the lectin and alternative complement pathways mainly decreased. A comparison to whole blood messenger RNA (mRNA) levels enabled characterization of mRNA and protein levels in parallel, and for 23 of the 30 monitored complement proteins, the whole blood transcript information by itself was not reflective of the plasma protein levels or dynamics during the first week of life. Analysis of immunoglobulin (Ig) mRNA and protein levels revealed that IgM levels and synthesis increased, while the plasma concentrations of maternally transferred IgG1-4 decreased in accordance with their in vivo half-lives. The neonatal plasma ratio of IgG1 to IgG2-4 was increased compared to adult values, demonstrating a highly efficient IgG1 transplacental transfer process. Partial compensation for maternal IgG degradation was achieved by endogenous synthesis of the IgG1 subtype which increased with DOL. The findings were validated in a geographically distinct cohort, demonstrating a consistent developmental trajectory of the newborn's immune system over the first week of human life across continents. Our findings indicate that the classical complement pathway is central for newborn immunity and our approach to characterize the plasma proteome in parallel with the transcriptome will provide crucial insight in immune ontogeny and inform new approaches to prevent and treat diseases.
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