Showing posts with label Smart Polymers Market Analysis. Show all posts
Showing posts with label Smart Polymers Market Analysis. Show all posts

Thursday, 3 October 2019

Smart Polymers Market Trends, Top Manufactures, Market Dynamics, Industry Growth Analysis & Forecast 2023

BASF SE (Germany), The Lubrizol Corporation (the U.S.), Spintech LLC (the U.S.), Akina, Inc. (the U.S.), SMP Technologies Inc. (Japan), Evonik Industries AG (Germany), Reactive Surfaces Ltd (the U.S.), Merck Group (Germany), NEI Corporation (the U.S.) among others are some of the prominent players at the forefront of competition in the Global Smart Polymers Market and are profiled in MRFR Analysis.

Smart Polymers Market – Overview:

Smart Polymers are those able to modify their physical and chemical properties in response to the variation of environmental factors. Smart Polymer systems can be designed to respond to a wide range of parameters, such as changes in pH, ionic strength, temperature, magnetic and electric field. These Smart Polymers can behave in several ways by altering solubility, shape, color, light transmitting abilities, wettability, conductivity, and surface characteristics. The extend of response of such polymers can be controlled by the intensity of the applied stimuli.
Now a days, the demand for Smart Polymers is increasing in biotechnology and medicine, electrical & electronics and automotive. Smart Polymers have also been useful as drug delivery systems and in the biotechnological field for enzyme immobilization. Despite, coating medical devices with smart polymers may significantly widen their range of applications. Devices able to attract certain cells of the body or devices that should perform as membranes or artificial muscles take advantage of these smart materials. A surface grafted with Smart Polymers has been highlighted for its interfacial and wetting applications. For example, a smart surface with switchable wettability could be potentially used in tissue engineering and antimicrobial coatings. In addition to this, a Smart Polymer material responsive to light or temperature could also be effectively used as a sensor which may drive the Global Smart Polymer Market. Presently, Smart Polymers have been mainly emphasized for their potential applications in nanotechnology, nanoscience, and nanomedicine.

Industry/ Innovation/ Related News:

February 2017 – A variety of stimuli-responsive polymers have been developed by researchers and used as actuators and/or artificial muscles, with the movement being driven by an external stimulus, such as electrical potential. Researchers highlighted actuators constructed from liquid-crystal elastomers, dielectric elastomers, ionic polymers, and conducting polymers. Researchers also discussed recent examples of a variety of actuators generated from these materials and their utility. The mechanism of actuation is detailed for most examples in order to stimulate possible future research, and lead to new applications and advanced applications.


2017– Multi-functional nanoshuttles for remotely targeted and on-demand delivery of therapeutic molecules and imaging to defined tissues and organs hold great potentials in personalized medicine, including precise early diagnosis, efficient prevention and therapy without toxicity. Yet, in spite of 25 years of research, there are still no such shuttles available. To this end, researchers have designed magnetic and gold nanoparticles (NP)-embedded silica nanoshuttles (MGNSs) with nanopores on their surface. Fluorescently labeled Doxorubicin (DOX), a cancer drug, was loaded in the MGNSs as a payload. DOX loaded MGNSs were encapsulated in heat and pH sensitive polymer P(NIPAM-coMAA) to enable controlled release of the payload. Magnetically-guided transport of MGNSs was examined in: (a) a glass capillary tube to simulate their delivery via blood vessels; and (b) porous hydrogels to simulate their transport in composite human tissues, including bone, cartilage, tendon, muscles and blood–brain barrier (BBB). The viscoelastic properties of hydrogels were examined by atomic force microscopy (AFM). Cellular uptake of DOXloaded MGNSs and the subsequent pH and temperature-mediated release were demonstrated in differentiated human neurons derived from induced pluripotent stem cells (iPSCs) as well as epithelial HeLa cells. The presence of embedded iron and gold NPs in silica shells and polymer-coating are supported by SEM and TEM. Fluorescence spectroscopy and microscopy documented DOX loading in the MGNSs. Time-dependent transport of MGNSs guided by an external magnetic field was observed in both glass capillary tubes and in the porous hydrogel. AFM results affirmed that the stiffness of the hydrogels model the rigidity range from soft tissues to bone. pH and temperature-dependent drug release analysis showed stimuli responsive and gradual drug release. Cells’ viability MTT assays showed that MGNSs are non-toxic. The cell death from on-demand DOX release was observed in both neurons and epithelial cells even though the drug release efficiency was higher in neurons. Therefore, scientists have development of smart nanoshuttles have significant translational potential for controlled delivery of theranostics’ payloads and precisely guided transport in specified tissues and organs (for example, bone, cartilage, tendon, bone marrow, heart, lung, liver, kidney, and brain) for highly efficient personalized medicine applications.

Smart Polymers Market – Regional Analysis

North America region accounted largest market share in the Global Smart Polymer Market and expected to dominate during the forecast period due to advancement in drug delivery, nanotechnology, nanoscience, and nanomedicine and penetration of end user industry in the region. The unique properties of Smart Polymer to respond to a wide range of parameters, such as changes in pH, ionic strength, temperature, magnetic and electric field which makes it ideal in biotechnology and medicine, electrical & electronics that drive Smart Polymer Market in North America region. North America market is mainly occupied by the U. S. being largest consumer and manufacturer and exporter of smart polymer. Europe is the second largest market for Smart Polymer followed by North America.

Competitive Landscape:

The MRFR studies the key developments adopted by the companies between 2011 and 2016. Players in this market adopted various strategies to expand their footprint and augment their market share. The key strategies followed by most companies in the Global Smart Polymer Market were agreements and collaborations, mergers and acquisitions, joint ventures and expansion. Due to high demand of smart polymer in North America region, the manufacturers in North America region are using acquisition strategy of local producers in the other regions to increase their global market share.

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MRFR team have supreme objective to provide the optimum quality market research and intelligence services to our clients. Our market research studies by Components, Application, Logistics and market players for global, regional, and country level market segments, enable our clients to see more, know more, and do more, which help to answer all their most important questions.

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Monday, 1 July 2019

Smart Polymers Market Size Analysis, Trends, Top Manufacturers, Share, Growth, Statistics, Opportunities and Forecast to 2023

Smart Polymers Market – Overview

The demand for environment sensitive polymers is a key factor guiding the development of Smart Polymers. Reports that gauge the chemical and material industry have been made available by Market Research Future, which creates reports on several industry verticals that review the market growth and prospects. The market is expected to take on a positive CAGR growth in the forecast period.

The incorporation of Smart Polymers in innovative drug delivery systems is expected to enhance the expansion of the market greatly. The trend of increased responsiveness to human actions from inanimate objects is expected to guide the growth of the Smart Polymer Market. Also, increased interest in developing smart polymers is expected to attract investors to fund research and development activities. The growth of sectors such as that of biomedical engineering is expected to enhance growth prospects for the Smart Polymer Market in the upcoming period.


Competitive Analysis:

Strong insights into the market’s condition are motivating the expansion of the forecast period. The offering in the market has also diversified considerably ensuring availability of better-quality products in the market. The emergence of specialization in production has also increasingly improved the growth trajectory of the market. The efficiencies achieved in the allocation of resources is expected to encourage the development of the market in the approaching period. Moreover, increased cost efficiencies are projected to positively impact the progress of the market in the coming years. Amplified investment in the market is likely to motivate the positive changes in the market in the forecast period. The decrease in trade restrictions is anticipated to create favorable opportunities for development in the forecast period. The presence of favorable trade policies is anticipated to improve the growth of the market in the impending period.

The important companies functioning in the Smart Polymers Market are The Lubrizol Corporation (the U.S.), Spintech LLC (the U.S.), Akina, Inc.(the U.S.), BASF SE (Germany), SMP Technologies Inc.(Japan), Reactive Surfaces Ltd ( the U.S.), Merck Group( Germany), Evonik Industries AG( Germany), NEI Corporation(the U.S.), among others.

Segmental Analysis:

The Segmentation of the Smart Polymers Market is segmented into Application, Stimulus Type, and Region.

Based on Stimulus Type, Global Smart Polymers Market is segmented into physical, chemical, and biological responsive polymers. Among these segments, the physical stimuli-responsive polymers segment controls a key share in the market due to its growing use in end-use industry. The application segment of the Smart Polymer Market includes electrical & electronics, biotechnology and medicine, drug delivery systems, automotive, and others. Among these segments, the biotechnology and medicine segment is projected to observe an advanced growth rate in the market due to the expanding use of Smart Polymers in the production of biometric actuators, biocatalyst, and bio analytical systems.

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Based on Region, Global Smart Polymers Market comprises of regions such as Europe, Asia Pacific, North America, the Middle East, Latin America, and Africa.

Detailed Regional Analysis:

The Regional Evaluation of the Smart Polymers Market comprises of regions such as Asia Pacific, North America, Europe, Latin America, and the Middle East & Africa. Among these regions, the North American region holds a key share in the market owing to the rising demand for physical stimuli-responsive polymers in automotive, biotechnology, and medicine, among other sectors. The growing use of smart polymers in textile, electrical & electronics, and automotive industries has driven the market to observe the highest CAGR in the approaching years. The Asia Pacific region is appraised to observe a greater growth rate in the Smart Polymers Market due to speedy industrialization together with technology and the rising use of products in heavy end industries such as textile, automotive, construction, and others. Thus, countries like China, Japan, and India are projected to be the foremost players in this region through the forecast period. A huge growth has been detected in the European region’s market owing to the growing consumption of Smart Polymers in manufacturing effective phase separation processes and drug delivery systems. It is projected that the mounting disposable income in certain segments has fuelled the Smart Polymers Market to witness significant growth in the region.

About Market Research Future:

At Market Research Future (MRFR), we enable our customers to unravel the complexity of various industries through our Cooked Research Report (CRR), Half-Cooked Research Reports (HCRR), Raw Research Reports (3R), Continuous-Feed Research (CFR), and Market Research & Consulting Services.

MRFR team have supreme objective to provide the optimum quality market research and intelligence services to our clients. Our market research studies by Components, Application, Logistics and market players for global, regional, and country level market segments, enable our clients to see more, know more, and do more, which help to answer all their most important questions.

Contact: Market Research Future
+1 646 845 9312
Email: sales@marketresearchfuture.com

Thursday, 4 April 2019

Smart Polymers Market New Industry Research on Present State & Future Growth Prospects by 2023

Smart Polymers Market – Overview:

Smart Polymers are those able to modify their physical and chemical properties in response to the variation of environmental factors. Smart Polymer systems can be designed to respond to a wide range of parameters, such as changes in pH, ionic strength, temperature, magnetic and electric field. These Smart Polymers can behave in several ways by altering solubility, shape, color, light transmitting abilities, wettability, conductivity, and surface characteristics. The extend of response of such polymers can be controlled by the intensity of the applied stimuli.
Now a days, the demand for Smart Polymers is increasing in biotechnology and medicine, electrical & electronics and automotive. Smart Polymers have also been useful as drug delivery systems and in the biotechnological field for enzyme immobilization. Despite, coating medical devices with smart polymers may significantly widen their range of applications. Devices able to attract certain cells of the body or devices that should perform as membranes or artificial muscles take advantage of these smart materials. A surface grafted with Smart Polymers has been highlighted for its interfacial and wetting applications. For example, a smart surface with switchable wettability could be potentially used in tissue engineering and antimicrobial coatings. In addition to this, a smart polymer material responsive to light or temperature could also be effectively used as a sensor which may drive the Global Smart Polymer Market. Presently, smart polymers have been mainly emphasized for their potential applications in nanotechnology, nanoscience, and nanomedicine.


Competitive Landscape:

The MRFR studies the key developments adopted by the companies between 2011 and 2016. Players in this market adopted various strategies to expand their footprint and augment their market share. The key strategies followed by most companies in the global smart polymer market were agreements and collaborations, mergers and acquisitions, joint ventures and expansion. Due to high demand of Smart Polymer in North America region, the manufacturers in North America region are using acquisition strategy of local producers in the other regions to increase their global market share.

Industry/ Innovation/ Related News:

February 2017 – A variety of stimuli-responsive polymers have been developed by researchers and used as actuators and/or artificial muscles, with the movement being driven by an external stimulus, such as electrical potential. Researchers highlighted actuators constructed from liquid-crystal elastomers, dielectric elastomers, ionic polymers, and conducting polymers. Researchers also discussed recent examples of a variety of actuators generated from these materials and their utility. The mechanism of actuation is detailed for most examples in order to stimulate possible future research, and lead to new applications and advanced applications.

2017– Multi-functional nanoshuttles for remotely targeted and on-demand delivery of therapeutic molecules and imaging to defined tissues and organs hold great potentials in personalized medicine, including precise early diagnosis, efficient prevention and therapy without toxicity. Yet, in spite of 25 years of research, there are still no such shuttles available. To this end, researchers have designed magnetic and gold nanoparticles (NP)-embedded silica nanoshuttles (MGNSs) with nanopores on their surface. Fluorescently labeled Doxorubicin (DOX), a cancer drug, was loaded in the MGNSs as a payload. DOX loaded MGNSs were encapsulated in heat and pH sensitive polymer P(NIPAM-coMAA) to enable controlled release of the payload. Magnetically-guided transport of MGNSs was examined in: (a) a glass capillary tube to simulate their delivery via blood vessels; and (b) porous hydrogels to simulate their transport in composite human tissues, including bone, cartilage, tendon, muscles and blood–brain barrier (BBB). The viscoelastic properties of hydrogels were examined by atomic force microscopy (AFM). Cellular uptake of DOXloaded MGNSs and the subsequent pH and temperature-mediated release were demonstrated in differentiated human neurons derived from induced pluripotent stem cells (iPSCs) as well as epithelial HeLa cells. The presence of embedded iron and gold NPs in silica shells and polymer-coating are supported by SEM and TEM. Fluorescence spectroscopy and microscopy documented DOX loading in the MGNSs. Time-dependent transport of MGNSs guided by an external magnetic field was observed in both glass capillary tubes and in the porous hydrogel. AFM results affirmed that the stiffness of the hydrogels model the rigidity range from soft tissues to bone. pH and temperature-dependent drug release analysis showed stimuli responsive and gradual drug release. Cells’ viability MTT assays showed that MGNSs are non-toxic. The cell death from on-demand DOX release was observed in both neurons and epithelial cells even though the drug release efficiency was higher in neurons. Therefore, scientists have development of smart nanoshuttles have significant translational potential for controlled delivery of theranostics’ payloads and precisely guided transport in specified tissues and organs (for example, bone, cartilage, tendon, bone marrow, heart, lung, liver, kidney, and brain) for highly efficient personalized medicine applications.

View Full Report Description with TOC: https://www.marketresearchfuture.com/reports/smart-polymers-market-4719      

Smart Polymers Market - Regional Analysis

North America region accounted largest market share in the Global Smart Polymer Market and expected to dominate during the forecast period due to advancement in drug delivery, nanotechnology, nanoscience, and nanomedicine and penetration of end user industry in the region. The unique properties of smart polymer to respond to a wide range of parameters, such as changes in pH, ionic strength, temperature, magnetic and electric field which makes it ideal in biotechnology and medicine, electrical & electronics that drive smart polymer market in North America region. North America market is mainly occupied by the U. S. being largest consumer and manufacturer and exporter of smart polymer. Europe is the second largest market for smart polymer followed by North America.                                                                                          
About Market Research Future:

At Market Research Future (MRFR), we enable our customers to unravel the complexity of various industries through our Cooked Research Report (CRR), Half-Cooked Research Reports (HCRR), Raw Research Reports (3R), Continuous-Feed Research (CFR), and Market Research & Consulting Services.

MRFR team have supreme objective to provide the optimum quality market research and intelligence services to our clients. Our market research studies by Components, Application, Logistics and market players for global, regional, and country level market segments, enable our clients to see more, know more, and do more, which help to answer all their most important questions.

Contact: Market Research Future
+1 646 845 9312
Email: sales@marketresearchfuture.com

Tuesday, 5 February 2019

Smart Polymers Market 2019 | Analysis Includes Growth, Trends, Technologies & Opportunities Forecast 2023

Smart Polymers Market – Overview:

Smart Polymers are those able to modify their physical and chemical properties in response to the variation of environmental factors. Smart Polymer systems can be designed to respond to a wide range of parameters, such as changes in pH, ionic strength, temperature, magnetic and electric field. These Smart Polymers can behave in several ways by altering solubility, shape, color, light transmitting abilities, wettability, conductivity, and surface characteristics. The extend of response of such polymers can be controlled by the intensity of the applied stimuli.

Now a days, the demand for Smart Polymers is increasing in biotechnology and medicine, electrical & electronics and automotive. Smart Polymers have also been useful as drug delivery systems and in the biotechnological field for enzyme immobilization. Despite, coating medical devices with smart polymers may significantly widen their range of applications. Devices able to attract certain cells of the body or devices that should perform as membranes or artificial muscles take advantage of these smart materials. A surface grafted with Smart Polymers has been highlighted for its interfacial and wetting applications. For example, a smart surface with switchable wettability could be potentially used in tissue engineering and antimicrobial coatings. In addition to this, a smart polymer material responsive to light or temperature could also be effectively used as a sensor which may drive the Global Smart Polymer Market. Presently, smart polymers have been mainly emphasized for their potential applications in nanotechnology, nanoscience, and nanomedicine.

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Competitive Landscape:

The MRFR studies the key developments adopted by the companies between 2011 and 2016. Players in this market adopted various strategies to expand their footprint and augment their market share. The key strategies followed by most companies in the global smart polymer market were agreements and collaborations, mergers and acquisitions, joint ventures and expansion. Due to high demand of Smart Polymer in North America region, the manufacturers in North America region are using acquisition strategy of local producers in the other regions to increase their global market share.

Industry/ Innovation/ Related News:

February 2017 – A variety of stimuli-responsive polymers have been developed by researchers and used as actuators and/or artificial muscles, with the movement being driven by an external stimulus, such as electrical potential. Researchers highlighted actuators constructed from liquid-crystal elastomers, dielectric elastomers, ionic polymers, and conducting polymers. Researchers also discussed recent examples of a variety of actuators generated from these materials and their utility. The mechanism of actuation is detailed for most examples in order to stimulate possible future research, and lead to new applications and advanced applications.

2017– Multi-functional nanoshuttles for remotely targeted and on-demand delivery of therapeutic molecules and imaging to defined tissues and organs hold great potentials in personalized medicine, including precise early diagnosis, efficient prevention and therapy without toxicity. Yet, in spite of 25 years of research, there are still no such shuttles available. To this end, researchers have designed magnetic and gold nanoparticles (NP)-embedded silica nanoshuttles (MGNSs) with nanopores on their surface. Fluorescently labeled Doxorubicin (DOX), a cancer drug, was loaded in the MGNSs as a payload. DOX loaded MGNSs were encapsulated in heat and pH sensitive polymer P(NIPAM-coMAA) to enable controlled release of the payload. Magnetically-guided transport of MGNSs was examined in: (a) a glass capillary tube to simulate their delivery via blood vessels; and (b) porous hydrogels to simulate their transport in composite human tissues, including bone, cartilage, tendon, muscles and blood–brain barrier (BBB). The viscoelastic properties of hydrogels were examined by atomic force microscopy (AFM). Cellular uptake of DOXloaded MGNSs and the subsequent pH and temperature-mediated release were demonstrated in differentiated human neurons derived from induced pluripotent stem cells (iPSCs) as well as epithelial HeLa cells. The presence of embedded iron and gold NPs in silica shells and polymer-coating are supported by SEM and TEM. Fluorescence spectroscopy and microscopy documented DOX loading in the MGNSs. Time-dependent transport of MGNSs guided by an external magnetic field was observed in both glass capillary tubes and in the porous hydrogel. AFM results affirmed that the stiffness of the hydrogels model the rigidity range from soft tissues to bone. pH and temperature-dependent drug release analysis showed stimuli responsive and gradual drug release. Cells’ viability MTT assays showed that MGNSs are non-toxic. The cell death from on-demand DOX release was observed in both neurons and epithelial cells even though the drug release efficiency was higher in neurons. Therefore, scientists have development of smart nanoshuttles have significant translational potential for controlled delivery of theranostics’ payloads and precisely guided transport in specified tissues and organs (for example, bone, cartilage, tendon, bone marrow, heart, lung, liver, kidney, and brain) for highly efficient personalized medicine applications.

  
Smart Polymers Market - Regional Analysis

North America region accounted largest market share in the Global Smart Polymer Market and expected to dominate during the forecast period due to advancement in drug delivery, nanotechnology, nanoscience, and nanomedicine and penetration of end user industry in the region. The unique properties of smart polymer to respond to a wide range of parameters, such as changes in pH, ionic strength, temperature, magnetic and electric field which makes it ideal in biotechnology and medicine, electrical & electronics that drive smart polymer market in North America region. North America market is mainly occupied by the U. S. being largest consumer and manufacturer and exporter of smart polymer. Europe is the second largest market for smart polymer followed by North America.                                 
About Market Research Future:

At Market Research Future (MRFR), we enable our customers to unravel the complexity of various industries through our Cooked Research Report (CRR), Half-Cooked Research Reports (HCRR), Raw Research Reports (3R), Continuous-Feed Research (CFR), and Market Research & Consulting Services.

MRFR team have supreme objective to provide the optimum quality market research and intelligence services to our clients. Our market research studies by Components, Application, Logistics and market players for global, regional, and country level market segments, enable our clients to see more, know more, and do more, which help to answer all their most important questions.

Contact: Market Research Future
+1 646 845 9312
Email: sales@marketresearchfuture.com

Monday, 19 February 2018

Smart Polymers Market 2018: Research, Share, Competitor Strategy, Trends and Forecast to 2023

Market Research Future published a Half Cooked Research Report on “Global  Smart Polymers Market Research Report – Forecast to 2023”– Market Analysis, Scope, Stake, Progress, Trends and Forecast to 2023.

BASF SE (Germany), The Lubrizol Corporation (the U.S.), Spintech LLC (the U.S.), Akina, Inc. (the U.S.), SMP Technologies Inc. (Japan), Evonik Industries AG (Germany), Reactive Surfaces Ltd (the U.S.), Merck Group (Germany), NEI Corporation (the U.S.) among others are some of the prominent players at the forefront of competition in the Global Smart Polymers Market and are profiled in MRFR Analysis.

Smart Polymers Market – Overview
Smart Polymers are those able to modify their physical and chemical properties in response to the variation of environmental factors. Smart Polymer systems can be designed to respond to a wide range of parameters, such as changes in pH, ionic strength, temperature, magnetic and electric field. These smart polymers can behave in several ways by altering solubility, shape, color, light transmitting abilities, wettability, conductivity, and surface characteristics. The extend of response of such polymers can be controlled by the intensity of the applied stimuli.

Now a days, the demand for smart polymers is increasing in biotechnology and medicine, electrical & electronics and automotive. Smart polymers have also been useful as drug delivery systems and in the biotechnological field for enzyme immobilization. Despite, coating medical devices with smart polymers may significantly widen their range of applications. Devices able to attract certain cells of the body or devices that should perform as membranes or artificial muscles take advantage of these smart materials. A surface grafted with Smart Polymers has been highlighted for its interfacial and wetting applications. For example, a smart surface with switchable wettability could be potentially used in tissue engineering and antimicrobial coatings. In addition to this, a smart polymer material responsive to light or temperature could also be effectively used as a sensor which may drive the Global Smart Polymer Market. Presently, smart polymers have been mainly emphasized for their potential applications in nanotechnology, nanoscience, and nanomedicine.

Get Sample of Report @ https://www.marketresearchfuture.com/sample_request/4719

Industry/ Innovation/ Related News:
February 2017 – A variety of stimuli-responsive polymers have been developed by researchers and used as actuators and/or artificial muscles, with the movement being driven by an external stimulus, such as electrical potential. Researchers highlighted actuators constructed from liquid-crystal elastomers, dielectric elastomers, ionic polymers, and conducting polymers. Researchers also discussed recent examples of a variety of actuators generated from these materials and their utility. The mechanism of actuation is detailed for most examples in order to stimulate possible future research, and lead to new applications and advanced applications.

2017– Multi-functional nanoshuttles for remotely targeted and on-demand delivery of therapeutic molecules and imaging to defined tissues and organs hold great potentials in personalized medicine, including precise early diagnosis, efficient prevention and therapy without toxicity. Yet, in spite of 25 years of research, there are still no such shuttles available. To this end, researchers have designed magnetic and gold nanoparticles (NP)-embedded silica nanoshuttles (MGNSs) with nanopores on their surface. Fluorescently labeled Doxorubicin (DOX), a cancer drug, was loaded in the MGNSs as a payload. DOX loaded MGNSs were encapsulated in heat and pH sensitive polymer P(NIPAM-coMAA) to enable controlled release of the payload. Magnetically-guided transport of MGNSs was examined in: (a) a glass capillary tube to simulate their delivery via blood vessels; and (b) porous hydrogels to simulate their transport in composite human tissues, including bone, cartilage, tendon, muscles and blood–brain barrier (BBB). The viscoelastic properties of hydrogels were examined by atomic force microscopy (AFM). Cellular uptake of DOXloaded MGNSs and the subsequent pH and temperature-mediated release were demonstrated in differentiated human neurons derived from induced pluripotent stem cells (iPSCs) as well as epithelial HeLa cells. The presence of embedded iron and gold NPs in silica shells and polymer-coating are supported by SEM and TEM. Fluorescence spectroscopy and microscopy documented DOX loading in the MGNSs. Time-dependent transport of MGNSs guided by an external magnetic field was observed in both glass capillary tubes and in the porous hydrogel. AFM results affirmed that the stiffness of the hydrogels model the rigidity range from soft tissues to bone. pH and temperature-dependent drug release analysis showed stimuli responsive and gradual drug release. Cells’ viability MTT assays showed that MGNSs are non-toxic. The cell death from on-demand DOX release was observed in both neurons and epithelial cells even though the drug release efficiency was higher in neurons. Therefore, scientists have development of smart nanoshuttles have significant translational potential for controlled delivery of theranostics’ payloads and precisely guided transport in specified tissues and organs (for example, bone, cartilage, tendon, bone marrow, heart, lung, liver, kidney, and brain) for highly efficient personalized medicine applications.

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Smart Polymers Market   – Regional Analysis
North America region accounted largest market share in the Global Smart Polymer Market and expected to dominate during the forecast period due to advancement in drug delivery, nanotechnology, nanoscience, and nanomedicine and penetration of end user industry in the region. The unique properties of smart polymer to respond to a wide range of parameters, such as changes in pH, ionic strength, temperature, magnetic and electric field which makes it ideal in biotechnology and medicine, electrical & electronics that drive Smart Polymer Market in North America region. North America market is mainly occupied by the U. S. being largest consumer and manufacturer and exporter of Smart Polymer. Europe is the second largest market for Smart Polymer followed by North America.

Competitive Landscape
The MRFR studies the key developments adopted by the companies between 2011 and 2016. Players in this market adopted various strategies to expand their footprint and augment their market share. The key strategies followed by most companies in the Global Smart Polymer Market were agreements and collaborations, mergers and acquisitions, joint ventures and expansion. Due to high demand of smart polymer in North America region, the manufacturers in North America region are using acquisition strategy of local producers in the other regions to increase their global market share.

Thursday, 30 November 2017

Smart Polymers Market 2017: Key Players, Development and Opportunities by Forecast to 2023

The characteristics of polymers which are determined by a change in environment factors such as pH, temperature, and others are known as Smart Polymers. They are also called stimuli response polymers or intelligent materials. These polymers are strong, resilient, durable, ecofriendly and reliable nature. Owing to these attributes, they are used in various applications such as biotechnology and medicine, drug delivery systems, and others.

The Global Smart Polymers Market has been driven by the growing demand of physical stimuli responsive polymers in heavy end industries. Moreover, it is estimated that the market is set to witness a higher growth due to an increase in the number of manufacturing units to produce intelligent materials in automotive, chemical and construction industries.

Market Segmentation:
The Global Smart Polymers Market is further categorized into stimulus type and application. On the basis of stimulus type, the market is further segmented biotechnology and medicine, electrical & electronics, automotive, drug delivery systems, and others. Among these, biotechnology and medicine segment holds the major share in the market due to growing use of smart polymers for the evolution of biocatalyst, biometric actuators and bio analytical systems. The rise in demand of physical stimuli polymers due to its ability to change accordingly to the market has propelled automotive segment to witness a higher growth in the market. It is also predicted that the growing consumption of responsive polymers in drug delivery systems segment is set to expand at a higher CAGR in the market during the forecast period.

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Segmental Analysis:
The Global Smart Polymers Market is spanned across five key regions of the world namely Asia Pacific, North America, Europe, Latin America and the Middle East & Africa. Among these, North America holds a major share in the market and is expected to continue its dominance due to rising demand of Smart Polymers in end use industries such as biotechnology and medicine, automotive, and others. These polymers are widely used to improve the optimal performance and standard in heavy end industries.Due to these reasons, the U.S, Canada and Mexico are the major players in the market. Asia Pacific is predicted to witness a higher CAGR in countries such as Japan, China and India owing to growing demand of biocompatible materials in automotive, construction and industrial machinery. The growing consumption of intelligent materials in diagnostic materials and devices is estimated to drive the market in the European region during the forecast period. Due to these factors, Germany, the U.K. and Italy are the major contributors to the smart market in Europe. The Middle East & Africa region is estimated to observe a moderate growth in the market due to lack of standardization and less awareness about the product. Moreover, a slow growth is predicted in the Latin American regions such as Brazil, Argentina and Uruguay due to recession and poor technological advancement.

Competitive Analysis:
Some of the major players functioning in the Global Smart Polymers Market are BASF SE (Germany), The Lubrizol Corporation (the U.S.), Spintech LLC (the U.S.), Akina, Inc.(the U.S.), SMP Technologies Inc.(Japan), Evonik Industries AG( Germany), Reactive Surfaces Ltd ( the U.S.), Merck Group ( Germany), NEI Corporation(the U.S.), among others.

Browse Full Report Details @ https://www.marketresearchfuture.com/reports/smart-polymers-market-4719                             
                     
Key Points from Table of Contents:

Table of Contents:

1    Executive Summary

2    Scope of the Report

3    Market Research Methodology

4    Market Landscape

5    Industry Overview of Global Smart Polymers Market

6    Market Trends

7. Global Smart Polymers Market by Stimulus Type

8. Global Smart Polymers Market by Application

9. Global Smart Polymers Market by Region

11. Company Profiles

11.1.1    Company Overview
11.1.2    Product/Business Segment Overview
11.1.3    Financial Updates
11.1.4    Key Developments

11.2      The Lubrizol Corporation
11.2.1    Company Overview
11.2.2    Product/Business Segment Overview
11.2.3    Financial Updates
11.2.4    Key Developments

11.3       Spintech LLC
11.3.1    Company Overview
11.3.2    Product/Business Segment Overview
11.3.3    Financial Updates
11.3.4    Key Developments

11.4      Akina, Inc.
11.4.1    Company Overview
11.4.2    Product/Business Segment Overview
11.4.3    Financial Updates
11.4.4    Key Developments

Continue…

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