Author name: Kristen Hartman

Decreases in the binding of (3H) GABA and (3H) muscimol to particulate fraction of rat brain produced by human sera: some speculations.

Geffard M, De Feudis FV, Varga V, Mandel P (1980) Decreases in the binding of (3H) GABA and (3H) muscimol to particulate fraction of rat brain produced by human sera: some speculations. Gen Pharmacol 11:425-428. doi: 10.1016/0306-3623(80)90027-0 PMID: 7419034 Related Products: GABA Rabbit Polyclonal, Conjugated (Cat. #AB-T10)

Decreases in the binding of (3H) GABA and (3H) muscimol to particulate fraction of rat brain produced by human sera: some speculations. Read More »

Monoclonal xenogenetic antibodies to murine cell surface antigens: identification of novel leukocyte differentiation antigens.

Springer T, Galfre G, Secher DS, Milstein C (1978) Monoclonal xenogenetic antibodies to murine cell surface antigens: identification of novel leukocyte differentiation antigens. Eur J Immunol 8:539-551. doi: 10.1002/eji.1830080802 PMID: 81133 Usage: cytotoxicity assay (ED50=16 pM), and binding assay (5 and 50 µl of culture supernatant) Related Products: Mac-1 (CD11b) Rat Monoclonal (Cat. #AB-N05)

Monoclonal xenogenetic antibodies to murine cell surface antigens: identification of novel leukocyte differentiation antigens. Read More »

Regional dissociation of beta-endorphin and enkephalin contents in rat brain and pituitary

Rossier J, Vargo TM, Minick S, Ling N, Bloom FE, Guillemin R (1977) Regional dissociation of beta-endorphin and enkephalin contents in rat brain and pituitary. Proc Natl Acad Sci U S A 74(11):5162-5165. doi: 10.1073/pnas.74.11.5162 PMID: 270754 Usage: radioimmunoassay (1:5,000) Related Products: Enkephalin (Leu5) Rabbit Polyclonal (Cat. #AB-03), ACTH Rabbit Polyclonal (Cat. #AB-09)

Regional dissociation of beta-endorphin and enkephalin contents in rat brain and pituitary Read More »

Extracellular matrix-mediated lung epithelial cell differentiation

Shojaie S (2016) Extracellular matrix-mediated lung epithelial cell differentiation. University of Toronto Thesis. Objective: To develop a decellularization protocol that generates lung scaffolds capable of supporting lung epithelial cell culture. Summary: The present study identifies an efficient and effective protocol to generate decellularized lung scaffolds that can support lung epithelial cell culture and could potentially

Extracellular matrix-mediated lung epithelial cell differentiation Read More »

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