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  • object(anvilstl\commercio\models\Category)#446 (15) { ["featured_image_urls"]=> array(0) { } ["featured_image"]=> array(0) { } ["banner_image_urls"]=> array(0) { } ["productCount"]=> NULL ["_attributes":"yii\db\BaseActiveRecord":private]=> array(23) { ["id"]=> int(282) ["root"]=> int(1) ["lft"]=> int(230) ["rgt"]=> int(231) ["level"]=> int(3) ["name"]=> string(23) "Electrophoresis Buffers" ["url_name"]=> string(23) "electrophoresis-buffers" ["title"]=> NULL ["short_description"]=> string(0) "" ["long_description"]=> string(772) "High-quality buffers are an important part of electrophoresis. They allow a current to be carried through the sample while resisting pH changes in the overall solution. The choice of buffer depends on the isoelectric point of the sample being analyzed. In DNA electrophoresis, buffers like TAE (Tris-acetate-EDTA) and TBE (Tris-borate-EDTA) are used most commonly. In protein electrophoresis, SDS (sodium dodecyl sulfate) is commonly used. 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"beforeUpdate" ["afterUpdate"]=> string(11) "afterUpdate" ["beforeDelete"]=> string(12) "beforeDelete" ["afterDelete"]=> string(11) "afterDelete" } } [1]=> string(11) "afterInsert" } [1]=> NULL } } ["beforeUpdate"]=> array(1) { [0]=> array(2) { [0]=> array(2) { [0]=> object(creocoder\nestedsets\NestedSetsBehavior)#449 (8) { ["treeAttribute"]=> string(4) "root" ["leftAttribute"]=> string(3) "lft" ["rightAttribute"]=> string(3) "rgt" ["depthAttribute"]=> string(5) "level" ["operation":protected]=> NULL ["node":protected]=> NULL ["owner"]=> *RECURSION* ["_attachedEvents":"yii\base\Behavior":private]=> array(6) { ["beforeInsert"]=> string(12) "beforeInsert" ["afterInsert"]=> string(11) "afterInsert" ["beforeUpdate"]=> string(12) "beforeUpdate" ["afterUpdate"]=> string(11) "afterUpdate" ["beforeDelete"]=> string(12) "beforeDelete" ["afterDelete"]=> string(11) "afterDelete" } } [1]=> string(12) "beforeUpdate" } [1]=> NULL } } ["afterUpdate"]=> array(1) { [0]=> array(2) { [0]=> array(2) { [0]=> object(creocoder\nestedsets\NestedSetsBehavior)#449 (8) { ["treeAttribute"]=> string(4) "root" ["leftAttribute"]=> string(3) "lft" ["rightAttribute"]=> string(3) "rgt" ["depthAttribute"]=> string(5) "level" ["operation":protected]=> NULL ["node":protected]=> NULL ["owner"]=> *RECURSION* ["_attachedEvents":"yii\base\Behavior":private]=> array(6) { ["beforeInsert"]=> string(12) "beforeInsert" ["afterInsert"]=> string(11) "afterInsert" ["beforeUpdate"]=> string(12) "beforeUpdate" ["afterUpdate"]=> string(11) "afterUpdate" ["beforeDelete"]=> string(12) "beforeDelete" ["afterDelete"]=> string(11) "afterDelete" } } [1]=> string(11) "afterUpdate" } [1]=> NULL } } ["beforeDelete"]=> array(1) { [0]=> array(2) { [0]=> array(2) { [0]=> object(creocoder\nestedsets\NestedSetsBehavior)#449 (8) { ["treeAttribute"]=> string(4) "root" ["leftAttribute"]=> string(3) "lft" ["rightAttribute"]=> string(3) "rgt" ["depthAttribute"]=> string(5) "level" ["operation":protected]=> NULL ["node":protected]=> NULL ["owner"]=> *RECURSION* ["_attachedEvents":"yii\base\Behavior":private]=> array(6) { ["beforeInsert"]=> string(12) "beforeInsert" ["afterInsert"]=> string(11) "afterInsert" ["beforeUpdate"]=> string(12) "beforeUpdate" ["afterUpdate"]=> string(11) "afterUpdate" ["beforeDelete"]=> string(12) "beforeDelete" ["afterDelete"]=> string(11) "afterDelete" } } [1]=> string(12) "beforeDelete" } [1]=> NULL } } ["afterDelete"]=> array(1) { [0]=> array(2) { [0]=> array(2) { [0]=> object(creocoder\nestedsets\NestedSetsBehavior)#449 (8) { ["treeAttribute"]=> string(4) "root" ["leftAttribute"]=> string(3) "lft" ["rightAttribute"]=> string(3) "rgt" ["depthAttribute"]=> string(5) "level" ["operation":protected]=> NULL ["node":protected]=> NULL ["owner"]=> *RECURSION* ["_attachedEvents":"yii\base\Behavior":private]=> array(6) { ["beforeInsert"]=> string(12) "beforeInsert" ["afterInsert"]=> string(11) "afterInsert" ["beforeUpdate"]=> string(12) "beforeUpdate" ["afterUpdate"]=> string(11) "afterUpdate" ["beforeDelete"]=> string(12) "beforeDelete" ["afterDelete"]=> string(11) "afterDelete" } } [1]=> string(11) "afterDelete" } [1]=> NULL } } } ["_eventWildcards":"yii\base\Component":private]=> array(0) { } ["_behaviors":"yii\base\Component":private]=> array(1) { ["tree"]=> object(creocoder\nestedsets\NestedSetsBehavior)#449 (8) { ["treeAttribute"]=> string(4) "root" ["leftAttribute"]=> string(3) "lft" ["rightAttribute"]=> string(3) "rgt" ["depthAttribute"]=> string(5) "level" ["operation":protected]=> NULL ["node":protected]=> NULL ["owner"]=> *RECURSION* ["_attachedEvents":"yii\base\Behavior":private]=> array(6) { ["beforeInsert"]=> string(12) "beforeInsert" ["afterInsert"]=> string(11) "afterInsert" ["beforeUpdate"]=> string(12) "beforeUpdate" ["afterUpdate"]=> string(11) "afterUpdate" ["beforeDelete"]=> string(12) "beforeDelete" ["afterDelete"]=> string(11) "afterDelete" } } } ["__fieldGroups":protected]=> array(0) { } }
  • EGTA

    Product Description

    Ethyleneglycol bis(2-aminoethyl ether)-N,N,N',N' tetraacetic acid, (EGTA) is a calcium specific chelator. Because of its low affinity for Mg+, EGTA inhibits metalloproteases.

    Product Specifications
    EGTA
    Ethyleneglycol bis(2-aminoethyl ether)-N,N,N',N' tetraacetic acid

    MOLECULAR BIOLOGY GRADE

    Formula: C14H24N2O10

    MW: 380.35 g/mol

    Storage/Handling: Keep in a dry and well-ventilated place.

    PubChem Chemical ID: 6207

    Product Specifications

    Catalog ID E-217
    CAS # 67-42-5
    MW 380.35 g/mol
    Grade MOLECULAR BIOLOGY GRADE
    Storage/Handling Store at room temperature.

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    {{ currentSelection && currentSelection.sku ? currentSelection.sku : '...' }}
    CAS Number:
    {{ casNumber && casNumber.value ? casNumber.value : '...' }}
    Size:
    Quantity:
    On Sale:
    ${{ currentSelection.price }} ${{ currentSelection.sale_price }}
    Shipping:
    $9.99 Ground shipping (In continental US only.)

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