당신은 주제를 찾고 있습니까 “streptavidin agarose resin – How to Isolate Proteins and Peptides with Streptavidin Magnetic Beads“? 다음 카테고리의 웹사이트 https://chewathai27.com/you 에서 귀하의 모든 질문에 답변해 드립니다: https://chewathai27.com/you/blog. 바로 아래에서 답을 찾을 수 있습니다. 작성자 Phenomenex 이(가) 작성한 기사에는 조회수 4,359회 및 좋아요 21개 개의 좋아요가 있습니다.
streptavidin agarose resin 주제에 대한 동영상 보기
여기에서 이 주제에 대한 비디오를 시청하십시오. 주의 깊게 살펴보고 읽고 있는 내용에 대한 피드백을 제공하세요!
d여기에서 How to Isolate Proteins and Peptides with Streptavidin Magnetic Beads – streptavidin agarose resin 주제에 대한 세부정보를 참조하세요
Phenomenex is excited to introduce streptavidin coated bioZen MagBeads. These uniform paramagnetic beads are ideal for isolating proteins and peptides in less time with a higher response.
The video will take you through the process of how to best isolate your proteins and peptides to get you desired results. First you take your biotinylated antibodies and interferences and add it to the pre-treated bioZen MagBeads, then mix and incubate. While using a magnetic stand, you will need to discard all remaining liquid. Wash with phosphate buffered saline (PBS), then make sure to repeat as needed. Add your sample to a separate well of a low-bind collection plate, add in the pre-treated MagBeads, then mix and incubate. Again, discard the liquid using a magnetic stand. Wash with PBS once more and repeat as needed. Add the elution solvent, then mix and use a magnetic stand to separate the isolated sample from the MagBeads. Finally remove your cleaned-up sample and transfer it for LC-MS analysis using a bioZen LC peptide column.
To learn more about this process or any bioZen LC and sample preparation solutions, visit www.phenomenex.com/biozen.
streptavidin agarose resin 주제에 대한 자세한 내용은 여기를 참조하세요.
Streptavidin Agarose Resin – GoldBio
Streptavin Agarose Resin is a high affinity biotin-binding chromatography resin with streptavin covalently bound to 6% crosslinked agarose beads and a …
Source: www.goldbio.com
Date Published: 7/8/2022
View: 6316
5mL Thermo Scientific™ Pierce™ Streptavidin Agarose
The resins are prepared by covalently coupling streptavin to the porous agarose or UltraLink Biosupport using efficient and stable chemistries, resulting in …
Source: www.fishersci.se
Date Published: 3/6/2021
View: 7281
Streptavidin Agarose | 69203 – Merck Millipore
Streptavin Agarose consists of cross-linked agarose covalently coupled with pure streptavin under controlled conditions. The stable linkage to the resin …
Source: www.merckmillipore.com
Date Published: 12/15/2022
View: 9096
Streptavidin Agarose Resin – Sample Protocols
2) Mix the streptavin agarose resin to ensure an even suspension. Add the appropriate amount of resin to the tube containing the antigen/biotinylated antibody …
Source: vectorlabs.com
Date Published: 8/16/2021
View: 9846
Streptavidin Resin – GenScript
GenScript Streptavin Resin is an affinity chromatography medium designed for easy, one-step purification of biotinylated peptes, antibodies, lectins, …
Source: www.genscript.com
Date Published: 11/29/2022
View: 632
Streptavidin agarose – Sigma-Aldrich
Streptavin, agarose beads suitable for purification of biotinylated macromolecules. View Pricing. vibrant-m. Streptavin, immobilized on Agarose CL- …
Source: www.sigmaaldrich.com
Date Published: 4/6/2022
View: 2310
High Capacity Streptavidin Agarose Resin – UBPBio
UBPBio High Capacity Streptavin Agarose Resin is an affinity chromatography medium designed for easy, one-step purification of biotinylated peptes, …
Source: www.ubpbio.com
Date Published: 6/12/2021
View: 9426
주제와 관련된 이미지 streptavidin agarose resin
주제와 관련된 더 많은 사진을 참조하십시오 How to Isolate Proteins and Peptides with Streptavidin Magnetic Beads. 댓글에서 더 많은 관련 이미지를 보거나 필요한 경우 더 많은 관련 기사를 볼 수 있습니다.
주제에 대한 기사 평가 streptavidin agarose resin
- Author: Phenomenex
- Views: 조회수 4,359회
- Likes: 좋아요 21개
- Date Published: 2019. 9. 25.
- Video Url link: https://www.youtube.com/watch?v=PhFyHs0iWR8
Streptavidin Agarose Resin
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object(anvilstl\commercio\models\Category)#442 (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(194) [“root”]=> int(1) [“lft”]=> int(3) [“rgt”]=> int(4) [“level”]=> int(2) [“name”]=> string(10) “A_Products” [“url_name”]=> string(10) “a-products” [“title”]=> NULL [“short_description”]=> string(0) “” [“long_description”]=> string(0) “” [“hide”]=> int(0) [“third_party_id”]=> NULL [“featured_image_id”]=> int(0) [“banner_image_id”]=> int(0) [“meta_description”]=> string(0) “” [“meta_keywords”]=> string(0) “” [“root_sort”]=> int(0) [“type”]=> string(7) “product” [“condition_type”]=> int(1) [“condition_match_type”]=> int(1) [“sort_type”]=> int(1) [“items_per_page”]=> int(25) [“color”]=> NULL } [“_oldAttributes”:”yii\db\BaseActiveRecord”:private]=> array(23) { [“id”]=> int(194) [“root”]=> int(1) [“lft”]=> int(3) [“rgt”]=> int(4) [“level”]=> int(2) [“name”]=> string(10) “A_Products” [“url_name”]=> string(10) “a-products” [“title”]=> NULL [“short_description”]=> string(0) “” [“long_description”]=> string(0) “” [“hide”]=> int(0) [“third_party_id”]=> NULL [“featured_image_id”]=> int(0) [“banner_image_id”]=> int(0) [“meta_description”]=> string(0) “” [“meta_keywords”]=> string(0) “” [“root_sort”]=> int(0) [“type”]=> string(7) “product” [“condition_type”]=> int(1) [“condition_match_type”]=> int(1) [“sort_type”]=> int(1) [“items_per_page”]=> int(25) [“color”]=> NULL } [“_related”:”yii\db\BaseActiveRecord”:private]=> array(0) { } [“_relationsDependencies”:”yii\db\BaseActiveRecord”:private]=> array(0) { } [“_errors”:”yii\base\Model”:private]=> NULL [“_validators”:”yii\base\Model”:private]=> NULL [“_scenario”:”yii\base\Model”:private]=> string(7) “default” [“_events”:”yii\base\Component”:private]=> array(6) { [“beforeInsert”]=> array(1) { [0]=> array(2) { [0]=> array(2) { [0]=> object(creocoder
estedsets\NestedSetsBehavior)#443 (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) “beforeInsert” } [1]=> NULL } } [“afterInsert”]=> array(1) { [0]=> array(2) { [0]=> array(2) { [0]=> object(creocoder
estedsets\NestedSetsBehavior)#443 (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) “afterInsert” } [1]=> NULL } } [“beforeUpdate”]=> array(1) { [0]=> array(2) { [0]=> array(2) { [0]=> object(creocoder
estedsets\NestedSetsBehavior)#443 (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
estedsets\NestedSetsBehavior)#443 (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
estedsets\NestedSetsBehavior)#443 (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
estedsets\NestedSetsBehavior)#443 (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
estedsets\NestedSetsBehavior)#443 (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) { } }
object(anvilstl\commercio\models\Category)#444 (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(197) [“root”]=> int(393) [“lft”]=> int(28) [“rgt”]=> int(29) [“level”]=> int(1) [“name”]=> string(39) “Protein Expression & Purification (old)” [“url_name”]=> string(32) “protein-expression-purification2” [“title”]=> NULL [“short_description”]=> string(0) “” [“long_description”]=> string(484) ” Proteins are fundamental macromolecules found in every biological system and form the basis of many fields of work from research into drug creation to industrial applications like fermentation. GoldBio protein products are ideal for every step of your protein synthesis. Our reagents and tools are of the highest quality available at a fraction of the prices of other vendors, so you can be assured that your research yields confident results without compromising your budget. ” [“hide”]=> int(1) [“third_party_id”]=> NULL [“featured_image_id”]=> int(0) [“banner_image_id”]=> int(0) [“meta_description”]=> string(105) “GoldBio protein expression and purification products ensure high-quality proteins at an affordable price.” [“meta_keywords”]=> string(0) “” [“root_sort”]=> int(9) [“type”]=> string(7) “product” [“condition_type”]=> int(1) [“condition_match_type”]=> int(1) [“sort_type”]=> int(1) [“items_per_page”]=> int(25) [“color”]=> NULL } [“_oldAttributes”:”yii\db\BaseActiveRecord”:private]=> array(23) { [“id”]=> int(197) [“root”]=> int(393) [“lft”]=> int(28) [“rgt”]=> int(29) [“level”]=> int(1) [“name”]=> string(39) “Protein Expression & Purification (old)” [“url_name”]=> string(32) “protein-expression-purification2” [“title”]=> NULL [“short_description”]=> string(0) “” [“long_description”]=> string(484) ” Proteins are fundamental macromolecules found in every biological system and form the basis of many fields of work from research into drug creation to industrial applications like fermentation. GoldBio protein products are ideal for every step of your protein synthesis. Our reagents and tools are of the highest quality available at a fraction of the prices of other vendors, so you can be assured that your research yields confident results without compromising your budget. ” [“hide”]=> int(1) [“third_party_id”]=> NULL [“featured_image_id”]=> int(0) [“banner_image_id”]=> int(0) [“meta_description”]=> string(105) “GoldBio protein expression and purification products ensure high-quality proteins at an affordable price.” [“meta_keywords”]=> string(0) “” [“root_sort”]=> int(9) [“type”]=> string(7) “product” [“condition_type”]=> int(1) [“condition_match_type”]=> int(1) [“sort_type”]=> int(1) [“items_per_page”]=> int(25) [“color”]=> NULL } [“_related”:”yii\db\BaseActiveRecord”:private]=> array(0) { } [“_relationsDependencies”:”yii\db\BaseActiveRecord”:private]=> array(0) { } [“_errors”:”yii\base\Model”:private]=> NULL [“_validators”:”yii\base\Model”:private]=> NULL [“_scenario”:”yii\base\Model”:private]=> string(7) “default” [“_events”:”yii\base\Component”:private]=> array(6) { [“beforeInsert”]=> array(1) { [0]=> array(2) { [0]=> array(2) { [0]=> object(creocoder
estedsets\NestedSetsBehavior)#445 (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) “beforeInsert” } [1]=> NULL } } [“afterInsert”]=> array(1) { [0]=> array(2) { [0]=> array(2) { [0]=> object(creocoder
estedsets\NestedSetsBehavior)#445 (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) “afterInsert” } [1]=> NULL } } [“beforeUpdate”]=> array(1) { [0]=> array(2) { [0]=> array(2) { [0]=> object(creocoder
estedsets\NestedSetsBehavior)#445 (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
estedsets\NestedSetsBehavior)#445 (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
estedsets\NestedSetsBehavior)#445 (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
estedsets\NestedSetsBehavior)#445 (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
estedsets\NestedSetsBehavior)#445 (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) { } }
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(232) [“root”]=> int(1) [“lft”]=> int(33) [“rgt”]=> int(34) [“level”]=> int(2) [“name”]=> string(10) “R_Products” [“url_name”]=> string(10) “r-products” [“title”]=> NULL [“short_description”]=> string(0) “” [“long_description”]=> string(0) “” [“hide”]=> int(0) [“third_party_id”]=> NULL [“featured_image_id”]=> int(0) [“banner_image_id”]=> int(0) [“meta_description”]=> string(0) “” [“meta_keywords”]=> string(0) “” [“root_sort”]=> int(0) [“type”]=> string(7) “product” [“condition_type”]=> int(1) [“condition_match_type”]=> int(1) [“sort_type”]=> int(1) [“items_per_page”]=> int(25) [“color”]=> NULL } [“_oldAttributes”:”yii\db\BaseActiveRecord”:private]=> array(23) { [“id”]=> int(232) [“root”]=> int(1) [“lft”]=> int(33) [“rgt”]=> int(34) [“level”]=> int(2) [“name”]=> string(10) “R_Products” [“url_name”]=> string(10) “r-products” [“title”]=> NULL [“short_description”]=> string(0) “” [“long_description”]=> string(0) “” [“hide”]=> int(0) [“third_party_id”]=> NULL [“featured_image_id”]=> int(0) [“banner_image_id”]=> int(0) [“meta_description”]=> string(0) “” [“meta_keywords”]=> string(0) “” [“root_sort”]=> int(0) [“type”]=> string(7) “product” [“condition_type”]=> int(1) [“condition_match_type”]=> int(1) [“sort_type”]=> int(1) [“items_per_page”]=> int(25) [“color”]=> NULL } [“_related”:”yii\db\BaseActiveRecord”:private]=> array(0) { } [“_relationsDependencies”:”yii\db\BaseActiveRecord”:private]=> array(0) { } [“_errors”:”yii\base\Model”:private]=> NULL [“_validators”:”yii\base\Model”:private]=> NULL [“_scenario”:”yii\base\Model”:private]=> string(7) “default” [“_events”:”yii\base\Component”:private]=> array(6) { [“beforeInsert”]=> array(1) { [0]=> array(2) { [0]=> array(2) { [0]=> object(creocoder
estedsets\NestedSetsBehavior)#447 (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) “beforeInsert” } [1]=> NULL } } [“afterInsert”]=> array(1) { [0]=> array(2) { [0]=> array(2) { [0]=> object(creocoder
estedsets\NestedSetsBehavior)#447 (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) “afterInsert” } [1]=> NULL } } [“beforeUpdate”]=> array(1) { [0]=> array(2) { [0]=> array(2) { [0]=> object(creocoder
estedsets\NestedSetsBehavior)#447 (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
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Thermo Scientific™ Pierce™ Streptavidin Agarose Agarose resin; 5mL Thermo Scientific™ Pierce™ Streptavidin Agarose
Description
Thermo Scientific™ Pierce Streptavidin Resins comprise a wide selection of high-quality affinity beads and columns for nearly any kind of biotin-based purification procedure.
Additional Information and Online Ordering »
Pierce Streptavidin Agarose and UltraLink Resins supply immobilized streptavidin biotin-binding protein in different resin formats, binding capacities and package sizes to suit nearly any immunoprecipitation or affinity purification procedure involving biotinylated molecules. The products use a recombinant form of streptavidin with a mass of 53 kDa and a near-neutral pI. The resins are prepared by covalently coupling streptavidin to the porous agarose or UltraLink Biosupport using efficient and stable chemistries, resulting in Streptavidin Agarose and UltraLink Resins that are leach-resistant and stable at pH 2-11. The products are excellent choices for a variety of small- or large-scale affinity purification applications involving biotinylated macromolecules, including separation of biotinylated molecules from samples and immunoprecipitation of antigens using biotin-labeled antibodies.
Highlights:
Proven coupling chemistries – the methods used to prepare these resins are superior to typical cyanogen bromide (CNBr) immobilization, providing high functionality, low nonspecific binding and excellent leach-resistance
Versatile resins – Agarose (polysaccharide-based) and UltraLink™ Biosupport (acrylamide-based) resins provide two different options for particular experimental conditions and are compatible with gravity-flow, spin and FPLC methods
Available in multiple formats – choose from two resin types, regular or high capacity preparations, and small or large-scale package sizes (bulk sizes are also available)
Superior performance – High Capacity Resin has 2 to 3 times higher binding capacity than alternative supplier products, allowing use of small amounts of resin for experiments
Item-Specific Features:
Agarose Resins are crosslinked 6% beaded agarose
UltraLink Resins beaded acrylamide support (UltraLink Biosupport)
Plus and High Capacity Resins have higher loading (i.e. density) of immobilized streptavidin protein than the regular forms
Recommended for:
Purification of membrane antigens in conjunction with biotinylated monoclonal antibodies; Cell-surface labeling with biotinylation reagents, followed by precipitation with immobilized streptavidin; Purification of cell-surface glycoproteins using biotinylated Concanavalin A; Recovery of single-stranded DNA for dideoxy sequencing
Streptavidin Agarose
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Description Overview Streptavidin Agarose consists of cross-linked agarose covalently coupled with pure streptavidin under controlled conditions. The stable linkage to the resin minimizes leaching of the streptavidin while maintaining full binding activity. The matrix is suitable for use in column and batch formats for any application that requires high biotin binding capacity and low non-specific binding. The resin has no detectable protease, DNase, or RNase contamination. Provided as a 50% slurry in storage buffer; 5 ml settled resin in 10 ml total volume. Specifications Concentration 50% suspension (5 ml settled volume) Storage buffer 100 mM sodium phosphate pH 7.5, 0.02% sodium azide Size 40-165 µm Binding capacity > 85 nmol free biotin/ml Protease None detected (SDS-PAGE of purified protein) DNase None detected (blue/white colony assay of ligated plasmid) RNase None detected (gel assay of purified RNA) Catalogue Number 69203 Brand Family Novagen®
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Product Information Quality Level MQ400
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Storage and Shipping Information Ship Code Shipped at Ambient Temperature or with Blue Ice
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Storage +2°C to +8°C
Do not freeze Yes
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Streptavidin Resin
GenScript Streptavidin Resin is an affinity chromatography medium designed for easy, one-step purification of biotinylated peptides, antibodies, lectins, etc from samples. The purified recombinant streptavidin is covalently coupling to 4% highly cross-linked agarose. The coupling is optimized to give high binding capacity for biotinylated molecules. The total binding capacity of Streptavidin Resin is more than 120 nmol of D-Biotin/ml settled resin. Table 1 lists the characteristics of Streptavidin Resin. Streptavidin is a biotin-binding protein found in the culture broth of the bacterium Streptomyces avidinii. Streptavidin binds 4 moles of biotin per mole of protein with an extremely high affinity. Streptavidin lacks carbohydrate side chains present on avidin and has an isoelectric point of 6.5 (vs 10 for avidin) close to where most useful biological interactions occur. As a result, streptavidin frequently exhibits much lower non-specific binding than avidin does.
High Capacity Streptavidin Agarose Resin
High Capacity Streptavidin Agarose Resin
UBPBio High Capacity Streptavidin Agarose Resin is an affinity chromatography medium designed for easy, one-step purification of biotinylated peptides, antibodies, lectins, etc from samples. The purified recombinant streptavidin is covalently coupling to 4% highly cross-linked agarose. The coupling is optimized to give high binding capacity for biotinylated molecules. The total binding capacity of Streptavidin Resin is more than 120 nmol of D-Biotin/ml settled resin.
Streptavidin is a biotin-binding protein found in the culture broth of the bacterium Streptomyces avidinii. Streptavidin binds 4 moles of biotin per mole of protein with an extremely high affinity. Streptavidin lacks carbohydrate side chains present on avidin and has an isoelectric point of 6.5 (vs 10 for avidin) close to where most useful biological interactions occur. As a result, streptavidin frequently exhibits much lower non-specific binding than avidin does.
키워드에 대한 정보 streptavidin agarose resin
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주제에 대한 기사를 시청해 주셔서 감사합니다 How to Isolate Proteins and Peptides with Streptavidin Magnetic Beads | streptavidin agarose resin, 이 기사가 유용하다고 생각되면 공유하십시오, 매우 감사합니다.