Organ Transplantation - Gods
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Organ Transplantation

Disease / Phenomenon

Organ transplantation replaces a failing kidney, liver, heart, lung, pancreas, or intestine with a functioning graft from a living or deceased donor. It is often the only definitive treatment for end-stage organ failure, and outcomes have improved dramatically, yet the central biological obstacle remains: the recipient's immune system recognizes donor tissue as foreign and mounts a response against it. Managing that response requires lifelong immunosuppression, which in turn raises risks of infection, malignancy, nephrotoxicity, and metabolic complications — a permanent balancing act between rejection and over-suppression. Additional challenges include ischemia-reperfusion injury during retrieval and implantation, chronic graft dysfunction, and a persistent shortage of suitable donor organs.

Rejection biology begins with recognition of donor major histocompatibility complex molecules, either directly by recipient T cells or indirectly after processing by recipient antigen-presenting cells. T cell activation requires signal one through the T cell receptor, signal two via CD28-B7 costimulation, and signal three through IL-2 and downstream JAK-STAT and mTOR signaling — the targets of most immunosuppressive agents. Antibody-mediated rejection involves donor-specific antibodies, complement activation, and endothelial injury. Innate inflammation from ischemia-reperfusion, oxidative stress, and TGF-beta-driven fibrosis shape long-term outcomes. This page maps these processes to pathways and biomarkers.

Biological Processes of Organ Transplantation

Explore the key biological processes that drive organ transplantation, from cellular mechanisms through tissue-level responses.

Oxidative Stress
2 pathway(s)
NRF2/HO-1 Signaling
Target: Keap1
HO-1
♧ Ingredient: Green Tea ⌬ Compound: EGCG
GSH
♧ Ingredient: Green Tea ⌬ Compound: EGCG
NADPH
♧ Ingredient: Green Tea ⌬ Compound: EGCG
NRF2/Keap Signaling
Target: Nrf2
HO-1
♧ Ingredient: Green Tea ⌬ Compound: Epicatechin
GSH
♧ Ingredient: Green Tea ⌬ Compound: Epicatechin
NADPH
♧ Ingredient: Green Tea ⌬ Compound: Epicatechin
Inflammation
6 pathway(s)
TNF-α/TNFR2 Signaling
Target: STAT5
TGF-β
♧ Ingredient: Green Tea ⌬ Compound: EGCG
IL-10
♧ Ingredient: Green Tea ⌬ Compound: EGCG
HMGB-1/HSP60 Signaling
Target: NF-κB
TNF-α
♧ Ingredient: Green Tea ⌬ Compound: EGCG
MCP-1
♧ Ingredient: Green Tea ⌬ Compound: EGCG
IL-1β
♧ Ingredient: Green Tea ⌬ Compound: EGCG
and IFN-γ
♧ Ingredient: Green Tea ⌬ Compound: EGCG
TCR Signaling
Target: ZAP-70
IL-2
♧ Ingredient: Green Tea ⌬ Compound: EGCG
IL-6 Signaling
Target: STAT3
IL-17
♧ Ingredient: Green Tea ⌬ Compound: EGCG
IL-22
♧ Ingredient: Green Tea ⌬ Compound: EGCG
IL-21
♧ Ingredient: Green Tea ⌬ Compound: EGCG
6-Lamin Receptor Signaling
Target: Tollip
TLR4
♧ Ingredient: Green Tea ⌬ Compound: EGCG
IMPDH Signaling
Target: IMPDH
IMP
♧ Ingredient: Green Tea ⌬ Compound: EGCG
XMP
♧ Ingredient: Green Tea ⌬ Compound: EGCG

Compounds affecting Organ Transplantation

Browse active compounds and their direct impact on organ transplantation biological processes, pathways, and biomarkers.

Oxidative Stress
NRF2/HO-1 Signaling
HO-1
♧ Ingredient: Green Tea ⌬ Compound: EGCG
GSH
♧ Ingredient: Green Tea ⌬ Compound: EGCG
NADPH
♧ Ingredient: Green Tea ⌬ Compound: EGCG
Inflammation
TNF-α/TNFR2 Signaling
TGF-β
♧ Ingredient: Green Tea ⌬ Compound: EGCG
IL-10
♧ Ingredient: Green Tea ⌬ Compound: EGCG
Inflammation
HMGB-1/HSP60 Signaling
TNF-α
♧ Ingredient: Green Tea ⌬ Compound: EGCG
MCP-1
♧ Ingredient: Green Tea ⌬ Compound: EGCG
IL-1β
♧ Ingredient: Green Tea ⌬ Compound: EGCG
and IFN-γ
♧ Ingredient: Green Tea ⌬ Compound: EGCG
Inflammation
TCR Signaling
IL-2
♧ Ingredient: Green Tea ⌬ Compound: EGCG
Inflammation
IL-6 Signaling
IL-17
♧ Ingredient: Green Tea ⌬ Compound: EGCG
IL-22
♧ Ingredient: Green Tea ⌬ Compound: EGCG
IL-21
♧ Ingredient: Green Tea ⌬ Compound: EGCG
Inflammation
6-Lamin Receptor Signaling
TLR4
♧ Ingredient: Green Tea ⌬ Compound: EGCG
Inflammation
IMPDH Signaling
IMP
♧ Ingredient: Green Tea ⌬ Compound: EGCG
XMP
♧ Ingredient: Green Tea ⌬ Compound: EGCG
Oxidative Stress
NRF2/Keap Signaling
HO-1
♧ Ingredient: Green Tea ⌬ Compound: Epicatechin
GSH
♧ Ingredient: Green Tea ⌬ Compound: Epicatechin
NADPH
♧ Ingredient: Green Tea ⌬ Compound: Epicatechin

Ingredients affecting Organ Transplantation

Explore therapeutic ingredients and their constituent compounds that modulate organ transplantation biology.

2 active compound(s)
Oxidative Stress → NRF2/HO-1 Signaling
HO-1
♧ Ingredient: Green Tea ⌬ Compound: EGCG
GSH
♧ Ingredient: Green Tea ⌬ Compound: EGCG
NADPH
♧ Ingredient: Green Tea ⌬ Compound: EGCG
Oxidative Stress → NRF2/Keap Signaling
HO-1
♧ Ingredient: Green Tea ⌬ Compound: Epicatechin
GSH
♧ Ingredient: Green Tea ⌬ Compound: Epicatechin
NADPH
♧ Ingredient: Green Tea ⌬ Compound: Epicatechin