scholarly article | Q13442814 |
P2093 | author name string | P P Dwivedi | |
A Dongari-Bagtzoglou | |||
S Mallya | |||
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The cell proliferation-associated antigen of antibody Ki-67: a very large, ubiquitous nuclear protein with numerous repeated elements, representing a new kind of cell cycle-maintaining proteins | Q28118875 | ||
A cell cycle regulator potentially involved in genesis of many tumor types | Q28251933 | ||
Xeroderma pigmentosum group A gene action as a protection factor against 4-nitroquinoline 1-oxide-induced tongue carcinogenesis | Q30985176 | ||
Pseudomonas-Candida interactions: an ecological role for virulence factors | Q34134632 | ||
The hamster model of sequential oral oncogenesis | Q34722312 | ||
Development of an orogastrointestinal mucosal model of candidiasis with dissemination to visceral organs | Q34973812 | ||
Smoking-related DNA and protein adducts in human tissues. | Q35036715 | ||
Oral carriage of Candida albicans in murine AIDS. | Q35567366 | ||
Murine model of concurrent oral and vaginal Candida albicans colonization to study epithelial host-pathogen interactions. | Q35624490 | ||
Harvey ras (H-ras) point mutations are induced by 4-nitroquinoline-1-oxide in murine oral squamous epithelia, while squamous cell carcinomas and loss of heterozygosity occur without additional exposure | Q72710380 | ||
4NQO carcinogenesis: a mouse model of oral cavity squamous cell carcinoma | Q72805782 | ||
Invited commentary: more evidence of increased risks of cancer among alcohol drinkers | Q73249808 | ||
Overexpression of p16(INK4A) as a specific marker for dysplastic and neoplastic epithelial cells of the cervix uteri | Q73721770 | ||
Essential role of the Candida albicans transglutaminase substrate, hyphal wall protein 1, in lethal oroesophageal candidiasis in immunodeficient mice | Q77691325 | ||
Expression of p53, bcl-2, and Ki-67 proteins in the inflammatory regenerative and dysplastic epithelial lesions of flat colonic mucosa | Q82805538 | ||
Effect of oral bacteria on growth and survival of Candida albicans biofilms | Q83167930 | ||
Candida in oral leukoplakias. A histologic and exfoliative cytologic study | Q93692325 | ||
Leukoplakia and oral cancer | Q35665084 | ||
Reduced levels of the cell-cycle inhibitor p27Kip1 in epithelial dysplasia and carcinoma of the oral cavity. | Q35763759 | ||
Animal models in the analysis of Candida host-pathogen interactions | Q35853291 | ||
Sequence effect on incision by (A)BC excinuclease of 4NQO adducts and UV photoproducts | Q35911517 | ||
Oral mycoses in HIV infection. | Q35922308 | ||
Colonization of congenitally athymic, gnotobiotic mice by Candida albicans | Q36678376 | ||
Gastrointestinal colonization and systemic dissemination by Candida albicans and Candida tropicalis in intact and immunocompromised mice | Q36971624 | ||
Mucosal and systemic candidiasis in congenitally immunodeficient mice | Q36980053 | ||
Oral yeast infections in immunocompromised and seriously diseased patients | Q37911956 | ||
Overexpression of p16INK4 is a reliable marker of human papillomavirus-induced oral high-grade squamous dysplasia | Q38437021 | ||
Oral cavity and esophageal carcinogenesis modeled in carcinogen-treated mice | Q38480535 | ||
New model of oropharyngeal candidiasis in mice | Q39478875 | ||
Serological Diagnosis of Candidal Infections | Q39951916 | ||
Correlates of cell-mediated immunity in Candida albicans-colonized gnotobiotic mice | Q40153154 | ||
Fungal infection and fever of unknown origin in neutropenic patients | Q40807959 | ||
Colonization of the intestinal tract of conventional mice with Candida albicans and treatment with antifungal agents | Q40946485 | ||
Review article: The role of oncogenes, tumour suppressor genes and growth factors in oral squamous cell carcinoma: a case of apoptosis versus proliferation. | Q40973144 | ||
Cyclin kinase inhibitors add a new dimension to cell cycle control | Q41030960 | ||
Oral candidal populations in health and disease | Q41154889 | ||
Oral pathoses caused by Candida albicans during chemotherapy: update on development mechanisms | Q41157034 | ||
Cell cycle regulatory proteins--an overview with relevance to oral cancer | Q41539720 | ||
Relationship between carcinogenicity and in vitro metabolism of nitrosomethylethylamine, nitrosomethyl-N-butylamine, and nitrosomethyl-(2-phenylethyl)amine labeled with deuterium in the methyl and alpha-methylene positions | Q42263691 | ||
Increase inCandida kruseiInfection among Patients with Bone Marrow Transplantation and Neutropenia Treated Prophylactically with Fluconazole | Q43543160 | ||
Denture stomatitis in the elderly | Q43774621 | ||
Lethality of Candida strains as influenced by the host | Q43787896 | ||
Fungemia in a cancer hospital: changing frequency, earlier onset, and results of therapy | Q43988777 | ||
Yeast species and biotypes associated with oral leukoplakia and lichen planus | Q44818575 | ||
Tetracycline and the colonization and infection of the mouths of germ-free and conventionalized rats with Candida albicans | Q44838909 | ||
Systemic candidiasis in cancer patients | Q44986482 | ||
Occurrence of candida in oral leukoplakias | Q45125766 | ||
4NQO oral carcinogenesis: animal models, molecular markers and future expectations | Q46405874 | ||
The microflora associated with human oral carcinomas | Q48351090 | ||
[Expression of p53 and Ki-67 genes in epithelial dysplasia from old oral mucosa and clinical significance]. | Q53353292 | ||
Quantitative trait loci affecting 4-nitroquinoline 1-oxide-induced tongue carcinogenesis in the rat. | Q53435230 | ||
Topical application of a corticosteroid destabilizes the host-parasite relationship in an experimental model of the oral carrier state ofCandida albicans | Q54179609 | ||
Experimental induction of oral squamous cell carcinomas in mice with 4-nitroquinolone-1-oxide. | Q54475234 | ||
Relative genotoxic activities of pesticides evaluated by a modified SOS microplate assay. | Q54620279 | ||
Impact of antifungal treatment on Candida–Pseudomonas interaction: a preliminary retrospective case–control study | Q59412839 | ||
Oral yeast carriage correlates with presence of oral epithelial dysplasia | Q62898608 | ||
The N2-guanine adduct but not the C8-guanine or N6-adenine adducts formed by 4-nitroquinoline 1-oxide blocks the 3'-5' exonuclease action of T4 DNA polymerase | Q67285508 | ||
Candida albicans as a promoter of oral mucosal neoplasia | Q68126744 | ||
The presence of Candida in 723 oral leukoplakias among Indian villagers | Q68994090 | ||
Pathologic features in the human alimentary tract associated with invasiveness of Candida tropicalis | Q70024283 | ||
Initiation and promotion of experimental oral mucosal carcinogenesis in mice | Q70276127 | ||
Opportunistic fungal infections in patients with neoplastic disease | Q70329865 | ||
Comparison of a lesion-inducing isolate and a non-lesional isolate of Candida albicans in an immunosuppressed rat model of oral candidiasis | Q71631439 | ||
The prevalence and intra-oral distribution of Candida albicans in man | Q72147639 | ||
P433 | issue | 2 | |
P921 | main subject | Candida albicans | Q310443 |
oral epithelial dysplasia | Q107118060 | ||
murine model | Q122890741 | ||
P304 | page(s) | 157-167 | |
P577 | publication date | 2008-06-10 | |
P1433 | published in | Medical Mycology | Q6806389 |
P1476 | title | A novel immunocompetent murine model for Candida albicans-promoted oral epithelial dysplasia | |
P478 | volume | 47 |