References

Citations

TTR-targeted RNAi therapies (ONPATTRO/patisiran, AMVUTTRA/vutrisiran) are cited on this page as external approved precedent only. They are FDA-approved medicines developed by their respective sponsors. Cellico Bio does not manufacture, prescribe, or validate those therapies. Cellico Bio's contribution is a separate software and governance layer that performs source-grounded fragment review-region search across changing biological context. The TTR citations are included here because they anchor an external precedent that target-modulation of an amyloidogenic protein is achievable in humans; they are not a claim that Cellico Bio treats hATTR, performs RNAi, or modifies any disease. See /cellico/disclaimer for the full claim boundary.

Public-source references used by the Cellico Bio publication companion surfaces. Each entry names the canonical source and what the public page uses it for. No private Cellico Bio data, scorer internals, candidate identifiers, or row-level fragment data appear here or on any public surface.

  • DATABASE_ENTRY

    UniProt entry P37840 — human α-synuclein (SNCA)

    UniProt Knowledgebase, EMBL-EBI / SIB / PIR. Reference entry, 140 residues.

    Used for: Public protein identity, residue count, and region annotations (N-terminal amphipathic, NAC, C-terminal acidic) used by the /cellico/pipeline IDP structure-context and ensemble panels.

  • DATABASE_REFERENCE_PAPER

    UniProt: the Universal Protein Knowledgebase in 2025

    The UniProt Consortium. Nucleic Acids Research, 2025.

    Used for: Citation of the UniProt resource that supplies the public α-synuclein reference entry.

  • DATABASE_ENTRY

    RCSB PDB entry 9A1A — α-synuclein monomer ensemble structure

    RCSB Protein Data Bank.

    Used for: Public ensemble / integrative structure context for α-synuclein shown in the schematic IDP figures. Not used as a fixed-fold structure.

  • PEER_REVIEWED_ARTICLE

    The structural heterogeneity of α-synuclein is governed by several distinct subpopulations with interconversion times slower than milliseconds

    Chen et al. Structure, 2021.

    Used for: Public-literature support for α-synuclein structural heterogeneity / ensemble framing referenced by the ensemble context panel.

  • DATABASE_ENTRY

    AlphaFold DB entry AF-P37840-F1 — computed model of α-synuclein

    AlphaFold Protein Structure Database, EMBL-EBI / DeepMind.

    Used for: Source of per-residue pLDDT model confidence shown as a separate model-confidence layer. Not interpreted as a disorder probability.

  • DATABASE_REFERENCE_PAPER

    AlphaFold Protein Structure Database: massively expanding the structural coverage of protein-sequence space with high-accuracy models

    Varadi et al. Nucleic Acids Research, 2022.

    Used for: Citation of the AlphaFold Protein Structure Database that provides the AF-P37840-F1 model entry.

  • PEER_REVIEWED_ARTICLE

    Highly accurate protein structure prediction with AlphaFold

    Jumper et al. Nature, 2021.

    Used for: Method citation for the AlphaFold model and pLDDT confidence metric used as the model-confidence layer.

  • PEER_REVIEWED_ARTICLE

    Intrinsically Disordered Tardigrade Proteins Self-Assemble into Fibrous Gels in Response to Environmental Stress

    Angewandte Chemie International Edition, 2021. Open-access PMCID PMC9299615.

    Used for: Bridge-context citation for the tardigrade stress-protein context shown on the legacy /cellico/pitch walkthrough. Used as public literature context only — not a Cellico Bio validation result. The example protein name remains pending Cellico Bio source approval per the cellico-bio tardigrade example data contract.

  • DATABASE_REFERENCE_PAPER

    DisProt in 2024

    Aspromonte et al. Nucleic Acids Research, 2024. DisProt: the database of intrinsically disordered proteins.

    Used for: Public reference for intrinsically disordered protein context. Used as background literature; no DisProt scores are rendered.

  • REGULATORY_LABEL

    DailyMed label — ONPATTRO (patisiran) lipid complex injection

    U.S. National Library of Medicine DailyMed.

    Used for: External regulatory-label anchor for the TTR approved RNAi precedent node in the Lineage Spatiotemporal Fragment Atlas. It is not a Cellico Bio output.

  • REGULATORY_LABEL

    DailyMed label — AMVUTTRA (vutrisiran) injection

    U.S. National Library of Medicine DailyMed.

    Used for: External regulatory-label anchor for RNAi target-modulation precedent around transthyretin. It is kept separate from Cellico Bio fragment review-region search.

  • REGULATORY_LABEL

    FDA CDER science article — RNA-based medicine

    U.S. Food and Drug Administration, Center for Drug Evaluation and Research.

    Used for: FDA public context for patisiran as an RNA-based medicine. The atlas uses this as external precedent only.

  • PEER_REVIEWED_ARTICLE

    Senile systemic amyloidosis affects 25% of the very aged and associates with genetic variation in alpha2-macroglobulin and tau

    Tanskanen et al. Annals of Medicine, 2008.

    Used for: Text-citation context for oldest-old wild-type transthyretin amyloid / senile systemic amyloidosis placement near the somatic endpoint.

  • PEER_REVIEWED_ARTICLE

    Clinical features and survival in senile systemic amyloidosis: comparison to familial transthyretin cardiomyopathy

    Connors et al. Amyloid, 2011.

    Used for: Text-citation context for male-skewed late-life wild-type transthyretin amyloid observations. Not a Cellico Bio treatment claim.

  • PEER_REVIEWED_ARTICLE

    Supercentenarians and transthyretin amyloidosis: the next frontier of human life extension

    Coles and Young. Preventive Medicine, 2012.

    Used for: Text-citation context for transthyretin amyloidosis in supercentenarian / extreme-old-age discussion. Not a longevity intervention claim.

  • PEER_REVIEWED_ARTICLE

    The serial cultivation of human diploid cell strains

    Hayflick and Moorhead. Experimental Cell Research, 1961.

    Used for: Text-citation context for replicative limits in the Lineage Spatiotemporal Fragment Atlas. Not a Cellico Bio validation result.

  • PEER_REVIEWED_ARTICLE

    A proteomic atlas of senescence-associated secretomes for aging biomarker development

    Basisty et al. PLOS Biology, 2020.

    Used for: Text-citation context for the senescence module and SASP wording.

  • PEER_REVIEWED_ARTICLE

    The senescence-associated secretory phenotype: the dark side of tumor suppression

    Coppe et al. Annual Review of Pathology, 2010.

    Used for: Text-citation context for senescence-associated secretory phenotype language.

  • PEER_REVIEWED_ARTICLE

    Cellular Senescence: Defining a Path Forward

    Gorgoulis et al. Cell, 2019.

    Used for: Text-citation context for cellular senescence terminology and boundaries.

  • PEER_REVIEWED_ARTICLE

    Undulating changes in human plasma proteome profiles across the lifespan

    Lehallier et al. Nature Medicine, 2019.

    Used for: Text-citation context for proteomic aging-wave references in the atlas.

  • PEER_REVIEWED_ARTICLE

    Organ aging signatures in the plasma proteome track health and disease

    Oh et al. Nature, 2023.

    Used for: Text-citation context for organ and aging-state proteomic references.

  • PEER_REVIEWED_ARTICLE

    Proteomic aging atlas

    Ding et al. Cell, 2025.

    Used for: Text-citation-only context for aging-wave language. Figure assets are not reused.

  • PEER_REVIEWED_ARTICLE

    The dynamics of mitochondrial DNA heteroplasmy: implications for human health and disease

    Stewart and Chinnery. Nature Reviews Genetics, 2015.

    Used for: Text-citation context for maternal mitochondrial inheritance framing.

  • PEER_REVIEWED_ARTICLE

    Precisely measured protein lifetimes in the mouse brain reveal differences across tissues and subcellular fractions

    Fornasiero et al. Nature Communications, 2018.

    Used for: Text-citation context for long-lived protein references in aging-context layers.

  • PEER_REVIEWED_ARTICLE

    Variation in the Human Immune System Is Largely Driven by Non-Heritable Influences

    Brodin et al. Cell, 2015.

    Used for: Caveat citation for immune-context wording; avoids simple inherited adult-immune-state claims.

  • PEER_REVIEWED_ARTICLE

    Immune mechanisms at the maternal-fetal interface: perspectives and challenges

    PrabhuDas et al. Nature Immunology, 2015.

    Used for: Text-citation context for gestational immune-environment framing.

  • PEER_REVIEWED_ARTICLE

    Immunology of the maternal-fetal interface

    Erlebacher. Nature Reviews Immunology, 2013.

    Used for: Text-citation context for maternal-fetal immune tolerance language.

  • PEER_REVIEWED_ARTICLE

    Placental transfer of maternal antibodies

    Mimoun et al. Frontiers in Immunology, 2020.

    Used for: Text-citation context for maternal-antibody / early-life immune-context wording.

  • PEER_REVIEWED_ARTICLE

    The deteriorating soma and the indispensable germline: gamete senescence and offspring fitness

    Monaghan and Metcalfe. Proceedings of the Royal Society B, 2019.

    Used for: Text-citation context for germ-line/soma framing in the atlas schematic.

  • PEER_REVIEWED_ARTICLE

    Oocyte long-lived proteins maintain fertility and embryonic development

    Nature Cell Biology, 2024.

    Used for: Text-citation context for oocyte long-lived proteome labels. Local source-vault import pending.

  • PEER_REVIEWED_ARTICLE

    Oocyte macromolecule longevity context

    PubMed-indexed article, PMID 39480006.

    Used for: Text-citation context for oocyte macromolecule longevity labels. Local source-vault import pending.

  • PEER_REVIEWED_ARTICLE

    Paternal contribution: new insights and future challenges

    Krawetz. Nature Reviews Genetics, 2005.

    Used for: Text-citation context for sperm contribution beyond DNA. Local source-vault import pending.

  • PEER_REVIEWED_ARTICLE

    Sperm perinuclear theca and protein cargo context

    PubMed-indexed article, PMID 35252197.

    Used for: Text-citation context for sperm-borne protein cargo labels. Local source-vault import pending.

  • PEER_REVIEWED_ARTICLE

    Sperm factors and oocyte activation context

    PubMed-indexed article, PMID 26780328.

    Used for: Text-citation context for sperm-side fertilization and activation labels. Local source-vault import pending.