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AB65834

Anti-Alkaline Phosphatase, Tissue Non-Specific antibody

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(1 Review)

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(53 Publications)

Rabbit Polyclonal PPBT antibody. Suitable for WB, IHC-P and reacts with Human samples. Cited in 53 publications. Immunogen corresponding to Synthetic Peptide within Human Alkaline phosphatase, tissue-nonspecific isozyme aa 1-50.

View Alternative Names

AP-TNAP, TNS-ALP, TNSALP, Alkaline phosphatase liver/bone/kidney isozyme, Phosphoamidase, Phosphocreatine phosphatase, ALPL

2 Images
Immunohistochemistry (Formalin/PFA-fixed paraffin-embedded sections) - Anti-Alkaline Phosphatase, Tissue Non-Specific antibody (AB65834)
  • IHC-P

Supplier Data

Immunohistochemistry (Formalin/PFA-fixed paraffin-embedded sections) - Anti-Alkaline Phosphatase, Tissue Non-Specific antibody (AB65834)

Immunohistochemistry analysis of paraffin-embedded sections of human parotid acinar cell carcinoma tissue staining ALPL with ab65834 at 2 µg/ml. Heat mediated antigen retrieval was performed in EDTA buffer (pH 8.0, epitope retrieval solution). The tissue section was blocked with 10% goat serum. The tissue section was then incubated with the primary antibody overnight at 4°C. Peroxidase Conjugated Goat Anti-rabbit IgG was used as secondary antibody and incubated for 30 minutes at 37°C. The tissue section was developed using HRP Conjugated Rabbit IgG Super Vision Assay Kit with DAB as the chromogen.

Western blot - Anti-Alkaline Phosphatase, Tissue Non-Specific antibody (AB65834)
  • WB

Supplier Data

Western blot - Anti-Alkaline Phosphatase, Tissue Non-Specific antibody (AB65834)

Electrophoresis was performed on a 5-20% SDS-PAGE gel at 70V (Stacking gel) / 90V (Resolving gel) for 2-3 hours.  After electrophoresis, proteins were transferred to a nitrocellulose membrane at 150 mA for 50-90 minutes. Blocked the membrane with 5% non-fat milk/TBS for 1.5 hour at RT. The membrane was incubated with ab65834 at 0.5 µg/mL overnight at 4°C, then washed with TBS-0.1%Tween 3 times with 5 minutes each and probed with a goat anti-rabbit IgG-HRP secondary antibody at a dilution of 1/5000 for 1.5 hour at RT. The signal is developed using an Enhanced Chemiluminescent detection (ECL) kit with Tanon 5200 system. A specific band was detected for ALPL at approximately 80 kDa. The expected band size for ALPL is at 57 kDa.

All lanes:

Western blot - Anti-Alkaline Phosphatase, Tissue Non-Specific antibody (ab65834) at 0.5 µg/mL

All lanes:

human Hela whole cell lysates at 30 µg

Secondary

All lanes:

goat anti-rabbit IgG-HRP at 1/5000 dilution

true

Key facts

Host species

Rabbit

Clonality

Polyclonal

Isotype

IgG

Carrier free

No

Reacts with

Human

Applications

IHC-P, WB

applications

Immunogen

Synthetic Peptide within Human Alkaline phosphatase, tissue-nonspecific isozyme aa 1-50. The exact immunogen used to generate this antibody is proprietary information.

P05186

Reactivity data

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Properties and storage information

Form
Liquid
Purification technique
Affinity purification Immunogen
Storage buffer
Constituents: 76.92% Trehalose, 17.31% Sodium chloride, 3.85% Disodium hydrogenorthophosphate
Shipped at conditions
Blue Ice
Appropriate short-term storage conditions
+4°C
Appropriate long-term storage conditions
-20°C
Aliquoting information
Upon delivery aliquot
Storage information
Avoid freeze / thaw cycle

Supplementary information

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

Alkaline Phosphatase Tissue Non-Specific also referred to as ALPL or alkaline phosphatase protein functions mechanically as a hydrolase enzyme. It catalyzes the dephosphorylation of molecules contributing to phosphate and mineral metabolism. This enzyme with a molecular mass of approximately 57 kDa exhibits expression in various tissues including liver bone and kidneys. Researchers can use techniques like alkaline phosphatase ELISA and immunohistochemistry to study its expression and localization.
Biological function summary

Alkaline phosphatase in tissues plays a pivotal role in bone mineralization and development. It functions to hydrolyze phosphate groups releasing inorganic phosphate necessary for bone and teeth formation. It forms part of a larger enzyme complex that interacts with extracellular substrates ensuring the continuous supply of phosphate ions. This enzyme in particular impacts cellular processes involving calcification and cellular differentiation.

Pathways

Alkaline phosphatase operates within phosphate metabolism and signaling pathways. Within the skeletal system it forms part of the regulatory mechanism for osteoblast activity and bone formation. It relates to proteins like osteopontin and bone sialoprotein which regulate the mineralization process. These pathways ensure the balance between phosphate ions and mineral deposition in bone tissue.

Alkaline phosphatase abnormalities correlate with hypophosphatasia and rickets. Hypophosphatasia results from mutations in the ALPL gene causing defective bone mineralization. In cases of rickets improper phosphate metabolism can occur due to dysfunctional enzyme activity. The imbalance in alkaline phosphatase activity also connects to disorders like hyperparathyroidism where calcium and phosphate homeostasis is disrupted involving proteins such as parathyroid hormone.

Product protocols

For this product, it's our understanding that no specific protocols are required. You can visit:

Target data

Alkaline phosphatase that metabolizes various phosphate compounds and plays a key role in skeletal mineralization and adaptive thermogenesis (PubMed : 12162492, PubMed : 23688511, PubMed : 25982064). Has broad substrate specificity and can hydrolyze a considerable variety of compounds : however, only a few substrates, such as diphosphate (inorganic pyrophosphate; PPi), pyridoxal 5'-phosphate (PLP) and N-phosphocreatine are natural substrates (PubMed : 12162492, PubMed : 2220817). Plays an essential role in skeletal and dental mineralization via its ability to hydrolyze extracellular diphosphate, a potent mineralization inhibitor, to phosphate : it thereby promotes hydroxyapatite crystal formation and increases inorganic phosphate concentration (PubMed : 23688511, PubMed : 25982064). Acts in a non-redundant manner with PHOSPHO1 in skeletal mineralization : while PHOSPHO1 mediates the initiation of hydroxyapatite crystallization in the matrix vesicles (MVs), ALPL/TNAP catalyzes the spread of hydroxyapatite crystallization in the extracellular matrix (By similarity). Also promotes dephosphorylation of osteopontin (SSP1), an inhibitor of hydroxyapatite crystallization in its phosphorylated state; it is however unclear whether ALPL/TNAP mediates SSP1 dephosphorylation via a direct or indirect manner (By similarity). Catalyzes dephosphorylation of PLP to pyridoxal (PL), the transportable form of vitamin B6, in order to provide a sufficient amount of PLP in the brain, an essential cofactor for enzymes catalyzing the synthesis of diverse neurotransmitters (PubMed : 20049532, PubMed : 2220817). Additionally, also able to mediate ATP degradation in a stepwise manner to adenosine, thereby regulating the availability of ligands for purinergic receptors (By similarity). Also capable of dephosphorylating microbial products, such as lipopolysaccharides (LPS) as well as other phosphorylated small-molecules, such as poly-inosine : cytosine (poly I : C) (PubMed : 28448526). Acts as a key regulator of adaptive thermogenesis as part of the futile creatine cycle : localizes to the mitochondria of thermogenic fat cells and acts by mediating hydrolysis of N-phosphocreatine to initiate a futile cycle of creatine dephosphorylation and phosphorylation (By similarity). During the futile creatine cycle, creatine and N-phosphocreatine are in a futile cycle, which dissipates the high energy charge of N-phosphocreatine as heat without performing any mechanical or chemical work (By similarity).
See full target information Alkaline phosphatase, tissue-nonspecific isozyme

Publications (53)

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

Scientific reports 15:23103 PubMed40595126

2025

SREBP-2 promotes cancer progression through the mevalonate-Akt pathway in non-small cell lung cancer.

Applications

Unspecified application

Species

Unspecified reactive species

Wenjie You,Lili Su,Shuping Weng,Jing Li,Xingguang Wang,Bin Liang,Daowei Li,Lijun Li,Haiquan Chen

Journal of biophotonics 18:e70051 PubMed40294940

2025

Mitochondrial Oxygen Consumption and Immunocytochemistry of Human Dental Pulp Stem Cell Following 808 nm PBM Therapy: A 3D Cell Culture Study.

Applications

Unspecified application

Species

Unspecified reactive species

Simone L Sleep,Eliza Ranjit,Jennifer Gunter,Deanne H Hryciw,Praveen Arany,Roy George

Journal of translational medicine 23:376 PubMed40148953

2025

Circ-ITCH promotes the ubiquitination degradation of HOXC10 to facilitate osteogenic differentiation in disuse osteoporosis through stabilizing BRCA1 mRNA via IGF2BP2-mediated mA modification.

Applications

Unspecified application

Species

Unspecified reactive species

Da Zhong,Xi Li,Zhen Yin,Peng Chen,Yusheng Li,Jian Tian,Long Wang,Hua Liu,Ke Yin,Lemei Zhu,Lingyu Kong,Kunli Chen,Yaochun Li,Chungu Hong,Chenggong Wang

Science advances 11:eads9581 PubMed40117376

2025

Selective promotion of sensory innervation-mediated immunoregulation for tissue repair.

Applications

Unspecified application

Species

Unspecified reactive species

Kaicheng Xu,Kaile Wu,Liang Chen,Yubin Zhao,Hengyuan Li,Nong Lin,Zhaoming Ye,Jianbin Xu,Donghua Huang,Xin Huang

Frontiers in bioengineering and biotechnology 13:1521134 PubMed39995594

2025

Gingival fibroblast suppress the osteogenesis process mediated by bone substitute materials via WNT/β-catenin signaling pathway and .

Applications

Unspecified application

Species

Unspecified reactive species

Guanqi Liu,Jiahui Lin,Xiaoyan Chen,Runheng Liu

Cellular and molecular life sciences : CMLS 81:423 PubMed39367914

2024

Eldecalcitol ameliorates diabetic osteoporosis and glucolipid metabolic disorder by promoting Treg cell differentiation through SOCE.

Applications

Unspecified application

Species

Unspecified reactive species

Yujun Jiang,Ruihan Gao,Qiaohui Ying,Xiaolin Li,Yaling Dai,Aimei Song,Hongrui Liu,Tomoka Hasegawa,Minqi Li

Advanced science (Weinheim, Baden-Wurttemberg, Germany) 11:e2403921 PubMed39352318

2024

Hypoxia-Mimicking Mediated Macrophage-Elimination of Erythrocytes Promotes Bone Regeneration via Regulating Integrin αβ/Fe-Glycolysis-Inflammation.

Applications

Unspecified application

Species

Unspecified reactive species

Yong Ao,Yuanlong Guo,Yingye Zhang,Lv Xie,Ruidi Xia,Jieyun Xu,Mengru Shi,Xiaomeng Gao,Xiaoran Yu,Zetao Chen

Journal of anatomy 246:148-159 PubMed39234669

2024

Effect of load reduction on the calcification of rat tibial tuberosity: Focus on calcification factors and chondrocyte mechanosensors.

Applications

Unspecified application

Species

Unspecified reactive species

Hirai Suito,Wataru Minamizono,Nao Yashima,Hiroya Matsunaga,Kaoru Fujikawa,Masafumi Ohsako

Calcified tissue international 115:686-699 PubMed39177752

2024

Deficiency of Trps1 in Cementoblasts Impairs Cementogenesis and Tooth Root Formation.

Applications

Unspecified application

Species

Unspecified reactive species

Kaoru Fujikawa,Mairobys Socorro,Lyudmila Lukashova,Priyanka Hoskere,Paulina Keskinidis,Kostas Verdelis,Dobrawa Napierala

Cell proliferation 57:e13663 PubMed38803043

2024

Pyroptotic macrophages induce disruption of glutamate metabolism in periodontal ligament stem cells contributing to their compromised osteogenic potential.

Applications

Unspecified application

Species

Unspecified reactive species

Li-Juan Sun,Hong-Lei Qu,Xiao-Tao He,Bei-Min Tian,Rui-Xin Wu,Yuan Yin,Jie-Kang Zou,Hai-Hua Sun,Xuan Li,Fa-Ming Chen
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