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Nano Toxicity and Safety Market

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    Report

  • 126 Pages
  • July 2022
  • Region: Global
  • IndustryARC
  • ID: 5644069
Nano Toxicity and Safety refers to the potential adverse health effects related to engineered nanomaterial exposure and different techniques, tools, and approaches related to the safety of nanotechnology. The nanoparticles’ potential for danger is evident due to the high surface area to volume ratio, which can make them highly reactive or catalytic. In addition, they can pass through cell membranes in organisms and may interact with biological systems. The global Nano Toxicity and Safety Market is analyzed to be $62.4 million and is projected to reach $151.6 million in 2027, growing with a CAGR of 16.61 % during 2022-2027. The Nano Toxicity and Safety market is segmented by technique, by process, by toxicity test, by nano particles, by toxicity, and by application in this report. The market is also segmented by geography, which include North America, South America, Europe, and Asia-Pacific.

Nano Toxicity and Safety Market Segment Analysis - By Technique

Nano Toxicity and Safety Market is segmented by technique such as Scanning Electron Microscopy, Transmission Electron Microscopy, and Others (X-ray Diffraction, Thermal Analysis). In 2021, the Scanning Electron Microscopy segment held the greatest market share, generating $43.68 million. Depending on the size and substance used to create nanomaterialss, scanning electron microscopy and transmission electron microscopy are two microscopic methods that characterize morphology. Studies using scanning electron microscopy (SEM) and transmission electron microscopy (TEM) have been carried out to learn more about the morphology, structure, and size of IO-NPs.

Nano Toxicity and Safety Market Segment Analysis - By Process

In terms of process, the Physicochemical Process segment achieved slightly bigger market share of the Nano Toxicity and Safety Market in 2021 than Morphological Process. Nanotoxicology is based on a variety of factors, including size, surface area, morphology, composition, surface chemistry, aggregation/agglomeration phenomena, etc. The interaction of Nanomaterials with biological cells is greatly impacted by their morphological and physicochemical characteristics, which may also affect their toxicity.

Nano Toxicity and Safety Market Segment Analysis - By Toxicity Test

In terms of toxicity test, the Cell Cultures (In Vitro) segment dominated the market share in 2021. The Cell Cultures (In Vitro) segment can be subcategorized into 2D models and 3D models. The most popular technique for determining NM toxicity on a 2D platform involves exposing adherent cells to an NM dispersion where the NMs are dispersed in the media.

Nano Toxicity and Safety Market Segment Analysis - By Nanoparticle

  • By nanoparticle, the majority of market share in 2021 was from the Titanium Dioxide Nanoparticles segment. Materials use titanium dioxide (TiO2) in a variety of ways such as paper, plastic, ceramics, rubber, printer ink, floor coverings, catalysts, fabrics and textiles, cosmetics, food colors, medicines, paints, coatings, and electronic components. Four different crystalline structures - rutile, anatase, brookite, or titanium dioxide - can be used to distinguish the various types of TiO2-based NMs, with rutile and anatase being the most frequently used in consumer goods.

Nano Toxicity and Safety Market Segment Analysis - By Toxicity

  • By toxicity, Nano Toxicity and Safety Market is segmented into Size-dependent Toxicity, Surface-dependent Toxicity, Shape-dependent Toxicity, Aggregation or agglomeration-dependent Toxicity and Dose-dependent Toxicity. As one of the critical factors affecting toxicity, the Dose-dependent Toxicity segment generated the most revenue in 2021 Nano Toxicity and Safety market. To determine the minimum dose of NPs which is induces toxicity, dose is very important.

Nano Toxicity and Safety Market Segment Analysis - By Application

Nano Toxicity and Safety Market is segmented by its various application such as Energy, Materials and Health, Medical Systems, Agriculture, Pharmaceutical, Cosmetic, and Others (Engineering, Food and Others). The Pharmaceutical segment is analyzed to hold the dominance and to grow steadily during the forecast period owing to the utilization of nanotechnology in drug delivery, imaging & diagnosis of diseases such as cancer and atherosclerosis, as well as hearing & vision disorders. Thus, the importance of nanomaterial toxicity testing is more highlighted.

Nano Toxicity and Safety Market Segment Analysis - By Geography/Country

The report comprises of the region wise study of the global market including North America, South America, Europe, and Asia-Pacific. Among them, North America region accounted for the dominant market share in 2021. The United States contributes to the most revenue to the market with growing need for nano-toxicity testing devices for various research and development activities in the sectors of Life Science, Agriculture, Industrial Energy, and others as well as the strong presence of key players in this region.

Nano Toxicity and Safety Market- Drivers

One of the primary factors driving the growth in global Nano Toxicity and Safety market is emerging technological advancements in nanotechnology and nanotech devices. Some of advanced nanotechnologies are nano-identification, nano-impact, nano-scratch, and nano-tribological, and they are now used in many testing procedures to better understand materials at the nanoscale. Based on the advanced nanotechnologies, increase in adoption of Nano-toxicology testing in various end-use industries such as the energy, healthcare, cosmetic industry, and others is set to propel the market growth.

Nano Toxicity and Safety - Competitive Landscape

Major companies in the global Nano Toxicity and Safety Market profiled in this report include Horiba, CytoViva, Schaefer-Tec AG, Thermo Fisher Scientific, Carl Zeiss NTS Ltd., Hitachi High-Technologies Corporation, SGS SA, Eurofins Scientific, Charles River Laboratories International Inc., Enviroscience Inc. Technology launches, acquisitions, partnerships and R&D activities are key strategies adopted by the key players in the Nano Toxicity and Safety market.

Nano Toxicity and Safety - Recent Developments

  • In May 2022, HORIBA UK announces that it has joined the lifETIME Centre for Doctoral Training (CDT) as an Industry Partner. This partnership aims to provide a new generation of scientists with skills and approaches to reduce and replace the need for animal testing, so transforming drug discovery, toxicology screening and regenerative medicine.
  • In August 2021, Eurofins Discovery, a leading provider of products and services to the drug discovery industry and a Eurofins Scientific company, announced a new commercial collaboration with Fusion Antibodies plc, a specialist in the pre-clinical antibody discovery, engineering and supply for both therapeutic drug and diagnostic applications.
  • In November 2020, Carl Zeiss NTS Ltd presented a new generation of its field emission scanning electron microscope (FESEM) family ZEISS GeminiSEM. The new models ZEISS GeminiSEM 360, 460 and 560 are tailored for sub-nanometer imaging and effortless analytics. Users benefit from innovations in the electron optics and a new chamber design offering better image quality, usability and flexibility. ZEISS GeminiSEM 560 now being introduced brings the ZEISS Gemini 3 column to the market for the first time.

Nano Toxicity and Safety - Report Scope and Coverage

The base year of the study is 2021, with forecast done up to 2027. The study presents a thorough analysis of the competitive landscape, taking into account the market shares of the leading companies. These provide the key market participants with the necessary business intelligence and help them understand the future of the Nano Toxicity and Safety market. The assessment includes the forecast, an overview of the competitive structure, the market shares of the competitors, as well as the market trends, market demands, market drivers, and Nano Toxicity and Safety manufacturing method analysis. The market drivers and restraints have been assessed to fathom their impact over the forecast period. This report further identifies the key opportunities for growth while also detailing the key challenges and possible threats. The key areas of focus include the key global Nano Toxicity and Safety Market players, to define, describe and analyze the sales value, market share, SWOT analysis and development plans in upcoming years.
  • By Technique: Scanning Electron Microscopy, Transmission Electron Microscopy, Others (X-ray Diffraction, Thermal Analysis)
  • By Process: Morphological Process, Physicochemical Process
  • By Toxicity Tests: Cell Cultures (In Vitro) (2D Models & 3D Models), Living Organisms (In Vivo) (Aquatic Models, Small Rodents)
  • By Nanoparticles: Titanium Dioxide Nanoparticles, Silver Nanoparticles, Others
  • By Toxicity: Size-dependent Toxicity, Surface-dependent Toxicity, Shape-dependent Toxicity, Aggregation or agglomeration-dependent Toxicity, Dose-dependent Toxicity
  • By Application: Energy, Materials and Health, Medical Systems, Agriculture, Pharmaceutical, Cosmetic, Others (Engineering, Food and Others)
  • By Region: North America, South America, Europe, Asia-Pacific


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Table of Contents

1. Nano Toxicity and Safety Market- Market Overview
1.1 Definitions and Scope
2. Nano Toxicity and Safety Market- Executive Summary
2.1 Market Revenue, Market Size and Key Trends by Company
3. Nano Toxicity and Safety Market- Landscape
3.1 Market Share Analysis- Top Companies
3.2 Product Benchmarking- Top Companies
3.3 Top 5 Financials Analysis
3.4 Patent Analysis- Top Companies
3.5 Pricing Analysis
4. Nano Toxicity and Safety Market- Market Forces
4.1 Market Drivers
4.2 Market Constraints
4.3 Market Opportunities
4.4 Porters five force model
4.4.1 Bargaining power of suppliers
4.4.2 Bargaining powers of customers
4.4.3 Threat of new entrants
4.4.4 Rivalry among existing players
4.4.5 Threat of substitutes
5. Nano Toxicity and Safety Market -Strategic analysis
5.1 Value chain analysis
5.2 Opportunities analysis
5.3 Market life cycle
5.4 Suppliers and distributors Analysis
6. Nano Toxicity and Safety Market- By Technique (Market Size -$Billion)
6.1 Scanning Electron Microscopy
6.2 Transmission Electron Microscopy
6.3 Others (X-ray Diffraction, Thermal Analysis)
7. Nano Toxicity and Safety Market- By Biological Systems (Market Size -$Billion)
7.1 Cells
7.2 Tissues
7.3 Living Organisms
8. Nano Toxicity and Safety Market- By Process (Market Size -$Billion)
8.1 Morphological Process
8.2 Physicochemical Process
9. Nano Toxicity and Safety Market- By Toxicity Tests (Market Size -$Billion)
9.1 Cell Cultures (In Vitro)
9.1.1 2D Models
9.1.2 3D Models
9.2 Living Organisms (In Vivo)
9.2.1 Aquatic Models
9.2.2 Small Rodents (Mammal models)
10. Nano Toxicity and Safety Market- By Nanoparticles (Market Size -$Billion)
10.1 Titanium Dioxide Nanoparticles
10.2 Silver Nanoparticles
10.3 Others
11. Nano Toxicity and Safety Market- By Toxicity (Market Size -$Billion)
11.1 Size-dependent Toxicity
11.2 Surface-dependent Toxicity
11.3 Shape-dependent Toxicity
11.4 Aggregation or agglomeration-dependent Toxicity
11.5 Dose-dependent Toxicity
12. Nano Toxicity and Safety Market- By Application (Market Size -$Billion)
12.1 Energy
12.2 Materials and Health
12.3 Medical Systems
12.4 Agriculture
12.5 Pharmaceutic
12.6 Cosmetic
12.7 Others (Engineering, Food and Others)
13. Nano Toxicity and Safety Market - By Geography (Market Size -$Billion)
13.1 North America
13.1.1 U.S.
13.1.2 Canada
13.1.3 Mexico
13.2 South America
13.2.1 Brazil
13.2.2 Argentina
13.2.3 Colombia
13.2.4 Rest of South America
13.3 Europe
13.3.1 U.K
13.3.2 Germany
13.3.3 Italy
13.3.4 France
13.3.5 Spain
13.3.6 Rest of Europe
13.4 Asia Pacific
13.4.1 China
13.4.2 India
13.4.3 Japan
13.4.4 South Korea
13.4.5 Australia & New Zealand
13.4.6 Rest of Asia Pacific
14. Nano Toxicity and Safety Market- Entropy
14.1 New Product Launches
14.2 M&A’s, Collaborations, JVs and Partnerships
15. Nano Toxicity and Safety Market Company Analysis

Methodology

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