1. Silenced PITX1 promotes chemotherapeutic resistance to 5‑fluorocytosine and cisplatin in gastric cancer cells
    Xiaohui Shen et al, 2019, Experimental and Therapeutic Medicine CrossRef
  2. Investigating wound healing characteristics of gingival and skin keratinocytes in organotypic cultures
    Chris J. Smith et al, 2022, Journal of Dentistry CrossRef
  3. Studies of Tumor Suppressor Genes via Chromosome Engineering
    Hiroyuki Kugoh et al, 2015, Cancers CrossRef
  4. PITX1 protein interacts with ZCCHC10 to regulate hTERT mRNA transcription
    Takahito Ohira et al, 2019, PLOS ONE CrossRef
  5. Single-cell transcriptomic analysis in a mouse model deciphers cell transition states in the multistep development of esophageal cancer
    Jiacheng Yao et al, 2020, Nature Communications CrossRef
  6. Transcriptome Analysis of Pterygium and Pinguecula Reveals Evidence of Genomic Instability Associated with Chronic Inflammation
    María Fernanda Suarez et al, 2021, International Journal of Molecular Sciences CrossRef
  7. miR-19b regulates hTERT mRNA expression through targeting PITX1 mRNA in melanoma cells
    Takahito Ohira et al, 2015, Scientific Reports CrossRef
  8. Novel methylated DNA markers accurately discriminate Lynch syndrome associated colorectal neoplasia
    Veroushka Ballester et al, 2020, Epigenomics CrossRef
  9. DNA hypermethyation and silencing ofPITX1correlated with advanced stage and poor postoperative prognosis of esophageal squamous cell carcinoma
    Takeshi Otsubo et al, 2017, Oncotarget CrossRef
  10. Spatial transcriptomics reveals distinct and conserved tumor core and edge architectures that predict survival and targeted therapy response
    Rohit Arora et al, 2023, Nature Communications CrossRef
  11. Nucleus Accumbens-Associated Protein 1 Expression Has Potential as a Marker for Distinguishing Oral Epithelial Dysplasia and Squamous Cell Carcinoma
    Joji Sekine et al, 2015, PLOS ONE CrossRef
  12. PITX1 inhibits the growth and proliferation of melanoma cells through regulation of SOX family genes
    Takahito Ohira et al, 2021, Scientific Reports CrossRef