• Female
  • 10/07/1986
  • Followed by 0 people
Recent Updates
  • Long-acting drug delivery technologies and services
    Long-acting drug delivery has emerged as the novel and advanced drug delivery system which manipulate the dosing regimen of the drug in the body in order to sustain its therapeutic level. The long-acting drug delivery technologies have come a long way with the inclusion of liposomes, microspheres and polymers for the fabrication of biodegradable and biocompatible delivery system. Apart from...
    0 Comments 0 Shares
  • TIL-based therapy: An Innovative Way to Treat Solid Tumors
    Till date, several clinical trials have demonstrated the efficacy and therapeutic superiority (over conventional treatment options) of TIL therapies . Their tumor-cell killing efficiency is attributed to the fact that they are pre-sensitized to cancer specific antigens. Driven by the ongoing pace of innovation in this field, sufficient financial support from investors and encouraging clinical...
    0 Comments 0 Shares
  • Driven by the increasing adoption of non-viral drug delivery technologies in the healthcare sector, we anticipate The global non-viral drug delivery systems market for healthcare to grow at an annualized rate of ~14%, till 2035
    The global demand for biologics currently holds the largest share in the non-viral drug delivery domain and is expected to show the similar trend in the coming years.   Further, the nanoparticle and extracellular vesicles emerged as the star as per the BCG matrix during our research. In recent years, efficient methods for facilitation of intracellular drug delivery have become a prominent...
    0 Comments 0 Shares
  • Driven by the growing demand for medical devices, novel coatings providing unique features are being introduced in the market
    Over the past 50 years, the medical device industry has seen several notable developments. In fact, the use of biomedical devices, such as medical implants, surgical instruments, and prostheses has increased substantially over the time.
    Cardioverter defibrillators, prosthetic hips and knees, contact lenses, and cardiac pacemakers are some of the most commonly implanted medical devices, while fixation devices and artificial joints account for about 44% of all medical devices. Despite significant advancements in the design and implantation of medical devices, a number of challenges still persist. Patients, particularly those who are immunocompromised, are at high risk of healthcare-associated infections (HAIs) due to the in-dwelling nature of implanted devices and surgical tools. The risk of infections along with limitations including, implant rejection, osseointegration, degradation and wear, loom over the prosthetic integration. Coatings on biomedical implants can affect this biological interaction between the implant and host, mitigate joint wear, and combine the properties of several materials to enhance device performance as well as reduce the risks associated with invasive medical devices. Medical device coatings also endow properties like lubrication, anti-fouling nature, as well as enhanced durability to the surface of the device. Driven by the surge in demand for various types of medical devices and the need for a wide array of coatings for these devices, the medical device coatings market is anticipated to witness a steady growth in the coming decade.

    To request a sample copy / brochure of this report, please visit this https://www.rootsanalysis.com/reports/medical-device-coatings-market/request-sample.html

    One of the key challenges associated with in-dwelling medical devices lies in the fact that they are in constant association with the bodily fluids, therefore, interacting with a wide variety of proteins and other biomolecules. This results in denaturization of the biomaterials over time, reducing the overall functional life of the device. As a counter to this problem, surface modification can be utilized. Generally, protein adsorption and biological interactions are significantly impacted by the biomaterial surface modifications, such as modifying the chemistry of polymers, coefficient of friction, domain layout, and shape. Surface modifications, such as plasma spraying, vacuum depositions, etching, and electro-depositions are some of the most frequently procedures to achieve the necessary alterations on medical device surfaces.

    Various medical devices are associated with the risk of infections, cytotoxicity, thrombogenesis, and immune rejection, which has garnered the attention towards appropriate selection of suitable biomaterials and strategies for modifying the medical devices surface. One of the key developments in the area has been made in creating non-fouling / antibacterial surfaces. A breakthrough in this field has been witnessed in graphene coatings developed to elicit antimicrobial properties. As an alternative to the use of silver nanoparticles earlier, the use of graphene in healthcare applications has a promising future, given the fact that graphene would provide more secure antibacterial properties than metal nanoparticles along with cost efficiency. The detailed competitiveness analysis of various medical device coating providers identified during our research, which are based in North America, Europe, and Asia.

    Integration of new technologies like advanced laser processing, machine learning, and automation using Artificial Intelligence (AI) also drives the field towards more precise and reproducible coating / surface treatment applications, which can revolutionize the biomedical devices industry.

    For additional details, please visit https://www.rootsanalysis.com/reports/medical-device-coatings-market.html or email [email protected]

    You may also be interested in the following titles:
    1. Targeted protein degradation market, 2022-2035
    2. Single-Use Upstream Bioprocessing Technology / Equipment Market, 2022-2035

    About Roots Analysis
    Roots Analysis is a global leader in the pharma / biotech market research. Having worked with over 750 clients worldwide, including Fortune 500 companies, start-ups, academia, venture capitalists and strategic investors for more than a decade, we offer a highly analytical / data-driven perspective to a network of over 450,000 senior industry stakeholders looking for credible market insights.

    Contact:
    Ben Johnson
    +1 (415) 800 3415
    +44 (122) 391 1091
    [email protected]


    Driven by the growing demand for medical devices, novel coatings providing unique features are being introduced in the market Over the past 50 years, the medical device industry has seen several notable developments. In fact, the use of biomedical devices, such as medical implants, surgical instruments, and prostheses has increased substantially over the time. Cardioverter defibrillators, prosthetic hips and knees, contact lenses, and cardiac pacemakers are some of the most commonly implanted medical devices, while fixation devices and artificial joints account for about 44% of all medical devices. Despite significant advancements in the design and implantation of medical devices, a number of challenges still persist. Patients, particularly those who are immunocompromised, are at high risk of healthcare-associated infections (HAIs) due to the in-dwelling nature of implanted devices and surgical tools. The risk of infections along with limitations including, implant rejection, osseointegration, degradation and wear, loom over the prosthetic integration. Coatings on biomedical implants can affect this biological interaction between the implant and host, mitigate joint wear, and combine the properties of several materials to enhance device performance as well as reduce the risks associated with invasive medical devices. Medical device coatings also endow properties like lubrication, anti-fouling nature, as well as enhanced durability to the surface of the device. Driven by the surge in demand for various types of medical devices and the need for a wide array of coatings for these devices, the medical device coatings market is anticipated to witness a steady growth in the coming decade. To request a sample copy / brochure of this report, please visit this https://www.rootsanalysis.com/reports/medical-device-coatings-market/request-sample.html One of the key challenges associated with in-dwelling medical devices lies in the fact that they are in constant association with the bodily fluids, therefore, interacting with a wide variety of proteins and other biomolecules. This results in denaturization of the biomaterials over time, reducing the overall functional life of the device. As a counter to this problem, surface modification can be utilized. Generally, protein adsorption and biological interactions are significantly impacted by the biomaterial surface modifications, such as modifying the chemistry of polymers, coefficient of friction, domain layout, and shape. Surface modifications, such as plasma spraying, vacuum depositions, etching, and electro-depositions are some of the most frequently procedures to achieve the necessary alterations on medical device surfaces. Various medical devices are associated with the risk of infections, cytotoxicity, thrombogenesis, and immune rejection, which has garnered the attention towards appropriate selection of suitable biomaterials and strategies for modifying the medical devices surface. One of the key developments in the area has been made in creating non-fouling / antibacterial surfaces. A breakthrough in this field has been witnessed in graphene coatings developed to elicit antimicrobial properties. As an alternative to the use of silver nanoparticles earlier, the use of graphene in healthcare applications has a promising future, given the fact that graphene would provide more secure antibacterial properties than metal nanoparticles along with cost efficiency. The detailed competitiveness analysis of various medical device coating providers identified during our research, which are based in North America, Europe, and Asia. Integration of new technologies like advanced laser processing, machine learning, and automation using Artificial Intelligence (AI) also drives the field towards more precise and reproducible coating / surface treatment applications, which can revolutionize the biomedical devices industry. For additional details, please visit https://www.rootsanalysis.com/reports/medical-device-coatings-market.html or email [email protected] You may also be interested in the following titles: 1. Targeted protein degradation market, 2022-2035 2. Single-Use Upstream Bioprocessing Technology / Equipment Market, 2022-2035 About Roots Analysis Roots Analysis is a global leader in the pharma / biotech market research. Having worked with over 750 clients worldwide, including Fortune 500 companies, start-ups, academia, venture capitalists and strategic investors for more than a decade, we offer a highly analytical / data-driven perspective to a network of over 450,000 senior industry stakeholders looking for credible market insights. Contact: Ben Johnson +1 (415) 800 3415 +44 (122) 391 1091 [email protected]
    Request Sample - Medical Device Coatings Market | Industry Analysis | Market Size | 2035
    Medical device coatings market, currently being drive by around 90 companies offering such services and 110+ surface modification products, is likely to grow rapidly in the coming decade
    0 Comments 0 Shares
  • The mRNA synthesis and manufacturing market is projected to be worth USD 1.5 billion by 2035, claims Roots Analysis
    Given the current technical and operational challenges associated with the manufacturing of mRNA-based products, innovators in the biopharmaceutical industry are increasingly relying on the mRNA synthesis and contract manufacturing service providers.
    For additional details, please visit
    https://www.rootsanalysis.com/reports/mrna-synthesis-and-manufacturing-market.html or email [email protected]
    The mRNA synthesis and manufacturing market is projected to be worth USD 1.5 billion by 2035, claims Roots Analysis Given the current technical and operational challenges associated with the manufacturing of mRNA-based products, innovators in the biopharmaceutical industry are increasingly relying on the mRNA synthesis and contract manufacturing service providers. For additional details, please visit https://www.rootsanalysis.com/reports/mrna-synthesis-and-manufacturing-market.html or email [email protected]
    WWW.ROOTSANALYSIS.COM
    mRNA Synthesis and mRNA Manufacturing | Market Size | Industry Analysis | 2035
    mRNA synthesis and mRNA manufacturing market, driven by 70+ mRNA manufacturers, is anticipated to gain traction for non-covid mRNA therapeutics in the coming decade
    0 Comments 0 Shares
  • The SARM1 targeting therapeutics market is projected to grow at a CAGR of 102.1%, during the period 2033-2040, claims Roots Analysis
    SARM1 inhibitors, having demonstrated the ability to prevent axonal degeneration, are being evaluated for the treatment of a number of neurodegenerative disorders. Once approved, these therapies are likely to capture a significant market share
    For additional details, please visit
    https://www.rootsanalysis.com/reports/sarm1-inhibitors-market.html
    or email [email protected]
    The SARM1 targeting therapeutics market is projected to grow at a CAGR of 102.1%, during the period 2033-2040, claims Roots Analysis SARM1 inhibitors, having demonstrated the ability to prevent axonal degeneration, are being evaluated for the treatment of a number of neurodegenerative disorders. Once approved, these therapies are likely to capture a significant market share For additional details, please visit https://www.rootsanalysis.com/reports/sarm1-inhibitors-market.html or email [email protected]
    WWW.ROOTSANALYSIS.COM
    SARM1 Inhibitors Market | Industry Analysis | Market Size | 2040
    SARM1 Inhibitors market, driven by active research and growing pipeline, is anticipated to grow at over 100% CAGR after first approval in 2033
    0 Comments 0 Shares
  • AI-based digital pathology gains interest due to automation, digitization of healthcare, shortage of pathologists, and increased demand for pathology servicesIn recent years, advancements in technology and emphasis on precision medicine have recently paved the path for the development of artificial intelligence (AI) based digital pathology techniques for quantitative and qualitative assessment of samples.

    For additional details, please visit
    https://www.rootsanalysis.com/reports/ai-based-digital-pathology-market.html or email [email protected]
    AI-based digital pathology gains interest due to automation, digitization of healthcare, shortage of pathologists, and increased demand for pathology servicesIn recent years, advancements in technology and emphasis on precision medicine have recently paved the path for the development of artificial intelligence (AI) based digital pathology techniques for quantitative and qualitative assessment of samples. For additional details, please visit https://www.rootsanalysis.com/reports/ai-based-digital-pathology-market.html or email [email protected]
    WWW.ROOTSANALYSIS.COM
    AI-based Digital Pathology Market | Industry Analysis | Market Size | 2035
    Driven by the rise in demand for digital pathology solutions, we anticipate AI pathology market to grow at an annualized rate of ~8% till 2035
    0 Comments 0 Shares
More Stories

Don't forget, ads time: PentaVerge | AQU | Debwan | ICICTE | Nasseej | ESol | OUST | CorpSNet | PoemsBook | TopDeals | TheReaderView