PubMed HealthSearch

SEARCH · PubMed Health

Results for “Targeted therapies”

Explore indexed PubMed citations for clinical trials, systematic reviews and public health research. Read source abstracts and follow each citation to its original PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 19 recordsLinked to original sources

Landscape of acquired resistance alterations in gastrointestinal malignancies after genomically targeted therapy.

BACKGROUND: Targeted therapies directed at specific genomic alterations have transformed the management of gastrointestinal (GI) cancers; however, acquired resistance remains inevitable. Circulating tumor DNA (ctDNA) analysis via liquid biopsy provides a non-invasive approach to characterize genomic mechanisms of resistance. We therefore evaluated patterns of acquired genomic resistance in patients with GI cancers treated with targeted therapies. METHODS: Patients with GI cancers treated with standard of care or investigational therapies targeting EGFR, HER2, FGFR, MET, KRAS, BRAF for at least 60 days who underwent both baseline comprehensive genomic profiling and post-progression ctDNA sequencing were retrospectively evaluated. RESULTS: Of 106 patients meeting inclusion criteria, 45 had biliary tract cancer (BTC), 42 colorectal cancer (CRC), and 19 other GI malignancies. At least one putative resistance-associated alteration was detected in ctDNA in 53% of cases. Resistance patterns were heterogeneous with 47% showing no detectable alterations and 33% harboring ≥2 resistance alterations. Among 164 total alterations, the majority were single nucleotide variants (82%), followed by amplifications (17%). Overall, 48% were classified as 'bypass' alterations-activating alternative oncogenic pathways, most commonly MAPK signaling-while 52% were 'on-target' alterations involving secondary changes within the drug target. RAS alterations represented a key mechanism of bypass resistance, accounting for 28% of all resistance alterations. Interestingly, in CRC, bypass alterations predominated (69%), whereas in BTCs, on-target alterations were more frequent (61%). CONCLUSIONS: Liquid biopsies frequently identify acquired resistance following targeted therapy across GI cancers, often revealing multiple concurrent alterations. Patterns of resistance varied by tumor type, with both on-target and bypass mechanisms observed. These findings highlight common themes of resistance and support the growing clinical role of ctDNA analysis in defining resistance and guiding management in GI malignancies.

Gastrointestinal malignancies

Clinical experience of targeted therapy.

Drug targeting (i.e. administration of a drug-carrier conjugate which delivers active drug selectively to a particular tissue) has recently evolved into a new subdiscipline of experimental pharmacy/pharmacology. However, clinical experience with targeted therapy is very limited to date. This review summarizes human studies of targeted therapy. Indications for which drug targeting has been attempted include neoplastic disorders, fungal infections, enzyme replacement, hematologic and immune disorders, and iron storage disease. To date, no single drug targeting system is recommendable for routine clinical use, but present results justify further clinical evaluation in a number of situations.

Antineoplastic Agents

Molecular and Clinical Determinants of Acquired Resistance and Treatment Duration for Targeted Therapies in Colorectal Cancer.

PURPOSE: Targeted therapies have improved outcomes for patients with metastatic colorectal cancer, but their impact is limited by rapid emergence of resistance. We hypothesized that an understanding of the underlying genetic mechanisms and intrinsic tumor features that mediate resistance to therapy will guide new therapeutic strategies and ultimately allow the prevention of resistance. EXPERIMENTAL DESIGN: We assembled a series of 52 patients with paired pretreatment and progression samples who received therapy targeting EGFR (n = 17), BRAF V600E (n = 17), KRAS G12C (n = 15), or amplified HER2 (n = 3) to identify molecular and clinical factors associated with time on treatment (TOT). RESULTS: All patients stopped treatment for progression and TOT did not vary by oncogenic driver (P = 0.5). Baseline disease burden (&#x2265;3 vs. <3 sites, P = 0.02), the presence of hepatic metastases (P = 0.02), and gene amplification on baseline tissue (P = 0.03) were each associated with shorter TOT. We found evidence of chromosomal instability (CIN) at progression in patients with baseline MAPK pathway amplifications and those with acquired gene amplifications. At resistance, copy-number changes (P = 0.008) and high number (&#x2265;5) of acquired alterations (P = 0.04) were associated with shorter TOT. Patients with hepatic metastases demonstrated both higher number of emergent alterations at resistance and enrichment of mutations involving receptor tyrosine kinases. CONCLUSIONS: Our genomic analysis suggests that high baseline CIN or effective induction of enhanced mutagenesis on targeted therapy underlies rapid progression. Longer response appears to result from a progressive acquisition of genomic or chromosomal instability in the underlying cancer or from the chance event of a new resistance alteration.

Humans

Targeted Therapy in Acute Myeloid Leukemia: Current Approaches and Novel Directions.

Acute myeloid leukemia (AML) is a molecularly heterogeneous neoplasm of hematopoietic stem and progenitor cells. The advent of high-resolution genomic sequencing has uncovered several genetic drivers of AML which spurred a surge of therapies that target the disease at a mutational, clonal, or epigenetic level. Currently, the molecular profiling of AML patients before treatment is commonplace and crucial for ensuring that patients receive the most optimal therapy for any driver mutations they may have. Here, we detail the current targeted therapies available for AML: specifically, those targeting the BCL2 family (venetoclax), FLT3 (midostaurin, gilteritinib, quizartinib), IDH1/2 (enasidenib, ivosidenib), and MENIN (revumenib, ziftomenib). In addition, we outline potential mechanisms of resistance against these therapies, as well as efforts being taken to prevent or bypass them.

BCL2

Relationship Between Cognitive Disorder and First-Line Targeted Therapy for Oncogene Driver-Positive Patients With Non-Small Cell Lung Cancer: Prospective Cohort Study.

BACKGROUND: Previous studies have found and confirmed a correlation between cognitive disorder and chemotherapy. As genetic testing becomes more routine in clinical practice, targeted therapies are increasingly gaining prominence. The relationship between targeted treatment and cognitive function is not yet clear. This study aimed to investigate the correlation between cognitive disorder and targeted treatment by evaluating the changes in cognitive function before and after targeted therapy. OBJECTIVE: This study aims to explore whether targeted therapy affects cognitive function in patients with advanced lung cancer and to explore the association between cognitive function, the inflammatory biomarker C-reactive protein, and psychological stress. METHODS: From the screened cohort of 150 patients with advanced non-small cell lung cancer (NSCLC) with gene mutations, 87 (58%) were rigorously selected for the study. The evaluation instruments used were the Mini-Mental State Examination scale, the Distress Thermometer, and the European Organisation for Research and Treatment of Cancer Quality of Life Questionnaire Core 30 for assessing quality of life. RESULTS: A significantly lower progression-free survival (PFS) was observed in the group of patients surviving advanced NSCLC with cognitive disorder under targeted therapy in contrast to survivors in the group with no cognitive disorder (hazard ratio=0.347, 95% CI 0.209-0.578; P<.001). Furthermore, the objective response rate and disease control rate for the group with cognitive disorder were noted to be 37.8% and 86.7%, respectively, contrastingly lower than those in the group with no cognitive disorder, recorded at 78.6% and 97.6%, respectively. Significant variances were also noted in the Mini-Mental State Examination scores between patients with and without cognitive disorder both before and after targeted therapy (P<.001 in both cases), with a decreasing trend observed in both groups after targeted therapy. Noteworthy differences were found in quality of life scores both before and after targeted therapy (P<.001 in both cases). In addition, notable disparities were apparent in C-reactive protein levels among the 2 groups before and after treatment (P=.03 and P=.048 for each time point, respectively), with an upward trend observed in both groups after targeted therapy. The multivariate Cox regression analysis demonstrated that cognitive function is an independent risk factor for PFS in patients with NSCLC receiving targeted therapy. CONCLUSIONS: Cognitive disorder may lead to lower quality of life scores and shorter PFS in patients undergoing targeted therapy. Early screening and intervention for such patients could effectively improve clinical outcomes and quality of life.

Humans

Preliminary trial of specific targeting therapy against malignant glioma.

The results of specific targeting therapy by use of lymphokine-activated killer (LAK) cells treated with bispecific antibody in 10 patients with malignant glioma were compared with the results of therapy with untreated LAK cells in 10 other patients. Both treated and untreated cells were given locally. The bispecific antibody was an anti-CD3 monoclonal antibody (mAb) chemically conjugated to anti-glioma mAb. Of the 10 patients given specific targeting therapy, 4 showed regression of tumour, and in another 4 patients computed tomography and histology suggested eradication of the glioma cells left behind after surgery. No recurrence was detected in the 10 to 18 months of follow-up. Patients receiving untreated LAK cells had recurrences within 1 year except in 1 case, and 8 patients died within 4 years. So far specific targeting therapy seems to be a new useful form of adoptive immunotherapy.

Adult

Matched targeted therapy use after broad genomic profiling in advanced Non-Small cell lung cancer.

INTRODUCTION: While broad genomic profiling is increasingly used in advanced NSCLC (aNSCLC), the impact of test results on subsequent guideline-concordant targeted therapy selection remains incompletely understood. METHODS: Using a merged dataset of two large, nationwide, patient-level databases, we identified patients who were diagnosed with aNSCLC 2017-2023, had potentially actionable genomic profiling findings, and initiated systemic therapy. Patients were categorized into actionability subgroups based on contemporaneous regulatory approvals and NCCN guideline recommendations. Within each subgroup, we assessed receipt of guideline-concordant targeted therapy within 24 months, including potential underuse (non-receipt of recommended treatment) and overuse (receipt of non-recommended treatment). RESULTS: Among 6620 patients (67.4% &#x2265;65 years, 54.6% female, 68.9% White), guideline-concordant targeted therapy use varied substantially by actionability category: 2313 (89.6%) of 2582 patients with available 1st-line on-label options received them (10.4% underuse), while 212 (67.3%) of 315 patients with available later-line on-label options received them after 1st-line (32.7% underuse). Among 441 patients with available guideline-concordant off-label options, only 122 (27.7%) received them (72.3% underuse). Conversely, 238 (8.6%) of 3282 patients received matched but guideline-discordant off-label options, representing overuse of ineffective or unestablished therapies. Smoking history, squamous histology, and high PD-L1 expression were associated with lower targeted therapy receipt. CONCLUSIONS: In this cohort study of aNSCLC care, the guideline concordance of targeted therapy use varied by clinical actionability of molecular testing results. Underuse was more common in patients with later-line and off-label targeted therapy options. Patients with classical smoking-related risk profiles were substantially less likely to receive targeted therapy even when actionable alterations were identified.

Journal Article

Molecular and Clinical Determinants of Targeted Therapy Treatment in Biliary Tract Cancer.

PURPOSE: Actionable genomic alterations occur in all anatomic subsets of biliary tract cancer; however, targeted therapies have not shown a survival advantage over cytotoxics, and resistance mechanisms require further characterization. EXPERIMENTAL DESIGN: We analyzed a prospectively maintained cohort of 1,254 patients with histologically confirmed biliary tract cancer who underwent molecular profiling using an FDA-authorized targeted next-generation sequencing (NGS) assay. We defined actionable alterations across anatomic subsets, compared outcomes with targeted therapy versus cytotoxics, and evaluated genomic correlates of resistance using longitudinal samples. RESULTS: Overall, 59% of patients harbored at least one OncoKB alteration, and 32.2% (intrahepatic 40%, extrahepatic 15%, and gallbladder 22%) had a level 1/2 alteration. Emerging targets included KRAS alterations (17%), MTAP deletions (12.8%), MDM2 amplification (6.5%), and MET amplification (1.5%). Targeted therapy was associated with improved progression-free survival but not overall survival. Co-occurring TP53/RAS pathway and SMAD4 alterations were associated with inferior outcomes in IDH1/FGFR2-and ERBB2-driven tumors, respectively. Longitudinal profiling demonstrated ERBB2 loss in ERBB2-driven tumors, whereas IDH-, FGFR-, BRAF-, and NTRK-driven tumors retained the primary oncogenic driver. Acquired resistance was associated with alterations in RAS, MEK, MET, MYC, and CDKN2A. CONCLUSIONS: This comprehensive molecular profiling study illustrates the real-world utility and limitations of targeted NGS of biliary tract cancer and affirms the use of precision medicine in patients with these diseases. Genomic heterogeneity and therapeutic resistance observed in this study has the potential to inform ongoing drug development efforts for biliary tract cancer.

Humans

Gene therapy targeted by ionizing radiation.

Gene therapy used for the treatment of neoplastic diseases is not well localized. Ionizing radiation can be used to activate the transcription of exogenous genes that encode cytotoxic proteins. This may be accomplished through the use of radiation responsive elements distal to the transcription start site of such genes. We discuss this concept and describe a technique which can be used to amplify the signal initiated by localized radiation therapy. These techniques may be used to target gene therapy during the treatment of human neoplasms.

Genetic Therapy

A phase II study to evaluate the efficacy of commercially available molecularly matched targeted therapies in the second-line setting.

BACKGROUND: Initial studies have shown improved outcomes in patients receiving cancer therapies matched to their molecular alterations. To improve the chances of finding a therapeutic match for patients, this study evaluated the preliminary antitumor activity of 3 commercially available multitargeted agents in the United States, regorafenib, afatinib, and cabozantinib. METHODS: In this phase II trial, patients who did not benefit from first-line treatment for non-small cell lung cancer (NSCLC), upper aerodigestive tract cancers, non-colon gastrointestinal cancers, and urothelial carcinoma underwent next-generation sequencing to identify actionable genomic alterations. Eligible patients, based on identified mutations deemed treatable by regorafenib, cabozantinib, or afatinib, were enrolled to receive matched targeted therapies. Outcomes were monitored via Response Evaluation Criteria in Solid Tumors criteria, with dose modifications per National Cancer Institute Common Terminology Criteria for Adverse Events, v4.03 guidelines for adverse events (AEs). RESULTS: One hundred patients with metastatic cancers were enrolled across tumor types. Median treatment durations were 12&#x2009;weeks (regorafenib), 10.7&#x2009;weeks (afatinib), and 24.1&#x2009;weeks (cabozantinib). The overall objective response rate was 7.0%, with 1 complete response and 8 partial responses. The clinical benefit rate, including responses and stable disease >6&#x2009;months, was 16.0%. Median progression-free survival ranged from 1.9&#x2009;months for urothelial carcinoma to 3.2&#x2009;months for NSCLC. Toxicities were common for all medications; for regorafenib, 90.7% of patients had AEs (50% Grade 3/4); for afatinib, 86% of patients had AEs (54% Grade 3/4); for cabozantinib, 100% of patients had AEs (36% Grade 3/4). The most common AEs were diarrhea, fatigue, nausea, decreased appetite, and stomatitis. CONCLUSIONS: Regorafenib, afatinib, and cabozantinib had modest effects when used as molecularly matched targeted therapies in patients with NSCLC, upper aerodigestive tract cancers, non-colon gastrointestinal cancers, and urothelial carcinoma in the second-line setting. Future research could examine more precise matching of therapies to genomic alterations and evaluate combination therapies.

Humans

To Treat or Not to Treat: Navigating Early-Stage CLL in the Era of Targeted Therapy.

Chronic lymphocytic leukemia (CLL) is most frequently diagnosed at early, asymptomatic stages (Rai 0/Binet A), in which a watch-and-wait strategy remains the standard of care, based on historical trials demonstrating no overall survival benefit from early treatment. Over the past two decades, however, substantial advances in genomic profiling-including immunoglobulin heavy-chain variable region (IGHV) mutational status, TP53 disruption, recurrent gene mutations, and complex karyotype-have uncovered marked biological heterogeneity among early-stage patients and substantially improved prediction of disease progression. In parallel, targeted therapies such as Bruton tyrosine kinase (BTK) inhibitors and venetoclax-based combinations have transformed the management of symptomatic CLL, raising renewed interest in whether early intervention might favorably alter the natural history of biologically high-risk disease. In this review, we critically examine the evolution of prognostication in early-stage CLL, integrate contemporary molecular and clinical risk models, and summarize evidence from both historical chemotherapy-era studies and modern early-intervention trials. We discuss key unresolved controversies, including reliance on surrogate endpoints, the risks of overtreatment, and the persistent absence of an overall survival benefit across all early-treatment strategies. Finally, we outline future research priorities, including refined genomic stratification, minimal residual disease-driven (MRD)-driven approaches, and combination targeted therapies currently under investigation. Despite renewed interest in preemptive treatment, available evidence supports continued observation for asymptomatic patients outside clinical trials.

Humans

Antibody targeted therapy in cancer: comparison of murine and clinical studies.

Antibody targeted therapy can be effective in animal models of cancer. Treatment has been less successful in man, though some responses are reported. Understanding the distribution of antibody in man and animals shows how toxicity may be minimized and patients selected for therapy on the basis of efficient antibody localization in the tumour.

Animals

[Targeting therapy with adriamycin-monoclonal antibody (HAb18) conjugate in nude mice with human hepatocellular carcinoma xenografts].

Adriamycin (ADM) was linked covalently to the murine monoclonal antibody (McAb) HAb18 against human hepatocellular carcinoma via a dextran T-40 bridge. The molar ratio of HAb18: DEX: ADM was 1:2.4:56 in the conjugate. It was confirmed by immunochemical staining and ELISA that the antigen binding capacity of HAb18 in the conjugate was well preserved. In vitro study indicated that the conjugate cytotoxicity to tumor target cell lines was selective. The radio-immunoimaging and distribution of the conjugate labelled with 125I in the nude mice bearing human hepatocellular carcinoma showed that 125I-HAb 18-DEX-ADM conjugate was localized in the tumor site. The HAb18-DEX-ADM targeting therapy in nude mice bearing human hepatocellular carcinoma showed the following results: decreased tumor size and partly necrosed cancer tissue in contrast to the rapidly growing tumor in the control group (P < 0.05). Our study suggested that targeting therapy with HAb18-DEX-ADM conjugate may be useful in the treatment of patients with hepatocellular carcinoma.

Animals

Selective immunosuppression with anti-interleukin 2 receptor-targeted therapy: helper and suppressor cell activity in rat recipients of cardiac allografts.

(LEW X BN)F1 cardiac allografts are rejected within 8 days in unmodified LEW rats. ART18, a mouse anti-rat IgG1 monoclonal antibody which binds specifically in vitro to the interleukin 2 receptor (IL 2R) molecule expressed primarily on activated T cells, prolongs allograft survival in a dose-dependent fashion to ca. 3 weeks (p less than 0.001) after being administered for 10 days after transplantation. This effect was related to the specificity of the antibody for IL 2R, as therapy with ART62 (a monoclonal antibody recognizing MHC class I antigen but not binding the rat IL 2R) was ineffectual. Suppressor activity was detected in spleen cells of ART18-treated grafted hosts: in vivo, splenic T suppressor/cytotoxic fraction adoptively transferred into normal LEW improved donor-specific but not third-party test graft survival (17 days, vs. 8 days, respectively, p less than 0.001); in vitro, mixed lymphocyte reaction was profoundly but nonspecifically inhibited (less than 5% of test mixed lymphocyte reaction, p less than 0.001 as compared to acutely rejecting controls). In contrast, splenic T helper (Th) cells from ART18-treated hosts were functionally depressed, as noted by their passive transfer into immunologically anergic B recipients of cardiac allografts (rejection in ca. 40 days, vs. ca. 13 days after transfer of Th from specifically sensitized rats). ART18 treatment also resulted in diminished elaboration of IL 2 as compared to normal (p less than 0.005) or acutely rejecting hosts (p less than 0.001); however, a remarkable increase in the production of IL 3 occurred (p less than 0.001). These results demonstrate that IL 2R-targeted therapy of immunocompetent graft recipients produces a selective immune defect in which donor-specific T suppressor cells are spared, but Th cells attenuated or destroyed. Decreased elaboration of IL2 concomitantly augments the release of IL 3, a lymphokine which might play a role in suppressor effect in vivo. In addition, IL 2R-targeted therapy of the immunodeficient graft recipients abrogates the capacity of alloactivated T cells to re-establish acute immune responsiveness.

Animals

MEK inhibitor-based genomically matched combinatorial targeted therapies in metastatic pancreatic adenocarcinoma with KRAS alterations.

INTRODUCTION: Pancreatic Ductal Adenocarcinoma (PDAC) is often caused by mutations in multiple genes including KRAS (activating the Ras-Raf-MEK-ERK pathway). This study evaluated the role of MEK inhibitor (MEKi)-based combinatorial targeted therapies in patients with PDAC. Methods. This is a retrospective/prospective observational, single institution study, including 29 patients with metastatic PDAC with KRAS alterations, treated with MEKi therapies between 2022-2024. RESULTS: Ten patients had KRAS G12R (34.5%), ten G12D (34.5%), and nine G12V (31%). Majority of patients received MEKi therapy as third-line and beyond (KRAS G12R/G12D/G12V 60%/50%/78%, respectively). Median overall survival from MEKi initiation for KRAS G12R/G12D/G12V was 8.2/5.1/4.7&#x2009;months (P&#x2009;=&#x2009;0.5), respectively, and median progression-free survival was 4.4/2.3/1.4&#x2009;months (P&#x2009;=&#x2009;0.11). Six (21%) patients discontinued at least one drug in the treatment combination due to toxicity. CONCLUSIONS: MEKi-based combinatorial therapies had modest disease control in patients with KRAS G12R, and minimal disease control in patients with KRAS G12D/V in the late-line setting.

KRAS

Integration of ALK gene mutations and targeted therapies in pediatric high-risk neuroblastoma: advancements in precision oncology.

INTRODUCTION: Neuroblastoma (NB) is the most common extracranial solid tumor in children. High-risk neuroblastoma remains a therapeutic challenge, with a 5-year survival rate of 60%. The anaplastic lymphoma kinase (ALK) oncogene plays a critical role in the pathogenesis of neuroblastoma, with mutations frequently observed in high-risk cases. In this review we explored the genomic landscape of high-risk neuroblastoma, focusing on ALK mutations and their role in disease progression. We have also discussed the efficacy of ALK-targeted therapies and potential combination strategies to overcome resistance. METHODS: A comprehensive literature search was conducted to collect peer-reviewed publications related to neuroblastoma's biology, classification, and treatment. Articles published between 1980 and 2025 were identified using databases such as PubMed, Scopus, Web of Science, and ClinicalTrials.gov. RESULTS: Neuroblastoma tumorigenesis implicates ALK mutations, particularly at ALK p.R1275Q, ALK p.F1174L, and ALK p.F1245C, with an enrichment in stage 4 tumors and younger patients. Several ALK inhibitors, like crizotinib, ceritinib, lorlatinib, repotrectinib, and alectinib, have shown different levels of success, but resistance to these treatments is still a big challenge. New treatment methods that combine farnesyltransferase inhibitors (FTIs) with ALK tyrosine kinase inhibitors (TKIs) are showing potential in improving how well the treatment works and in stopping the cancer from coming back. CONCLUSION: Precision oncology offers a novel and potentially more effective approach for treating high-risk neuroblastoma. While ALK inhibitors have shown promise, resistance mechanisms necessitate the development of combination therapies and next-generation inhibitors. Future research should focus on optimizing targeted treatment strategies to improve survival outcomes in pediatric patients with ALK-positive neuroblastoma.

ALK inhibitors

[Controlled drinking as therapy target in the treatment of alcoholics].

The question of re-acquired controlled drinking as a therapy target in the treatment of alcoholics should be studied under the concrete social conditions of the GDR by specialists in treatment and prevention together with the practitioners, on the basis of an exact programme. Some proposals for the practical proceedings are submitted.

Alcohol Drinking

[Targeting therapy with a drug using temperature-sensitive liposomes entrapped antitumor drug together with localized hyperthermia].

The characteristics and feasibility of targeting therapy with combination of temperature-sensitive liposomes entrapped antitumor drug with localized hyperthermia were discussed on the theoretical as well as experimental basis. An optimum liposome form and a drug for this delivery were proposed as follows: the liposome is LUV which has a phase transition temperature of 41 to 42 degree and the osmotic pressure of the internal aqueous phase is 1.5 or higher than the physiological one, the drug has a large body clearance and has a synergistic effect with hyperthermia. The LUV preparation containing cisplatin was administered to mice together with tumor heating. The uptake of the drug in the tumor (as a criterion of targeting) were 3 to 5 times greater than those of an aqueous cisplatin solution. The tumor responses were well correlated with the drug-targeting.

Animals