We have compiled a list of manufacturers, distributors, product information, reference prices, and rankings for Nanofiber.
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Nanofiber Product List and Ranking from 18 Manufacturers, Suppliers and Companies | IPROS GMS

Last Updated: Aggregation Period:Feb 04, 2026~Mar 03, 2026
This ranking is based on the number of page views on our site.

Nanofiber Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Feb 04, 2026~Mar 03, 2026
This ranking is based on the number of page views on our site.

  1. ALMEDIO INC. Tokyo//Other manufacturing
  2. スギノマシン 本社・早月事業所 Toyama//Industrial Machinery
  3. メック ナノファイバー事業 Fukuoka//Industrial Machinery
  4. 4 GSアライアンス 冨士色素株式会社 内 Hyogo//Chemical
  5. 5 KOTRA名古屋 韓国貿易センター(名古屋) Aichi//Service Industry

Nanofiber Product ranking

Last Updated: Aggregation Period:Feb 04, 2026~Mar 03, 2026
This ranking is based on the number of page views on our site.

  1. Improvement of thermal conductivity and electrical conductivity - Carbon Nanofiber (CNF) ALMEDIO INC.
  2. Carbon nano/microfibers that are easily dispersible even at high concentrations. ALMEDIO INC.
  3. 5 Selected Manual Tools for Pipe Processing <Various Pipe Processing Videos Available> スギノマシン 本社・早月事業所
  4. 4 High-conductivity carbon nanofibers ALMEDIO INC.
  5. 5 Reinforcement carbon nanofiber ALMEDIO INC.

Nanofiber Product List

1~30 item / All 42 items

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Gypsum board tools Edma manual tools Supraphix

[Demo machine compatible] No driver needed. Metal anchor fixed in one shot.

EDMA is a manufacturer specializing in hand tools, founded in France in 1937. With years of experience in the French construction industry, EDMA tools are known for their craftsmanship and uniqueness. EDMA tools are beginning to make their mark in Japanese construction sites, responding to the needs for reliable on-site work. Gypsum board tools by EDMA: the Suprafix secures metal anchors in one shot. Compact size of 180mm.

  • Other work tools
  • Nanofiber

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Edoma Hand Tools 【Comprehensive Catalog Available!】

A hand tool manufacturer established in 1937 produces top-class quality hand tools that are active in Japanese workplaces!

Edma is a manufacturer specializing in hand tools, established in 1937. With the motto of "silent, dust-free, power-free, and long-lasting," we have honed our skills in the French construction industry for 80 years, focusing solely on hand tools. Our top-class quality hand tools are active on job sites in Japan. You can download the comprehensive catalog of Edma hand tools in PDF format! [Example of products listed in the catalog] ■ Gypsum board stripper 'Plackroll 600' Features a two-material grip that enables precise handling, allowing for strip cuts of up to 600mm with a wheel blade. ■ Metal cutting drill attachment 'Turbo Shar Nippler' This rechargeable metal cutting drill attachment tool can be easily set up with a handheld electric screwdriver, allowing for quick and easy cutting of metal sheets. ■ Insulation material cutter 'Styrofoam Cutter' An insulation material cutter that can be easily set up on-site and operated simply to achieve clean cutting surfaces. It cuts materials such as expanded polystyrene insulation building materials, EPS (bead method polystyrene foam), and XPS (extruded method polystyrene) using a heated wire. It can process into rectangular shapes, angles, bevels, stair shapes, and grooves.

  • Other work tools
  • Nanofiber

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Varnishing tool for finishing O-ring grooves

Achieve a stable finish for O-ring grooves that are polished by hand through machining!

The "Sparoll" vanishing tool for finishing O-ring grooves is a product of Sugino Machine Co., Ltd., which develops, designs, manufactures, and sells high-pressure jet cleaning devices, ultra-high-pressure water cutting devices, mirror finishing tools, and more. This vanishing tool is designed to finish O-ring grooves, which are difficult to stabilize in cutting processes. It is possible to replace the manually polished grooves with a stable finish achieved through machining. We will propose the most suitable tool for your needs from our wide range of products. For more details, please refer to the catalog or feel free to contact us.

  • Other work tools
  • Other surface treatment equipment
  • Nanofiber

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Mechanical Feed Electronic Control Drilling Unit SELFEEDER SSV2

High-speed, high-power high-performance motor equipped; smallest model of the SELFEEDER servo type.

【Features】 ○ Mechanically fed and electronically controlled drilling unit with adjustable main spindle rotation speed 【Optimal Applications】 ○ Deep hole machining for small diameters such as oil holes in shafts and gears ○ Step hole drilling for automotive parts and construction machinery components ○ Side milling using an end mill combined with a slide unit ○ Drilling and deburring processes when mounted on an XY slide unit, etc.

  • Other machine tools
  • Nanofiber

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Crimp terminal, manual tool for crimp terminals

Tools designed based on ergonomics can reduce worker fatigue.

A variety of tools designed for crimping Panduit's Pan-Ty are available. Ergonomically designed tools can reduce operator fatigue. The CT-100A comes with a bolt cutter that can cut screws. It can also cut and strip electrical wires. It is a convenient universal crimping tool that can be used for various applications. The CT-1550 has red/blue crimp pockets (for AWG 22 to 14) located near the center of the tool, making it easy to crimp, especially when frequently using the red/blue pockets. For more details, please contact us or refer to the catalog.

  • Wiring materials
  • Other work tools
  • Crimp Terminal
  • Nanofiber

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Medical applications of nanofibers

We will provide a detailed introduction to the characteristics of nanofibers from a medical perspective, as well as examples of product development!

I will introduce "Medical Applications of Nanofibers." Nanofibers produced by electrospinning are one of the important applications, particularly gaining attention in the medical field. Examples of product development utilizing the characteristics of nanofibers include "scaffold materials for regenerative medicine," "drug release capsules," and "artificial blood vessels." 【Characteristics of Nanofibers from a Medical Perspective】 ■ Cell adhesion ■ Biocompatibility and biodegradability ■ Porosity and vast surface area ■ Physical properties and mechanical strength *For more details, please contact us by phone or through the inquiry form. Tel. 0942-41-2200 HP: https://www.mecc-jp.com/nano/contact/

  • fiber
  • Nanofiber

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<Medical> <Artificial Blood Vessel> Process of Sample Preparation for Nanofibers

Please consult us about materials, sizes, thickness, fiber diameter, and other aspects of sample production!

We would like to introduce the process for creating samples of the nanofibers we handle. First, please contact us by phone or email, and our staff will inquire about the materials, sizes, basis weight/thickness, and fiber diameter. After that, we will prepare the materials and conduct preliminary tests to determine whether fiberization is possible. 【Sample Creation Process】 1. Inquiry by phone or email 2. Information gathering by our staff 3. Preparation of materials 4. Preliminary tests 5. Specification discussion and quotation 6. Order placement 7. Sample creation and delivery *For more details, please contact us by phone or through the inquiry form. Tel. 0942-41-2200 HP: https://www.mecc-jp.com/nano/contact/

  • Other polymer materials
  • Other contract services
  • Nanofiber

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Application of PCL and PLGA Nanofibers in Healthcare

Wide-ranging possibilities for applications as wound materials, waterproof materials, drug-carrying materials, and formulation materials, etc.

We would like to introduce the application of nanofibers in healthcare. Professor Funakubo's group at Tokyo Denki University, Faculty of Science and Technology, is conducting research on the production of artificial blood vessels and artificial organs in the field of regenerative medicine. The use of nanofibers in this research is considered advantageous for creating three-dimensional structures and serving as scaffold materials for cells. 【Examples of Applications】 ■ Artificial Blood Vessels ■ Artificial Organs ■ Scaffold Materials for Cells *For more details, please contact us by phone or through the inquiry form. Tel. 0942-41-2200 HP: https://www.mecc-jp.com/nano/contact/

  • fiber
  • Other polymer materials
  • Organic Natural Materials
  • Nanofiber

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PVA PEO nanofiber sample preparation

Please consult us about materials, sizes, thickness, fiber diameter, and other aspects of sample production!

We would like to introduce the process of sample production for the nanofibers we handle. First, please contact us via phone or email, and our staff will inquire about the materials, sizes, basis weight/thickness, and fiber diameter. After that, we will prepare the materials and conduct preliminary tests to determine whether fiberization is possible. 【Sample Production Process】 1. Inquiry via phone or email 2. Information gathering by our staff 3. Preparation of materials 4. Preliminary testing 5. Specification discussion and quotation 6. Order placement 7. Sample production and delivery *For more details, please contact us by phone or through the inquiry form. Tel. 0942-41-2200 HP: https://www.mecc-jp.com/nano/contact/

  • Other polymer materials
  • Other contract services
  • fiber
  • Nanofiber

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Tohoku Univ. Technology :Fabrication of cellulose hydrogels:T25-018

High-strength hydrogels fabricated by precise control of cellulose nanofibrils

Cellulose nanofibril (CNF) is a highly crystalline microfibril derived from wood fiber. It is an environmentally friendly innovative material with excellent mechanical properties such as light weight, high strength, and low thermal expansion. Owing to these characteristics, it is expected to be applied to automotive components, electronic devices, gas barrier materials, and medical materials. A technology to fabricate single filaments composed of CNF has been also developed, and long filaments with high strength have been obtained.  Based on the previously obtained knowledges and established methodology, functional materials using CNF have been developed in various fields, including the present invention relates to the fabrication of hydrogels. There are several hydrogel fabrication methods such as using electrophoresis and freeze-crosslinking, however, they were not suitable for mass production, and a new method was anticipated.  As a result of intensive research, a method for precisely controlling the CNF orientation and the internal structure of hydrogels was developed, which realizes the contamination-free and high-strength hydrogels. It was found that the strength of gels can be designed from isotropic to anisotropic by tuning the fabrication conditions.

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Fluffy Nano [Sample Available]

The ultra-fine fibers of the nanofiber absorb oil up to about 35 times their own weight! You can tear off and use any amount you like.

You can tear off the desired amount of cotton-like nanofiber for handling oil after cooking, as well as for wiping off oil that has adhered to plates and trays. The nanofiber can absorb about 35 times its own weight in oil, making it very economical. Additionally, due to the properties of polypropylene, it only absorbs oil. *It does not absorb water. This is a new type of oil treatment material that differs from the previous solidifying or pouring types. It is also possible to supply just the contents depending on the quantity.

  • Textile Processing Machinery
  • Nanofiber

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Chitin nanofiber / Chitosan nanofiber

Introducing a new material that can be mixed into food, beverages, cosmetics, and pharmaceuticals as a functional ingredient.

"Chitin Nanofiber/Chitosan Nanofiber" is a translucent, gel-like substance that is uniformly dispersed in water. Therefore, unlike conventional chitin and chitosan, it can be mixed as a functional ingredient in food, beverages, cosmetics, and pharmaceuticals. By taking it, various effects have been reported, such as alleviating inflammation by suppressing the production of substances related to inflammation and inhibiting the rise in cholesterol and lipid concentrations in the blood, making it a wonderful new material with great potential. Please feel free to consult us for any technical details or inquiries. [Applications] ■ Increases skin moisture levels ■ Reduces inflammation in wounds and promotes tissue regeneration ■ Expands the epithelium and promotes tissue growth in healthy skin ■ Protects the skin from external stimuli ■ Has a hair growth-promoting effect *For more details, please refer to the PDF materials or feel free to contact us. *If you would like a paid sample, please inquire.

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NANOXERA® (Nanoxera) *Please inquire about samples.

Mass-produced nanofiber products established through joint research between a manufacturer with world-class nanofiber manufacturing technology and a national university.

The products manufactured by the TOPTEC Group, which possesses world-class technological capabilities and experience in mass-produced nanofiber products using the electrospinning method, are highly regarded globally. Yagi Co., Ltd. has launched the nanofiber products manufactured by its group company, LIME, under the name "NANOXERA(R)," and has begun global promotional activities since the fiscal year 2020. *For more details, please download the materials or feel free to contact us.*

  • fiber
  • Nanofiber

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NANOXERA® (Nanoxera) Nanofiber

Fruit bag with excellent breathability.

This is an introduction to the technology 'NANOXERA' that produces nanofiber fibers through the electrospinning method (electric field spinning method). By using nanofiber fibers in part of fruit bags and cultivation bags, excellent breathability and waterproofing are achieved due to the fine mesh structure. The nanofiber coating acts as a "ventilation window," allowing temperature differences between day and night to be conveyed to the fruits, thereby improving productivity. 【Features】 ■ Excellent breathability ■ Waterproofing *For more details, please refer to the related link page or feel free to contact us.

  • filter
  • Nanofiber

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Reinforcement carbon nanofiber

Milled fibers with a diameter of 200 to 800 nm and a length of 1 to 15 µm, having a fibrous aspect ratio.

This is a milled fiber with a diameter of 200 to 800 nm and a length of 1 to 15 µm, exhibiting a fibrous aspect ratio. The diameter of carbon nanotubes (CNT) ranges from 0.4 to 50 nm, and they are known to be prone to aggregation; however, this carbon nanofiber (CNF) is characterized by its ease of high-concentration addition and dispersion. By adding CNF in high concentrations to resin, it is possible to enhance electrical conductivity, thermal conductivity, rigidity, lubricity, and shielding properties, making it feasible to consider alternatives to metals. Additionally, by utilizing thermoplastic resins, it can be molded at high speed and become a sustainable composite material. As a powder filler, it has a thermal conductivity of over 100 W/mK and a volume resistivity of less than 10^-5 Ωm.

  • others
  • Nanofiber

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Conductive carbon nanofibers

Milled fibers with a diameter of 200 to 800 nm and a length of 1 to 20 µm, having a fibrous aspect ratio.

It is a milled fiber with a diameter of 200 to 800 nm and a length of 1 to 20 µm, having a fibrous aspect ratio. This material has a higher degree of graphitization than carbon nanofibers used for reinforcement, allowing for higher thermal and electrical conductivity. As a powder filler, it has a thermal conductivity of over 500 W/mK and a volume resistivity of less than 10^-5 Ωm.

  • others
  • Nanofiber

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High-conductivity carbon nanofibers

Milled fibers with a diameter of 200 to 800 nm and a length of 1 to 20 µm, having a fibrous aspect ratio.

It is a milled fiber with a diameter of 200 to 800 nm and a length of 1 to 20 µm, having a fibrous aspect ratio. This material can achieve higher thermal conductivity and electrical conductivity than carbon nanofibers used for conductivity. As a powder filler, it has a thermal conductivity of over 900 W/mK and a volume resistivity of less than 10^-6 Ωm.

  • others
  • Nanofiber

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Automatic drill press with tapping function - STANDRILL series

Operational from today! Easily automate drilling and tapping. Leave the updates from aging tapping machines and after-sales service to us.

The automatic drilling machine with tapping function, 'STANDRILL series', is a processing machine that easily automates drilling and tapping, which are usually done manually. It features a compact 4.5-inch touch panel. No programming knowledge is required; simply input the stroke and rotation speed settings, allowing anyone to easily achieve high-quality drilling and tapping. It is also ideal for upgrading from outdated drilling and tapping machines that have been discontinued. 【Features】 - Operates immediately with only a 200V power supply. No complicated wiring or piping work is necessary. - Origin setting and program creation are easy with the touch panel, requiring no specialized knowledge. It includes a simple teaching function, enabling cycle operation with input of stroke and rotation speed. - By adding input and output signals, it can be linked with customer-provided jigs and safety doors. It also supports CC-Link. For more details, please refer to the catalog or feel free to contact us.

  • Drill press
  • Other processing machines
  • Grinding Machine
  • Nanofiber

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5 Selected Manual Tools for Pipe Processing <Various Pipe Processing Videos Available>

Introducing interesting pipe processing tools that allow you to simply "push" to shave, align, cut, expand, and pull out pipes.

Our company is a manufacturer that has been specializing in tools for pipe processing for over 80 years. This time, we will introduce five unique and interesting "manual tools for pipe processing" that can perform the following operations simply by "pushing": "shaping," "aligning," "cutting," "expanding," and "pulling out" pipes. 【Pipe Processing Menu】 Shaping … Chamfering the pipe end face Aligning … Trimming the pipe end to adjust length Cutting … Cutting the pipe from the inside Expanding … Expanding the pipe from the inside Pulling out … Pulling out a fixed pipe You can watch videos via external links! Enjoy our unique and interesting "manual tools for pipe processing"! *You can view product documentation corresponding to each menu item via <PDF Download>. Please feel free to consult us with any requests such as "I would like to try this kind of pipe processing!"

  • Other work tools
  • Nanofiber

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Flow of sample production for battery nanofibers

Please consult us about materials, sizes, thickness, fiber diameter, and other aspects of sample production!

We would like to introduce the process of sample production for the nanofibers we handle. First, please contact us by phone or email, and our staff will inquire about the materials, sizes, basis weight/thickness, and fiber diameter. After that, we will prepare the materials and conduct preliminary tests to determine whether fiberization is possible. 【Sample Production Process】 1. Inquiry by phone or email 2. Information gathering by our staff 3. Preparation of materials 4. Preliminary testing 5. Specification discussion and quotation 6. Order placement 7. Sample production and delivery *For more details, please contact us by phone or through the inquiry form. Tel. 0942-41-2200 HP: https://www.mecc-jp.com/nano/contact/

  • Other polymer materials
  • Other contract services
  • Lithium-ion battery
  • Nanofiber

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<Cell Culture><Artificial Blood Vessels> Application of Nanofibers 'Healthcare'

Wide application possibilities as trauma materials, waterproof materials, drug-carrying materials, formulation materials, etc.!

We would like to introduce the application of nanofibers in healthcare. Professor Funakubo's group at Tokyo Denki University, Faculty of Science and Technology, is researching the production of artificial blood vessels and artificial organs in the field of regenerative medicine. The use of nanofibers in this research is considered advantageous for creating three-dimensional structures and serving as scaffold materials for cells. [Application Examples] ■ Artificial Blood Vessels ■ Artificial Organs ■ Scaffold Materials for Cells *For more details, please contact us by phone or through the inquiry form. Tel. 0942-41-2200 HP: https://www.mecc-jp.com/nano/contact/

  • fiber
  • Other polymer materials
  • Organic Natural Materials
  • Nanofiber

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<Battery> <Electrode> Application of Nanofibers 'Functional Addition'

By applying it as a composite material, it enables the spinning of fibers with various added functionalities!

I would like to introduce the applications of nanofibers with "functional enhancement." In recent years, research has shown that it is possible to spin fibers with various functionalities not only as simple nanofibers but also as composite materials between fibers, composite materials with particles, or as coatings for functional substances. 【Examples of Applications】 ■ Composite materials between fibers ■ Composite materials with particles ■ Coatings for functional substances *For more details, please contact us by phone or through the inquiry form. Tel. 0942-41-2200 HP: https://www.mecc-jp.com/nano/contact/

  • fiber
  • Composite Materials
  • Other polymer materials
  • Nanofiber

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Application of Nanofibers in Healthcare

Wide-ranging possibilities for applications as wound materials, waterproof materials, drug carrier materials, formulation materials, etc.

We would like to introduce the application of nanofibers in "healthcare." Professor Funakubo's group at Tokyo Denki University, Faculty of Science and Technology, is researching the production of artificial blood vessels and artificial organs in the field of regenerative medicine. The use of nanofibers in this research is considered advantageous for creating three-dimensional structures and serving as scaffold materials for cells. [Examples of Applications] ■ Artificial Blood Vessels ■ Artificial Organs ■ Scaffold Materials for Cells *For more details, please contact us by phone or through the inquiry form. Tel. 0942-41-2200 HP: https://www.mecc-jp.com/nano/contact/

  • fiber
  • Other polymer materials
  • Organic Natural Materials
  • Nanofiber

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Biodegradable Polymer Nanofiber Sample Preparation

Please consult us about materials, sizes, thickness, fiber diameter, and other aspects of sample production!

We would like to introduce the process of sample production for the nanofibers we handle. First, please contact us by phone or email, and our staff will inquire about the materials, sizes, basis weight/thickness, fiber diameter, and other details. After that, we will prepare the materials and conduct preliminary tests to determine whether fiberization is possible. 【Sample Production Process】 1. Inquiry by phone or email 2. Information gathering by our staff 3. Preparation of materials 4. Preliminary testing 5. Specification discussion and quotation 6. Order placement 7. Sample production and delivery *For more details, please contact us by phone or through the inquiry form. Tel. 0942-41-2200 HP: https://www.mecc-jp.com/nano/contact/

  • Other polymer materials
  • Other contract services
  • fiber
  • Nanofiber

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Non-allergenic β-chitin nanofibers

Dispersion in water and sheet molding are possible with hydrogel.

This product is a non-allergenic nanofiber that serves as an alternative to allergenic α-chitin. Made from squid sourced from Sanriku, it is produced based on our proprietary technology developed in chitin and chitosan manufacturing. It is finer than α-chitin derived from crab and cellulose nanofibers, and the fibers form a network, resulting in a jelly-like, viscous hydrogel. Additionally, due to its high biocompatibility, it is expanding its applications in medical devices for wound covering functions and as a culture substrate for iPS and ES cells, and it is expected to be a material for regenerative medicine, a pioneering research field worldwide. 【Features】 ■ Non-allergenic ■ Hydrogel ■ Low protein content *For more details, please download the PDF or feel free to contact us.

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Titanium oxide / Titanium carbide nan tubes / nanofibers

Transforming from nanocarbon to nanoceramics (such as titania).

This is a technology for synthesizing ceramic nanomaterials via template carbon nanomaterials. By heavily doping titanium into nanocarbon, it can be converted into titanium carbide alloy, and the resulting TiC has a shape almost identical to that of nanocarbon. TiC is one of the highly conductive ceramic materials, and when TiC is burned, it becomes titanium dioxide (TiO2). In this case as well, the original shape is almost maintained, resulting in the production of nano-titanium oxide. Using vertically aligned CNTs, vertically aligned titanium oxide nanotubes can be produced.

  • Composite Materials
  • Nanofiber

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Next-generation gene cell therapy purification technology Nanofiber AstreAdept

Next-generation purification nanofibers optimal for the purification of plasmid and viral particles.

In the world of bioprocessing, traditional porous methods used for antibody purification have been mainstream for decades, but they are unsuitable for the purification of large molecules such as lentiviruses, plasmids, and exosomes used in gene cell therapy, making purification difficult. Astrea Bioseparations has developed a next-generation bioprocessing device utilizing cutting-edge nanofiber technology called "AstreAdept." The upcoming nanofibers will be created by electrospinning a blend of two types of polymers, combining cellulose-based and non-cellulose-based materials. Due to their nanoscale size, they have a high surface area-to-volume ratio, making them very attractive. AstreAdept achieves the following: Efficiency: AstreAdept compresses processes, reducing time and costs. Innovative technology: It utilizes nanofibers and convection to enable fast and highly efficient washing. Wide applicability: A scalable solution that can accommodate everything from research to manufacturing. Optimization of exosome purification, bacteriophage, plasmid purification, and the purification of single-stranded pDNA and mRNA before and after IVT.

  • Other purification and extraction
  • High Performance Liquid Chromatograph
  • Chromatographic resins and packing materials
  • Nanofiber

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Book: Practical Technology for Cellulose Nanofibers

Leading experts explain the technologies necessary for the practical application of cellulose nanofibers, market and application outlook, and international standardization.

Kota Ogura / Sugino Machine Co., Ltd. Tetsuo Kondo / Kyushu University Kenji Tajima / Hokkaido University Ryota Koze / Tokyo University of Agriculture and Technology Akihiro Yamamoto / Morimachine Co., Ltd. Kentaro Abe / Kyoto University Yutaka Morikawa / Aichi Industrial Science and Technology Comprehensive Center Masako Ito / Aichi Industrial Science and Technology Comprehensive Center Tetsuya Uchida / Okayama University Jun Araki / Shinshu University Keita Sakakibara / Kyoto University Takashi Tsujii / Kyoto University Akio Kumagai / National Institute of Advanced Industrial Science and Technology Shinichiro Iwamoto / National Institute of Advanced Industrial Science and Technology Takashi Endo / National Institute of Advanced Industrial Science and Technology Ken Senba / Kyoto City Industrial Technology Research Institute (Local Independent Administrative Institution) Takahiro Uesaka / Kyoto City Industrial Technology Research Institute (Local Independent Administrative Institution) Kenichi Hamada / DIC Corporation Hiroyuki Yano / Kyoto University Fumihiro Nakatsubo / Kyoto University Kazuto Kamino / Daiichi Kogyo Seiyaku Co., Ltd. Mariko Yoshioka / Kyoto University Ryo Ishiguro / Japan Steel Works, Ltd. Satoshi Nakamura / Japan Steel Works, Ltd. Takashi Date / Nippon Paper Industries Co., Ltd. Asahiro Hase / Hyogo Prefectural Institute of Technology Haruo Matsumura / Asahi Research Center Co., Ltd. Akira Ono / National Institute of Advanced Industrial Science and Technology

  • Company:S&T出版
  • Price:10,000 yen-100,000 yen
  • Technical and Reference Books
  • Nanofiber

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