高雄市生物科技發展協會|http://www.khba.org.tw
會員登入
記住帳號 自動登入
會員名錄
各式辦法
下載專區
留言板
您目前的位置:首頁 / 活動與新訊
New nanocapsule treatment boosts immune response against solid tumors
活動日期:2023.11.01
2023.11.01  

New nanocapsule treatment boosts immune response against solid tumors

https://www.news-medical.net/news/20231011/New-nanocapsule-treatment-boosts-immune-response-against-solid-tumors.aspx?utm_source=news_medical_newsletter&utm_medium=email&utm_campaign=breast_cancer_newsletter_16_october_2023

Reviewed by Oct 11 2023

UCLA researchers have developed a new treatment method using a tiny nanocapsule to help boost the immune response, making it easier for the immune system to fight and kill solid tumors.

The investigators found the approach, described in the journal Science Translational Medicine, increased the number and activity of immune cells that attack the cancer, making cancer immunotherapies work better.

Cancer immunotherapy has reshaped the landscape of cancer treatment. However, not all patients with solid tumors respond well to immunotherapy, and the reason seems to be related to the way the cancer cells affect their surroundings."

Jing Wen, senior author of the study, assistant adjunct professor of microbiology, immunology, & molecular genetics at the David Geffen School of Medicine at UCLA and a scientist at the UCLA Jonsson Comprehensive Cancer Center

Cancer cells produce a lot of lactate, Wen explained, which creates an environment around the solid tumor that makes it difficult for the immune system to work effectively against the cancer.

Although there have been efforts to reduce the levels of lactate with different drug inhibitors, these methods tend to also disrupt the metabolism of healthy cells, which can cause severe side effects.

To find a way to alleviate immune dysfunction around the tumor without hurting healthy cells, Wen and the team looked to create a tool to deliver drug inhibitors directly, to degrade lactate around and within solid tumors.

To achieve that goal, the team developed a treatment encapsulating an enzyme called lactate oxidase into a tiny nanocapsule that reduces lactate levels and releases hydrogen peroxide in the tumor.

Decreased levels of lactate are beneficial for releasing the suppression of immune response, while increased levels of hydrogen peroxide, a substance typically produced when you get injured, help recruit and activate immune cells in the tumors.

Biotechnology eBook Compilation of the top interviews, articles, and news in the last year.Download the latest edition

"When lactate is reduced and hydrogen peroxide is released, it makes it easier for the immune system to work against the cancer," said Zheng Cao, first author of the study and UCLA Samueli School of Engineering doctoral candidate in the department of chemical and biomolecular engineering.

To examine the effect of nanocapsules with the lactate oxidase enzyme, the team tested the approach in mice with melanoma and triple-negative breast cancer and performed tumor growth measurement, survival curve analysis, RNA sequencing, and immune cell population analysis. The team found that reducing lactate and producing hydrogen peroxide encouraged immune cells to enter the tumor, increasing the number and activity of immune cells that attack the cancer by 2 to 5-fold.

"We found lactate oxidase nanocapsules helped prevent the immune system from being weakened and overcome the immune suppression caused by the tumor," Cao said. "Moreover, this dual-action approach improved the success of a specific type of cancer immunotherapy treatment called immune checkpoint blockade and we believe it could be an effective strategy to help make cancer immunotherapy more effective."

The researchers will further explore the impact of lactate oxidate nanocapsules on enhancing the therapeutic effectiveness of chimeric antigen receptor (CAR) T-cell therapy for solid tumors. CAR T-cell therapy is a type of cellular immunotherapy designed to modify T cells, enabling them to recognize and attack cancer.

Along with Wen, the study's senior authors are Jimin Guo, a former postdoc scholar in the department of microbiology, immunology, & molecular genetics; and Yunfeng Lu, professor emeritus of chemical and biomolecular engineering at UCLA engineering.

This work was supported in part by grants from the UCLA ENN Center for Nanomedicine and Energy Conversion, the National Institutes of Health, and the National Center for Advancing Translational Science.

Source:

University of California - Los Angeles Health Sciences

Journal reference:

Cao, Z., et al. (2023) Lactate oxidase nanocapsules boost T cell immunity and efficacy of cancer immunotherapy. Science Translational Medicine. doi.org/10.1126/scitranslmed.add2712.

共有310筆資料 頁數: 第3頁(共16頁)
編號 標題 新增日期
1 You Are When You Eat 2023.12.06
2 六旬健康長者 尿道感染大腸桿菌 菌血入侵心臟 竟爆發類重度心.. 2023.12.06
3 Statins may reduce breast cancer mortality rates 2023.11.29
4 默克藥廠在台擴大投資 成立製藥頂級實驗室培訓高端人才 2023.11.29
5 Study links lifestyle choices and gender to severity of fa.. 2023.11.28
6 Base editing, a new form of gene therapy, sharply lowers b.. 2023.11.24
7 AI for drug discovery is booming, but who owns the patents? 2023.11.22
8 Unlocking the Secrets of Bacterial Transcription 2023.11.15
9 美生醫公司編輯基因降低膽固醇 預計2025年啟動2期實驗 2023.11.15
10 New nanocapsule treatment boosts immune response against s.. 2023.11.01
11 Walking and Mediterranean diet may be the ticket to reduci.. 2023.10.18
12 The Vaginal Microbiome is Finally Getting Recognized 2023.10.11
13 奈米藥物治療年輕癌症患者的效果較差且可能產生終生副作用!! .. 2023.10.11
14 Epigenetic Marks May Cause Brain Tumor Formation 2023.10.03
15 Glycogen Metabolism May Play a Key Role in Pulmonary Fibro.. 2023.09.27
16 COVID boosters are back: what scientists say about whether.. 2023.09.19
17 Journey to the Center of the Ear 2023.09.13
18 A Bacterial Culprit for Rheumatoid Arthritis 2023.09.05
19 Pet Hamsters Spread SARS-CoV-2 in Hong Kong: Preprint 2022.02.08
20 What We Learned About COVID-19 in 2021 2022.01.11
上一頁  1,2,3,4,5,6,7,8,9,10,11,12,13,14,15,16  下一頁
版權所有©2006 高雄市生物科技發展協會 所有文字、資料禁止轉用
地址:高雄市中正一路120號14樓之3 TEL:(07)591-9569 / FAX:(07)591-9018 / e-mail: khba.tw@gmail.com
累積進站人數:2896040