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BioWorld - Monday, February 16, 2026
Home » small-cell lung cancer

Articles Tagged with ''small-cell lung cancer''

Radiotherapy of cancer
Cancer

Evergreen Theragnostics collaborates with Medical University of Innsbruck on radiopharmaceuticals

May 22, 2024
Evergreen Theragnostics Inc. has entered into a collaboration and licensing agreement with the Medical University of Innsbruck (MUI) to advance the development of novel radiopharmaceuticals.
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Vials of SNB-101

SN Bioscience nabs FDA fast track for lung cancer drug

May 14, 2024
By Marian (YoonJee) Chu
SN Bioscience Co. Ltd., headquartered in Seongnam-si, Gyeonggi-do’s second Pangyo Valley, gained U.S. FDA fast track designation for SNB-101 (SN-38), its new polymer nanoparticle cancer drug candidate for small-cell lung cancer.
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Vials of SNB-101

SN Bioscience nabs FDA fast track for lung cancer drug

May 10, 2024
By Marian (YoonJee) Chu
SN Bioscience Co. Ltd., headquartered in Seongnam-si, Gyeonggi-do’s second Pangyo Valley, gained U.S. FDA fast track designation for SNB-101 (SN-38), its new polymer nanoparticle cancer drug candidate for small-cell lung cancer.
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M&A letters over missing puzzle pieces

Radioactive taste: Mariana glows for Novartis in $1.75B deal

May 2, 2024
By Randy Osborne
Novartis AG is bolstering its radioligand arsenal with the takeout of Mariana Oncology Inc. for $1 billion up front and as much as $750 million in potential milestone payments. Watertown, Mass.-based Mariana has developed peptide-based radiopharmaceuticals targeting solid tumors. The company’s lead program, MC-339, is a radioligand approach to small-cell lung cancer, due to enter the clinic later this year.
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Digital cancer cells illustration
Cancer

Auron Therapeutics presents preclinical data on KAT2A/B degrader program

April 19, 2024
Using its artificial intelligence/machine learning platform, Aurigen, Auron Therapeutics Inc. has identified histone acetyltransferase KAT2A/B as a driver of tumor cell plasticity and designed new small-molecule degraders of KAT2A/B.
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3D rendering of an antibody drug conjugate
Immuno-oncology

Preclinical characterization of ABBV-706, a SEZ6-targeted TOP1 inhibitor ADC

April 15, 2024
Researchers from Abbvie Inc. recently presented preclinical data for ABBV-706, an SEZ6-targeted topoisomerase 1 (TOP1) inhibitor antibody-drug conjugate (ADC), being developed for the treatment of small-cell lung cancer (SCLC) and other SEZ6-expressing cancers.
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Immuno-oncology

Hangzhou’s DXC-006 ADC shows antitumor activity in preclinical models

April 10, 2024
DXC-006 (Hangzhou DAC Biotechnology Co. Ltd.) is an antibody-drug conjugate (ADC) that targets CD56, a molecule involved in cell-cell adhesion and cell-matrix adhesion that is overexpressed in neuroblastoma, small-cell lung cancer and multiple myeloma, but less frequently expressed in normal tissues. DXC-006 consists of an anti-CD56 antibody (DXA-006) linked to the topoisomerase 1 (TOP1) inhibitor CPT-116 through a linker.
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Drug R&D concept image.
Cancer

Auron Therapeutics nominates first candidate for solid and hematologic cancers

Feb. 9, 2024
Auron Therapeutics Inc. has nominated its first development candidate, AUTX-703, which is being developed for the treatment of patients with small-cell lung cancer, neuroendocrine prostate cancer and acute myeloid leukemia.
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Antibody-drug conjugate illustration
Immuno-oncology

Obi Pharma to advance TROP2-targeted ADC into clinic in US

Jan. 3, 2024
Obi Pharma Inc. has received FDA clearance for its IND application to conduct a phase I/II study of OBI-992, a novel antibody-drug conjugate (ADC) cancer therapy targeting TROP2. The trial will open shortly and aims to enroll patients with advanced solid tumors, including non-small-cell lung cancer, small-cell lung cancer and gastric cancer, although several other cancers are also potential targets.
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AI generated illustration of lungs in the human body
Cancer

ESMO 2023: New approaches to old targets, including HER2 and p53

Oct. 24, 2023
By Mar de Miguel
Some cancers with a poor prognosis have had no new treatments in decades. Advances in the genetic characterization of these tumors now offer a range of possibilities for the development of new therapies that could completely change the quality of life and survival of these patients.
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