Expression Vectors
The construction of gene expression vectors is a key step in molecular biology research. It provides scientists with an effective tool for expressing foreign genes in host cells. Creative Biolabs also generates vectors to serve scientists in the field of neuroscience. All of our cDNA clones are in proprietary vectors that have been rigorously tested and cited thousands of times.
Types of Plasmid Vectors
Types | Description |
pUC | The pUC series of plasmids is one of the most widely used cloning vectors. Their main features include small size, high copy number, multiple restriction enzyme sites and promoters, and antibiotic selection markers. |
pcDNA | The pcDNA series of plasmids are widely used for gene expression in eukaryotic cells. These plasmids have elements such as efficient promoters, selectable marker genes (e.g. antibiotic resistance genes), and cell localization signals. |
pET | The pET series of plasmids is a typical vector for protein expression in E. coli. Their properties include a large copy number, an excellent promoter, and components like His tags for protein purification and detection. |
pGEX | pGEX series plasmids are commonly used for fusion protein expression in E. coli. They contain a GST (glutathione S-transferase) tag that allows the target protein to be fused to the GST protein for easy purification. |
BAC | Escherichia coli artificial chromosome (BAC) plasmids are a type of large plasmid commonly used to carry large fragments of genomic DNA. BAC plasmids facilitate the stable delivery, expression, and study of specific regions of the entire genome in eukaryotic organisms. |
pAAV | Adeno-associated virus (AAV) plasmids are widely used in gene delivery research. These plasmids can effectively deliver foreign genes into target cells and are suitable for fields such as gene therapy and gene editing. |
Yeast | Yeast plasmids are commonly used for gene expression and research in yeast cells. They typically contain a yeast-specific promoter and a selectable marker gene. |
ORF Clones
Creative Biolabs offers a comprehensive selection of full-length ORF clones with 5' and 3' UTR deleted to accelerate protein expression. These ORFs facilitate various downstream applications such as protein detection and purification, helping researchers to unravel complex biological processes. Using advanced cloning technology, our comprehensive ORF clone library covers different species and different neurological diseases, allowing researchers to effectively locate genes of interest.
If the product you are looking for is not listed or you are interested in our products, please contact us to discuss your needs or inquire about our products.
Target



The clone can express a complete ORF with a certain tag. Different ways of expression depend on the specific nature of the gene.
- Insert Size (bp):
- 570 bp

The clone can express a complete ORF with a certain tag. Different ways of expression depend on the specific nature of the gene.
- Insert Size (bp):
- 570 bp

The clone can express a complete ORF with a certain tag. Different ways of expression depend on the specific nature of the gene.
- Insert Size (bp):
- 570 bp

The clone can express a complete ORF with a certain tag. Different ways of expression depend on the specific nature of the gene.
- Insert Size (bp):
- 645 bp

The clone can express a complete ORF with a certain tag. Different ways of expression depend on the specific nature of the gene.
- Insert Size (bp):
- 570 bp

The clone can express a complete ORF with a certain tag. Different ways of expression depend on the specific nature of the gene.
- Insert Size (bp):
- 570 bp

The clone can express a complete ORF with a certain tag. Different ways of expression depend on the specific nature of the gene.
- Insert Size (bp):
- 570 bp

The clone can express a complete ORF with a certain tag. Different ways of expression depend on the specific nature of the gene.
- Insert Size (bp):
- 570 bp

The clone can express a complete ORF with a certain tag. Different ways of expression depend on the specific nature of the gene.
- Insert Size (bp):
- 567 bp

The clone can express a complete ORF with a certain tag. Different ways of expression depend on the specific nature of the gene.
- Insert Size (bp):
- 567 bp

The clone can express a complete ORF with a certain tag. Different ways of expression depend on the specific nature of the gene.
- Insert Size (bp):
- 567 bp

The clone can express a complete ORF with a certain tag. Different ways of expression depend on the specific nature of the gene.
- Insert Size (bp):
- 567 bp

The clone can express a complete ORF with a certain tag. Different ways of expression depend on the specific nature of the gene.
- Insert Size (bp):
- 567 bp

The clone can express a complete ORF with a certain tag. Different ways of expression depend on the specific nature of the gene.
- Insert Size (bp):
- 567 bp

The clone can express a complete ORF with a certain tag. Different ways of expression depend on the specific nature of the gene.
- Insert Size (bp):
- 567 bp

The clone can express a complete ORF with a certain tag. Different ways of expression depend on the specific nature of the gene.
- Insert Size (bp):
- 567 bp

The clone can express a complete ORF with a certain tag. Different ways of expression depend on the specific nature of the gene.
- Insert Size (bp):
- 567 bp

The clone can express a complete ORF with a certain tag. Different ways of expression depend on the specific nature of the gene.
- Insert Size (bp):
- 567 bp

The clone can express a complete ORF with a certain tag. Different ways of expression depend on the specific nature of the gene.
- Insert Size (bp):
- 567 bp

The clone can express a complete ORF with a certain tag. Different ways of expression depend on the specific nature of the gene.
- Insert Size (bp):
- 567 bp

The clone can express a complete ORF with a certain tag. Different ways of expression depend on the specific nature of the gene.
- Insert Size (bp):
- 1000 bp

The clone can express a complete ORF with a certain tag. Different ways of expression depend on the specific nature of the gene.
- Insert Size (bp):
- 567 bp

The clone can express a complete ORF with a certain tag. Different ways of expression depend on the specific nature of the gene.
- Insert Size (bp):
- 567 bp

The clone can express a complete ORF with a certain tag. Different ways of expression depend on the specific nature of the gene.
- Insert Size (bp):
- 642 bp

The clone can express a complete ORF with a certain tag. Different ways of expression depend on the specific nature of the gene.
- Insert Size (bp):
- 567 bp

The clone can express a complete ORF with a certain tag. Different ways of expression depend on the specific nature of the gene.
- Insert Size (bp):
- 567 bp

The clone can express a complete ORF with a certain tag. Different ways of expression depend on the specific nature of the gene.
- Insert Size (bp):
- 567 bp

The clone can express a complete ORF with a certain tag. Different ways of expression depend on the specific nature of the gene.
- Insert Size (bp):
- 567 bp

The clone can express a complete ORF with a certain tag. Different ways of expression depend on the specific nature of the gene.
- Insert Size (bp):
- 567 bp

The clone can express a complete ORF with a certain tag. Different ways of expression depend on the specific nature of the gene.
- Insert Size (bp):
- 567 bp
- NeuroMab™ Anti-GARP Antibody(NRP-0422-P1639) (Cat#: NRP-0422-P1639)
- NeuroMab™ Anti-GD2 Antibody(NRZP-1222-ZP767) (Cat#: NRZP-1222-ZP767)
- iNeuMab™ Anti-F-Spondin/SPON1 Antibody, Clone 3F4 (Cat#: NRZP-0822-ZP4740)
- NeuroMab™ Anti-EPHB2 Antibody(NRP-0422-P1220) (Cat#: NRP-0422-P1220)
- NeuroMab™ Anti-SEZ6 Antibody(NRP-0422-P515) (Cat#: NRP-0422-P515)
- NeuroMab™ Anti-FGFR1 Antibody(NRP-0422-P1244) (Cat#: NRP-0422-P1244)
- NeuroMab™ Anti-TNFα BBB Shuttle Antibody(NRZP-1022-ZP4105) (Cat#: NRZP-1022-ZP4105)
- NeuroMab™ Anti-TREM2 BBB Shuttle Antibody(NRZP-1022-ZP4114) (Cat#: NRZP-1022-ZP4114)
- iNeuMab™ Mouse Anti-SHANK3 Monoclonal Antibody (CBP929) (Cat#: NAB-0720-Z3477)
- NeuroMab™ Anti-Tau Antibody(NRP-0422-P2275) (Cat#: NRP-0422-P2275)
- Mouse Microglia from C57BL/6 (Cat#: NCL-21P6-082)
- iNeu™ Human Motor Neurons (Cat#: NCL-2103-P71)
- Mouse Microglia Cell Line BV-2, Immortalized (Cat#: NCL2110P153)
- Human Glial (Oligodendrocytic) Hybrid Cell Line (MO3.13) (Cat#: NCL-2108P34)
- Green Fluorescent BACE1 Cell Lines (Cat#: NCL2110P214)
- Human Neurons Isolated from Cortex (Cat#: NCL-21P6-023)
- iNeu™ Human Schwann Cell (Cat#: NCL-2103-P63)
- Mouse Retinal Ganglion Cells (Cat#: NCL2110P145)
- iNeu™ Human Neural Stem Cell Line (Cat#: NCL200552ZP)
- Mouse Microglia N9 (Cat#: NCL2110P073)
- Beta Amyloid (1-40), Aggregation Kit (Cat#: NRZP-0323-ZP199)
- Amyloid beta 1-42 Kit (Cat#: NRP-0322-P2170)
- Human GFAP ELISA Kit [Colorimetric] (Cat#: NPP2011ZP383)
- Human Poly ADP ribose polymerase,PARP Assay Kit (Cat#: NRZP-1122-ZP62)
- Beta Amyloid (1-42), Aggregation Kit (Cat#: NRZP-0323-ZP200)
- Alpha Synuclein Aggregation Kit (Cat#: NRZP-1122-ZP15)
- Human Tau Aggregation Kit (Cat#: NRP-0322-P2173)
- Alpha-Synuclein Aggregation Assay Kit (Cat#: NRZP-1122-ZP37)
- pAAV-syn-jGCaMP8s-WPRE (Cat#: NTA-2106-P063)
- Dextran-FITC (Cat#: NTA-2011-ZP110)
- pAAV-syn-FLEX-jGCaMP8f-WPRE (Cat#: NTA-2106-P064)
- pAAV-syn-FLEX-jGCaMP8s-WPRE (Cat#: NTA-2106-P066)
- Dextran, NHS Activated, 40 kDa (Cat#: NRZP-0722-ZP124)
- pAAV-hSyn-DIO-XCaMP-R-WPRE (Cat#: NTA-2012AD-P508)
- pAAV-syn-jGCaMP8f-WPRE (Cat#: NTA-2106-P061)
- rAAV-E-SARE-Cre-ERT2-PEST-WPRE-hGH polyA (Cat#: NTA-2010-TT342)
- AAV2/9-hEF1a-fDIO-eNpHR 3.0-mCherry-WPRE-pA (Cat#: NTA-2012-ZP78)
- VSV-eGFP (Cat#: NTA-2011-ZP20)
- Human superoxide dismutase 1, soluble (SOD1) (NM_000454) ORF clone, TurboGFP Tagged (Cat#: NEP-0521-R0748)
- Rat Parkinson disease (autosomal recessive, juvenile) 2, parkin (Park2) (NM_020093) ORF clone/lentiviral particle, Myc-DDK Tagged (Cat#: NEP-0621-R0041)
- Mouse SOD1 shRNA Silencing Adenovirus (Cat#: NV-2106-P14)
- Mouse Parkinson disease (autosomal recessive, early onset) 7 (Park7) (NM_020569) clone, Untagged (Cat#: NEP-0621-R0133)
- Human huntingtin (HTT) (NM_002111) ORF clone, Myc-DDK Tagged (Cat#: NEP-0521-R0497)
- Human superoxide dismutase 3, extracellular (SOD3) (NM_003102) ORF clone, Untagged (Cat#: NEP-0521-R0808)
- Human huntingtin-associated protein 1 (HAP1) transcript variant 2 (NM_177977) ORF clone, Myc-DDK Tagged (Cat#: NEP-0521-R0676)
- Lenti of Human TAR DNA binding protein (TARDBP) (NM_007375) ORF clone, mGFP Tagged (Cat#: NEP-0521-R0832)
- Human apolipoprotein E (APOE) (NM_000041) ORF clone, Untagged (Cat#: NEP-0421-R0232)
- Lenti of Mouse synuclein, alpha (Snca) transcript variant (NM_001042451) ORF clone, mGFP Tagged (Cat#: NEP-0521-R0864)
- NeuroBiologics™ Rat Cerebrospinal Fluid (Cat#: NRZP-0822-ZP496)
- NeuroBiologics™ Monkey Cerebrospinal Fluid (Cat#: NRZP-0822-ZP495)
- NeuroBiologics™ Human Cerebrospinal Fluid (Cat#: NRZP-0822-ZP491)
- NeuroBiologics™ Mouse Cerebrospinal Fluid (Cat#: NRZP-0822-ZP497)
- NeuroBiologics™ Pig Cerebrospinal Fluid (Cat#: NRZP-0822-ZP498)
- NeuroPro™ Anti-ASA BBB Shuttle Protein (Cat#: NRZP-0423-ZP504)
- NeuroPro™ Anti-IDUA BBB Shuttle Protein (Cat#: NRZP-0423-ZP498)
- NeuroPro™ Anti-NAGLU BBB Shuttle Protein (Cat#: NRZP-0423-ZP506)
- NeuroPro™ Anti-SGSH BBB Shuttle Protein (Cat#: NRZP-0423-ZP505)
- NeuroPro™ Anti-GDNF BBB Shuttle Protein (Cat#: NRZP-0423-ZP509)
- NeuroPro™ Anti-idursulfase BBB Shuttle Protein (Cat#: NRZP-0423-ZP497)
- NeuroPro™ Anti-PON1 BBB Shuttle Protein (Cat#: NRZP-0423-ZP507)
- NeuroPro™ Anti-IDUA BBB Shuttle Protein (Cat#: NRZP-0423-ZP502)
- NeuroPro™ Anti-GDNF BBB Shuttle Protein (Cat#: NRZP-0423-ZP500)
- NeuroPro™ Anti-IDS BBB Shuttle Protein (Cat#: NRZP-0423-ZP503)