Preclinical Evaluation of a Novel Small Molecule LCC-21 to Suppress Colorectal Cancer Malignancy by Inhibiting Angiogenic and Metastatic Signatures.
Ntlotlang MokgautsiYu-Cheng KuoYan-Jiun HuangChien-Hsin ChenDebabrata MukhopadhyayAlexander Tsang-Hsien WuHsu-Shan HuangPublished in: Cells (2023)
Colorectal cancer (CRC) is one of the most common cancers, and it frequently metastasizes to the liver and lymph nodes. Despite major advances in treatment modalities, CRC remains a poorly characterized biological malignancy, with high reported cases of deaths globally. Moreover, cancer stem cells (CSCs) and their microenvironment have been widely shown to promote colon cancer development, progression, and metastasis. Therefore, an understanding of the underlying mechanisms that contribute to the maintenance of CSCs and their markers in CRC is crucial in efforts to treat cancer metastasis and develop specific therapeutic targets for augmenting current standard treatments. Herein, we applied computational simulations using bioinformatics to identify potential theranostic markers for CRC. We identified the overexpression of vascular endothelial growth factor-α ( VEGFA )/β-catenin/matrix metalloproteinase (MMP)-7/Cluster of Differentiation 44 ( CD44 ) in CRC to be associated with cancer progression, stemness, resistance to therapy, metastasis, and poor clinical outcomes. To further investigate, we explored in silico molecular docking, which revealed potential inhibitory activities of LCC-21 as a potential multitarget small molecule for VEGF-A/CTNNB1/MMP7/CD44 oncogenic signatures, with the highest binding affinities displayed. We validated these finding in vitro and demonstrated that LCC-21 inhibited colony and sphere formation, migration, and invasion, and these results were further confirmed by a Western blot analysis in HCT116 and DLD-1 cells. Thus, the inhibitory effects of LCC-21 on these angiogenic and onco-immunogenic signatures could be of translational relevance as potential CRC biomarkers for early diagnosis.
Keyphrases
- small molecule
- vascular endothelial growth factor
- molecular docking
- cancer stem cells
- stem cells
- lymph node
- papillary thyroid
- human health
- epithelial mesenchymal transition
- cell proliferation
- genome wide
- endothelial cells
- small cell lung cancer
- squamous cell carcinoma
- risk assessment
- molecular dynamics simulations
- induced apoptosis
- south africa
- cell cycle arrest
- transcription factor
- protein protein
- cell death
- dna methylation
- young adults
- cell therapy
- quality improvement
- oxidative stress
- climate change
- binding protein
- lymph node metastasis
- replacement therapy