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Hydroxyapatite: Global Markets

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    Report

  • 47 Pages
  • December 2020
  • Region: Global
  • BCC Research
  • ID: 5232309
UP TO OFF until Aug 31st 2033

This study provides a comprehensive account of the worldwide hydroxyapatite markets. It presents a thorough and up-to-date global assessment of the technology, markets and business of hydroxyapatite. This, in turn, will help industry participants, suppliers and customers to make the informed decisions needed to compete and succeed in the marketplace.

The report includes:


  • An overview of the global markets for hydroxyapatite within the industry
  • Analyses of the global market trends, with corresponding data analysis from 2019, estimates for 2020, and projections of compound annual growth rates (CAGRs) through 2025
  • Estimation of the market size and forecasted data for hydroxyapatite in dollar value and volumetric terms, and market share analysis on the basis of application and size of mineral form with major regions and countries involved
  • Emphasis on the major driving trends and challenges affecting the global hydroxyapatite market and the vendor landscape
  • Company profiles of the market leading participants

Report scope:

This report will cover the hydroxyapatite industry. Definitive and detailed estimates and forecasts of the global market are provided, followed by a detailed analysis of the regions, types, applications and trends.

This report covers the technological, economic and business considerations of the hydroxyapatite industry, with analyses and forecasts provided for global markets. Included in the report are descriptions of market forces relevant to the hydroxyapatite industry and their areas of application.

Growth forecasts through 2025 are provided. Estimates on sales value are based on prices in the supply chain. Market-driving forces and industry structure are examined. International aspects are analyzed for all world regions and types of hydroxyapatite. Profiles of major global manufacturers are presented.

This report considers the impact of COVID-19. In 2020, the growth rate of every industry globally has been impacted by this pandemic, which has halted economic development globally. In addition to taking measures to lock down their respective countries to contain the spread of the coronavirus, various governments globally are also taking measures necessary to combat the economic slowdown.

The hydroxyapatite market is further segmented based on its size: nano size, micro size and micrometer, and segmented into applications like dental, orthopedic and plastic surgery.


Table of Contents

Chapter 1: Introduction


  • Study Goals and Objectives
  • Reasons for Doing This Study
  • Scope of Report
  • Information Sources
  • Methodology
  • Geographic Breakdown
  • Analyst's Credentials

Chapter 2: Summary and Highlights

Chapter 3: Market and Technology Background


  • Origin of Hydroxyapatite
  • Hydroxyapatite Manufacturing
  • Drivers
  • Rising Popularity of Implants in Medical Sector
  • Increase in Dental Care
  • Rise in Plastic Surgeries
  • Innovations and Continuous Research and Development
  • Inhibitors
  • Hydroxyapatite Alternatives
  • Fluctuating Prices of Implants
  • Unfavorable Healthcare Reforms
  • COVID-19 Impact
  • Opportunities
  • Growing Healthcare Industry in the Asia-Pacific Region
  • Challenges
  • Increasing Popularity of Bioresorbable Composites

Chapter 4: Hydroxyapatite Market by Type


  • Introduction
  • Nano Size
  • Micro Size
  • Greater than Micrometers

Chapter 5: Hydroxyapatite Market by Source


  • Introduction
  • Natural Sources
  • Mammalian Sources
  • Aquatic Sources
  • Shell Sources
  • Plants and Algae
  • Mineral Sources
  • Synthetic Sources
  • Hydrothermal Methods
  • Sol-Gel Methods
  • Homogeneous Precipitation Methods

Chapter 6: Hydroxyapatite Market by Application


  • Introduction
  • Orthopedic
  • Dental
  • Plastic Surgery

Chapter 7: Hydroxyapatite Market by Region


  • Introduction
  • North America
  • Europe
  • Asia-Pacific
  • Rest of the World

Chapter 8: Company Profiles


  • Berkeley Advanced Biomaterials
  • Bionnovation
  • CAM Bioceramics
  • Evonik Industries AG
  • Fluidinova
  • Granulab (M) Snd Bhd
  • Merz Biomaterials (Merz North America Inc.)
  • Sigmagraft Biomaterials
  • Sofsera Corp.
  • Taihei Chemical Industrial Co. Ltd.

Chapter 9: Appendix: Abbreviations/Acronyms

List of Tables

Summary Table : Global Market for Hydroxyapatite, by Region, Through 2025
Table 1 : Global Market for Hydroxyapatite, by Type, Through 2025
Table 2 : Global Market for Hydroxyapatite, by Source, Through 2025
Table 3 : Methods Used for Extraction of Hydroxyapatite from Mammalian Sources
Table 4 : Comparison of Different Methods for Extraction of Hydroxyapatite from Mammalian Sources
Table 5 : Methods for Extraction of Hydroxyapatite from Aquatic Sources
Table 6 : Comparison of Different Methods for Extraction of Hydroxyapatite from Aquatic Sources
Table 7 : Methods Used for Extraction of Hydroxyapatite from Shell Sources
Table 8 : Methods Used for Extraction of Hydroxyapatite from Limestone
Table 9 : Summary of Different Natural Sources
Table 10 : Comparison of Different Processes
Table 11 : Summary of Different Natural Sources
Table 12 : Global Market for Hydroxyapatite, by Application, Through 2025
Table 13 : Number of Procedures Using Calcium Hydroxyapatite in 2018
Table 14 : Global Market for Hydroxyapatite, by Region, Through 2025
Table 15 : Abbreviations Used in this Report

List of Figures

Summary Figure : Global Market for Hydroxyapatite, by Region, 2019-2025
Figure A : Hydroxyapatite Uses
Figure 1 : Global Market Shares of Hydroxyapatite, by Type, 2019
Figure 2 : Global Market for Hydroxyapatite, by Type, 2019-2025
Figure 3 : Global Market Shares of Hydroxyapatite, by Source, 2019
Figure 4 : Global Market for Hydroxyapatite, by Source, 2019-2025
Figure 5 : Hydroxyapatite Synthesis from Natural Sources
Figure 6 : Global Market Shares of Hydroxyapatite, by Application, 2019
Figure 7 : Global Market for Hydroxyapatite, by Application, 2019-2025
Figure 8 : Hydroxyapatite Coated Implants
Figure 9 : Hydroxyapatite Used in Bone
Figure 10 : Hydroxyapatite Dental-Coated Implants
Figure 11 : Hydroxyapatite Coated Dental Implants
Figure 12 : Global Market Shares of Hydroxyapatite, by Region, 2019
Figure 13 : Global Market for Hydroxyapatite, by Region, 2019-2025
Figure 25 : Global Market Shares of Hydroxyapatite, by Source, 2019


Samples

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Executive Summary

Hydroxyapatite is a mineral form of calcium apatite which is naturally present in bones and teeth. With a chemical formula of Ca₁₀(PO₄)₆(OH)₂ and also called HA, pure hydroxyapatite powder is white in color. However, naturally occurring apatites can also have brown, yellow or green colorations.

Hydroxyapatite is a major component of normal bone and teeth; up to 50% by volume and 70% by weight of human bone is a modified form of hydroxyapatite. Synthesized hydroxyapatite is used as a coating on orthopedic implants to promote fixation and bone ingrowth.

Hydroxyapatite is similar to human hard tissues in morphology and composition. It is commercially available either from a natural source or as a synthetic. It is extensively used in bone clinical applications because of its stability when compared to other calcium phosphates.

Hydroxyapatite is used in the human body where there are bone voids or defects. The process of using hydroxyapatite in human body is done through powders, blocks or beads of the material placed in the affected areas of bone. Stainless steel and titanium implants are often covered with hydroxyapatite coatings to trick the body and reduce the implant rejection rate.

Hydroxyapatite has excellent biocompatibility and bioactivity but poor mechanical properties. Because of this, hydroxyapatite is deposited on titanium-based implants to obtain materials that possess both bioactivity and mechanical resistance. Deposition is via methods such as electrochemical deposition, plasma spraying and sol-gel process.

This deposition encourages the bone to grow and restore the defect. Hydroxyapatite is an alternative to allogenic and xenogenic bone grafts and has faster healing times.


Companies Mentioned

  • Berkeley Advanced Biomaterials
  • Bionnovation
  • CAM Bioceramics
  • Evonik Industries AG
  • Fluidinova
  • Granulab (M) Snd Bhd
  • Merz Biomaterials (Merz North America Inc.)
  • Sigmagraft Biomaterials
  • Sofsera Corp.
  • Taihei Chemical Industrial Co. Ltd.