References

Related publications for ATS products and services
3030 entries

Targeting of embryonic annexin A2 expressed on ovarian and breast cancer by the novel monoclonal antibody 2448

Cua S, Tan HL, Fong WJ, Chin A, Lau A, Ding V, Song Z, Yang Y, Choo A (2018) Targeting of embryonic annexin A2 expressed on ovarian and breast cancer by the novel monoclonal antibody 2448. Oncotarget 9:13206-13221. doi: 10.18632/oncotarget.24152

Objective: To develop mAbs to potentially target oncofetal antigens and be repurposed for antibody or antibody drug conjugate (ADC) therapy.

Summary: The novel IgG1, 2448, was shown to target a unique glycosylated surface epitope on ANXA2. As a possible therapeutic candidate for ovarian and breast cancer, 2448 demonstrated anti-tumor activity via two independent mechanisms of action.

Usage: Cells were seeded in 96-well plates at 1000 or 2000 cells/well. Primary antibody, 2448 or ch2448 (10 μg/mL) was pre-mixed with appropriate secondary saporin conjugate, Mab-ZAP or Hum-ZAP.  The most significant decreases in cell viability (20% to 60%) were observed against the epithelial IGROV1 and MCF7 cell lines.  ATS created a Custom ADC by direct conjugation of saporin to ch2448 (ch2448-SAP).  As a control, an isotype chimeric IgG was also conjugated to saporin (IgG-SAP). Compared to using secondary saporin conjugates, ch2448-SAP induced and increase of  20–30% cytotoxicity.)

Related Products: Mab-ZAP (Cat. #IT-04), Hum-ZAP (Cat. #IT-22), Custom Conjugates

Melanopsin expression in the cornea.

Delwig A, Chaney S, Bertke A, Verweij J, Quirce S, Larsen D, Yang C, Buhr E, VAN Gelder R, Gallar J, Margolis T, Copenhagen D (2018) Melanopsin expression in the cornea. Vis Neurosci 35:E004. doi: 10.1017/S0952523817000359 PMID: 29905117

Objective: To determine melanopsin expression in cornea.

Summary: Found no light-evoked activation of melanopsin-expressing fibers in cornea or in cell bodies in the TG; melanopsin protein might serve other sensory functions in the cornea. One justification for this idea is that melanopsin expressed in Drosophila photoreceptors can serve as a temperature sensor.

Usage: For the primary staining, we used Anti-Melanopsin at 1:5000 for 3 days.

Related Products: Melanopsin Rabbit Polyclonal, affinity-purified (Cat. #AB-N39)

Tumour endothelial marker 1/endosialin-mediated targeting of human sarcoma

Guo Y, Hu J, Wang Y, Peng X, Min J, Wang J, Matthaiou E, Cheng Y, Sun K, Tong X, Fan Y, Zhang PJ, Kandalaft LE, Irving M, Coukos G, Li C (2018) Tumour endothelial marker 1/endosialin-mediated targeting of human sarcoma. Eur J Cancer 90:111-121. doi: 10.1016/j.ejca.2017.10.035. PMID: 29304474

Objective: Using Saporin conjugated to 78Fc, an antibody fragment directed towards endosialin a.k.a. CD248, in the treatment of human sarcomas.

Summary: Endosialin/CD248 is over-expressed in human sarcomas, and a human single-chain variable fragment -Fc fusion protein was created targeting CD248. 78Fc-SAP eliminated CD248+ cells without off-target toxicity in vivo in mice and in vitro in human sarcoma cells.

Usage: In vivo: Mice were inoculated with osteosarcoma cells. These mice received, in PBS, either 4 ug of 78Fc-SAP, 1.4 ug of free saporin [PR-01], or no drug. In vitro: At 2.2 nM nearly 100% of CD248+ human sarcoma cell lines ( SJSA-1, A673, MES-SA and HOS) were eliminated. At the same concentration with free saporin ~20% of cells were eliminated.

Related Products: Saporin (Cat. #PR-01)

The M5 cell: A color-opponent intrinsically photosensitive retinal ganglion cell

Stabio ME, Sabbah S, Quattrochi LE, Ilardi MC, Fogerson PM, Leyrer ML, Kim MT, Kim I, Schiel M, Renna JM, Briggman KL, Berson DM (2018) The M5 cell: A color-opponent intrinsically photosensitive retinal ganglion cell. Neuron 97:150-163. doi: 10.1016/j.neuron.2017.11.030 PMID: 29249284

Objective: To provide a fuller description of the least understood ipRGC type, the M5 cell, and discovered a distinctive functional characteristic— chromatic opponency (ultraviolet excitatory, green inhibitory).

Summary: M5 cells send axons to the dLGN and are thus positioned to provide chromatic signals to visual cortex. These findings under- score that melanopsin’s influence extends beyond unconscious reflex functions to encompass cortical vision, perhaps including the perception of color.

Usage: M5 cells have the weakest melanopsin responses of all known ipRGC types. The intrinsic melanopsin response (~10 pA) in M5 cells is at least an order of magnitude smaller than the extrinsic, synaptically mediated response.

Related Products: Melanopsin Rabbit Polyclonal (Cat. #AB-N38)

Allopregnanolone suppresses mechanical allodynia and internalization of neurokinin-1 receptors at the spinal dorsal horn in a rat postoperative pain model

Fujita M, Fukuda T, Sato Y, Takasusuki T, Tanaka M (2018) Allopregnanolone suppresses mechanical allodynia and internalization of neurokinin-1 receptors at the spinal dorsal horn in a rat postoperative pain model. Korean J Pain 31:10-15. doi: 10.3344/kjp.2018.31.1.10. PMID: 29372021

Objective: To identify a new strategy for postoperative pain management, this study investigated the analgesic effects of allopregnanolone (Allo) in an incisional pain model, and its effects on the activities of the primary afferent fibers at the dorsal horn.

Summary: Systemic administration of Allopregnanolone inhibited mechanical allodynia and activities of the primary afferent fibers at the dorsal horn in a rat postoperative pain model. Allopregnanolone was proposed as a candidate for postoperative pain management.

Usage: Fluorescence immunohistochemistry: Six sections per animal were labeled with primary antiserum, rabbit anti-NK-1R (1:3000).

Related Products: NK-1 Receptor Rabbit Polyclonal, affinity-purified (Cat. #AB-N33AP)

Review

5-FU resistant EMT-like pancreatic cancer cells are hypersensitive to photochemical internalization of the novel endoglin-targeting immunotoxin CD105-saporin

Lund K, Olsen CE, Wong JJW, Olsen PA, Solberg NT, Høgset A, Krauss S, Selbo PK (2017) 5-FU resistant EMT-like pancreatic cancer cells are hypersensitive to photochemical internalization of the novel endoglin-targeting immunotoxin CD105-saporin. J Exp Clin Cancer Res 36(1):185.. doi: 10.1186/s13046-017-0662-6

Objective: Investigate resistance mechanisms and photochemical strategies to overcome 5-FU resistance in pancreatic adenocarcinoma.

Summary: Expression of CD105 was investigated using RT-qPCR, western blotting, flow cytometry, and fluorescence microscopy, and co-localization of TPCS2a and Anti-CD105-SAP was assessed using microscopy. MTS assay was used to investigate cytotoxic effects of photochemical internalization of Anti-CD105-SAP. For the first time, we demonstrate the promise of PCI-based targeting of CD105 in site-specific elimination of 5-FU resistant pancreatic cancer cells using Anti-CD105-SAP in vitro. PCI-based targeting of CD105 may represent a potent anti-cancer strategy and should be further evaluated in preclinical models.

Usage: Cells were seeded (3000/well) in 96-well plates and allowed to attach overnight. The cells were incubated with the Anti-CD105-saporin (2.4 nM) or Saporin as a control (6.48 nM; Saporin was added in a molecular ratio of 2.7:1 to the immunotoxin) giving an equal ratio of Saporin to immunotoxin), with or without the photosensitizer TPCS2a (0.35 μg/ml) for 18 h.

Related Products: Anti-CD105-SAP (Cat. #IT-80)

Isolation of blood-brain barrier-crossing antibodies from a phage display library by competitive elution and their ability to penetrate the central nervous system

Thom G, Hatcher J, Hearn A, Paterson J, Rodrigo N, Beljean A, Gurrell I, Webster C (2018) Isolation of blood-brain barrier-crossing antibodies from a phage display library by competitive elution and their ability to penetrate the central nervous system. mAbs 10:304-314. doi: 10.1080/19420862.2017.1409320 PMID: 29182455

Summary: Fluorescence microvolume assay technology (FMAT) periprep extract or Nickel-purified scFvs from E. coli were transferred into assay plates containing 10 ml (1:1000 dilution of a 1 mg/ml stock solution) mouse anti-HIS MAb.)

Related Products: 6His Mouse Monoclonal (Cat. #AB-213)

Hypoxia-inducible factor prolyl-4-hydroxylase-1 is a convergent point in the reciprocal negative regulation of NF-κB and p53 signaling pathways

Ullah K, Rosendahl AH, Izzi V, Bergmann U, Pihlajaniemi T, Maki JM, Myllyharju JA-Ohoo (2017) Hypoxia-inducible factor prolyl-4-hydroxylase-1 is a convergent point in the reciprocal negative regulation of NF-κB and p53 signaling pathways. Sci Rep 7:172200. doi: 10.1038/s41598-017-17376-0 PMID: 29222481

Usage: Western blot

Related Products: Trans-4-Hydroxy-L-Proline Rabbit Polyclonal, Conjugated (Cat. #AB-T044)

Neurotrophically induced mesenchymal progenitor cells derived from induced pluripotent stem cells enhance neuritogenesis via neurotrophin and cytokine production

Brick RM, Sun AX, Tuan RSA-Ohoo (2018) Neurotrophically induced mesenchymal progenitor cells derived from induced pluripotent stem cells enhance neuritogenesis via neurotrophin and cytokine production. Stem Cells Transl Med 7:45-58. doi: 10.1002/sctm.17-0108 PMID: 29215199

Objective: To examine the potential utility of an alternative, mesenchymal-like cell (MSCs) source, derived from induced pluripotent stem cells, termed induced mesenchymal progenitor cells (MiMPCs) to produce bioactive factors and support nerve regeneration.

Summary: The findings suggest MiMPCs as a renewable, candidate source of therapeutic cells and a potential alternative to MSCs for peripheral nerve repair, in view of their ability to promote nerve growth by producing many of the same growth factors and cytokines as Schwann cells and signaling through critical neurotrophic pathways.

Usage: Immunofluorescence

Related Products: NGFr (mu p75) Rabbit Polyclonal, affinity-purified (Cat. #AB-N01AP)

Regulation of reentrainment function is dependent on a certain minimal number of intact functional iprgcs in rd mice

Zhang J, Wang H, Wu S, Liu Q, Wang N (2017) Regulation of reentrainment function is dependent on a certain minimal number of intact functional iprgcs in rd mice. J Ophthalmol 2017:6804853.. doi: 10.1155/2017/6804853

Related Products: Melanopsin-SAP (Cat. #IT-44)

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