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AB15811

Anti-Lactoferrin 抗体

Anti-Lactoferrin antibody

3

(3 Reviews)

|

(22 Publications)

Rabbit Polyclonal Lactoferrin antibody. Suitable for ICC, IP, ELISA, WB, IHC-P and reacts with Human samples. Cited in 22 publications. Immunogen corresponding to Native Full Length Protein corresponding to Human LTF.

別名を表示する

GIG12, LF, LTF, Lactotransferrin, Lactoferrin, Growth-inhibiting protein 12, Talalactoferrin

1 Images
Western blot - Anti-Lactoferrin antibody (AB15811)
  • WB

Unknown

Western blot - Anti-Lactoferrin antibody (AB15811)

All lanes:

Western blot - Anti-Lactoferrin antibody (ab15811) at 1/500 dilution

All lanes:

Human Lactoferrin

Predicted band size: 78 kDa

Observed band size: 99 kDa

false

Key facts

宿主種

Rabbit

クローン性

Polyclonal

アイソタイプ

IgG

キャリアフリー

No

交差種

Human

アプリケーション

WB, ICC, IP, IHC-P, ELISA

applications

免疫原

Native Full Length Protein corresponding to Human LTF.

P02788

Reactivity data

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AB109216

Anti-Lactoferrin antibody [EPR4337]

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製品の詳細

出荷温度及び保存条件

製品の状態
Liquid
精製方法
Affinity purification Immunogen
精製に関する特記事項
Affinity purified using immobilized antigenic proteins and pre adsorbed on an immobilized heterologus lactoferin matrix to remove the cross reacting antibodies.
出荷温度
Blue Ice
短期保存期間
1-2 weeks
短期保存温度
+4°C
長期保存温度
-20°C
分注に関する情報
Upon delivery aliquot
保管に関する情報
Avoid freeze / thaw cycle

補足情報

This supplementary information is collated from multiple sources and compiled automatically.

Lactoferrin also known as lactotransferrin is an iron-binding glycoprotein with a molecular weight of about 80 kDa. It predominantly exists in mammalian milk particularly in high concentrations in colostrum and is also found in various epithelial secretions such as saliva tears and nasal fluids. The liver and neutrophils also produce lactoferrin and it plays a significant role in the body's primary defense system. As an antibacterial agent lactoferrin sequesters free iron to limit bacterial growth and disrupt biofilms assisting in the protection against microbial invasions.
Biological function summary

Lactoferrin exhibits multiple functions beyond its antimicrobial properties. It contributes to immunomodulation by binding to specific receptors on immune cells enhancing phagocytosis and influencing cytokine production. Also it possesses anti-inflammatory and antioxidant properties. Lactoferrin interacts with cellular components including glycosaminoglycans and lipoproteins impacting the activity and expression of proteins within signaling and metabolic pathways. This multifaceted role places it as a critical participant in both innate and adaptive immune responses although it does not form part of a stable protein complex.

Pathways

Lactoferrin plays a significant role in the iron metabolism and immune response pathways. It tightly interacts with the transferrin receptor modulating iron uptake and distribution across tissues which helps prevent iron overload and oxidative stress. Furthermore lactoferrin links with the toll-like receptor pathways particularly TLR4 which enables the modulation of innate immune responses against pathogens. By influencing nuclear factor kappa B (NF-kB) signaling lactoferrin impacts inflammation and immune responses working together with proteins such as ferritin and hepcidin.

Lactoferrin has relevancy to diseases like anemia of chronic disease and inflammatory bowel disease (IBD). Its role in regulating iron homeostasis makes it essential for preventing anemia associated with chronic inflammation. Lactoferrin mitigates dysregulated immune responses in IBD potentially reducing inflammation and promoting gut health. Disease-modifying properties of lactoferrin connect it to glycoproteins like transferrin and inflammatory mediators demonstrating its potential therapeutic importance.

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ターゲットの情報

Transferrins are iron binding transport proteins which can bind two Fe(3+) ions in association with the binding of an anion, usually bicarbonate.. Lactotransferrin. Major iron-binding and multifunctional protein found in exocrine fluids such as breast milk and mucosal secretions (PubMed : 11179314, PubMed : 12693969, PubMed : 14573629, PubMed : 1599934, PubMed : 3169987, PubMed : 6802759). Has antimicrobial activity, which depends on the extracellular cation concentration (PubMed : 6802759). Antimicrobial properties include bacteriostasis, which is related to its ability to sequester free iron and thus inhibit microbial growth, as well as direct bactericidal properties leading to the release of lipopolysaccharides from the bacterial outer membrane (PubMed : 11179314, PubMed : 12693969, PubMed : 14573629, PubMed : 1599934, PubMed : 3169987, PubMed : 6802759). Can also prevent bacterial biofilm development in P.aeruginosa infection (PubMed : 12037568). Has weak antifungal activity against C.albicans (PubMed : 11083624). Has anabolic, differentiating and anti-apoptotic effects on osteoblasts and can also inhibit osteoclastogenesis, possibly playing a role in the regulation of bone growth (PubMed : 15166119). Promotes binding of species C adenoviruses to epithelial cells, promoting adenovirus infection (PubMed : 17079302). Can inhibit papillomavirus infections (PubMed : 17481742). Stimulates the TLR4 signaling pathway leading to NF-kappa-B activation and subsequent pro-inflammatory cytokine production while also interfering with the lipopolysaccharide (LPS)-stimulated TLR4 signaling (PubMed : 20345905). Inhibits neutrophil granulocyte migration to sites of apoptosis, when secreted by apoptotic cells (PubMed : 19033648). Stimulates VEGFA-mediated endothelial cell migration and proliferation (PubMed : 16842782). Binds heparin, chondroitin sulfate and possibly other glycosaminoglycans (GAGs) (PubMed : 9359845). Also binds specifically to pneumococcal surface protein A (PspA), the lipid A portion of bacterial lipopolysaccharide (LPS), lysozyme and DNA (PubMed : 9359845).. Lactoferricin binds to the bacterial surface and is crucial for the bactericidal functions. Has some antiviral activity against papillomavirus infection (PubMed : 17481742). N-terminal region shows strong antifungal activity against C.albicans (PubMed : 11083624). Contains two BBXB heparin-binding consensus sequences that appear to form the predominate functional GAG-binding site.. Kaliocin-1. Has antimicrobial activity and is able to permeabilize different ions through liposomal membranes.. Lactoferroxin-A. Has opioid antagonist activity (PubMed : 1369293). Shows preference for mu-receptor (PubMed : 1369293).. Lactoferroxin-B. Has opioid antagonist activity (PubMed : 1369293). Shows higher degrees of preference for kappa-receptors than for mu-receptors (PubMed : 1369293).. Lactoferroxin-C. Has opioid antagonist activity (PubMed : 1369293). Shows higher degrees of preference for kappa-receptors than for mu-receptors (PubMed : 1369293).. The lactotransferrin transferrin-like domain 1 functions as a serine protease of the peptidase S60 family that cuts arginine rich regions (PubMed : 12535064). This function contributes to the antimicrobial activity (PubMed : 12535064). Shows a preferential cleavage at -Arg-Ser-Arg-Arg-|- and -Arg-Arg-Ser-Arg-|-, and of Z-Phe-Arg-|-aminomethylcoumarin sites (PubMed : 12535064).. Isoform DeltaLf. Transcription factor with antiproliferative properties and ability to induce cell cycle arrest (PubMed : 15222485). Binds to the DeltaLf response element found in the SKP1, BAX, DCPS, and SELENOH promoters (PubMed : 22320386).
See full target information LTF

文献 (22)

Recent publications for all applications. Explore the full list and refine your search

Biomolecules 13: PubMed37892154

2023

Newborns with Favourable Outcomes after Perinatal Asphyxia Have Upregulated Glucose Metabolism-Related Proteins in Plasma.

Applications

Unspecified application

Species

Unspecified reactive species

Ping K Yip,Michael Bremang,Ian Pike,Vennila Ponnusamy,Adina T Michael-Titus,Divyen K Shah

Innate immunity 26:565-579 PubMed32600088

2020

Antimicrobial peptide LL-37 ameliorates a murine sepsis model via the induction of microvesicle release from neutrophils.

Applications

Unspecified application

Species

Unspecified reactive species

Yumi Kumagai,Taisuke Murakami, Kuwahara-Arai,Toshiaki Iba,Johannes Reich,Isao Nagaoka

Journal of proteomics 203:103381 PubMed31102758

2019

iTRAQ comparison of proteomic profiles of endometrial receptivity.

Applications

Unspecified application

Species

Unspecified reactive species

Silvia Pérez-Debén,José Bellver,Pilar Alamá,Stefania Salsano,Alicia Quiñonero,Patricia Sebastian-Leon,Patricia Díaz-Gimeno,Francisco Domínguez

The Journal of nutritional biochemistry 69:10-18 PubMed31048205

2019

Assessment of bioactivities of the human milk lactoferrin-osteopontin complex in vitro.

Applications

Unspecified application

Species

Unspecified reactive species

Lan Liu,Rulan Jiang,Bo Lönnerdal

Journal of translational medicine 17:68 PubMed30823930

2019

Processed human amniotic fluid retains its antibacterial activity.

Applications

Unspecified application

Species

Unspecified reactive species

Yong Mao,Jan Pierce,Anya Singh-Varma,Michael Boyer,Joachim Kohn,Jo-Anna Reems

Scientific reports 8:15394 PubMed30337619

2018

Phospholipid transfer protein and alpha-1 antitrypsin regulate Hck kinase activity during neutrophil degranulation.

Applications

Unspecified application

Species

Unspecified reactive species

Pius Ochieng,Sridesh Nath,Reane Macarulay,Edward Eden,Abdoulaye Dabo,Michael Campos,Xian-Cheng Jiang,Robert F Foronjy,Patrick Geraghty

Molecular nutrition & food research 62:e1701050 PubMed29644801

2018

Exosomal MicroRNAs in Milk from Mothers Delivering Preterm Infants Survive in Vitro Digestion and Are Taken Up by Human Intestinal Cells.

Applications

Unspecified application

Species

Unspecified reactive species

Sarah Kahn,Yalin Liao,Xiaogu Du,Wei Xu,Jie Li,Bo Lönnerdal

Oral diseases 24:972-982 PubMed29637662

2018

Early salivary changes in multiple myeloma patients undergoing autologous HSCT.

Applications

Unspecified application

Species

Unspecified reactive species

Sjm van Leeuwen,G B Proctor,Cmj Potting,S Ten Hoopen,Lfj van Groningen,E M Bronkhorst,Nma Blijlevens,McDnjm Huysmans

Oral diseases 23:990-1000 PubMed28434191

2017

The effect of parotid gland-sparing intensity-modulated radiotherapy on salivary composition, flow rate and xerostomia measures.

Applications

Unspecified application

Species

Unspecified reactive species

T M Richards,T Hurley,L Grove,K J Harrington,G H Carpenter,G B Proctor,C M Nutting

Nature genetics 49:742-752 PubMed28369036

2017

Chromatin-remodeling factor SMARCD2 regulates transcriptional networks controlling differentiation of neutrophil granulocytes.

Applications

IHC-P

Species

Human

Maximilian Witzel,Daniel Petersheim,Yanxin Fan,Ehsan Bahrami,Tomas Racek,Meino Rohlfs,Jacek Puchałka,Christian Mertes,Julien Gagneur,Christoph Ziegenhain,Wolfgang Enard,Asbjørg Stray-Pedersen,Peter D Arkwright,Miguel R Abboud,Vahid Pazhakh,Graham J Lieschke,Peter M Krawitz,Maik Dahlhoff,Marlon R Schneider,Eckhard Wolf,Hans-Peter Horny,Heinrich Schmidt,Alejandro A Schäffer,Christoph Klein
View all publications

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