ARG57422

anti-ALP / Alkaline Phosphatase antibody

anti-ALP / Alkaline Phosphatase antibody for ICC/IF,IHC-Formalin-fixed paraffin-embedded sections,Western blot and Human,Mouse,Rat

publication_link Publication12

Overview

Product Description Rabbit Polyclonal antibody recognizes ALP / Alkaline Phosphatase
Tested Reactivity Hu, Ms, Rat
Tested Application ICC/IF, IHC-P, WB
Host Rabbit
Clonality Polyclonal
Isotype IgG
Target Name ALP / Alkaline Phosphatase
Antigen Species Human
Immunogen Recombinant protein of Human ALP / Alkaline Phosphatase.
Conjugation Un-conjugated
Alternate Names TNSALP; HOPS; EC 3.1.3.1; Alkaline phosphatase, tissue-nonspecific isozyme; TNAP; Alkaline phosphatase liver/bone/kidney isozyme; APTNAP; AP-TNAP

Application Instructions

Application Suggestion
Tested Application Dilution
ICC/IF1:50 - 1:100
IHC-P1:50 - 1:200
WB1:5000 - 1:10000
Application Note * The dilutions indicate recommended starting dilutions and the optimal dilutions or concentrations should be determined by the scientist.
Positive Control HepG2

Properties

Form Liquid
Purification Affinity purification with immunogen.
Buffer PBS (pH 7.3), 0.02% Sodium azide and 50% Glycerol.
Preservative 0.02% Sodium azide
Stabilizer 50% Glycerol
Storage Instruction For continuous use, store undiluted antibody at 2-8°C for up to a week. For long-term storage, aliquot and store at -20°C. Storage in frost free freezers is not recommended. Avoid repeated freeze/thaw cycles. Suggest spin the vial prior to opening. The antibody solution should be gently mixed before use.
Note For laboratory research only, not for drug, diagnostic or other use.

Bioinformation

Database Links

GeneID: 11647 Mouse ALPL

GeneID: 249 Human ALPL

GeneID: 25586 Rat ALPL

Gene Symbol ALPL
Gene Full Name alkaline phosphatase, liver/bone/kidney
Background There are at least four distinct but related alkaline phosphatases: intestinal, placental, placental-like, and liver/bone/kidney (tissue non-specific). The first three are located together on chromosome 2, while the tissue non-specific form is located on chromosome 1. The product of this gene is a membrane bound glycosylated enzyme that is not expressed in any particular tissue and is, therefore, referred to as the tissue-nonspecific form of the enzyme. The exact physiological function of the alkaline phosphatases is not known. A proposed function of this form of the enzyme is matrix mineralization; however, mice that lack a functional form of this enzyme show normal skeletal development. This enzyme has been linked directly to hypophosphatasia, a disorder that is characterized by hypercalcemia and includes skeletal defects. The character of this disorder can vary, however, depending on the specific mutation since this determines age of onset and severity of symptoms. Alternatively spliced transcript variants have been described. [provided by RefSeq, Apr 2010]
Function This isozyme may play a role in skeletal mineralization. [UniProt]
Calculated MW 57 kDa
PTM N-glycosylated.

Images (4) Click the Picture to Zoom In

  • ARG57422 anti-ALP / Alkaline Phosphatase antibody IHC-P image

    Immunohistochemistry: Mouse bone stained with ARG57422 anti-ALP / Alkaline Phosphatase antibody.

    From Jingyuan Wen et al. Biomed Pharmacother., (2023) doi: 10.1016/j.biopha.2022.114122, Fig. 5C.

  • ARG57422 anti-ALP / Alkaline Phosphatase antibody ICC/IF image

    Immunofluorescence: HeLa cells stained with ARG57422 anti-ALP / Alkaline Phosphatase antibody.

  • ARG57422 anti-ALP / Alkaline Phosphatase antibody IHC-P image

    Immunohistochemistry: Paraffin-embedded Human liver cancer stained with ARG57422 anti-ALP / Alkaline Phosphatase antibody at 1:100 dilution.

  • ARG57422 anti-ALP / Alkaline Phosphatase antibody WB image

    Western blot: HepG2 cell lysate stained with ARG57422 anti-ALP / Alkaline Phosphatase antibody.

Specific References

β-catenin inhibition disrupts the homeostasis of osteogenic/adipogenic differentiation leading to the development of glucocorticoid-induced osteonecrosis of femoral head

IHC-P / Mouse

Chenjie Xia et al.
bioRxiv,  (2023)

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Ambient PM2.5 Exposure and Bone Homeostasis: Analysis of UK Biobank Data and Experimental Studies in Mice and in Vitro

IHC-P, WB / Mouse

Qinwen Ge et al.
Environ Health Perspect.,  (2023)

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Disruption of Col9a2 expression leads to defects in osteochondral homeostasis and osteoarthritis-like phenotype in mice

IHC-P / Mouse

Rui Dong et al.
J Orthop Translat.,  (2023)

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Glycyrrhizic acid alters the hyperoxidative stress-induced differentiation commitment of MSCs by activating the Wnt/β-catenin pathway to prevent SONFH

WB / Human

Huihui Xu et al.
Food Funct.,  (2023)

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Qiangguyin inhibited fat accumulation in OVX mice through the p38 MAPK signaling pathway to achieve anti-osteoporosis effects

IHC-P / Mouse

Jingyuan Wen et al.
Biomed Pharmacother.,  (2023)

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N-Butanol Extract of Modified You-Gui-Yin Attenuates Osteoclastogenesis and Ameliorates Osteoporosis by Inhibiting RANKL-Mediated NF-κB Signaling

IHC-P / Mouse

Qinghe Zeng et al.
Front Endocrinol (Lausanne).,  (2022)

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Fractions of Shen-Sui-Tong-Zhi Formula Enhance Osteogenesis Via Activation of β-Catenin Signaling in Growth Plate Chondrocytes

IHC-P / Mouse

Rui Xu et al.
Front Pharmacol.,  (2021)

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Exploring the mechanism of Bushenhuoxue formula acting on postmenopausal osteoporosis via network pharmacology and experimental validation.

IHC-P / Mouse

Chunhai Ke et al.
Preprint.,  (2021)

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Platelet-rich plasma promotes bone formation, restrains adipogenesis and accelerates vascularization to relieve steroids-induced osteonecrosis of the femoral head.

IHC-P / Rat

Hui-Hui Xu et al.
Platelets.,  (2020)

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Treated dentin matrix‐based scaffolds carrying TGF-β1/BMP4 for functional bio-root regeneration.

WB / Rat

Jie Chen et al.
Applied Materials Today.,  (2020)

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Bushenhuoxue formula promotes osteogenic differentiation of growth plate chondrocytes through β-catenin-dependent manner during osteoporosis.

IHC-P / Mouse

Xia Chenjie et al.
Biomed Pharmacother.,  (2020)

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Genome-wide microRNA screening reveals miR-582-5p as a mesenchymal stem cell-specific microRNA in subchondral bone of the human knee joint.

WB / Human WB / Mouse

Wang Pinger et al.
J Cell Physiol.,  (2019)

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