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  • Advice You - Acrylic Fibres Are Oil Resistant Synthetic Fibres

    Acrylic fibres are synthetic fibres derived from polyacrylonitrile. By the process of free radical
    According to USFDA, a combination product is one composed of any combination of a drug and device; biological product and device; drug and biological product
    polymerization, the polymer for the acrylic fibres is formed. During polymerization process of ch
    ; or drug, device, and biological product and fixed dose combination would include two or more combinations of drug.

    Examples of combination products may in
    mical reaction, three-dimensional networks of polymer chains are formed. These polymer chains are
    lude drug-coated devices, drugs packaged with delivery devices in medical kits, and drugs and devices packaged separately but intended to be used together.

    hen treated with polymer solvents such as N, N-dimethylformamide or aqueous sodium thiocyanate res
    here is enormous increase in the number of combination products entering the market in the recent years. Combination products have proven advantages but fixe
    lting in the formation of Acrylic Fibres. The newly formed fibres are then made to pass through mu
    d dose combinations are still in the process of convincing regulatory authority on their advantages over the single ingredient formulations.

    Combination pro
    ti-hole spinnerette which squeezes out these thin lined threads like fibres which are again treate
    ucts have become life saving products for the pharmaceutical companies who doesn’t have many innovative molecules in their product pipeline and have been inc
    with the same solvents used before.

    The raw fibres formed are further made to pass through four
    easingly used in the product life cycle management. Even the companies having product patents are trying to extend their product life cycle through the combi
    teps before the final fibres emerge. Let’s see these steps in short.

    1. Washing – The fibres are
    nation products and maximize the revenues. But the companies involved in this practice are overlooking that they are burdening the patients both economically
    ashed by dipping them in chemical solvents like aqueous sodium thiocyanate and allowing them to re
    and physically. They need to rightly judge the benefits of the combination products and they have to even look at the risks involved when combining the produ
    ain there for around 5 minutes before proceeding to the next step.

    2. Stretching – The fibres are
    ts. Some of the combination products were well accepted by physicians while others suffered. Companies involved in development of combination products are fi
    stretched using highly sophisticated scientific machines which pull them to their tension limit wh
    ding difficulty in defining their combination products and facing various challenges from selecting a combination to marketing it.

    Following aspects would a
    n it may simply break off.

    3. Drying – The stretched fibres are then passed through blow-air mach
    dd to the challenges in developing combination products:

    Which markets to tap where the combination products can do fairly well?
    Which combination prod
    nes which help in drying the product.

    4. Crimping and Cutting – Finally formed fibres after dryin
    cts are meaningful and rational?
    Which therapeutic categories to select?
    Which Combinations can address unmet needs of the patients?
    Do combin
    are straightened using crimping irons which help them to form straight fibres which are then cut
    tions increase the patient compliance?
    What would be the developing cost?
    How to tackle the risks encountered during combination product developmen
    ccording to industrial standards. Acrylic fibres are usually modified to create special propertie
    t?

    As combination products don't fit into the traditional categories of drugs, medical devices, or biological products, the USFDA is in the process of devel
    best suited for their end-uses and are unique because of their uneven surface.

    Characteristics o
    ping new procedures for reviewing their safety, efficacy and quality.

    Professional from academic institutions, pharmaceutical industries, health care indust
    Acrylic Fibres

    1. Resistance to oil, moth, fungus, aging.

    2. Good Stain resistance

    3. UV rays
    y and representatives from various regulatory agencies are working out to design the regulatory requirements for manufacture and sale of combination products
    esistance

    4. Shape retention

    5. Light weight

    Acrylic Fibres were produced extensively in the US
    .

    As there is an increasing trend of the combination products companies manufacturing such products should be able to tackle the problems involved in the de
    in the early 90’s. Now acrylic fiber apparels are in great demand from the sports industry for lig
    elopment. They need to be wiser in analyzing the market trends and the regulatory requirements.

    Companies that provide selfless information through particip
    t weight apparels and home textiles sector for furniture, carpet, blankets, and upholstery fabrics


    tion in industry events and feedback to regulatory authorities would be able to face the challenges and will be successful in developing combination products

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