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TLX007-CDx (TLX007 CDx / TLX007CDx)

✓ Approved

Telix Pharmaceuticals Limited · 影像药物 · 影像药物

什么是 TLX007-CDx?

TLX007-CDx 是一种影像药物,由Telix Pharmaceuticals Limited研发。该药已获批,用于治疗相关适应症,给药途径:Unknown。

药物档案

商品名TLX007 CDx, TLX007CDx
公司Telix Pharmaceuticals Limited
药物类别影像药物
给药途径Unknown
状态Approved

治疗适应症

TLX007-CDx 针对 2 个适应症,涉及 1 个治疗领域。

治疗领域疾病/病症分期
Neoplasms benign, malignant and unspecified (incl cysts and polyps)Prostate cancer✓ Approved
Neoplasms benign, malignant and unspecified (incl cysts and polyps)Uterine cancerBLA/NDA

相关研究文献

PubMedAnnals of translational medicine2026-09-10

Individualized pharmacotherapy: background and development.

Jørgensen Jan Trøst JT, Westergaard Niels N

Most drug prescriptions are still based on empiricism and not on solid biological data, which often results in considerable patient variability and, sometimes, low patient benefits. Although variability in patient response to pharmacotherapy has long been recognized, only in recent decades have new molecule analytical methods provided insight into some of the causes, which are often related to somatic or germline genetic variations. Based on this insight, different predictive biomarker tests have been developed to optimize and individualize pharmacotherapy. These biomarker tests are classified as companion diagnostic (CDx) or pharmacogenetic (PGx) tests. In both the United States and Europe, CDx and PGx information is part of the regulatory drug labeling and is included in the Prescribing Information for the individual drugs and biologics. In the United States, this type of information is found in the labeling of more than 400 regulatory-approved drugs and biological products. Despite these measures and the documented clinical utility of CDx and PGx testing, clinical implementation is lagging, especially with regard to PGx. There are various reasons for the lack of testing, such as insufficient education and awareness among healthcare professionals, inadequate access to biomarker testing, regulatory hurdles, and insufficient reimbursements. Although progress has been made in recent years, further efforts are needed to fully realize the potential of individualized pharmacotherapy by integrating the use of predictive biomarkers into routine clinical practice.

PMID 42718847
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PubMedAdvanced science (Weinheim, Baden-Wurttemberg, Germany)2026-09-09

Discovery and Optimization of AMT-676, a CDH17-Targeting ADC for the Treatment of Advanced Gastrointestinal Cancers.

Wang Ying-Nan YN, Ruan Dan-Yun DY, Shi Jing J, Huang Yue Y et al.

Advanced-stage gastrointestinal (GI) cancers present an unmet need for innovative therapies, and antibody-drug conjugates (ADCs) offer promising solutions. This study investigates the antitumor efficacy and toxicity of AMT-676, a novel ADC targeting Cadherin 17 (CDH17), in GI cancers. Utilizing MabArray screening and immunohistochemistry, CDH17 was identified as a promising ADC target in GI tumors with minimal expression in healthy organs. The ADC was optimized through comprehensive in vitro and in vivo evaluations of binding affinity, cytotoxicity, pharmacokinetics, and toxicity, with antitumor potential evaluated using cell line-derived (CDX) and patient-derived tumor xenograft (PDX) models. Leveraging the T moiety-exatecan platform, we synthesized AMT-676, comprising a high-affinity CDH17-specific antibody, a hydrophilic self-immolative T1000 linker, and exatecan with a Drug-to-Antibody Ratio (DAR) of 4. AMT-676 demonstrated sustained antitumor responses across CDX and PDX GI models with diverse CDH17 expression, notably inhibiting metastatic growth in a colorectal cancer model. Cynomolgus monkey studies revealed favorable pharmacokinetics and manageable toxicity associated with AMT-676. In conclusion, we developed a novel CDH17-targeting ADC characterized by a high therapeutic index and tolerable toxicity profile, highlighting its promise for GI cancer treatment. A first-in-human, phase I clinical trial of AMT-676 in patients with advanced solid tumors is currently underway (NCT06400485).

PMID 42713665
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PubMedSmall (Weinheim an der Bergstrasse, Germany)2026-09-07

Unravelling the Atomic-Scale Surface Chemistry for Intrinsically Bright and Stable Luminescence in CdSe Quantum Platelets.

Teng Zhen Z, An Xin X, Li Nongsheng N, Chang Qing Q et al.

Two-dimensional colloidal CdSe quantum platelets (QPLs) represent a promising class of next-generation luminescent materials, yet the atomic-level surface chemistry that governs their optoelectronic properties remains poorly understood. In this study, we combine ligand passivation experiments with density functional theory (DFT) to establish a comprehensive atomic-scale surface structure model. The model explicitly identifies four characteristic surface features of pristine QPLs: under-coordinated Cd and Se atoms, along with CdX and SeMX binding modes. Our results demonstrate that native X-type carboxylates provide baseline Cd-site passivation (CdX), yielding an initial photoluminescence quantum yield (PLQY) of approximately 30%. L-type amines or phosphines disrupt native CdX passivation by forming CdXL, CdL, or SeL configurations, which induces more deep traps and quench fluorescence. Z*-type halide-amine ligands initially induce similar disruption, but they ultimately reorganize into a stable SeMXL binding mode that surpasses the original emission intensity. In contrast, Z-type ligands can rapidly achieve complete surface passivation via SeMX coordination by effectively eliminating Se-site deep trap states, boosting their fluorescence. In particular, passivation with Z-type cadmium octanoate equips the QPLs synthesized in ambient air with a record PLQY of 95%, together with exceptional spectral purity and enhanced emission stability.

PMID 42703673
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PubMedOncology and therapy2026-09-06

Real-World Testing Landscape and Costs of Companion Diagnostics and Comprehensive Genomic Profiling Across Nine Solid Tumors in Japan: A 10-Year Analysis.

Sunami Kuniko K, Aoyagi Sona-Sanae SS, Mikami Masashi M, Togo Kanae K

This study aimed to examine utilization, testing sequences, and associated genomic testing costs of companion diagnostics (CDx) and comprehensive genomic profiling (CGP) among Japanese patients with nine representative solid tumors. This retrospective study used anonymized data, from Medical Data Vision Co., Ltd. (MDV; January 2015-March 2025) and JMDC Inc. (JMDC; January 2015-January 2025), for patients with solid tumors of nine cancer types who underwent CDx and/or CGP testing or received any cancer treatment. Patient demographics, distribution and testing sequences of CDx and CGP, and associated genomic testing costs per patient were evaluated. Proportions of CDx and CGP testing varied across nine cancer types. Most patients underwent CDx testing once or twice, although some cohorts, particularly with non-small cell lung cancer (NSCLC), were tested thrice or more. Biliary tract cancer demonstrated the highest proportions for CGP testing alone, and both CDx and CGP testing. For both CDx and CGP testing, the greatest median costs were observed for ovarian and breast cancers, with bimodal peaks near US dollars (USD) 4000 and USD 5000. Median CDx costs were equal to or higher for patients who underwent both CDx and CGP testing compared with those who had CDx testing alone, particularly in breast, pancreatic, prostate, and ovarian cancers. For CDx testing alone, NSCLC, ovarian cancer, and prostate cancer had the highest costs, with a small peak near USD 1333. These results were mostly consistent across databases. Multiple CDx testing followed by CGP testing increased genomic testing costs per patient. Early implementation of CGP testing could reduce redundant testing and associated delays in treatment, thereby contributing to lower overall healthcare costs and more efficient treatment selection amid rapid advances in targeted therapies.

PMID 42700199
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PubMedJournal of Yeungnam medical science2026-09-04

Pseudomyxoma peritonei from independent primary ovarian and appendiceal tumors: a case report.

Koo Jiyeon J, Ngo Long Hoang LH, Kim Mi-Kyung MK, Ryu Rae Rim RR et al.

Pseudomyxoma peritonei (PMP), which involves both the ovaries and appendix, is usually attributed to an appendiceal primary tumor with secondary involvement. However, rare cases may present with synchronous, independent mucinous primaries. Distinguishing between these entities is important because staging, treatment, prognosis, and follow-up may differ according to the primary site. An 83-year-old woman presented with abdominal distension and ascites incidentally discovered during an evaluation for traumatic intracranial hemorrhage. Computed tomography revealed large-volume ascites, a large multilocular cystic mass arising from the left ovary, and a dilated appendix. Diagnostic laparoscopy confirmed the presence of gelatinous ascites, which was consistent with PMP. Histopathological examination revealed ovarian mucinous carcinoma and appendiceal mucinous neoplasms. Immunohistochemistry showed discordant profiles for ovarian (cytokeratin [CK]-7+/paired box 8 [PAX8]+/CK-20-/caudal-type homeobox 2 [CDX-2]-) and appendiceal (CK-20+/CDX-2+/CK-7-/PAX8-) lesions. Peritoneal tumor cells expressed CK-7 but lacked PAX8, CK-20, and CDX-2 expression, supporting an ovarian-type immunophenotype of the peritoneal disease. The patient underwent diagnostic laparoscopy with left salpingo-oophorectomy and removal of the gelatinous ascites. Two cycles of paclitaxel and carboplatin were administered before interval cytoreductive surgery because of advanced disease, arrhythmia, and poor tolerance to prolonged surgery. Complete cytoreduction was achieved through total hysterectomy, right salpingo-oophorectomy, appendectomy, total parietal peritonectomy, omentectomy, cholecystectomy, splenectomy, and the removal of visible disease, followed by carboplatin monotherapy. Complete cytoreduction was achieved, and the patient completed adjuvant carboplatin therapy without grade 3 or higher adverse effects. The patient remained disease-free for 6 months after the completion of chemotherapy.

PMID 42693629
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PubMedSmall (Weinheim an der Bergstrasse, Germany)2026-09-03

Bifunctional Borate Bioactive Glass (B-BG) Spontaneously Inhibits Bone Tumor and Time-Sequentially Promotes Bone Regeneration.

Wang Renxian R, Xia Songxia S, Li Zhuoyu Z, Qin Muyan M et al.

Post-operative treatment of bone tumors faces a critical clinical dilemma: the need to simultaneously inhibit the tumor while promoting bone regeneration. For this purpose, a multifunctional borate bioactive glass (B-BG) with dynamic pH was designed. In vitro studies indicated, within 2 days, a significant increase in pH up to ∼8.3 was generated to inhibit tumor cells. In the meantime, the increase of surrounding pH generated the formation of apatite-like minerals on the glass surface due to higher supersaturation with respect to hydroxyapatite, thus slow down the degradation rate of B-BG to generate the second stage, a moderate pH range between 7.5 and 8.0, thus increasing the expression of angiogenic genes in HUVECs at 2 days to 2 weeks, and then osteogenic genes in hADSCs after 2 weeks. Such results were further confirmed by implanting B-BG in a mouse CDX osteosarcoma model, a rabbit tumor metastatic model, and a rabbit femoral condyle defect model. The intelligence of such composition indicates the ability to spontaneously meet the surrounding environment respectively tumor inhibition and bone formation. In summary, multifunctional borate bioactive glass (B-BG) may provide a promising strategy for the treatment of bone tumors and the repair of bone defects.

PMID 42689628
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