Steerable World ModelThe Programmable Future of Longevity Tech

AI×DNA Methylation×Data Flywheel

Detection

Capome®

Service

DeepKang®

Data Return

Real-world data feedback

Creation

CapoVime®

First Principles

Disease doesn't happen suddenly

It's the result of capacity reserves progressively failing along five defense lines.The deeper you test, the earlier you see the future of disease.

~18yrs
Warning Window
Aging Hallmarks
14 frameworks · 11 tested
~13yrs
Warning Window
Immune Aging
9 immune functions
~10yrs
Warning Window
Metabolic Aging
12 metabolic indicators
~5yrs
Warning Window
Organ Aging
18 organ aging metrics
0
Diagnosis
Diagnosis
Organ lesions → Diagnosis
Phenotype Alert
External symptoms during organ aging phase (poor complexion, fatigue, sleep issues) — non-specific, hard to quantify, may already be near disease when they appear
Traditional Model

Phenotype Alert → Diagnosis
Only 2-3 yrs intervention window

Deep Methylation Model

Aging Hallmarks → Diagnosis
10-20 yrs proactive intervention window

58 Indicators
10-20 yrs Earlier
Closed-Loop Management

While others only start after diagnosis;
Five defense lines let us start optimizing body state 10, 20 years before disease forms.

— Dr. Xiong Jianghui

Root Cause Network · Three-Layer Structure · Five Defense Lines — Aging Hallmarks (root cause layer) → Functional layer → Phenotype layer causal propagation and active intervention pathway

Three-Layer × Five Defense Lines · 58 Checkpoints | Disease propagates upward (root cause failure → advanced stage), active intervention reaches root cause directly

One saliva sample reveals your five defense lines

Three Innovation Tools

Detection

Data Collection Foundation

Capome®

Capability Omics

World's first, 14 aging hallmarks measurement tool Scan aging gaps, identify chronic disease root causes

Aging Hallmarks
🔬
Cell
🧬
Molecular
🦠
Biological
🫀
Organ
👤
Whole Body
Genomic InstabilityTelomere AttritionEpigeneticProteostasisMitochondriaCellular Senescence
Multi-scale Scanning: Cell
Live
Service

Real-World Data Service

DeepKang®

Longevity Medicine Agent Cluster

Private data knowledge base empowerment Panoramic characterization + Root cause analysis + Personalized solutions

Private Data Empowerment
Checkup
Functional Med
Aging Test
Plan A
Plan B
Plan C
Collecting Data...
Creation

AI Pharma Platform

CapoVime®

Virtual Clinical Agent

Real human multi-scale model Population, N=1 drug development

Certainty AI Pharma
Traditional Model
🧫Cell
🐁Animal
💻Virtual Cell
🔬Organ Chip
Clinical
Uncertainty
Our Model
👤Real Human Data
🔄Multi-scale Model
🎯MOA Discovery
💊Molecule Design
Certainty
Certainty
Real Human Data...

Exclusive Data Flywheel

Business Model Loop · Data Moat

Collect Data

Capome®

Saliva methylation testing enters database

Provide Service

DeepKang®

Personalized precision intervention

Data Return

DeepKang®

Real-world data feedback

Algorithm Evolution

CapoVime®

AI model continuous optimization

More Data → Stronger Models → Better Service → More Data

CapoVime® is built on the SteeraMed Steerable World Model framework, ensuring every causal reasoning step during model evolution is subject to deductive constraints, with traceable and correctable deviations.

Trustworthy Technical Foundation

SteeraMed Steerable World Model Framework

CapoVime® is built on the SteeraMed (Steerable World Model) framework. SteeraMed is a steerable medical world model paradigm proposed by DeepoMe. Rather than pursuing a larger "prediction black box," it ensures every inference is auditable, traceable, and correctable through five constraint checkpoints.

Doctors set the direction, the model walks steadily. That is Steerability.

About DeepOMe

Making Aging "Computable" and "Programmable"

Mission

Building a solid data foundation for the health industry using methylation language, making precision aging detection accessible to all.

Vision

When high-dimensional health information can be obtained anytime, anywhere, conveniently and at low cost, it will enable truly personalized treatment solutions - one person, one plan.

Company Profile

DeepOMe is a biocomputing company dedicated to making aging "computable" and "programmable". We have an exclusive data flywheel: Capome® for data acquisition, DeepKang® for service delivery and data return, CapoVime® for algorithm evolution.

Deep Methylation (Beijing) Biotechnology Co., Ltd.2022成立

Dr. Xiong Jianghui

CEO / Chief Scientist

Ph.D. in Computer Science, M.S. in Medicine, B.S. in Biology. Former Deputy Director of National Key Laboratory of Space Medicine, "Double Hundred Program" Talent.

Epigenetics research since 2006
15+ years in DNA methylation aging detection
Published 16 SCI papers (2006-2024)
Holds 9 invention patents
Led development of 1 industry standard
2009
Years of Methylation Research
3000+
Real-World Data Samples
16
Representative SCI Papers
9
Granted Invention Patents

Technology System

World's First DNA Methylation Aging Hallmark Direct Detection Technology

DNA Methylation Technology

DNA methylation is the "molecular source code" at the genome level, recording the complete log of life's adaptation to the environment. Our technology achieves direct detection of aging hallmarks, not indirect estimation.

Non-invasive Sampling

1mL saliva, room temperature transport

Direct Detection

Real measurement of aging hallmarks, not estimation

Multi-dimensional Assessment

14 aging hallmarks + 18 organ aging

AI-Driven

Large model empowered precision analysis

Capomics®

Our "Capomics" concept defines health as a "collection of abilities to adapt to the environment". Through multi-dimensional detection, we quantify individual intrinsic capacity reserves. Health is not structure, but capacity reserve. Capome inspects your capacity reserve along five defense lines—before reserves drop below functional thresholds and disease manifests.

14 Hallmarks Framework (K58 tests 11)
18 Organ Aging Assessment
9 Immune Aging Indicators
12 Metabolic Aging Analysis

Root Cause Medicine Framework

A paradigm shift from "symptomatic treatment" to "root cause treatment". Root cause medicine focuses on the fundamental causes of disease, not just treating symptoms.

L1

Phenome

Raw data layer - symptoms, clinical manifestations

L2

Functome

Runtime system - metabolic/immune/neuroendocrine networks

L3

Causome

Compressed model - DNA methylation/stem cells/mitochondria/telomere reserve

L1 Phenome = Phenotype Defense Line; L2 Functome = Organ/Metabolic/Immune Defense Lines; L3 Causome = Aging Hallmarks Defense Line. One capacity reserve, three-layer structure × five defense scales.

The three layers are not parallel but follow a causal direction: when the root layer (aging hallmarks / DNA methylation) falls → it drags down the functional layer above → ultimately manifests as phenotype — this is the disease reaching the deepest core. Active intervention must reach directly down to the root: the earlier you go deep, the more reversible it is. This is the fundamental logic of "Deep Methylation / starting from root causes".

Life's First Principle

Life is a collection of abilities to adapt to the environment and maintain sustainability. Health is "compressibility" (beauty), vitality is "compression progress" (interesting) = negative entropy acceleration.

L0 Trust Foundation

SteeraMed Steerable World Model

SteeraMed (Steerable World Model) defines five structural constraints for biomedical world models — state representation, capability quantification, intervention semantics, counterfactual reasoning, and quality control feedback. It is not another prediction model, but an architectural guarantee that models can be steered by doctors. Preprint is online and currently under global peer review.

Development Timeline

From Papers & Patents to Commercial Products

1998-2020

创始人团队技术积累

熊江辉博士团队在航天医学、DNA甲基化、网络药理学等领域的技术积累

2021

深度甲基公司创立

北京深度甲基健康技术有限公司成立,熊江辉博士担任创始人兼首席科学家

2023.10

Capome产品化落地

推出基于唾液DNA甲基化的器官老化检测技术,实现产品化落地

2024.11

衰老标志AI标准起草单位

《衰老标志物人工智能数据模型建立与应用指南》团体标准起草单位

2024.11

信号通路衰老时钟发布

将DNA甲基化衰老时钟从一维扩展到3000维度空间,全球首创

2025.05

DeepVime技术发布

发布深度药食功效在体图谱技术,提供无创药食功效评估解决方案

Partners & Clients

Collaborating with Top Institutions to Build Precision Medicine Ecosystem

Partners & Clients

Beijing Hospital, PLA General Hospital, Peking University Sixth Hospital, Peking University Cancer Hospital, Guangdong Provincial People's Hospital, Fudan University Cancer Hospital, Liaoning Cancer Hospital, PanaSea International Medical Center, Sichuan Cell Bank, Tsinghua University, Peking University, Wuhan University, Xi'an Jiaotong University, Fudan University, Sun Yat-sen University, Zhejiang University, Shenzhen University, Harbin Institute of Technology, Chinese Academy of Sciences, Meinian Health, Youlai Doctor, Tongtian Lake Longevity Medicine, Oriental Red Space Biology, Maoxing Biotechnology, Shilian Kangjian, BONTAC, UNISONS, GLABIOLUS, Jiangsu Industrial Technology Research Institute

Hospitals & Medical Institutions

  • Beijing Hospital
  • PLA General Hospital (PLAGH)
  • Peking University Sixth Hospital
  • Peking University Cancer Hospital
  • Guangdong Provincial People's Hospital
  • Fudan University Cancer Hospital
  • Liaoning Cancer Hospital
  • PanaSea International Medical Center
  • Sichuan Cell Bank

Universities & Research Institutes

  • Tsinghua University
  • Peking University
  • Wuhan University
  • Xi'an Jiaotong University
  • Fudan University
  • Sun Yat-sen University
  • Zhejiang University
  • Shenzhen University
  • Harbin Institute of Technology (HIT)
  • Chinese Academy of Sciences

Enterprise Partners

  • Meinian Health
  • Youlai Doctor
  • Tongtian Lake Longevity Medicine
  • Oriental Red Space Biology
  • Maoxing Biotechnology
  • Shilian Kangjian
  • BONTAC
  • UNISONS
  • GLABIOLUS
  • Jiangsu Industrial Technology Research Institute

DeepOMe's technology allows us to comprehensively see the changes in various physiological functions during the recovery period after treatment, which is closely related to clinical efficacy.

—— CEO of a Universal Cell Drug Development Company

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Empowering Longevity Medicine Institutions

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Address

B219, New Nest Innovation Center, Building 2, No. 9 Yike Road, Life Science Park, Changping District, Beijing