Date published: 2025-10-22

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PPAR alpha Activators

Santa Cruz Biotechnology now offers a broad range of PPAR alpha Activators for use in various applications. These activators specifically target peroxisome proliferator-activated receptor alpha (PPARα), a crucial nuclear receptor involved in the regulation of lipid metabolism, energy production, and inflammatory responses at a cellular level. PPAR alpha Activators are integral to scientific research exploring the mechanisms by which cells regulate fatty acid oxidation and maintain energy balance. These compounds enable researchers to artificially enhance PPARα activity, thereby studying its role in gene expression related to lipid processing and metabolic rate. Through the use of these activators, scientists gain insights into how PPARα influences cellular functions and systemic energy homeostasis, which is crucial for understanding metabolic processes in non-clinical research settings. The activators are also employed in examining the cross-talk between metabolic and inflammatory pathways, providing a detailed view of the interactions within cellular networks. This research is valuable for advancing our knowledge of cell biology and metabolism, focusing on how cellular energy processing impacts overall physiological functions. By providing these activators, Santa Cruz Biotechnology facilitates cutting-edge research that delves into fundamental aspects of cellular function and metabolic regulation, enhancing our understanding of critical biological processes. View detailed information on our available PPAR alpha Activators by clicking on the product name.

Items 41 to 44 of 44 total

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Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

CUDA

479413-68-8sc-221443
sc-221443A
5 mg
10 mg
$57.00
$108.00
2
(0)

CUDA functions as a selective PPAR alpha modulator, characterized by its ability to form stable complexes with the receptor through unique electrostatic interactions. This compound promotes the recruitment of transcriptional coactivators, leading to enhanced gene expression related to lipid homeostasis. Its distinct conformational flexibility allows for efficient docking within the receptor's ligand-binding domain, facilitating rapid activation of metabolic signaling pathways.

Palmitoyl Ethanolamide-d4

1159908-45-8sc-224199
sc-224199A
100 µg
500 µg
$29.00
$130.00
(0)

Palmitoyl Ethanolamide-d4 functions as a PPAR alpha modulator, characterized by its isotopic labeling that allows for precise tracking in metabolic studies. Its unique molecular structure facilitates distinct interactions with the receptor, promoting a specific conformational change that enhances receptor activation. This compound plays a critical role in regulating lipid metabolism and energy homeostasis by influencing gene expression related to fatty acid utilization and metabolic pathways.

CAY15073

853652-40-1sc-364376
sc-364376A
500 µg
1 mg
$70.00
$98.00
(0)

CAY15073 acts as a PPAR alpha modulator, exhibiting unique binding dynamics that enhance receptor affinity. Its structural features enable selective interactions with coactivators, influencing downstream signaling pathways. The compound's kinetic profile reveals rapid association and dissociation rates, allowing for fine-tuning of metabolic responses. Additionally, CAY15073's ability to alter transcriptional activity underscores its role in modulating lipid homeostasis and energy balance at a molecular level.

Gemfibrozil-d6

25812-30-0 (unlabeled)sc-280724A
sc-280724
sc-280724B
1 mg
5 mg
50 mg
$300.00
$460.00
$3440.00
1
(0)

Gemfibrozil-d6 functions as a PPAR alpha modulator, characterized by its isotopic labeling that enhances tracking in metabolic studies. Its unique molecular structure facilitates specific interactions with lipid metabolism pathways, influencing gene expression related to fatty acid oxidation. The compound exhibits distinct reaction kinetics, allowing for precise modulation of enzymatic activity. Furthermore, its isotopic composition aids in elucidating metabolic pathways, providing insights into lipid regulation mechanisms.