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微生物组及其代谢产物短链脂肪酸在前列腺癌中的作用。

Role of microbiome and its metabolite, short chain fatty acid in prostate cancer.

机构信息

Department of Urology, Soonchunhyang University Cheonan Hospital, Cheonan, Korea.

Department of Urology, Soonchunhyang University Seoul Hospital, Seoul, Korea.

出版信息

Investig Clin Urol. 2023 Jan;64(1):3-12. doi: 10.4111/icu.20220370.


DOI:10.4111/icu.20220370
PMID:36629060
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC9834570/
Abstract

The microbiome which is an assembly of all microbes living inside our bodies performs a major role in maintaining human health and wellness. It has been found that the imbalance of the microbiome can cause various diseases in humans. Similarly, there is growing evidence that the microbiome largely affects a person's chance of contracting certain cancers and how the disease develops and progresses. Studies have shown that about 15% to 20% of all cancers are caused by microbial pathogens. The prevalence of prostate cancer, which is increasing rapidly in Korea, is related to lifestyle including diet. These diets can alter the gut microbial composition, and the effect of the microbiome on prostate cancer development can be estimated. However, the microbiome associated with prostate cancer has been reported differently according to race. This means that the metabolite rather than the specific microbiome will be important. Short chain fatty acids, metabolites of the microbiome, plays an important role in the action mechanism of the microbiome. Short chain fatty acids play roles such as immunomodulation and inhibition of histone deacetylase. Here, we examined the most up-to-date literature featuring the effects of the microbiome on the risk and pathogenesis of prostate cancer.

摘要

人体内所有微生物的集合体——微生物组在维持人类健康和福祉方面发挥着重要作用。研究发现,微生物组的失衡可能会导致人类患上各种疾病。同样,越来越多的证据表明,微生物组在很大程度上影响着一个人患某些癌症的几率,以及疾病的发展和进展。研究表明,约 15%至 20%的癌症是由微生物病原体引起的。在韩国迅速增加的前列腺癌的流行与饮食等生活方式有关。这些饮食可以改变肠道微生物组成,并且可以估计微生物组对前列腺癌发展的影响。然而,与前列腺癌相关的微生物组因种族不同而报道不同。这意味着代谢物而不是特定的微生物组将是重要的。微生物组的代谢产物短链脂肪酸在微生物组的作用机制中起着重要作用。短链脂肪酸具有免疫调节和抑制组蛋白去乙酰化酶的作用。在这里,我们检查了关于微生物组对前列腺癌风险和发病机制影响的最新文献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/24cd/9834570/8a8856c2bbfd/icu-64-3-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/24cd/9834570/8a8856c2bbfd/icu-64-3-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/24cd/9834570/8a8856c2bbfd/icu-64-3-g001.jpg

相似文献

[1]
Role of microbiome and its metabolite, short chain fatty acid in prostate cancer.

Investig Clin Urol. 2023-1

[2]
Gut microbiome and prostate cancer.

Int J Urol. 2022-8

[3]
Gut Microbiota-Derived Short-Chain Fatty Acids Promote Prostate Cancer Growth via IGF1 Signaling.

Cancer Res. 2021-8-1

[4]
Effects of the gut microbiota and its metabolite short-chain fatty acids on endometriosis.

Front Cell Infect Microbiol. 2024

[5]
Diet-induced metabolic changes of the human gut microbiome: importance of short-chain fatty acids, methylamines and indoles.

Acta Diabetol. 2019-3-22

[6]
The Microbiome and Prostate Cancer Risk.

Curr Urol Rep. 2019-9-7

[7]
Modified Mediterranean-ketogenic diet modulates gut microbiome and short-chain fatty acids in association with Alzheimer's disease markers in subjects with mild cognitive impairment.

EBioMedicine. 2019-8-30

[8]
Virtualized clinical studies to assess the natural history and impact of gut microbiome modulation in non-hospitalized patients with mild to moderate COVID-19 a randomized, open-label, prospective study with a parallel group study evaluating the physiologic effects of KB109 on gut microbiota structure and function: a structured summary of a study protocol for a randomized controlled study.

Trials. 2021-4-2

[9]
Gut dysbiosis impacts the immune system and promotes prostate cancer.

Immunol Lett. 2024-8

[10]
The Effect of Probiotics on the Production of Short-Chain Fatty Acids by Human Intestinal Microbiome.

Nutrients. 2020-4-16

引用本文的文献

[1]
In-silico investigation reveals microbial metabolic biomarkers and their regulatory roles in hormone sensitive cancers.

J Genet Eng Biotechnol. 2025-9

[2]
Insights into the tripartite relationship between cervical cancer, human papillomavirus, and the vaginal microbiome: a mega-analysis.

Hum Genomics. 2025-8-12

[3]
Advancing prostate cancer treatment: the role of fecal microbiota transplantation as an adjuvant therapy.

Curr Res Microb Sci. 2025-6-11

[4]
The intratumoral microbiota heterogenicity is related to the prognosis and tumorigenesis of cervical cancer.

Front Cell Infect Microbiol. 2025-5-13

[5]
Identification of an intestinal microbiota enterotypes in ageing man diagnosed with benign prostatic hyperplasia (BPH).

Sci Rep. 2025-5-4

[6]
Arthritis increases the risk of prostate cancer: Results from the National Health and Nutrition Examination Survey 2005-2018 and two-sample Mendelian randomization analysis.

Investig Clin Urol. 2025-5

[7]
Obesity, dietary interventions and microbiome alterations in the development and progression of prostate cancer.

Front Immunol. 2025-1-7

[8]
The role of gut microbiota in prostate inflammation and benign prostatic hyperplasia and its therapeutic implications.

Heliyon. 2024-9-21

[9]
Different Prostatic Tissue Microbiomes between High- and Low-Grade Prostate Cancer Pathogenesis.

Int J Mol Sci. 2024-8-16

[10]
From microbes to medicine: harnessing the gut microbiota to combat prostate cancer.

Microb Cell. 2024-5-23

本文引用的文献

[1]
Gut microbiota-derived short-chain fatty acids promote prostate cancer progression via inducing cancer cell autophagy and M2 macrophage polarization.

Neoplasia. 2023-9

[2]
Short Chain Fatty Acids: Fundamental mediators of the gut-lung axis and their involvement in pulmonary diseases.

Chem Biol Interact. 2022-12-1

[3]
Short chain fatty acids exhibit selective estrogen receptor downregulator (SERD) activity in breast cancer.

Am J Cancer Res. 2022-7-15

[4]
Short-Chain Fatty Acids Reduced Renal Calcium Oxalate Stones by Regulating the Expression of Intestinal Oxalate Transporter SLC26A6.

mSystems. 2021-12-21

[5]
Epidemiology and Prevention of Prostate Cancer.

Eur Urol Oncol. 2021-12

[6]
Gut Microbiota Dysbiosis Accelerates Prostate Cancer Progression Through Increased LPCAT1 Expression and Enhanced DNA Repair Pathways.

Front Oncol. 2021-6-17

[7]
The gut microbiota associated with high-Gleason prostate cancer.

Cancer Sci. 2021-8

[8]
Gut Microbiota-Derived Short-Chain Fatty Acids Promote Prostate Cancer Growth via IGF1 Signaling.

Cancer Res. 2021-8-1

[9]
Role of microbiota-derived short-chain fatty acids in cancer development and prevention.

Biomed Pharmacother. 2021-7

[10]
Short-chain free-fatty acid G protein-coupled receptors in colon cancer.

Biochem Pharmacol. 2021-4

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