1 391 177 AN INTRODUCTION TO THE MATHEMATICAL MODELING IN THE STUDY OF CANCER SYSTEMS BIOLOGY. BACKGROUND: FREQUENTLY OCCURRING IN CANCER ARE THE ABERRANT ALTERATIONS OF REGULATORY ONCO-METABOLITES, VARIOUS ONCOGENES/EPIGENETIC STOCHASTICITY, AND SUPPRESSOR GENES, AS WELL AS THE DEFICIENT MISMATCH REPAIR MECHANISM, CHRONIC INFLAMMATION, OR THOSE DEVIATIONS BELONGING TO THE OTHER CANCER CHARACTERISTICS. HOW THESE ABERRATIONS THAT EVOLVE OVERTIME DETERMINE THE GLOBAL PHENOTYPE OF MALIGNANT TUMORS REMAINS TO BE COMPLETELY UNDERSTOOD. DYNAMIC ANALYSIS MAY HAVE POTENTIAL TO REVEAL THE MECHANISM OF CARCINOGENESIS AND CAN OFFER NEW THERAPEUTIC INTERVENTION. AIMS: WE INTRODUCE SIMPLIFIED MATHEMATICAL TOOLS TO MODEL SERIAL QUANTITATIVE DATA OF CANCER BIOMARKERS. WE ALSO HIGHLIGHT AN INTRODUCTORY OVERVIEW OF MATHEMATICAL TOOLS AND MODELS AS THEY APPLY FROM THE VIEWPOINT OF KNOWN CANCER FEATURES. METHODS: MATHEMATICAL MODELING OF POTENTIALLY ACTIONABLE GENOMIC PRODUCTS AND HOW THEY PROCEED OVERTIME DURING TUMORIGENESIS ARE EXPLORED. THIS REPORT IS INTENDED TO BE INSTINCTIVE WITHOUT BEING OVERLY TECHNICAL. RESULTS: TO DATE, MANY MATHEMATICAL MODELS OF THE COMMON FEATURES OF CANCER HAVE BEEN DEVELOPED. HOWEVER, THE DYNAMIC OF INTEGRATED HETEROGENEOUS PROCESSES AND THEIR CROSS TALKS RELATED TO CARCINOGENESIS REMAINS TO BE RESOLVED. CONCLUSIONS: IN CANCER RESEARCH, OUTLINING MATHEMATICAL MODELING OF EXPERIMENTALLY OBTAINED DATA SNAPSHOTS OF MOLECULAR SPECIES MAY PROVIDE INSIGHTS INTO A BETTER UNDERSTANDING OF THE MULTIPLE BIOCHEMICAL CIRCUITS. RECENT DISCOVERIES HAVE PROVIDED SUPPORT FOR THE EXISTENCE OF COMPLEX CANCER PROGRESSION IN DYNAMICS THAT SPAN FROM A SIMPLE 1-DIMENSIONAL DETERMINISTIC SYSTEM TO A STOCHASTIC (IE, PROBABILISTIC) OR TO AN OSCILLATORY AND MULTISTABLE NETWORKS. FURTHER RESEARCH IN MATHEMATICAL MODELING OF CANCER PROGRESSION, BASED ON THE EVOLVING MOLECULAR KINETICS (TIME SERIES), COULD INFORM A SPECIFIC AND A PREDICTIVE BEHAVIOR ABOUT THE GLOBAL SYSTEMS BIOLOGY OF VULNERABLE TUMOR CELLS IN THEIR EARLIER STAGES OF ONCOGENESIS. ON THIS FOOTING, NEW PREVENTIVE MEASURES AND ANTICANCER THERAPY COULD THEN BE CONSTRUCTED. 2018 2 4429 40 MOLECULAR BIOLOGY AS A TOOL FOR THE TREATMENT OF CANCER. CANCER IS A GENETIC DISEASE CHARACTERIZED BY UNCONTROLLED CELL GROWTH AND METASTASIS. CANCER CAN HAVE A NUMBER OF CAUSES, SUCH THE ACTIVATION OF ONCOGENES, THE INACTIVATION OF TUMOR-SUPPRESSING GENES, MUTAGENESIS PROVOKED BY EXTERNAL FACTORS, AND EPIGENETIC MODIFICATIONS. THE DEVELOPMENT OF DIAGNOSTIC TOOLS AND TREATMENTS USING A MOLECULAR BIOLOGICAL APPROACH PERMITS THE USE OF SENSITIVE, LOW-COST, NONINVASIVE TESTS FOR CANCER PATIENTS. BIOMARKERS CAN BE USED TO PROVIDE RAPID, PERSONALIZED ONCOLOGY, IN PARTICULAR THE MOLECULAR DIAGNOSIS OF CHRONIC MYELOID LEUKEMIA, AND GASTRIC, COLON, AND BREAST CANCERS. MOLECULAR TESTS BASED ON DNA METHYLATION CAN ALSO BE USED TO DIRECT TREATMENTS OR EVALUATE THE TOXIC EFFECTS OF CHEMOTHERAPY. THE ADEQUATE DIAGNOSIS, PROGNOSIS, AND PREDICTION OF THE RESPONSE OF CANCER PATIENTS TO TREATMENT ARE ESSENTIAL TO ENSURE THE MOST EFFECTIVE THERAPY, REDUCE THE DAMAGING EFFECTS OF TREATMENT, AND DIRECT THE THERAPY TO SPECIFIC TARGETS, AND IN THIS CONTEXT, MOLECULAR BIOLOGY HAS BECOME INCREASINGLY IMPORTANT IN ONCOLOGY. IN THIS BRIEF REVIEW, WE WILL DEMONSTRATE THE FUNDAMENTAL IMPORTANCE OF MOLECULAR BIOLOGY FOR THE TREATMENT OF THREE TYPES OF CANCER-CHRONIC MYELOID LEUKEMIA, HEREDITARY DIFFUSE GASTRIC CANCER, AND ASTROCYTOMAS (SPORADIC TUMORS OF THE CENTRAL NERVOUS SYSTEM). IN EACH OF THESE THREE MODELS, DISTINCT BIOLOGICAL MECHANISMS ARE INVOLVED IN THE TRANSFORMATION OF THE CELLS, BUT IN ALL CASES, MOLECULAR BIOLOGY IS FUNDAMENTAL TO THE DEVELOPMENT OF PERSONALIZED ANALYSES FOR EACH PATIENT AND EACH TYPE OF NEOPLASIA, AND TO GUARANTEE THE SUCCESS OF THE TREATMENT. 2018 3 3110 46 GENOTYPE- OR PHENOTYPE-TARGETING ANTICANCER THERAPIES? LESSONS FROM TUMOR EVOLUTIONARY BIOLOGY. DESPITE THE EFFICACY OF MOST CANCER THERAPIES, DRUG RESISTANCE REMAINS A MAJOR PROBLEM IN THE CLINIC. THE ERADICATION OF THE ENTIRE TUMOR AND THE CURE OF THE PATIENT BY CHEMOTHERAPY ALONE ARE RARE, IN PARTICULAR FOR ADVANCED DISEASE. FROM AN EVOLUTIONARY PERSPECTIVE, THE SELECTIVE PRESSURE EXERTED BY CHEMOTHERAPY LEADS TO THE EMERGENCE OF RESISTANT CLONES WHERE RESISTANCE CAN BE ASSOCIATED WITH MANY DIFFERENT FUNCTIONAL MECHANISMS AT THE SINGLE CELL LEVEL OR CAN INVOLVE CHANGES IN THE TUMOR MICRO-ENVIRONMENT. IN THE LAST DECADE, TUMOR GENOMICS HAS CONTRIBUTED TO THE IMPROVEMENT OF OUR UNDERSTANDING OF TUMORIGENESIS AND HAS LED TO THE IDENTIFICATION OF NUMEROUS CELLULAR TARGETS FOR THE DEVELOPMENT OF NOVEL THERAPIES. HOWEVER, SINCE TUMORS ARE BY NATURE EXTREMELY HETEROGENEOUS, THE DRUG EFFICACY AND ECONOMICAL SUSTAINABILITY OF THIS APPROACH IS NOW DEBATABLE. IMPORTANTLY, TUMOR CELL HETEROGENEITY DEPENDS NOT ONLY ON GENETIC MODIFICATIONS BUT ALSO ON NON-GENETIC PROCESSES INVOLVING EITHER STOCHASTIC EVENTS OR EPIGENETIC MODIFICATIONS MAKING GENETIC BIOMARKERS OF UNCERTAIN UTILITY. IN THIS REVIEW, WE WISH TO HIGHLIGHT HOW EVOLUTIONARY BIOLOGY CAN IMPACT OUR UNDERSTANDING OF CARCINOGENESIS AND RESISTANCE TO THERAPIES. WE WILL DISCUSS NEW APPROACHES BASED ON APPLIED ECOLOGY AND EVOLUTION DYNAMICS THAT CAN BE USED TO CONVERT THE CANCER INTO A CHRONIC DISEASE WHERE THE DRUGS WOULD CONTROL TUMOR GROWTH. FINALLY, WE WILL DISCUSS THE WAY METABOLIC DYSFUNCTION OR PHENOTYPIC CHANGES CAN HELP DEVELOPING NEW DELIVERY SYSTEMS OR PHENOTYPETARGETED DRUGS AND HOW EXPLORING NEW SOURCES OF ACTIVE COMPOUNDS CAN CONDUCT TO THE DEVELOPMENT OF DRUGS WITH ORIGINAL MECHANISMS OF ACTION. 2016 4 82 44 A NON-GENETIC BASIS FOR CANCER PROGRESSION AND METASTASIS: SELF-ORGANIZING ATTRACTORS IN CELL REGULATORY NETWORKS. IT IS COMMONLY ASSUMED THAT SOMATIC EVOLUTION DRIVES THE MULTI-STEP PROCESS THAT PRODUCES METASTATIC CANCER. BUT IT IS DIFFICULT TO RECONCILE THE INEXORABLE PROGRESSION TOWARDS METASTASIS IN VIRTUALLY ALL CARCINOMAS AND THE ASSOCIATED COMPLEX CHANGE OF CANCER CELL PHENOTYPE, CHARACTERIZED BY AN EPITHELIAL-TO-MESENCHYMAL TRANSITION, WITH THE RANDOM NATURE OF GENE MUTATIONS. GIVEN THEIR IRREVERSIBLE NATURE, IT IS ALSO DIFFICULT TO EXPLAIN WHY CERTAIN METASTATIC CARCINOMAS CAN REFORM NORMAL TISSUE BOUNDARIES AND REMAIN DORMANT FOR YEARS AT DISTANT SITES. HERE WE PROPOSE AN ENCOMPASSING CONCEPTUAL FRAMEWORK BASED ON SYSTEM-LEVEL DYNAMICS OF GENE REGULATORY NETWORKS THAT MAY HELP RECONCILE THESE INCONSISTENCIES. THE CONCEPTS OF GENE EXPRESSION STATE SPACE AND ATTRACTORS ARE INTRODUCED WHICH PROVIDE A MATHEMATICAL AND MOLECULAR BASIS FOR AN "EPIGENETIC LANDSCAPE". WE THEN DESCRIBE HOW CANCER CELLS ARE TRAPPED IN "EMBRYONIC ATTRACTORS" BECAUSE OF DISTORTIONS OF THIS LANDSCAPE CAUSED BY MUTATIONAL REWIRING OF THE REGULATORY NETWORK. THE IMPLICATIONS OF THIS CONCEPT FOR A NEW INTEGRATIVE UNDERSTANDING OF TUMOR FORMATION AND METASTATIC PROGRESSION ARE DISCUSSED. THIS FORMAL FRAMEWORK OF CANCER PROGRESSION UNITES MAINSTREAM GENETIC DETERMINISM WITH ALTERNATIVE IDEAS THAT EMPHASIZE NON-GENETIC INFLUENCES, INCLUDING CHRONIC GROWTH STIMULATION,EXTRACELLULAR MATRIX REMODELING, ALTERATION OF CELL MECHANICS AND DISRUPTION OF TISSUE ARCHITECTURE. 2006 5 6031 30 THE CANCER EPIGENOME: ITS ORIGINS, CONTRIBUTIONS TO TUMORIGENESIS, AND TRANSLATIONAL IMPLICATIONS. EPIGENETIC ABNORMALITIES IN LUNG AND OTHER CANCERS CONTINUE TO BE DEFINED AT A RAPID PACE. WE ARE COMING TO APPRECIATE THAT CANCERS HAVE AN "EPIGENETIC LANDSCAPE" WHEREIN GENES VULNERABLE TO ABNORMALITIES, SUCH AS PROMOTER DNA HYPERMETHYLATION AND ASSOCIATED GENE SILENCING, TEND TO RESIDE IN DEFINED NUCLEAR POSITIONS AND CHROMOSOME DOMAINS AND RELATIONSHIPS TO CHROMATIN REGULATION, WHICH FACILITATES STATES OF STEM CELL RENEWAL. THESE SAME GENES AND DOMAINS ARE ALSO VULNERABLE TO EPIGENETIC ABNORMALITIES INDUCED BY FACTORS TO WHICH CELLS ARE EXPOSED DURING CANCER RISK STATES, SUCH AS CHRONIC INFLAMMATION. WE CAN USE ALL OF THIS BASIC INFORMATION FOR TRANSLATIONAL PURPOSES IN TERMS OF DERIVING BIOMARKERS FOR CANCER RISK STATES AND DETECTION AND THERAPEUTIC STRATEGIES. 2012 6 1958 36 EPIGENETIC AGING AND COLORECTAL CANCER: STATE OF THE ART AND PERSPECTIVES FOR FUTURE RESEARCH. ALTHOUGH TRANSLATIONAL RESEARCH HAS IDENTIFIED A LARGE NUMBER OF POTENTIAL BIOMARKERS INVOLVED IN COLORECTAL CANCER (CRC) CARCINOGENESIS, A BETTER UNDERSTANDING OF THE MOLECULAR PATHWAYS ASSOCIATED WITH BIOLOGICAL AGING IN COLORECTAL CELLS AND TISSUES IS NEEDED. HERE, WE AIM TO SUMMARIZE THE STATE OF THE ART ABOUT THE ROLE OF AGE ACCELERATION, DEFINED AS THE DIFFERENCE BETWEEN EPIGENETIC AGE AND CHRONOLOGICAL AGE, IN THE DEVELOPMENT AND PROGRESSION OF CRC. SOME STUDIES HAVE SHOWN THAT ACCELERATED BIOLOGICAL AGING IS POSITIVELY ASSOCIATED WITH THE RISK OF CANCER AND DEATH IN GENERAL. IN LINE WITH THESE FINDINGS, OTHER STUDIES HAVE SHOWN HOW THE ASSESSMENT OF EPIGENETIC AGE IN PEOPLE AT RISK FOR CRC COULD BE HELPFUL FOR MONITORING THE MOLECULAR RESPONSE TO PREVENTIVE INTERVENTIONS. MOREOVER, IT WOULD BE INTERESTING TO INVESTIGATE WHETHER ABERRANT EPIGENETIC AGING COULD HELP IDENTIFY CRC PATIENTS WITH A HIGH RISK OF RECURRENCE AND A WORST PROGNOSIS, AS WELL AS THOSE WHO RESPOND POORLY TO TREATMENT. YET, THE APPLICATION OF THIS NOVEL CONCEPT IS STILL IN ITS INFANCY, AND FURTHER RESEARCH SHOULD BE ENCOURAGED IN ANTICIPATION OF FUTURE APPLICATIONS IN CLINICAL PRACTICE. 2020 7 5913 34 TARGETED THERAPY IN LEUKEMIA. RESEARCH CONDUCTED OVER THE LAST TWO DECADES HAS YIELDED A DETAILED UNDERSTANDING OF THE MOLECULAR LESIONS THAT CONTRIBUTE TO THE MALIGNANT TRANSFORMATION OF HEMATOPOIETIC STEM CELLS AND COMMITTED PROGENITORS INTO THE VARIOUS FORMS OF ACUTE AND CHRONIC LEUKEMIA. ALTHOUGH OUR UNDERSTANDING OF THE MOLECULAR PATHOLOGY OF LEUKEMIA REMAINS INCOMPLETE, THE INFORMATION GAINED TO DATE HAS HAD A PROFOUND IMPACT ON THE WAY THESE MALIGNANCIES ARE BOTH DIAGNOSED AND MONITORED DURING THERAPY. MORE RECENTLY, TARGETED THERAPIES HAVE BEEN DEVELOPED AGAINST SOME OF THE IDENTIFIED GENETIC LESIONS. THESE THERAPIES HAVE LED TO SIGNIFICANT IMPROVEMENTS IN PATIENT OUTCOMES WHILE SIMULTANEOUSLY DECREASING THERAPY-RELATED TOXICITY. WITH THE ADVENT OF GENOME-WIDE METHODS TO DEFINE THE TOTAL COMPLEMENT OF GENETIC AND EPIGENETIC LESIONS INVOLVED IN LEUKEMOGENESIS, NEW TARGETED THERAPIES CAN BE ANTICIPATED. THIS REVIEW HIGHLIGHTS SOME OF THE TARGETED THERAPIES THAT ARE PRESENTLY BEING USED TO TREAT HEMATOPOIETIC MALIGNANCIES AND DESCRIBES SOME OF THE RECENT ADVANCES THAT SHOULD HAVE A SIGNIFICANT IMPACT ON THE DEVELOPMENT OF FUTURE TARGET THERAPIES. 2008 8 1522 41 DNA METHYLATION CHANGE PROFILING OF COLORECTAL DISEASE: SCREENING TOWARDS CLINICAL USE. COLON CANCER REMAINS ONE OF THE LEADING CAUSES OF CANCER-RELATED DEATHS WORLDWIDE. TRANSFORMATION OF COLON EPITHELIAL CELLS INTO INVASIVE ADENOCARCINOMAS HAS BEEN WELL KNOWN TO BE DUE TO THE ACCUMULATION OF MULTIPLE GENETIC AND EPIGENETIC CHANGES. IN THE PAST DECADE, THE ETIOLOGY OF INFLAMMATORY BOWEL DISEASE (IBD) WHICH IS CHARACTERIZED BY CHRONIC INFLAMMATION OF THE INTESTINAL MUCOSA, WAS ONLY PARTIALLY EXPLAINED BY GENETIC STUDIES PROVIDING SUSCEPTIBILITY LOCI, BUT RECENTLY EPIGENETIC STUDIES HAVE PROVIDED CRITICAL EVIDENCES AFFECTING IBD PATHOGENESIS. OVER THE PAST DECADE, A DEEP UNDERSTANDING OF EPIGENETICS ALONG WITH TECHNOLOGICAL ADVANCES HAVE LED TO IDENTIFYING NUMEROUS GENES THAT ARE REGULATED BY PROMOTER DNA HYPERMETHYLATION IN COLORECTAL DISEASES. RECENT ADVANCES IN OUR UNDERSTANDING OF THE ROLE OF DNA METHYLATION IN COLORECTAL DISEASES COULD IMPROVE A MULTITUDE OF POWERFUL DNA METHYLATION-BASED BIOMARKERS, PARTICULARLY FOR USE AS DIAGNOSIS, PROGNOSIS, AND PREDICTION FOR THERAPEUTIC APPROACHES. THIS REVIEW FOCUSES ON THE EMERGING POTENTIAL FOR TRANSLATIONAL RESEARCH OF EPIGENETIC ALTERATIONS INTO CLINICAL UTILITY AS MOLECULAR BIOMARKERS. MOREOVER, THIS REVIEW DISCUSSES RECENT PROGRESS REGARDING THE IDENTIFICATION OF UNKNOWN HYPERMETHYLATED GENES IN COLON CANCERS AND IBD, AS WELL AS THEIR POSSIBLE ROLE IN CLINICAL PRACTICE, WHICH WILL HAVE IMPORTANT CLINICAL SIGNIFICANCE, PARTICULARLY IN THE ERA OF THE PERSONALIZED MEDICINE. 2021 9 3697 37 INFLAMMATORY MARKERS IN CANCER: POTENTIAL RESOURCES. CANCER IS A LEADING CAUSE OF DEATH WORLDWIDE AND A MAJOR BURDEN ON DEVELOPING AND LESS DEVELOPED COUNTRIES OF THE WORLD WITH LIMITED RESOURCES FOR PREVENTION AND EFFECTIVE TREATMENT OF CANCER. ALTHOUGH CANCER IS MULTIFACTORIAL IN ORIGIN, VARIOUS EPIDEMIOLOGICAL AND EXPERIMENTAL STUDIES SUGGEST THAT CHRONIC INFLAMMATION HAS AN IMPORTANT ROLE IN ALL STAGES OF CANCER, FROM INITIATION TO PROGRESSION AND EVEN SURVIVAL OF THE PATIENT. INFLAMMATORY PRODUCTS LIKE CYTOKINES, CHEMOKINES, LEUCOCYTES, PROSTAGLANDINS, CYCLOOXYGENASE, REACTIVE OXYGEN AND NITROGEN SPECIES, METALLOPROTEINASE INDUCE GENETIC AND EPIGENETIC CHANGES IN NORMAL CELLS DAMAGING ITS DNA, INHIBITING ITS REPAIR, ALTERING TRANSCRIPTION FACTORS, PREVENTING APOPTOSIS, AND STIMULATING ANGIOGENESIS, AND THUS RESULTING IN CARCINOGENESIS. THUS, THESE INFLAMMATORY MEDIATORS HAVE A POTENTIAL ROLE TO BECOME CANCER BIOMARKERS FOR ALL STAGES OF CANCER AS MANY OF THEM CAN BE MEASURED IN A COST-EFFECTIVE MANNER. HOWEVER, LARGE SCALE PROSPECTIVE TRIALS ARE REQUIRED TO VALIDATE THESE POTENTIAL CANCER BIOMARKERS. NONETHELESS, A TRANSITION FROM POTENTIAL TO PRACTICAL UTILIZATION OF THESE MARKERS WILL BE AN EFFECTIVE TOOL FOR THE AMELIORATION OF CANCER BURDEN AND MORTALITY IN A RESOURCE LIMITED SETTING. 2020 10 5290 30 PROSTATE CANCER PREVENTION: AGENT DEVELOPMENT STRATEGIES. DESPITE ADVANCES IN SURGERY, RADIATION, AND MEDICAL THERAPY OVER THE PAST DECADE AND THE WIDESPREAD ADOPTION OF PSA SCREENING, PROSTATE CANCER CONTINUES TO BE THE SECOND LEADING CAUSE OF CANCER DEATH IN MEN IN THE UNITED STATES. INVASIVE CANCER IS THE END RESULT OF CARCINOGENESIS, A CHRONIC PROCESS OCCURRING OVER MANY YEARS DRIVEN BY GENETIC AND EPIGENETIC ALTERATIONS. THE PROTRACTED NATURE OF THIS TRANSFORMATION TO THE MALIGNANT PHENOTYPE PROVIDES AN OPPORTUNITY TO INTERVENE PHARMACOLOGICALLY TO PREVENT, REVERSE, OR DELAY CARCINOGENESIS, I.E. CHEMOPREVENTION. HEREIN, WE DESCRIBE THE UNIQUE FEATURES OF CANCER PREVENTION, AS OPPOSED TO CANCER TREATMENT, AGENT DEVELOPMENT CLINICAL TRIALS, AND PROVIDE A SUMMARY OF THE ONGOING RESEARCH IN THIS FIELD BEING SUPPORTED BY THE NATIONAL CANCER INSTITUTE. 2014 11 3038 36 GENOME ENGINEERING FOR OSTEOARTHRITIS: FROM DESIGNER CELLS TO DISEASE-MODIFYING DRUGS. BACKGROUND: OSTEOARTHRITIS (OA) IS A HIGHLY PREVALENT DEGENERATIVE JOINT DISEASE INVOLVING JOINT CARTILAGE AND ITS SURROUNDING TISSUES. OA IS THE LEADING CAUSE OF PAIN AND DISABILITY WORLDWIDE. AT PRESENT, THERE ARE NO DISEASE-MODIFYING OA DRUGS, AND THE PRIMARY THERAPIES INCLUDE EXERCISE AND NONSTEROIDAL ANTI-INFLAMMATORY DRUGS UNTIL TOTAL JOINT REPLACEMENT AT THE END-STAGE OF THE DISEASE. METHODS: IN THIS REVIEW, WE SUMMARIZED THE CURRENT STATE OF KNOWLEDGE IN GENETIC AND EPIGENETIC ASSOCIATIONS AND RISK FACTORS FOR OA AND THEIR POTENTIAL DIAGNOSTIC AND THERAPEUTIC APPLICATIONS. RESULTS: GENOME-WIDE ASSOCIATION STUDIES AND ANALYSIS OF EPIGENETIC MODIFICATIONS (SUCH AS MIRNA EXPRESSION, DNA METHYLATION AND HISTONE MODIFICATIONS) CONDUCTED ACROSS VARIOUS POPULATIONS SUPPORT THE NOTION THAT THERE IS A GENETIC BASIS FOR CERTAIN SUBSETS OF OA PATHOGENESIS. CONCLUSION: WITH RECENT ADVANCES IN THE DEVELOPMENT OF GENOME EDITING TECHNOLOGIES SUCH AS THE CRISPR-CAS9 SYSTEM, THESE GENETIC AND EPIGENETIC ALTERNATIONS IN OA CAN BE USED AS PLATFORMS FROM WHICH POTENTIAL BIOMARKERS FOR THE DIAGNOSIS, PROGNOSIS, DRUG RESPONSE, AND DEVELOPMENT OF POTENTIAL PERSONALIZED THERAPEUTIC TARGETS FOR OA CAN BE APPROACHED. FURTHERMORE, GENOME EDITING HAS ALLOWED THE DEVELOPMENT OF "DESIGNER" CELLS, WHEREBY THE RECEPTORS, GENE REGULATORY NETWORKS, OR TRANSGENES CAN BE MODIFIED AS A BASIS FOR NEW CELL-BASED THERAPIES. 2019 12 1673 37 DRIVER GENE MUTATIONS AND EPIGENETICS IN COLORECTAL CANCER. OBJECTIVE: THE MAJORITY OF PATIENTS WITH COLORECTAL CANCER ARE DIAGNOSED WITH LOCALLY ADVANCED AND/OR DISSEMINATED DISEASE, AND TREATMENT OPTIONS INCLUDE SURGERY IN COMBINATION WITH CYTOTOXIC CHEMOTHERAPY REGIMENS, BIOLOGICS, AND/OR RADIOTHERAPY. THUS, COLORECTAL CANCER REMAINS A HEAVY BURDEN ON SOCIETY AND HEALTH CARE SYSTEMS.MOUNTING EVIDENCE SHOW THAT DRIVER GENE MUTATIONS PLAY ONLY PART OF THE ROLE IN CARCINOGENESIS. EPIGENETICS ARE STRONGLY IMPLICATED IN INITIATION AND PROGRESSION OF COLORECTAL CANCER ALONG WITH MAJOR PLAYERS SUCH AS INTESTINAL MICROBIOTIC DYSBIOSIS AND CHRONIC MUCOSAL INFLAMMATION.TO ASSESS PHENOTYPIC CHANGES IN PROTEINS AND GENE EXPRESSION, MULTIGENE EXPRESSION SIGNATURES BASED ON SEQUENCING TECHNIQUES HAVE BEEN DEVELOPED TO HOPEFULLY IMPROVE PREDICTORS OF THE TUMOR PROFILE, IMMUNE RESPONSE, AND THERAPEUTIC OUTCOMES. OUR OBJECTIVE WAS TO REVIEW CURRENT ADVANCES IN THE FIELD AND TO UPDATE SURGEONS AND ACADEMICS ON DRIVER GENE MUTATIONS AND EPIGENETICS IN COLORECTAL CANCER. BACKGROUND AND METHODS: THIS IS A NARRATIVE REVIEW STUDYING RELEVANT RESEARCH PUBLISHED IN THE PUBMED DATABASE FROM 2012-2018. RESULTS AND CONCLUSION: INCREASED UNDERSTANDING OF THE MOLECULAR BIOLOGY WILL IMPROVE OPTIONS TO CHARACTERIZE COLORECTAL CANCER WITH REGARD TO MUTATIONS AND MOLECULAR PATHWAYS, INCLUDING MICROSATELLITE INSTABILITY, EPIGENETICS, MICROBIOTA, AND MICROENVIRONMENT. RESEARCH WILL INEVITABLY IMPROVE RISK GROUP STRATIFICATION AND TARGETED TREATMENT APPROACHES.EPIGENETIC PROFILING AND EPIGENETIC MODULATING DRUGS WILL INCREASE RISK STRATIFICATION, INCREASE ACCESSIBILITY FOR DNA TARGETING CHEMOTHERAPEUTICS AND REDUCE CYTOTOXIC DRUG RESISTANCE.NEW GENERATION ANTIBIOTICS SUCH AS BIOFILM INHIBITORS AND QUORUM SENSING INHIBITORS ARE BEING DEVELOPED TO TARGET THE CARCINOGENETIC IMPACT OF COLONIC DYSBIOSIS AND INFLAMMATION. 2020 13 5742 30 SMOKING MOLECULAR DAMAGE IN BRONCHIAL EPITHELIUM. OUR UNDERSTANDING OF THE MOLECULAR PATHOLOGY OF LUNG CANCER IS ADVANCING RAPIDLY WITH SEVERAL SPECIFIC GENES AND CHROMOSOMAL REGIONS BEING IDENTIFIED. LUNG CANCER APPEARS TO REQUIRE MANY MUTATIONS IN BOTH DOMINANT AND RECESSIVE ONCOGENES TO POSSESS MALIGNANT PHENOTYPES. SEVERAL GENETIC AND EPIGENETIC CHANGES ARE COMMON TO ALL LUNG CANCER HISTOLOGIC TYPES, WHILE OTHERS APPEAR TO BE CELL TYPE SPECIFIC. HOWEVER, SPECIFIC ROLES OF THE GENES UNDERGOING MUTATIONS AND THE ORDER OF CUMULATIVE MOLECULAR CHANGES THAT LEAD TO THE DEVELOPMENT OF EACH LUNG TUMOR HISTOLOGIC TYPE REMAIN TO BE FULLY ELUCIDATED. RECENT FINDINGS OF MOLECULAR ABNORMALITIES IN NORMAL APPEARING AND PRENEOPLASTIC BRONCHIAL EPITHELIUM FROM PATIENTS WITH LUNG CANCER AND CHRONIC SMOKERS SUGGEST THAT GENETIC CHANGES MAY SERVE AS BIOMARKERS FOR EARLY DIAGNOSIS, RISK ASSESSMENT AND MONITORING RESPONSE TO CHEMOPREVENTION. 2002 14 186 33 ACCUMULATION OF GENETIC AND EPIGENETIC ALTERATIONS IN NORMAL CELLS AND CANCER RISK. CANCERS DEVELOP DUE TO THE ACCUMULATION OF GENETIC AND EPIGENETIC ALTERATIONS. GENETIC ALTERATIONS ARE INDUCED BY AGING, MUTAGENIC CHEMICALS, ULTRAVIOLET LIGHT, AND OTHER FACTORS; WHEREAS, EPIGENETIC ALTERATIONS ARE MAINLY BY AGING AND CHRONIC INFLAMMATION. THE ACCUMULATION AND PATTERNS OF ALTERATIONS IN NORMAL CELLS REFLECT OUR PAST EXPOSURE LEVELS AND LIFE HISTORY. MOST ACCUMULATED ALTERATIONS ARE CONSIDERED AS PASSENGERS, BUT THEIR ACCUMULATION IS CORRELATED WITH CANCER DRIVERS. THIS HAS BEEN SHOWN FOR ABERRANT DNA METHYLATION BUT HAS ONLY BEEN SPECULATED FOR GENETIC ALTERATIONS. HOWEVER, RECENT TECHNOLOGICAL ADVANCEMENTS HAVE ENABLED MEASUREMENT OF RARE POINT MUTATIONS, AND STUDIES HAVE SHOWN THAT THEIR ACCUMULATION LEVELS ARE INDEED CORRELATED WITH CANCER RISK. WHEN THE ACCUMULATION LEVELS OF ABERRANT DNA METHYLATION AND POINT MUTATIONS ARE COMBINED, RISK PREDICTION BECOMES EVEN MORE ACCURATE. WHEN HIGH LEVELS OF ALTERATIONS ACCUMULATE, THE TISSUE HAS A HIGH RISK OF DEVELOPING CANCER OR EVEN MULTIPLE CANCERS AND IS CONSIDERED AS A "CANCERIZATION FIELD", WITH OR WITHOUT EXPANSION OF PHYSIOLOGICAL PATCHES OF CLONAL CELLS. IN THIS REVIEW, WE DESCRIBE THE FORMATION OF A CANCERIZATION FIELD AND HOW WE CAN APPLY ITS DETECTION IN PRECISION CANCER RISK DIAGNOSIS. 2019 15 733 37 CANCER EPIGENETICS: LINKING BASIC BIOLOGY TO CLINICAL MEDICINE. CANCER EVOLUTION AT ALL STAGES IS DRIVEN BY BOTH EPIGENETIC ABNORMALITIES AS WELL AS GENETIC ALTERATIONS. DYSREGULATION OF EPIGENETIC CONTROL EVENTS MAY LEAD TO ABNORMAL PATTERNS OF DNA METHYLATION AND CHROMATIN CONFIGURATIONS, BOTH OF WHICH ARE CRITICAL CONTRIBUTORS TO THE PATHOGENESIS OF CANCER. THESE EPIGENETIC ABNORMALITIES ARE SET AND MAINTAINED BY MULTIPLE PROTEIN COMPLEXES AND THE INTERPLAY BETWEEN THEIR INDIVIDUAL COMPONENTS INCLUDING DNA METHYLATION MACHINERY, HISTONE MODIFIERS, PARTICULARLY, POLYCOMB (PCG) PROTEINS, AND CHROMATIN REMODELING PROTEINS. RECENT ADVANCES IN GENOME-WIDE TECHNOLOGY HAVE REVEALED THAT THE INVOLVEMENT OF THESE DYSREGULATED EPIGENETIC COMPONENTS APPEARS TO BE EXTENSIVE. MOREOVER, THERE IS A GROWING CONNECTION BETWEEN EPIGENETIC ABNORMALITIES IN CANCER AND CONCEPTS CONCERNING STEM-LIKE CELL SUBPOPULATIONS AS A DRIVING FORCE FOR CANCER. EMERGING DATA SUGGEST THAT ASPECTS OF THE EPIGENETIC LANDSCAPE INHERENT TO NORMAL EMBRYONIC AND ADULT STEM/PROGENITOR CELLS MAY HELP FOSTER, UNDER THE STRESS OF CHRONIC INFLAMMATION OR ACCUMULATING REACTIVE OXYGEN SPECIES, EVOLUTION OF MALIGNANT SUBPOPULATIONS. FINALLY, UNDERSTANDING MOLECULAR MECHANISMS INVOLVED IN INITIATION AND MAINTENANCE OF EPIGENETIC ABNORMALITIES IN ALL TYPES OF CANCER HAS GREAT POTENTIAL FOR TRANSLATIONAL PURPOSES. THIS IS ALREADY EVIDENT FOR EPIGENETIC BIOMARKER DEVELOPMENT, AND FOR PHARMACOLOGICAL TARGETING AIMED AT REVERSING CANCER-SPECIFIC EPIGENETIC ALTERATIONS. 2011 16 6809 32 [EPIGENETICS IN INFLAMMATORY SYSTEMIC DISEASES]. IN ADDITION TO ANALYSIS OF THE GENETIC CODE, IN RECENT YEARS MORE AND MORE STUDIES HAVE CONCENTRATED ON CHANGES IN THE EPIGENETIC CODE. EPIGENETIC MECHANISMS DETERMINE WHICH GENES IN A CELL ARE TRANSCRIBED AND THUS FORM THE PHENOTYPE OF A CELL. THE EPIGENETIC CODE CAN BE CHANGED BY ENVIRONMENTAL INFLUENCES, WHICH ALLOWS CELLS TO ADAPT TO LONGSTANDING CHANGES IN THE ENVIRONMENT. THEREFORE, IT IS FEASIBLE TO ASSUME THAT EPIGENETIC CHANGES ARE THE MOLECULAR BASIS FOR LONG-TERM EFFECTS OF THE ENVIRONMENT ON DISEASE DEVELOPMENT. IN PARTICULAR IN TUMORS AND CHRONIC INFLAMMATORY DISEASES EPIGENETIC CHANGES WERE FOUND TO CORRELATE WITH DISEASE SEVERITY AND PROGRESSION. KNOWLEDGE ABOUT THESE EPIGENETIC CHANGES MIGHT HELP THAT EPIGENETIC MODIFICATIONS CAN BE USED IN THE FUTURE AS BIOMARKERS, PROGNOSTIC FACTORS AND THERAPEUTIC TARGETS. 2014 17 6675 33 USING EPIGENETIC THERAPY TO OVERCOME CHEMOTHERAPY RESISTANCE. IT HAS BEEN KNOWN FOR DECADES THAT AS CANCER PROGRESSES, TUMORS DEVELOP GENETIC ALTERATIONS, MAKING THEM HIGHLY PRONE TO DEVELOPING RESISTANCE TO THERAPIES. CLASSICALLY, IT HAS BEEN THOUGHT THAT THESE ACQUIRED GENETIC CHANGES ARE FIXED. THIS HAS LED TO THE PARADIGM OF MOVING FROM ONE CANCER THERAPY TO THE NEXT WHILE AVOIDING PAST THERAPIES. HOWEVER, EMERGING DATA ON EPIGENETIC CHANGES DURING TUMOR PROGRESSION AND USE OF EPIGENETIC THERAPIES HAVE SHOWN THAT EPIGENETIC MODIFICATIONS LEADING TO CHEMOTHERAPY RESISTANCE HAVE THE POTENTIAL TO BE REVERSIBLE WITH EPIGENETIC THERAPY. IN FACT, PROMISING CLINICAL DATA EXIST THAT TREATMENT WITH EPIGENETIC AGENTS CAN DIMINISH CHEMOTHERAPY RESISTANCE IN A NUMBER OF TUMOR TYPES INCLUDING CHRONIC MYELOGENOUS LEUKEMIA, COLORECTAL, OVARIAN, LUNG AND BREAST CANCER. THE POTENTIAL FOR EPIGENETIC-MODIFYING DRUGS TO ALLOW FOR TREATMENT OF RESISTANT DISEASE IS EXCITING AND CLINICAL TRIALS HAVE JUST BEGUN TO EVALUATE THIS AREA. 2016 18 2526 39 EPIGENETICS APPLIED TO PSYCHIATRY: CLINICAL OPPORTUNITIES AND FUTURE CHALLENGES. PSYCHIATRIC DISORDERS ARE CLINICALLY HETEROGENEOUS AND DEBILITATING CHRONIC DISEASES RESULTING FROM A COMPLEX INTERPLAY BETWEEN GENE VARIANTS AND ENVIRONMENTAL FACTORS. EPIGENETIC PROCESSES, SUCH AS DNA METHYLATION AND HISTONE POSTTRANSLATIONAL MODIFICATIONS, INSTRUCT THE CELL/TISSUE TO CORRECTLY INTERPRET EXTERNAL SIGNALS AND ADJUST ITS FUNCTIONS ACCORDINGLY. GIVEN THAT EPIGENETIC MODIFICATIONS ARE SENSITIVE TO ENVIRONMENT, STABLE, AND REVERSIBLE, EPIGENETIC STUDIES IN PSYCHIATRY COULD REPRESENT A PROMISING APPROACH TO BETTER UNDERSTANDING AND TREATING DISEASE. IN THE PRESENT REVIEW, WE AIM TO DISCUSS THE CLINICAL OPPORTUNITIES AND CHALLENGES ARISING FROM THE EPIGENETIC RESEARCH IN PSYCHIATRY. USING SELECTED EXAMPLES, WE FIRST RECAPITULATE KEY FINDINGS SUPPORTING THE ROLE OF ADVERSE LIFE EVENTS, ALONE OR IN COMBINATION WITH GENETIC RISK, IN EPIGENETIC PROGRAMMING OF NEUROPSYCHIATRIC SYSTEMS. EPIGENETIC STUDIES FURTHER REPORT ENCOURAGING FINDINGS ABOUT THE USE OF METHYLATION CHANGES AS DIAGNOSTIC MARKERS OF DISEASE PHENOTYPE AND PREDICTIVE TOOLS OF PROGRESSION AND RESPONSE TO TREATMENT. THEN WE DISCUSS THE POTENTIAL OF USING TARGETED EPIGENETIC PHARMACOTHERAPY, COMBINED WITH PSYCHOSOCIAL INTERVENTIONS, FOR FUTURE PERSONALIZED MEDICINE FOR PATIENTS. FINALLY, WE REVIEW THE METHODOLOGICAL LIMITATIONS THAT COULD HINDER INTERPRETATION OF EPIGENETIC DATA IN PSYCHIATRY. THEY MAINLY ARISE FROM HETEROGENEITY AT THE INDIVIDUAL AND TISSUE LEVEL AND REQUIRE FUTURE STRATEGIES IN ORDER TO REINFORCE THE BIOLOGICAL RELEVANCE OF EPIGENETIC DATA AND ITS TRANSLATIONAL USE IN PSYCHIATRY. OVERALL, WE SUGGEST THAT EPIGENETICS COULD PROVIDE NEW INSIGHTS INTO A MORE COMPREHENSIVE INTERPRETATION OF MENTAL ILLNESS AND MIGHT EVENTUALLY IMPROVE THE NOSOLOGY, TREATMENT, AND PREVENTION OF PSYCHIATRIC DISORDERS. 2018 19 2975 34 GENETIC AND MOLECULAR ALTERATIONS ASSOCIATED WITH ORAL SQUAMOUS CELL CANCER (REVIEW). THE DEVELOPMENT OF ORAL SQUAMOUS CELL CANCER (OSCC) IS A MULTISTEP PROCESS INVOLVING THE ACCUMULATION OF MULTIPLE GENETIC ALTERATIONS MODULATED BY GENETIC PRE-DISPOSITION AND ENVIRONMENTAL INFLUENCES SUCH AS TOBACCO AND ALCOHOL USE, CHRONIC INFLAMMATION, AND VIRAL INFECTIONS. ALL OF THESE FACTORS CAN LEAD TO A WIDE RANGE OF GENETIC AND MOLECULAR ALTERATIONS THAT CAN BE DETECTED USING A RANGE OF MOLECULAR STUDIES. THE ALTERATIONS MOSTLY AFFECT TWO LARGE GROUPS OF GENES: ONCOGENES AND TUMOR SUPPRESSOR GENES, WHICH CAN BE EITHER INACTIVATED OR OVEREXPRESSED THROUGH MUTATIONS, LOSS OF HETEROZYGOSITY, DELETIONS, OR EPIGENETIC MODIFICATIONS SUCH AS METHYLATION. OTHER MOLECULES THAT ARE CLOSELY ASSOCIATED WITH TUMOR PATHOGENESIS AND PROGNOSIS ALSO EXIST AND WARRANT FURTHER STUDY. IMPORTANT ADVANCES IN MOLECULAR BIOLOGY ARE HELPING TO SHED LIGHT ON ORAL CANCER AND THUS AIDING IN THE EARLY DIAGNOSIS AND DEVELOPMENT OF NEW PERSONALIZED TREATMENT APPROACHES. THE PURPOSE OF THE REVIEW IS TO EXPLORE THE GENETIC AND MOLECULAR ALTERATIONS ASSOCIATED WITH OSCC. 2009 20 485 33 ARTIFICIAL AIRWAYS FOR THE STUDY OF RESPIRATORY DISEASE. THIS REVIEW WILL FOCUS ON HUMAN CELL-BASED EXPERIMENTAL MODELS TO STUDY RESPIRATORY DISEASES, IN PARTICULAR MODELS OF THE LARGE AIRWAYS RELEVANT TO ASTHMA AND CHRONIC OBSTRUCTIVE PULMONARY DISEASE. SUCH MODELS HAVE THE ADVANTAGE OF INCORPORATING CELLS THAT CAN BE DERIVED FROM DISEASE-RELEVANT TISSUE AND SO HAVE RETAINED IMPORTANT GENETIC AND EPIGENETIC FEATURES THAT CONTRIBUTE TO THE HUMAN DISEASE. THESE MODELS CAN BE USED FOR MECHANISTIC STUDIES, TARGET IDENTIFICATION AND VALIDATION AND TOXICOLOGICAL TESTING. WHILE MANY MODELS HAVE BEEN DEVELOPED TO VARYING DEGREES OF SOPHISTICATION, THE CHALLENGE REMAINS TO DEVELOP AN INTEGRATED SYSTEM THAT RECAPITULATES THE COMPLEX CELL-CELL AND CELL-MATRIX INTERACTIONS THAT OCCUR IN VIVO AND TO PROVIDE THESE WITH A 'CIRCULATION' TO STUDY THE DYNAMICS OF IMMUNE AND INFLAMMATORY CELL INFLUX AND EFFLUX. 2011