RESEARCH BASE

Search 3,721 documents across 34 fields — every claim tier-rated by evidence

3,721 Documents 34 Sections 43,625 Citations 34,852 Keywords Indexed 4 Evidence Tiers

3,633 are the core, quality-scored corpus (34 lettered sections — see How We Work); the remaining 88 are cross-corpus synthesis documents (68 InterDocs, 12 Connections, 8 Theories) also indexed here.

46 results for "glucocorticoid receptor methylation" — page 1 of 3

Verified

INTERDOC_59 — Intergenerational Trauma: A Three-Channel Synthesis (Epigenetic, Psychological, Cultural)

Trauma is empirically heritable — but not through any single mechanism. The dominant public framing (epigenetics-as-Lamarckism) is overconfident; the dominant academic counter-framing (it's all attachment / it's all cult

intergenerational trauma transgenerational epigenetic inheritance FKBP5 glucocorticoid receptor methylation Holocaust descendants Dutch Hunger Winter
L_4_17 Credible Genetics & Origins

L_4_17 — Transgenerational Epigenetic Trauma

Transgenerational epigenetic inheritance of trauma — the hypothesis that severe stress, famine, or psychological trauma experienced by one generation can alter the epigenetic marks (DNA methylation, histone modifications

transgenerational epigenetics epigenetic inheritance trauma cortisol PTSD Holocaust survivors
R_3_19 Verified Biology & Evolution

R_3_19 — Bacterial Chemotaxis and Signal Transduction

Bacterial chemotaxis — the ability of bacteria to sense chemical gradients in their environment and direct their movement accordingly — is one of the most thoroughly understood signal transduction systems in all of biolo

chemotaxis bacteria signal transduction two-component system chemoreceptor CheA
Z_2_21 Verified Molecular Biology

Z_2_21 — Epigenetic Aging Clocks

Epigenetic aging clocks are mathematical models that use patterns of DNA methylation at specific CpG dinucleotides across the genome to estimate an individual's biological age with remarkable accuracy — typically within

epigenetic clock DNA methylation biological age Horvath clock GrimAge aging
Z_1_17 Verified Molecular Biology

Z_1_17 — Environmental Epigenetics & Toxicogenomics

Environmental epigenetics examines how chemical exposures, nutritional states, and ecological stressors modify gene expression without altering DNA sequence — through DNA methylation, histone modifications, and non-codin

epigenetics toxicogenomics endocrine disruptors PFAS transgenerational inheritance DNA methylation
K_3_17 Verified Consciousness

K_3_17 — Psychedelic Consciousness — DMT, Psilocybin Neural Effects

The psychedelic renaissance in neuroscience — a period of renewed scientific investigation beginning circa 2006 after decades of regulatory restriction — has produced an unprecedented body of neuroimaging, pharmacologica

psychedelic psilocybin DMT dimethyltryptamine LSD 5-HT2A receptor
L_5_05 Verified Genetics & Origins

L_5_05 — Epigenetic Clocks: Measuring Biological Age

Epigenetic clocks are mathematical models that estimate biological age — the physiological age of an organism's cells and tissues — based on DNA methylation patterns at specific CpG sites (regions where a cytosine nucleo

epigenetic clock DNA methylation biological age Horvath clock Hannum clock GrimAge
X_5_09 Verified Medicine & Healing

X_5_09 — Pharmacology: The Science of Drugs and Their Actions

Pharmacology — the science of drugs — investigates how chemical substances interact with biological systems to produce therapeutic, toxic, or other effects. The discipline encompasses pharmacokinetics (what the body does

pharmacology drug receptor pharmacokinetics pharmacodynamics clinical trials
X_3_28 Verified Medicine & Healing

X_3_28 — Cancer Immunotherapy Revolution

Cancer immunotherapy — harnessing the body's own immune system to recognize and destroy tumor cells — has transformed oncology from a field dominated by surgery, radiation, and chemotherapy into one where the immune syst

cancer immunotherapy checkpoint inhibitor PD-1 PD-L1 CTLA-4 CAR-T
Verified

INTERDOC_74 — Transgenerational Epigenetic Inheritance: Confirmed Mechanisms and Honest Limits

[KEY FINDING] Specific environmentally-induced epigenetic states (notably from severe famine and from controlled fear-conditioning paradigms) can survive embryonic reprogramming and influence offspring phenotype across o

epigenetic inheritance DNA methylation Dutch Hunger Winter intergenerational trauma FKBP5 IGF2
Z_5_06 Verified Molecular Biology

Z_5_06 — Circulating Cell-Free DNA: Liquid Biopsies and Non-Invasive Diagnostics

Circulating cell-free DNA (cfDNA) — fragments of DNA released into the bloodstream and other body fluids through cell death (apoptosis, necrosis), active secretion, and other mechanisms — has emerged as a revolutionary t

cell-free DNA cfDNA liquid biopsy circulating tumor DNA ctDNA non-invasive prenatal testing
Z_5_07 Verified Molecular Biology

Z_5_07 — Epigenome Mapping: Charting the Chemical Modifications of DNA and Chromatin

Epigenome mapping — the systematic, genome-wide identification and quantification of epigenetic modifications (chemical marks on DNA and histone proteins that regulate gene expression without changing the underlying DNA

epigenome DNA methylation bisulfite sequencing ATAC-seq ChIP-seq histone modification
Z_3_08 Verified Molecular Biology

Z_3_08 — Genetics of Taste and Smell

Taste and smell perception are profoundly shaped by genetics, with variation in chemosensory receptor genes producing dramatically different sensory worlds between individuals. The olfactory receptor (OR) gene family — d

taste genetics olfactory genetics olfactory receptor OR genes gustatory receptor TAS2R
Z_3_02 Verified Molecular Biology

Z_3_02 — Epigenetic Inheritance & Transgenerational Effects

Epigenetic inheritance refers to the transmission of phenotypic information across generations through mechanisms other than changes in DNA sequence. The three primary molecular mechanisms — DNA methylation, histone modi

epigenetics transgenerational inheritance DNA methylation histone modification Dutch Hunger Winter Överkalix
Z_2_10 Verified Molecular Biology

Z_2_10 — Genetics of Aging and Progeria

Aging — the progressive decline in physiological function leading to increased vulnerability to disease and death — has a substantial genetic component: twin studies estimate heritability of human lifespan at ~25–30% (He

aging genetics progeria Hutchinson-Gilford progeria HGPS LMNA lamin A
Z_2_12 Verified Molecular Biology

Z_2_12 — Genetics of Pain Perception

Pain perception — the subjective experience triggered by actual or potential tissue damage — varies enormously across individuals, with genetic factors accounting for 25–50% of the variance in pain sensitivity (twin stud

pain genetics nociception SCN9A Nav1.7 congenital insensitivity to pain TRPV1
Z_2_06 Credible Molecular Biology

Z_2_06 — Nutrigenomics and Diet-Gene Interactions

Nutrigenomics — the study of how genetic variation influences nutritional requirements, dietary responses, and disease susceptibility — and its complement nutrigenetics (how diet influences gene expression) represent a r

nutrigenomics nutrigenetics diet-gene interaction lactase persistence alcohol metabolism folate metabolism
Z_2_11 Verified Molecular Biology

Z_2_11 — Genetics of Immunity and MHC Diversity

The major histocompatibility complex (MHC) — known as the human leukocyte antigen (HLA) system in humans — is the most polymorphic gene region in the human genome, encoding cell-surface glycoproteins essential for adapti

major histocompatibility complex MHC HLA human leukocyte antigen adaptive immunity antigen presentation
Z_2_23 Verified Molecular Biology

Z_2_23 — Immune System & Immunology

The immune system is a multi-layered defense network that protects organisms against pathogens including bacteria, viruses, fungi, and parasites. It comprises two interconnected arms: innate immunity, which provides rapi

immune system innate immunity adaptive immunity T cells B cells antibodies
Z_1_04 Verified Molecular Biology

Z_1_04 — Gene Expression and Regulation

Gene expression regulation — the molecular mechanisms controlling when, where, and how much each gene is active — is the central process that enables a single genome to produce ~200 distinct cell types, orchestrate embry

gene expression regulation transcription factors promoter enhancer epigenetics