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Igor Bado

TitlePostdoc Fellows and Associates
InstitutionBaylor College of Medicine
DepartmentPostDoc
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    Publications listed below are automatically derived from MEDLINE/PubMed and other sources, which might result in incorrect or missing publications. Faculty can login to make corrections and additions.
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    1. Bado I, Zhang XH. Senesce to Survive: YAP-Mediated Dormancy Escapes EGFR/MEK Inhibition. Cancer Cell. 2020 01 13; 37(1):1-2. PMID: 31951560.
      View in: PubMed
    2. Wang H, Zhang W, Bado I, Zhang XH. Erratum: Bone Tropism in Cancer Metastases. Cold Spring Harb Perspect Med. 2019 Nov 01; 9(11). PMID: 31676496.
      View in: PubMed
    3. Wang H, Zhang W, Bado I, Zhang XH. Bone Tropism in Cancer Metastases. Cold Spring Harb Perspect Med. 2019 Oct 24. PMID: 31615871.
      View in: PubMed
    4. Kim IS, Gao Y, Welte T, Wang H, Liu J, Janghorban M, Sheng K, Niu Y, Goldstein A, Zhao N, Bado I, Lo HC, Toneff MJ, Nguyen T, Bu W, Jiang W, Arnold J, Gu F, He J, Jebakumar D, Walker K, Li Y, Mo Q, Westbrook TF, Zong C, Rao A, Sreekumar A, Rosen JM, Zhang XH. Immuno-subtyping of breast cancer reveals distinct myeloid cell profiles and immunotherapy resistance mechanisms. Nat Cell Biol. 2019 09; 21(9):1113-1126. PMID: 31451770.
      View in: PubMed
    5. Gao Y, Bado I, Wang H, Zhang W, Rosen JM, Zhang XH. Metastasis Organotropism: Redefining the Congenial Soil. Dev Cell. 2019 05 06; 49(3):375-391. PMID: 31063756.
      View in: PubMed
    6. Zhang W, Bado I, Wang H, Lo HC, Zhang XH. Bone Metastasis: Find Your Niche and Fit in. Trends Cancer. 2019 02; 5(2):95-110. PMID: 30755309.
      View in: PubMed
    7. Wang H, Tian L, Liu J, Goldstein A, Bado I, Zhang W, Arenkiel BR, Li Z, Yang M, Du S, Zhao H, Rowley DR, Wong STC, Gugala Z, Zhang XH. The Osteogenic Niche Is a Calcium Reservoir of Bone Micrometastases and Confers Unexpected Therapeutic Vulnerability. Cancer Cell. 2018 11 12; 34(5):823-839.e7. PMID: 30423299.
      View in: PubMed
    8. Bado I, Pham E, Soibam B, Nikolos F, Gustafsson JÅ, Thomas C. ERß alters the chemosensitivity of luminal breast cancer cells by regulating p53 function. Oncotarget. 2018 Apr 27; 9(32):22509-22522. PMID: 29854295.
      View in: PubMed
    9. Nikolos F, Thomas C, Bado I, Gustafsson JÅ. ERß Sensitizes NSCLC to Chemotherapy by Regulating DNA Damage Response. Mol Cancer Res. 2018 02; 16(2):233-242. PMID: 29117942.
      View in: PubMed
    10. Bado I, Nikolos F, Rajapaksa G, Wu W, Castaneda J, Krishnamurthy S, Webb P, Gustafsson JÅ, Thomas C. Somatic loss of estrogen receptor beta and p53 synergize to induce breast tumorigenesis. Breast Cancer Res. 2017 Jul 03; 19(1):79. PMID: 28673316.
      View in: PubMed
    11. Bado I, Gugala Z, Fuqua SAW, Zhang XH. Estrogen receptors in breast and bone: from virtue of remodeling to vileness of metastasis. Oncogene. 2017 08 10; 36(32):4527-4537. PMID: 28368409.
      View in: PubMed
    12. Bado I, Nikolos F, Rajapaksa G, Gustafsson JÅ, Thomas C. ERß decreases the invasiveness of triple-negative breast cancer cells by regulating mutant p53 oncogenic function. Oncotarget. 2016 Mar 22; 7(12):13599-611. PMID: 26871946.
      View in: PubMed
    13. Rajapaksa G, Nikolos F, Bado I, Clarke R, Gustafsson JÅ, Thomas C. ERß decreases breast cancer cell survival by regulating the IRE1/XBP-1 pathway. Oncogene. 2015 Jul 30; 34(31):4130-41. PMID: 25347741.
      View in: PubMed
    14. Nikolos F, Thomas C, Rajapaksa G, Bado I, Gustafsson JÅ. ERß regulates NSCLC phenotypes by controlling oncogenic RAS signaling. Mol Cancer Res. 2014 Jun; 12(6):843-54. PMID: 24618619.
      View in: PubMed
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