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Purified Mouse Anti-Human CD14
Product Details
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BD™
LPS receptor; LPS-R; Myeloid cell-specific leucine-rich glycoprotein
Human
Mouse BALB/c IgG2b, κ
Human Monocytes
Flow cytometry
25 μg/mL
20 μL
I M35; II M67; III M337; IV M301
929
Phosphate buffered saline with gelatin and 0.1% sodium azide.
RUO (GMP)


Preparation And Storage

Store vials at 2°C to 8°C. Conjugated forms should not be frozen. Protect from exposure to light. Each reagent is stable until the expiration date shown on the bottle label when stored as directed.

347490 Rev. 1
Antibody Details
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MφP9

The CD14 antibody, clone MφP9, is derived from the hybridization of Sp2/0 mouse myeloma cells with spleen cells from BALB/c mice immunized with peripheral blood monocytes from a patient with rheumatoid arthritis.

The CD14 antibody binds specifically to the 53–55 kilodalton (kDa) glycosylphosphatidylinositol (GPI)–anchored single-chain glycoprotein, CD14, also known as the LPS receptor or LPS-R.

347490 Rev. 1
Format Details
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Purified
Tissue culture supernatant is purified by either protein A/G or affinity purification methods. Both methods yield antibody in solution that is free of most other soluble proteins, lipids, etc. This format provides pure antibody that is suitable for a number of downstream applications including: secondary labeling for flow cytometry or microscopy, ELISA, Western blot, etc.
Purified
347490 Rev.1
Citations & References
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Development References (11)

  1. Banchereau J, Briere F, Caux C. Immunobiology of dendritic cells. Annu Rev Immunol. 2000; 18:767-811. (Biology). View Reference
  2. Bernstein ID, Self S. Joint report of the Myeloid Section of the Second International Workshop on Human Leukocyte Differentiation Antigens. In: Reinherz EL, Haynes BF, Nadler LM, Bernstein ID, ed. Leukocyte Typing II: Human Myeloid and Hematopoietic Cells. New York, NY: Springer-Verlag; 1986:1-25.
  3. Centers for Disease Control. Update: universal precautions for prevention of transmission of human immunodeficiency virus, hepatitis B virus, and other bloodborne pathogens in healthcare settings. MMWR. 1988; 37:377-388. (Biology).
  4. Chomarat P, Dantin C, Bennett L, Banchereau J, Palucka AK. TNF skews monocyte differentiation from macrophages to dendritic cells. J Immunol. 2003; 171:2262–2269. (Biology).
  5. Clinical and Laboratory Standards Institute. 2005. (Biology).
  6. Dimitriu-Bona A, Burmester GR, Waters SJ, Winchester RJ. Human mononuclear phagocyte differentiation antigens. I. Patterns of antigenic expression on the surface of human monocytes and macrophages defined by monoclonal antibodies. J Immunol. 1983; 130(1):145-152. (Biology). View Reference
  7. Goyert SM, Ferrero E. Biochemical analysis of myeloid antigens and cDNA expression of gp55 (CD14). In: McMichael AJ. A.J. McMichael .. et al., ed. Leucocyte typing III : white cell differentiation antigens. Oxford New York: Oxford University Press; 1987:613-619.
  8. Herrmann F, Komischke B, Odenwald E, Ludwig W. Use of monoclonal antibodies as a diagnostic tool in human leukemia, I: Acute myeloid leukemia and acute phase of chronic myeloid leukemia. Blut. 1983; 47:157-163. (Biology).
  9. Jayaram Y, Hogg N. Surface expression of CD14 molecules on human neutrophils. In: Knapp W. W. Knapp .. et al., ed. Leucocyte typing IV : white cell differentiation antigens. Oxford New York: Oxford University Press; 1989:796-797.
  10. Li G, Kim YJ, Mantel C, Broxmeyer HE. P-selectin enhances generation of CD14+CD16+ dentritic-like cells and inhibits macrophage maturation from human peripheral blood monocytes. J Immunol. 2003; 171:669–677. (Biology).
  11. Scherberich JE, Nockher WA. CD14++ monocytes, CD14+/CD16+ subset and soluble CD14 as biological markers of inflammatory systemic diseases and monitoring immunosuppressive therapy. Annu Rev Immunol. 1999; 37:209–213. (Biology).
View All (11) View Less
347490 Rev. 1

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