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Global 3D Cell Culture (Scaffold Based, Scaffold Free) Market Size, Share & Trends Analysis Report 2023-2030 – ResearchAndMarkets.com

DUBLIN–(BUSINESS WIRE)–The “3D Cell Culture Market Size, Share & Trends Analysis Report By Technology (Scaffold Based, Scaffold Free), By Application (Cancer, Drug Development), By End-use, By Region, And Segment Forecasts, 2023-2030” report has been added to ResearchAndMarkets.com’s offering.


The global 3D cell culture market size is expected to reach USD 3.31 billion by 2030, expanding at 11.04% CAGR from 2023 to 2030.

The in-vitro testing market is on the rise, propelled by continuous technological advancements in testing models, a growing emphasis on personalized medicine, and supportive government regulations fostering research and development (R&D). Additionally, the increasing prevalence of chronic diseases and the rising significance of cell therapies in their treatment are creating momentum for the industry’s expansion.

A Significant Leap with 3D Culture Models

Tissue engineering has achieved remarkable progress by developing 3D culture models that closely mimic in-vivo conditions, surpassing traditional 2D cell cultures. This advancement has led to the widespread adoption of 3D cell culture systems for toxicity testing, drug discovery, and regenerative medicine development.

Product Launches Boost Market Growth

Recent product launches by industry players have significantly contributed to market growth. For example, in August 2021, Amerigo Scientific introduced its line of 3D cell culture products with versatile applications in medicine, drug discovery, and tissue engineering.

Empowering Technologies Elevate Capabilities

The development of advanced technologies like microfluidics, bioprinting, and high-content screening systems has empowered these 3D culture models. These technologies provide precise control over culture conditions, cell organization, and high-efficiency screening, driving the utilization of 3D culture systems.

Collaborative Innovations Propel Market Growth

Increased collaboration among market players to leverage bioprinting and microfluidics techniques for developing culture models has accelerated market growth. For instance, in June 2020, CELLINK and Lonza joined forces to offer 3D bioprinting solutions, optimizing access to 3-dimensional cell culture workflows.

Scaffolds Play a Vital Role

3D cultures excel in replicating the microarchitecture and morphology of organs, making them ideal for in vivo model studies of drug effects on body tissues and organs. The availability of diverse scaffold material and structure options for various in-vitro applications is expected to boost revenue generation for scaffolds.

Emerging Scaffold Technologies

Recent research explores a wide range of scaffold materials, including graphene scaffolds, nanofibers, natural marine collagen, and freeze-casting, among others. Additionally, the application of techniques like lab-on-a-chip in various assays, such as proliferation, stimulation, viability, transport, high-content screening, patch clamping, and metabolic activity, is anticipated to drive demand for advanced and efficient solutions.

3D Cell Culture Market Report Highlights

Company Profiles

Key Topics Covered:

Chapter 1. Methodology and Scope

Chapter 2. Executive Summary

2.1. Market Snapshot

2.2. Segment Snapshot

2.3. Competitive Landscape Snapshot

Chapter 3. Market Variables, Trends, & Scope

3.1. Market Lineage Outlook

3.1.1. Parent Market Outlook

3.1.2. Related/Ancillary Market Outlook

3.2. Market Dynamics

3.2.1. Market Driver Analysis

3.2.1.1. Increasing Demand For Organ Transplantation & Tissue Engineering

3.2.1.2. Technological Advancements In Scaffold Free Technology

3.2.1.3. Rise In Investments And R&D Funding For Cell-Based Research

3.2.1.4. Increasing Focus On Developing Alternative To Animal Testing

3.2.2. Market Restraint Analysis

3.2.2.1. High Cost Associated With Implementation

3.2.2.2. Lack Of Compatibility And Consistency

3.3. Industry Analysis Tools

3.3.1. Porter’s Five Forces Analysis

3.3.2. PESTEL Analysis

3.3.3. COVID-19 Impact Analysis

Chapter 4. Technology Business Analysis

4.1. 3D Cell Culture Market: Technology Movement Analysis

4.2. Scaffold Based

4.2.1. Scaffold Based Market, 2018 – 2030 (USD Million)

4.2.2. Hydrogels

4.2.3. Polymeric Scaffolds

4.2.4. Micropatterned Surface Microplates

4.2.5. Nanofiber Based Scaffolds

4.3. Scaffold Free

4.3.1. Scaffold Free Market, 2018 – 2030 (USD Million)

4.3.2. Hanging Drop Microplates

4.3.3. Spheroid Microplates With ULA Coating

4.3.4. Magnetic Levitation

4.4. Bioreactors

4.5. Microfluidics

4.6. Bioprinting

Chapter 5. Application Business Analysis

5.1. 3D Cell Culture Market: Application Movement Analysis

5.2. Cancer Research

5.3. Stem Cell Research & Tissue Engineering

5.4. Drug Development & Toxicity Testing

Chapter 6. End-Use Business Analysis

6.1. 3D Cell Culture Market: End-Use Movement Analysis

6.2. Biotechnology & Pharmaceutical Companies

6.2.1. Biotechnology & Pharmaceutical Companies Market, 2018 – 2030 (USD Million)

6.3. Academic and Research Institutes

6.4. Hospitals

Chapter 7. Regional Business Analysis

7.1. 3D Cell Culture Market Share By Region, 2022 & 2030

Chapter 8. Competitive Landscape

8.1. Company Categorization

8.2. Strategy Mapping

8.3. Company Market Share Analysis, 2022

8.4. Company Profiles/Listing

8.4.1. Overview

8.4.2. Financial Performance (Net Revenue/Sales/EBITDA/Gross Profit)

8.4.3. Product Benchmarking

8.4.4. Strategic Initiatives

For more information about this report visit https://www.researchandmarkets.com/r/5y2gym

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