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tracking of CAR-T cells in tumors nanobubble-based contrast enhanced ultrasound.

3/5 보강
Nanoscale horizons 2026 Vol.11(4) p. 1081-1094 cited 1 OA CAR-T cell therapy research
TL;DR An ultrasound-based tracking approach can effectively monitor the trafficking of CAR-T cells in vivo, offering a valuable new strategy that can further enable the development of new CAR-T products and strategies to modulate cell trafficking.
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PubMed DOI OpenAlex Semantic 마지막 보강 2026-04-30

PICO 자동 추출 (휴리스틱, conf 2/4)

유사 논문
P · Population 대상 환자/모집단
환자: acute lymphoblastic leukemia (ALL), B cell lymphomas, and multiple myeloma
I · Intervention 중재 / 시술
추출되지 않음
C · Comparison 대조 / 비교
추출되지 않음
O · Outcome 결과 / 결론
we found that CAR-T cells can be visualized after injection into both tumor-bearing and non-tumor bearing mice.
OpenAlex 토픽 · CAR-T cell therapy research Ultrasound and Hyperthermia Applications Microfluidic and Bio-sensing Technologies

Durig D, Franklin J, Perera R, Jackson Z, Vasanna SH, Kolios MC

📝 환자 설명용 한 줄

An ultrasound-based tracking approach can effectively monitor the trafficking of CAR-T cells in vivo, offering a valuable new strategy that can further enable the development of new CAR-T products and

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APA Dorian Durig, Jude Franklin, et al. (2026). tracking of CAR-T cells in tumors nanobubble-based contrast enhanced ultrasound.. Nanoscale horizons, 11(4), 1081-1094. https://doi.org/10.1039/d5nh00708a
MLA Dorian Durig, et al.. " tracking of CAR-T cells in tumors nanobubble-based contrast enhanced ultrasound.." Nanoscale horizons, vol. 11, no. 4, 2026, pp. 1081-1094.
PMID 41589415 ↗
DOI 10.1039/d5nh00708a

Abstract

CAR-T cell therapy has led to remarkable advances in the outcomes of patients with acute lymphoblastic leukemia (ALL), B cell lymphomas, and multiple myeloma. Given these successes in hematologic malignancies, extensive efforts are now focused on developing CAR-T cell therapies to treat solid tumors. The treatment of solid tumors poses significant hurdles with cell trafficking necessary to achieve efficacy and minimize off-tumor side effects. The development of simple, safe and inexpensive modalities for tracking CAR-T cell distribution in clinical use could provide critical insights to facilitate the development of improved CAR-T products for solid tumors. Here, we demonstrate a strategy to monitor CAR-T cells using ultrasound imaging of nanobubble (NB) labeled cells. NBs are ultrasound contrast agents composed of a lipid shell and a CF gas core that can be efficiently internalized into cells. This approach enables us to image the CAR-T cells using nonlinear contrast-enhanced ultrasound (CEUS). Utilizing this method, we found that CAR-T cells can be visualized after injection into both tumor-bearing and non-tumor bearing mice. In summary, our ultrasound-based tracking approach can effectively monitor the trafficking of CAR-T cells , offering a valuable new strategy that can further enable the development of new CAR-T products and strategies to modulate cell trafficking.

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