BbsI Linearized iLenti GFP siRNA Vector
Cat. No.
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LV016
Print
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Name
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BbsI Linearized iLenti GFP siRNA Vector
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Unit
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25 µl
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Description
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Recombinant lentiviral vectors have been shown to be a powerful tool for stable gene transfer to both dividing and non-dividing cells in vitro and in vivo. Through years of experience with lentiviral vectors, scientists at ABM have developed our own proprietary Lentiviral expression vectors and pLenti-combo packaging mix that allow for rapid production of recombinant lentiviral vectors with titers up to 10^7 IU/ml. iLenti™ RNAi Expression System allows for the efficient expression of any target siRNA through transfection or lentiviral infection of target cells. The system is based on an unique convergent promoter design for greater efficiency of target gene knockdown without the need of a hair-pin loop structure design commonly required for a single promoter vector.
With the purchase of LV016, you will receive 25ul of BbsI lineared piLenti-siRNA-GFP plasmid. For detailed information on how to clone your siRNA sequence into our BbsI Linearized iLenti GFP siRNA Vector, please use our user manual.

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Vector
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piLenti-siRNA-GFP
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Note
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NOT FOR RESALE without prior written consent of ABM. This product is distributed for laboratory research only.
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Material Citation
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If use of this material results in a scientific publication, please cite the material in the following manner: Applied Biological Materials Inc, Cat. No. LV016
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href=\u0022\/assets\/catalog\/category\/docs\/v\/i\/Viral-Vectors-Brochure-Single-Pages.pdf\u0022\u003E\u003Cimg src=\u0022\/assets\/images\/category\/wysiwyg\/VES.jpg\u0022 alt=\u0022Available Lentivirus Expression Systems\u0022 width=\u0022100%\u0022 gt=\u0022\u0022 br=\u0022\u0022 \/\u003E\u003C\/a\u003E\n\u003Cdiv class=\u0022abm-category-image-title\u0022\u003E\u003Cstrong\u003EViral Vectors Brochure\u003C\/strong\u003E\u003C\/div\u003E\n\u003C\/div\u003E\n\u003C\/div\u003E\n\u003C\/li\u003E\n\u003C\/ul\u003E\n\u003C\/div\u003E\n\u003C\/div\u003E\n\u003C\/div\u003E\n\u003Ch3\u003E\u003Cstrong\u003ECitations\u003C\/strong\u003E\u003C\/h3\u003E\n\u003Cdiv\u003E\n\u003Ctable\u003E\n\u003Ctbody\u003E\n\u003Ctr\u003E\n\u003Ctd\u003E\u003Cspan class=\u0022citations-num\u0022\u003E\u003Ca class=\u0022orange-link\u0022 href=\u0022https:\/\/www.ncbi.nlm.nih.gov\/pubmed\/?term=10.1038\/ncomms9371\u0022\u003E01\u003C\/a\u003E\u003C\/span\u003E\u003C\/td\u003E\n\u003Ctd\u003ELenzini, S. et al. (2020). \u0022Matrix mechanics and water permeation regulate extracellular vesicle transport.\u0022 Nature Nanotechnology. 15, 217-223. \u003Cspan style=\u0022color: #ef6331;\u0022\u003E\u003Ca class=\u0022orange-link\u0022 href=\u0022https:\/\/www.nature.com\/articles\/s41565-020-0636-2\u0022 style=\u0022color: #ef6331;\u0022\u003Edoi: 10.1038\/s41565-020-0636-2\u003C\/a\u003E. \u003Cspan style=\u0022color: #000000;\u0022\u003EProduct: 2nd Generation Packaging System Mix (Cat.No LV003).\u003C\/span\u003E\u003C\/span\u003E\u003C\/td\u003E\n\u003C\/tr\u003E\n\u003Ctr\u003E\n\u003Ctd\u003E\u003Cspan class=\u0022citations-num\u0022\u003E\u003Ca class=\u0022orange-link\u0022 href=\u0022https:\/\/www.ncbi.nlm.nih.gov\/pubmed\/?term=10.1038\/ncomms9371\u0022\u003E02\u003C\/a\u003E\u003C\/span\u003E\u003C\/td\u003E\n\u003Ctd\u003EPapes, F. et al. (2022). \u0022Transcription Factor 4 loss-of-function is associated with deficits in progenitor proliferation and cortical neuron content.\u0022 Nature Communications. 13(1).\u0026nbsp; \u003Cspan style=\u0022color: #ef6331;\u0022\u003E\u003Ca href=\u0022https:\/\/www.nature.com\/articles\/s41467-022-29942-w\u0022 style=\u0022color: #ef6331;\u0022\u003Edoi: 10.1038\/s41467-022-29942-w\u003C\/a\u003E\u003Ca href=\u0022https:\/\/www.nature.com\/articles\/s41467-022-29942-w\u0022\u003E.\u003C\/a\u003E \u003Cspan style=\u0022color: #000000;\u0022\u003EProduct: pLenti-Promoterless Vector (Cat.No LV013).\u003C\/span\u003E\u003C\/span\u003E\u003C\/td\u003E\n\u003C\/tr\u003E\n\u003Ctr\u003E\n\u003Ctd\u003E\u003Cspan class=\u0022citations-num\u0022\u003E03\u003C\/span\u003E\u003C\/td\u003E\n\u003Ctd\u003ECho, I et al. (2022). Deterministic Single Cell Encapsulation in Asymmetric Microenvironments to Direct Cell Polarity. Advanced Science. \u003Cspan style=\u0022color: #ef6331;\u0022\u003E\u003Ca href=\u0022https:\/\/onlinelibrary.wiley.com\/doi\/10.1002\/advs.202206014\u0022 style=\u0022color: #ef6331;\u0022\u003Edoi: 10.1002\/advs.202206014.\u003C\/a\u003E\u003C\/span\u003E Product: 2nd Generation Packaging System Mix (Cat.No LV003).\u003C\/td\u003E\n\u003C\/tr\u003E\n\u003C\/tbody\u003E\n\u003C\/table\u003E\n\u003C\/div\u003E\n\u003C\/div\u003E","meta_title":"Cloning Vectors \u0026 Packaging Mixes","meta_keywords":"viral packaging mix,lentivirus packaging mix,aav packaging mix,lentivirus packaging plasmids,aav packaging plasmids,aav serotype plasmids,lentiviral cloning vectors,aav,2nd generation lentivirus packaging mix,3rd generation lentivirus packaging mix,shuttle vectors,cloning vectors,viral cloning vectors","meta_description":"abm offers a variety of cloning vectors containing multiple cloning site for your specific insert. These vectors also come with various different promoters, reporters and tags for all your experimental needs.\u00a0","deleted_at":null,"enable":"Y","parent_list":"27","table_name":null,"image":null,"independentPage":0,"top_type":1,"sort_order":114,"in_footer":1,"fid":27,"created_at":null,"updated_at":"2025-04-02 01:04:45"},"info":{"id":16469,"cat_no_base":"LV016","parent_id":478,"description":"\u003Cp\u003ERecombinant lentiviral vectors have been shown to be a powerful tool for stable gene transfer to both dividing and non-dividing cells in vitro and in vivo. Through years of experience with lentiviral vectors, scientists at ABM have developed our own proprietary Lentiviral expression vectors and pLenti-combo packaging mix that allow for rapid production of recombinant lentiviral vectors with titers up to 10^7 IU\/ml. iLenti\u0026trade; RNAi Expression System allows for the efficient expression of any target siRNA through transfection or lentiviral infection of target cells. The system is based on an unique convergent promoter design for greater efficiency of target gene knockdown without the need of a hair-pin loop structure design commonly required for a single promoter vector.\u003C\/p\u003E\n\u003Cp\u003EWith the purchase of LV016, you will receive 25ul of BbsI lineared piLenti-siRNA-GFP plasmid. For detailed information on how to clone your siRNA sequence into our BbsI Linearized iLenti GFP siRNA Vector, please use our \u003Ca href=\u0022\/document\/\/i\/l\/ilenti-sirna-mirna-user-manual.pdf\u0022\u003Euser manual\u003C\/a\u003E.\u003C\/p\u003E\n\u003Cp\u003E\u0026nbsp;\u003C\/p\u003E\n\u003Cp\u003E\u003Cimg src=\u0022\/assets\/images\/tinymce\/8ttr4aiXqQwBJTtwq1QB8OtQCBaHt0bX7410GPe9.jpg\u0022 \/\u003E\u003C\/p\u003E","disclaimer":"\u003Ca href=\u0022\/terms#disclaimer-section\u0022\u003EClick for more info\u003C\/a\u003E","application":null,"components":null,"cas9_origin":null,"concentration":null,"enzymes_size":null,"genecraft_series":null,"guarantee":"","population":null,"qc":null,"format_general":null,"including_screening_kit":null,"expression_system_general":null,"purity":null,"image":null,"insert_size":null,"shipping_conditions":null,"source_catalog_number":null,"inactivation_protocol":null,"led_viewer_compatibility":null,"unit_definition":null,"vector":"piLenti-siRNA-GFP","reaction_buffer":null,"storage_buffer":null,"caution":"Not for diagnostic use.","storage_condition":null,"product_volume":null,"reporter":null,"safeview_series":null,"source_catno":"Jennie","stain_color":null,"supplier":"ABM","internal_supplier":null,"internal_note":null,"inventory_location":"Chemical\/Vector Freezer-Rack2","note":"\u003Cp\u003ENOT FOR RESALE without prior written consent of ABM. This product is distributed for laboratory research only.\u003C\/p\u003E","recommend":null,"depositor":null,"licensor_name":null,"licensor_contact_information":null,"contract_termination_date":null,"royalty_rates":null,"cas_type":null,"cas_origin":null,"cas_protein_marker":null,"source":null,"endotoxin_level":null,"additional_information":null,"titer":null,"nucleotide_format":null,"protocol_overview":null,"source_price":null,"created_at":"2022-09-09 05:54:01","updated_at":"2025-03-09 19:03:44","short_description":null,"reaction_definition":null,"specificity":null,"promotions":null},"maps":[{"id":205,"name":"piLenti-siRNA-GFP","sequence":"ttttggattgaagccaatatgataatgagggggtggagtttgtgacgtggcgcggggcgtgggaacggggcgggtgacgtagtagtgtggcggaagtgtgatgttgcaagtgtggcggaacacatgtaagcgacggatgtggcaaaagtgacgtttttggtgtgcgccggtgtacacaggaagtgacaattttcgcgcggttttaggcggatgttgtagtaaatttgggcgtaaccgagtaagatttggccattttcgcgggaaaactgaataagaggaagtgaaatctgaataattttgtgttactcatagcgcgtaatactctcatgagcggatacatatttgaatgtatttagaaaaataaacaaataggggttccgcgcacatttccccgaaaagtgccacctgacgtaactataacggtcctaaggtagcgaaaatgtagtcttatgcaatactcttgtagtcttgcaacatggtaacgatgagttagcaacatgccttacaaggagagaaaaagcaccgtgcatgccgattggtggaagtaaggtggtacgatcgtgccttattaggaaggcaacagacgggtctgacatggattggacgaaccactgaattgccgcattgcagagatattgtatttaagtgcctagctcgatacataaacgggtctctctggttagaccagatctgagcctgggagctctctggctaactagggaacccactgcttaagcctcaataaagcttgccttgagtgcttcaagtagtgtgtgcccgtctgttgtgtgactctggtaactagagatccctcagacccttttagtcagtgtggaaaatctctagcagtggcgcccgaacagggacttgaaagcgaaagggaaaccagaggagctctctcgacgcaggactcggcttgctgaagcgcgcacggcaagaggcgaggggcggcgactggtgagtacgccaaaaattttgactagcggaggctagaaggagagagatgggtgcgagagcgtcagtattaagcgggggagaattagatcgcgatgggaaaaaattcggttaaggccagggggaaagaaaaaatataaattaaaacatatagtatgggcaagcagggagctagaacgattcgcagttaatcctggcctgttagaaacatcagaaggctgtagacaaatactgggacagctacaaccatcccttcagacaggatcagaagaacttagatcattatataatacagtagcaaccctctattgtgtgcatcaaaggatagagataaaagacaccaaggaagctttagacaagatagaggaagagcaaaacaaaagtaagaccaccgcacagcaagcccgctgatcttcagacctggaggaggagatatgagggacattggagaagtgaattatataaatataaagtagtaaaaattgaaccattaggagtagcacccaccaaggcaaagagaagagtggtgcagagagaaaaaagagcagtgggaataggagctttgttccttgggttcttgggagcagcaggaagcactatgggcgcagcgtcaatgacgctgacggtacaggccagacaattattgtctggtatagtgcagcagcagaacaatttgctgagggctattgaggcgcaacagcatctgttgcaactcacagtctggggcatcaagcagctccaggcaagaatcctggctgtggaaagatacctaaaggatcaacagctcctggggatttggggttgctctggaaaactcatttgcaccactgctgtgccttggaatgctagttggagtaataaatctctggaacagatttggaatcacacgacctggatggagtgggacagagaaattaacaattacacaagcttaatacactccttaattgaagaatcgcaaaaccagcaagaaaagaatgaacaagaattattggaattagataaatgggcaagtttgtggaattggtttaacataacaaattggctgtggtatataaaattattcataatgatagtaggaggcttggtaggtttaagaatagtttttgctgtactttctatagtgaatagagttaggcagggatattcaccattatcgtttcagacccacctcccaaccccgaggggacccgacaggcccgaaggaatagaagaagaaggtggagagagagacagagacagatccattcgattagtgaacggatctcgacggtatcgaaagcttgggattcgaatttaaaagaaaaggggggattggggggtacagtgcaggggaaagaatagtagacataatagcaacagacatacaaactaaagaactacaaaaacaaattacaaaaattcaaaattttcgggtttttcgaacctaggtacgtccaaggtcgggcaggaagagggcctatttcccatgattccttcatatttgcatatacgatacaaggctgttagagagataattagaattaatttgactgtaaacacaaagatattagtacaaaatacgtgacgtagaaagtaataatttcttgggtagtttgcagttttaaaattatgttttaaaatggactatcatatgcttaccgtaacttgaaagtatttcgatttcttggctttatatatcttgtggaaaggacaaaaatagtcttctctagagatatcatttaaatgtcgacgaattcctcgagagaagacagctttttttggtgtttcgtggtctcatacagaacttataagattcccaaatccaaagacatttcacgtttatggtgatttcccagaacacatagcgacatgcaaatattgcagggcgccactcccctgtccctcacagccatcttcctgccagggcgcacgcgcgctgggtgttcccgcctagtgacactgggcccgcgattccttggagcgggttgatgacgtcagcgttctcaattgtagtaatcaattacggggtcattagttcatagcccatatatggagttccgcgttacataacttacggtaaatggcccgcctggctgaccgcccaacgacccccgcccattgacgtcaataatgacgtatgttcccatagtaacgccaatagggactttccattgacgtcaatgggtggagtatttacggtaaactgcccacttggcagtacatcaagtgtatcatatgccaagtacgccccctattgacgtcaatgacggtaaatggcccgcctggcattatgcccagtacatgaccttatgggactttcctacttggcagtacatctacgtattagtcatcgctattaccatggtgatgcggttttggcagtacatcaatgggcgtggatagcggtttgactcacggggatttccaagtctccaccccattgacgtcaatgggagtttgttttggcaccaaaatcaacgggactttccaaaatgtcgtaacaactccgccccattgacgcaaatgggcggtaggcgtgtacggtgggaggtctatataagcagagctggtttagtgaaccgtcagggtaccggatcccttaagtgaacaactagtgccaccatggtgagcaagggcgaggagctgttcaccggggtggtgcccatcctggtcgagctggacggcgacgtaaacggccacaagttcagcgtgtccggcgagggcgagggcgatgccacctacggcaagctgaccctgaagttcatctgcaccaccggcaagctgcccgtgccctggcccaccctcgtgaccaccctgacctacggcgtgcagtgcttcagccgctaccccgaccacatgaagcagcacgacttcttcaagtccgccatgcccgaaggctacgtccaggagcgcaccatcttcttcaaggacgacggcaactacaagacccgcgccgaggtgaagttcgagggcgacaccctggtgaaccgcatcgagctgaagggcatcgacttcaaggaggacggcaacatcctggggcacaagctggagtacaactacaacagccacaacgtctatatcatggccgacaagcagaagaacggcatcaaggtgaacttcaagatccgccacaacatcgaggacggcagcgtgcagctcgccgaccactaccagcagaacacccccatcggcgacggccccgtgctgctgcccgacaaccactacctgagcacccagtccgccctgagcaaagaccccaacgagaagcgcgatcacatggtcctgctggagttcgtgaccgccgccgggatcactctcggcatggacgagctgtacaaggaattcggaagcgggcagtgcaccaactacgccctgctgaagctggccggcgacgtggagagcaaccccggccccggatccatggccaccgagtacaagcccacggtgcgcctcgccacccgcgacgacgtcccccgggccgtacgcaccctcgccgccgcgttcgccgactaccccgccacgcgccacaccgtcgacccggaccgccacatcgagcgggtcaccgagctgcaagaactcttcctcacgcgcgtcgggctcgacatcggcaaggtgtgggtcgcggacgacggcgccgcggtggcggtctggaccacgccggagagcgtcgaagcgggggcggtgttcgccgagatcggctcgcgcatggccgagttgagcggttcccggctggccgcgcagcaacagatggaaggcctcctggcgccgcaccggcccaaggagcccgcgtggttcctggccaccgtcggcgtctcgcccgaccaccagggcaagggtctgggcagcgccgtcgtgctccccggagtggaggcggccgagcgcgctggggtgcccgccttcctggaga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