1.Advancing Natural Killer Cell Therapy: Genetic Engineering Strategies for Enhanced Cancer Immunotherapy
Joo Dong PARK ; Ha Eun SHIN ; Yeon Su AN ; Hye Jung JANG ; Juwon PARK ; Se-Na KIM ; Chun Gwon PARK ; Wooram PARK
Annals of Laboratory Medicine 2025;45(2):146-159
Natural killer (NK) cells are pivotal innate immune system components that exhibit spontaneous cytolytic activity against abnormal cells, such as infected and tumor cells. NK cells have shown significant promise in adoptive cell therapy because of their favorable safety profiles and minimal toxicity in clinical settings. Despite their advantages, the therapeutic application of unmodified NK cells faces challenges, including limited in vivo persistence, particularly in the immunosuppressive tumor microenvironment. Recent advances in genetic engineering have enhanced the therapeutic potential of NK cells by addressing these limitations and improving their therapeutic efficacy. In this review, we have described various methodologies for the genetic modification of NK cells, including viral vectors, electroporation, and nanoparticle-based approaches. The ongoing research on nanomaterialbased approaches highlights their potential to overcome current limitations in NK cell therapy, paving the way for advanced cancer therapy and improved clinical outcomes. In this review, we also emphasize the potential of engineered NK cells in cancer immunotherapy and other clinical applications, highlighting the expanding scope of NK cell-based treatments and the critical role of innovative genetic engineering techniques.
2.Nanoparticle-Based Chimeric Antigen Receptor Therapy for Cancer Immunotherapy
Seungyong SHIN ; Pyunghwajun LEE ; Jieun HAN ; Se-Na KIM ; Jaesung LIM ; Dae-Hwan PARK ; Taejong PAIK ; Junhong MIN ; Chun Gwon PARK ; Wooram PARK
Tissue Engineering and Regenerative Medicine 2023;20(3):371-387
Adoptive cell therapy with chimeric antigen receptor (CAR)-engineered T cells (CAR-Ts) has emerged as an innovative immunotherapy for hematological cancer treatment. However, the limited effect on solid tumors, complex processes, and excessive manufacturing costs remain as limitations of CAR-T therapy. Nanotechnology provides an alternative to the conventional CAR-T therapy. Owing to their unique physicochemical properties, nanoparticles can not only serve as a delivery platform for drugs but also target specific cells. Nanoparticle-based CAR therapy can be applied not only to T cells but also to CAR-natural killer and CAR-macrophage, compensating for some of their limitations. This review focuses on the introduction of nanoparticle-based advanced CAR immune cell therapy and future perspectives on immune cell reprogramming.
3.A Rare Case of Spinal Epidural Abscess Following Urinary Tract Infection Caused by Escherichia coli in a Patient with Pre-existing Stress Fractures of the Lumbar Spine
Wooram SHIN ; Ju Hwan OH ; A Young CHO ; In Sup SONG ; Young Suk KIM ; Kwang Young LEE ; In O SUN
Korean Journal of Family Medicine 2022;43(2):147-149
Spinal epidural abscess (SEA) caused by Escherichia coli is an uncommon condition. It usually occurs secondary to urinary tract infection (UTI), following hematogenous propagation. Disruption of spinal anatomic barriers increases susceptibility to SEA. Although rarely, such disruption can take the form of lumbar spine stress fractures, which can result from even innocuous activity. Here, we describe a case of SEA secondary to UTI in a patient with pre-existing stress fractures of the lumbar spine, following use of an automated massage chair. Successful treatment of SEA consisted of surgical debridement and a six-month course of antibiotic therapy.

Result Analysis
Print
Save
E-mail