Planet Briefing

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P3.01.04 Bootstrap-Based Mediation Mendelian Randomization Unveils Gut Microbiota-Driven Metabolic-Immune Networks in Lung Cancer

Elsevier BV published a journal article reporting a study that used bootstrap-based mediation Mendelian randomization to identify gut microbiota–driven metabolic–immune networks in lung cancer. The source metadata identifies the content type as a journal article but provides no additional study details in the supplied excerpt.

A One goal would be the regeneration of thymic epithelium by direct differentiation of ES cells into cortical and medullary thymic progenitors which express graft antigens through the action of autoimmune regulator (AIRE) for re-educating the adult immune system. B Another goal would be to aim for “Hematopoietic mixed chimerism” using a mixture of both donor ES cell-derived and recipient hematopoietic stem cells (HSC) which then generate thymic dendritic cells (DC) capable of clonal deletion of
Illustrative image: A One goal would be the regeneration of thymic epithelium by direct differentiation of ES cells into cortical and medullary thymic progenitors which express graft antigens through the action of autoimmune regulator (AIRE) for re-educating the adult immune system. B Another goal would be to aim for “Hematopoietic mixed chimerism” using a mixture of both donor ES cell-derived and recipient hematopoietic stem cells (HSC) which then generate thymic dendritic cells (DC) capable of clonal deletion of — Lui, K.O., Fairchild, P.J., and Waldmann, H., Prospects for ensuring acceptance of ES cell-derived tissues (September 30, 2010), StemBook, ed. The Stem Cell Research Community, StemBook, doi/10.3824/stembook.1.54.1, http://www.stembook.org ./Wikimedia Commons, CC BY 3.0

Categories: science-and-space, public-health

Generated scores

Scores are based on the cited reporting and use a 1–10 scale. Read the methodology.

Confidence
6/10
Geographic reach
1/10
Global importance
3/10
Impact magnitude
3/10
Positivity
6/10
Urgency
1/10

Why it matters

The article reports identification of gut microbiota–driven metabolic and immune networks relevant to lung cancer research.

Sources

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