[1] JIANG Y,YUAN H,LI Z Y,et al. Global pattern and trends of colorectal cancer survival:a systematic review of population-based registration data[J]. Cancer Biol Med,2022,19(2):175-186.
[2] ZHOU X,XIAO Q,FU D,et al. Efficacy of rigosertib,a small molecular RAS signaling disrupter for the treatment of KRAS-mutant colorectal cancer[J]. Cancer Biol Med,2022,19(2):213-228.
[3] JIN L,TONG L. PAQR3 inhibits proliferation and aggravates ferroptosis in acute lymphoblastic leukemia through modulation Nrf2 stability[J]. ImmunInflamm Dis,2021,9(3):827-839.
[4] LI F,SUN H,LI Y,et al. High expression of eIF4E is associated with tumor macrophage infiltration and leads to poor prognosis in breast cancer[J]. BMC Cancer,2021,21(1):1305.
[5] LI T,FAN J,WANG B,et al. TIMER:a web server for comprehensive analysis of tumor-infltrating immune cells[J]. Cancer Res,2017,77(21):e108-e110.
[6] BRUNNER M,MULLEN L,JAUK F,et al. Automatic integration of clinical and genetic data using cBioPortal[J]. Stud Health Technol Inform,2022,290:799-803.
[7] QIU J,SHU C,LI X,et al. PAQR3 depletion accelerates diabetic wound healing by promoting angiogenesis through inhibiting STUB1-mediated PPARγ degradation[J]. Lab Invest,2022,102(10):1121-1131.
[8] LI H,WANG Y,CHEN B,et al. Silencing of PAQR3 suppresses extracellular matrix accumulation in high glucose-stimulated human glomerular mesangial cells via PI3K/AKT signaling pathway[J]. Eur J Pharmacol,2018,832:50-55.
[9] GAO J,MA X,DENG F,et al. Associations of the BRAF V600E mutation and PAQR3 protein expression with papillary thyroid carcinoma clinicopathological features[J]. Pathol Oncol Res,2020,26(3):1833-1841.
[10] BAI G,YANG M,ZHENG C,et al. Suppressor PAQR3 associated with the clinical significance and prognosis in esophageal squamous cell carcinoma[J]. Oncol Lett,2018,15:5703-5711.
[11] WANG X,LI X,FAN F,et al. PAQR3 plays a suppressive role in the tumorigenesis of colorectal cancers[J]. Carcinogenesis,2012,33(11):2228-2235.
[12] ZHANG W,NIU C,HE W,et al. Upregulation of centrosomal protein 55 is associated with unfavorable prognosis and tumor invasion in epithelial ovarian carcinoma[J]. Tumour Biol,2016,37(5):6239-6254.
[13] ZHANG H,HAN C,ZHENG X,et al. Understanding the mechanisms underlying obesity in remodeling the breast tumor immune microenvironment:from the perspective of inflammation[J].Cancer Biol Med,2023,20(4):268-286.
[14] LEI X,LEI Y,LI J K,et al.Immune cells within the tumor microenvironment:biological functions and roles in cancer immunotherapy[J]. Cancer Letters,2020,470:126-133.
[15] JI D,SONG C,LI Y,et al. Combination of radiotherapy and suppression of Tregs enhances abscopal antitumor effect and inhibits metastasis in rectal cancer[J]. J Immunother Cancer,2020,8(2):e000826.
[16] BIAN Z,GONG Y,HUANG T C,et al. Deciphering human macrophage development at single- cell resolution[J]. Nature,2020,582(7813):571-576.
[17] TAURIELLO D VF,SANCHO E,BATLLE E. Overcoming TGFβ-mediated immune evasion in cancer[J]. Nat Rev Cancer,2022,22(1):25-44.
[18] BATLLE E,MASSAGU?魪 J.,et al. Transforming growth factor-β signaling in immunity and cancer[J]. Immunity,2019,50(4):924-940.
[19] BAE J S,JEON Y,KIM S M,et al. Depletion of MOB1A/B causes intestinal epithelial degeneration by suppressing Wnt activity and activating BMP/TGF-β signaling[J]. Cell Death Dis,2018,9(11):1083-1096.
[20] YANG P,ZHANG D,WANG T,et al. CAF-derived exosomal WEE2-AS1 facilitates colorectal cancer progression via promoting degradation of MOB1A to inhibit the Hippo pathway[J]. Cell Death Dis,2022,13(9):796-810.
[1]付 蔷,徐文贵,于筱舟,等.早期18F-FDG PET/CT显像在结直肠癌术后再分期中的临床价值[J].天津医科大学学报,2017,23(01):38.
FU Qiang,XU Wen-gui,YU Xiao-zhou,et al.Value of early postoperative 18F-FDG PET/CT in restaging of the colorectal carcinoma[J].Journal of Tianjin Medical University,2017,23(06):38.
[2]吕文浩,王 吉,魏 颖,等.腹腔内脂肪面积和体质量指数对腹腔镜结直肠癌根治术及术后短期结局的影响[J].天津医科大学学报,2018,24(05):420.
lv Wen-hao,WANG Ji,WEI Ying,et al.Impacts of intra-abdominal fat area and body mass index on laparoscopic surgery for colorectal cancer and short surgical outcomes[J].Journal of Tianjin Medical University,2018,24(06):420.
[3]万 音,程 曼,王梦影,等.膳食纤维肠内营养制剂对结直肠癌患者术后肠道屏障应激及营养指标的影响[J].天津医科大学学报,2019,25(02):105.
WAN Yin,CHENG Man,WANG Meng-ying,et al.Effect of dietary fiber enteral nutrition preparation on postoperative intestinal barrier stress and nutritional index in patients with colorectal cancer[J].Journal of Tianjin Medical University,2019,25(06):105.
[4]贾朝阳,徐文贵,朱 磊,等.18F-FDG PET/CT在结直肠癌术后预后中的应用[J].天津医科大学学报,2019,25(04):342.
JIA Zhao-yang,XU Wen-gui,ZHU Lei,et al.The application of 18F-FDG PET/CT in the prognosis of postoperative colorectal cancer[J].Journal of Tianjin Medical University,2019,25(06):342.
[5]李璐,李晓飞,孙悦,等.结直肠癌患者肠道菌群促进Apcmin/+小鼠肠道腺瘤进展的研究[J].天津医科大学学报,2019,25(06):551.
LI Lu,LI Xiao-fei,SUN Yue,et al.Gut microbiota from patients with colorectal cancer promotes the progression of intestinal adenoma in Apcmin/+ mice[J].Journal of Tianjin Medical University,2019,25(06):551.