RESEARCH BASE
Search 3,721 documents across 34 fields — every claim tier-rated by evidence
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.
7 results for "checkpoint inhibitor"
X_3_18 — Immunotherapy: From Coley's Toxins to Checkpoint Inhibitors
Immunotherapy — harnessing the immune system to fight cancer and other diseases — was pioneered by William Coley (Memorial Hospital, New York), who injected bacterial toxins into inoperable sarcomas beginning in 1891 and
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
Z_2_16 — Cancer Genomics & Precision Oncology
Cancer genomics — the comprehensive analysis of the genetic alterations that drive cancer initiation, progression, and resistance to therapy — has transformed oncology from a tissue-of-origin classification system into a
Z_4_11 — The Cell Cycle: Division, Checkpoints, and Cancer
The cell cycle — the ordered series of events by which a cell grows, replicates its DNA, and divides into two daughter cells — is one of the most fundamental processes in biology and one of the most intensively studied i
X_4_17 — Rheumatology: Autoimmune Disease and Joint Pathology
Rheumatology is the medical specialty devoted to the diagnosis and treatment of diseases affecting joints, bones, muscles, and connective tissues, with particular emphasis on autoimmune and inflammatory conditions. The f
Z_1_13 — DNA Repair Mechanisms and Genome Stability
Every human cell sustains an estimated 10,000–100,000 DNA lesions per day from endogenous sources alone — oxidative metabolism, spontaneous hydrolysis, replication errors, and reactive metabolites — while environmental m
R_5_21 — Turing Patterns: Mathematical Morphogenesis and Biological Pattern Formation
In his landmark 1952 paper "The Chemical Basis of Morphogenesis," Alan Turing proposed that biological patterns — stripes, spots, spirals, and branching structures — could arise spontaneously from the interaction of two
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