CISRED / SCIENTIFIC SERVICES

Tools for
exploring
genomic systems.

Scientific services connecting genome engineering, regulatory biology, epigenetics, CRISPR technologies, and computational analysis.

GENOME ENGINEERING CRISPR REGULATORY GENOMICS COMPUTATIONAL BIOLOGY
01 SERVICES
01 / SERVICE ARCHITECTURE

From genomic
information to
biological insight.

CISRED brings together complementary approaches for studying, interpreting, and engineering genomic systems.

Our service framework follows the biological information itself — from sequence and genomic architecture through regulation, epigenetic state, genome engineering, and computational interpretation.

Each area represents a different layer of the same biological system, allowing research questions to be approached from multiple scientific perspectives.

02 / SCIENTIFIC SERVICE MAP

One platform.
Multiple research layers.

CISRED GENOMIC
SYSTEM
SCIENTIFIC SERVICES
01 CRISPR

Programmable genome editing and targeting.

02 GENOME ENGINEERING

Design and study of engineered genomic systems.

03 GENE REGULATION

Analysis of genomic control and gene activity.

04 EPIGENETICS

Exploration of chromatin and regulatory states.

05 COMPUTATIONAL GENOMICS

Data-driven analysis of biological information.

06 FUNCTIONAL GENOMICS

Connecting genomic variation with biological function.

03
TARGET
GUIDE
EDIT
GENOME EDITING

CRISPR
technologies.

CRISPR systems provide programmable approaches for targeting specific genomic sequences and studying how genetic changes influence biological systems.

  • CRISPR-Cas systems
  • Guide RNA design concepts
  • Target sequence analysis
  • Genome editing strategies
  • Base and prime editing concepts
REGULATORY BIOLOGY

Gene regulation
& epigenetics.

Genomic activity depends on regulatory elements, chromatin organization, transcriptional control, and epigenetic state. CISRED approaches these layers as interconnected components of genome function.

01 Regulatory elements
02 Gene expression
03 Chromatin state
04 Epigenetic regulation
DNA SEQUENCE
REGULATORY ELEMENTS
CHROMATIN
EPIGENETIC STATE
05 / COMPUTATIONAL GENOMICS

Where biological
questions become
data.

Computational approaches provide a framework for transforming complex genomic information into interpretable biological patterns.

01 SEQUENCE Genomic information
02 ANALYSIS Computational processing
03 PATTERN Biological relationships
04 INSIGHT Scientific interpretation
06 / FUNCTIONAL GENOMICS

Connecting
genotype
and function.

Functional genomics examines how genomic information relates to biological activity and phenotype. By connecting sequence, regulation, and biological function, researchers can investigate the consequences of genomic variation and engineered changes.

GENOTYPE Genomic variation
REGULATION Control mechanisms
EXPRESSION Biological activity
PHENOTYPE Functional outcome
07 / RESEARCH APPLICATIONS

Built around
scientific questions.

01

Functional Genomics

Investigating relationships between genomic information and biological function.

02

Disease Research

Exploring genomic and regulatory mechanisms associated with disease biology.

03

Molecular Diagnostics

Applying genomic information to molecular investigation and biological characterization.

04

Therapeutic Research

Supporting research involving genomic targets, regulation, and engineered biological systems.

05

Agricultural Genomics

Studying genomic mechanisms relevant to traits, regulation, and biological performance.

06

Systems Biology

Connecting molecular components to larger biological networks and systems.

CISRED / SCIENTIFIC SERVICES

Study the genome.
Understand its control.
Engineer what comes next.

SEQUENCE REGULATION EDITING COMPUTATION DISCOVERY