Journal of Diagnostics Concepts & Practice ›› 2025, Vol. 24 ›› Issue (01): 72-79.doi: 10.16150/j.1671-2870.2025.01.011
• Review • Previous Articles Next Articles
LEICHAO Wenwei, RAO Jialing, ZHOU Mengxue, YANG Hong()
Received:
2024-08-16
Accepted:
2024-12-08
Online:
2025-02-25
Published:
2025-02-25
Contact:
YANG Hong
E-mail:yh7115@126.com
CLC Number:
LEICHAO Wenwei, RAO Jialing, ZHOU Mengxue, YANG Hong. Advances in research on risk factors and associated diseases of intrapancreatic fat deposition[J]. Journal of Diagnostics Concepts & Practice, 2025, 24(01): 72-79.
[1] | PETROV M S. Fatty change of the pancreas: the Pandora's box of pancreatology[J]. Lancet Gastroenterol Hepatol, 2023, 8(7):671-682. |
[2] | JANSSENS L P, WESTON A D, SINGH D,et al. Determi-ning age and sex-specific distribution of pancreatic whole-gland CT attenuation using artificial intelligence aided image segmentation: Associations with body composition and pancreatic cancer risk[J]. Pancreatology, 2021, 21(8):1524-1530. |
[3] |
JANSSENS L P, TAKAHASHI H, NAGAYAMA H,et al. Artificial intelligence assisted whole organ pancreatic fat estimation on magnetic resonance imaging and correlation with pancreas attenuation on computed tomography[J]. Pancreatology, 2023, 23(5):556-562.
doi: 10.1016/j.pan.2023.04.008 pmid: 37193618 |
[4] | YANG W, XIE Y, SONG B,et al. Effects of aging and menopause on pancreatic fat fraction in healthy women population: A strobe-compliant article[J]. Medicine (Baltimore), 2019, 98(7):e14451. |
[5] | LI J, XIE Y, YUAN F,et al. Noninvasive quantification of pancreatic fat in healthy male population using chemical shift magnetic resonance imaging: effect of aging on pancreatic fat content[J]. Pancreas, 2011, 40(2):295-299. |
[6] | XIAO Y, WANG H, HAN L,et al. Predictive value of anthropometric and biochemical indices in non-alcoholic fatty pancreas disease: a cross-sectional study[J]. BMJ Open, 2024, 14(4):e081131. |
[7] |
SZCZEPANIAK L S, VICTOR R G, MATHUR R,et al. Pancreatic steatosis and its relationship to β-cell dysfunction in humans: racial and ethnic variations[J]. Diabetes Care, 2012, 35(11):2377-2383.
doi: 10.2337/dc12-0701 pmid: 22968187 |
[8] | LÊ K A, VENTURA E E, FISHER J Q,et al. Ethnic differences in pancreatic fat accumulation and its relationship with other fat depots and inflammatory markers[J]. Diabetes Care, 2011, 34(2):485-490. |
[9] | CERVANTES A, WAYMOUTH E K, PETROV M S. African-Americans and indigenous peoples have increased burden of diseases of the exocrine pancreas: A systematic review and meta-analysis[J]. Dig Dis Sci, 2019, 64(1):249-261. |
[10] | LEIU K H, POPPITT S D, MILES-CHAN J L,et al. Fatty pancreas and cardiometabolic risk: response of ectopic fat to lifestyle and surgical interventions[J]. Nutrients, 2022, 14(22):4873. |
[11] |
ICKIN GULEN M, GUVEN BAGLA A, YAVUZ O,et al. Histopathological changes in rat pancreas and skeletal muscle associated with high fat diet induced insulin resistance[J]. Biotech Histochem, 2015, 90(7):495-505.
doi: 10.3109/10520295.2015.1021380 pmid: 25968144 |
[12] | RAVAUT G, LÉGIOT A, BERGERON K F,et al. Monounsaturated fatty acids in obesity-related inflammation[J]. Int J Mol Sci, 2020, 22(1):330. |
[13] | LONGO M, ZATTERALE F, NADERI J,et al. Adipose tissue dysfunction as determinant of obesity-associated metabolic complications[J]. Int J Mol Sci, 2019, 20(9):2358. |
[14] | OOKURA R, USUKI N, MIKI Y. Correlation between pancreatic fat deposition and metabolic syndrome: Relationships with location in the pancreas and sex[J]. Intern Med, 2024, 63(15):2113-2123. |
[15] | OKADA K, WATAHIKI T, HORIE K,et al. The prevalence and clinical implications of pancreatic fat accumulation identified during a medical check-up[J]. Medicine (Baltimore), 2021, 100(41):e27487. |
[16] | WONGTRAKUL W, UNTAAVEESUP S, PAUSAWADI N,et al. Bidirectional association between non-alcoholic fatty liver disease and fatty pancreas: a systematic review and meta-analysis[J]. Eur J Gastroenterol Hepatol, 2023, 35(10):1107-1116. |
[17] |
RUGIVARODOM M, GEERATRAGOOL T, PAUSAWASDI N,et al. Fatty Pancreas: Linking Pancreas Pathophysiology to Nonalcoholic Fatty Liver Disease[J]. J Clin Transl Hepatol, 2022, 10(6):1229-1239.
doi: 10.14218/JCTH.2022.00085 pmid: 36381092 |
[18] |
IDILMAN I S, TUZUN A, SAVAS B,et al. Quantification of liver, pancreas, kidney, and vertebral body MRI-PDFF in non-alcoholic fatty liver disease[J]. Abdom Imaging, 2015, 40(6):1512-1519.
doi: 10.1007/s00261-015-0385-0 pmid: 25715922 |
[19] | GOFTON C, UPENDRAN Y, ZHENG M H,et al. MAFLD: How is it different from NAFLD?[J]. Clin Mol Hepatol, 2023, 29(Suppl):S17-S31. |
[20] | DE A, BHAGAT N, MEHTA M,et al. Metabolic dysfunction-associated steatotic liver disease (MASLD) definition is better than MAFLD criteria for lean patients with NAFLD[J]. J Hepatol, 2024, 80(2):e61-e62. |
[21] | MAK A L, WASSENAAR N, VAN DIJK A M,et al. Intrapancreatic fat deposition is unrelated to liver steatosis in metabolic dysfunction-associated steatotic liver disease[J]. JHEP Rep, 2024, 6(3):100998. |
[22] | ENGJOM T, KAVALIAUSKIENE G, TJORA E,et al. Sonographic pancreas echogenicity in cystic fibrosis compared to exocrine pancreatic function and pancreas fat content at Dixon-MRI[J]. PLoS One, 2018, 13(7):e0201019. |
[23] | GODOY-MATOS A F, VALERIO C M, MOREIRA R O,et al. Pancreatic fat deposition is increased and related to beta-cell function in women with familial partial lipodystrophy[J]. Diabetol Metab Syndr, 2018, 10:71. |
[24] | MELONI A, NOBILE M, KEILBERG P,et al. Pancreatic fatty replacement as risk marker for altered glucose metabolism and cardiac iron and complications in thalassemia major[J]. Eur Radiol, 2023, 33(10):7215-7225. |
[25] |
KATZ D S, HINES J, MATH K R,et al. Using CT to reveal fat-containing abnormalities of the pancreas[J]. Am J Roentgenol, 1999, 172(2):393-396.
pmid: 9930790 |
[26] | MAHYOUB M A, ELHOUMED M, MAQUL A H,et al. Fatty infiltration of the pancreas: a systematic concept analysis[J]. Front Med (Lausanne), 2023, 10:1227188. |
[27] | SANTOS M L C, DE BRITO B B, SILVA F A F DA,et al. Helicobacter pylori infection: Beyond gastric manifestations[J]. World J Gastroenterol, 2020, 26(28):4076-4093. |
[28] | RABELO-GONÇALVES E M, ROESLER B M, ZEITUNE J M. Extragastric manifestations of Helicobacter pylori infection: Possible role of bacterium in liver and pancreas diseases[J]. World J Hepatol, 2015, 7(30):2968-2979. |
[29] |
OSMAN M A A, ALKHOULY M, ELMOHASEB G F,et al. Relation between non-alcoholic fatty pancreas and clinical and biochemical parameters in women with polycystic ovary syndrome: A multi-centric study[J]. Int J Gen Med, 2022, 15:8225-8233.
doi: 10.2147/IJGM.S384073 pmid: 36438020 |
[30] | WARE M A, KAAR J L, DINIZ BEHN C,et al. Pancreatic fat relates to fasting insulin and postprandial lipids but not polycystic ovary syndrome in adolescents with obesity[J]. Obesity (Silver Spring), 2022, 30(1):191-200. |
[31] | BAYYIGIT A, GOKDEN Y, ONOL S,et al. Hypothyroi-dism and subclinical hypothyroidism are associated with fatty pancreas (Non-alcoholic fatty pancreas disease)[J]. Diabetes Metab Res Rev, 2024, 40(2):e3720. |
[32] |
PAUL J, SHIHAZ A V H. Pancreatic steatosis: A new diagnosis and therapeutic challenge in gastroenterology[J]. Arq Gastroenterol, 2020, 57(2):216-220.
doi: S0004-28032020000200216 pmid: 32490903 |
[33] |
NORONHA M, SALGADINHO A, FERREIRA DE ALMEIDA M J,et al. Alcohol and the pancreas. I. Clinical associations and histopathology of minimal pancreatic inflammation[J]. Am J Gastroenterol, 1981, 76(2):114-119.
pmid: 7304546 |
[34] | MEZA V, ARNOLD J, DÍAZ L A,et al. Alcohol Consumption: Medical Implications, the Liver and Beyond[J]. Alcohol Alcohol, 2022, 57(3):283-291. |
[35] | STUART C E, KO J, MODESTO A E,et al. Implications of tobacco smoking and alcohol consumption on ectopic fat deposition in individuals after pancreatitis[J]. Pancreas, 2020, 49(7):924-934. |
[36] | SBEIT W, ELHEJA F ABU, MSHEIIL B,et al. Fatty pancreas was associated with a higher acute pancreatitis Systemic Inflammatory Response Syndrome score at hospital admission[J]. Eur J Gastroenterol Hepatol, 2023, 35(9):980-984. |
[37] | KO J, AL-ANI Z, LONG K,et al. Intrapancreatic, liver, and skeletal muscle fat depositions in first attack of acute pancreatitis versus health[J]. Am J Gastroenterol, 2022, 117(10):1693-1701. |
[38] |
TIRKES T, YADAV D, CONWELL D L,et al. Quantitative MRI of chronic pancreatitis: results from a multi-institutional prospective study, magnetic resonance imaging as a non-invasive method for assessment of pancreatic fibrosis (MINIMAP)[J]. Abdom Radiol (NY), 2022, 47(11):3792-3805.
doi: 10.1007/s00261-022-03654-7 pmid: 36038644 |
[39] | ACHARYA C, NAVINA S, SINGH V P. Role of panc-reatic fat in the outcomes of pancreatitis[J]. Pancreatology, 2014, 14(5):403-408. |
[40] | SINGHI A D, PAI R K, KANT J A,et al. The histopatho-logy of PRSS1 hereditary pancreatitis[J]. Am J Surg Pathol, 2014, 38(3):346-353. |
[41] | CHAN T T, TSE Y K, LUI R N,et al. Fatty pancreas is independently associated with subsequent diabetes mellitus development: A 10-year prospective cohort study[J]. Clin Gastroenterol Hepatol, 2022, 20(9):2014-2022, e4. |
[42] |
YAMAZAKI H, TSUBOYA T, KATANUMA A,et al. Lack of independent association between fatty pancreas and incidence of type 2 diabetes: 5-year japanese cohort study[J]. Diabetes Care, 2016, 39(10):1677-1683.
doi: 10.2337/dc16-0074 pmid: 27422578 |
[43] | DONG X, ZHU Q, YUAN C,et al. Associations of intrapancreatic fat deposition with incident diseases of the exocrine and endocrine pancreas: A UK biobank prospective cohort study[J]. Am J Gastroenterol, 2024, 119(6):1158-1166. |
[44] | KO J, SKUDDER-HILL L, CHO J, et al. Pancreatic enzymes and abdominal adipose tissue distribution in new-onset prediabetes/diabetes after acute pancreatitis[J]. World J Gastroenterol, 2021, 27(23):3357-3371. |
[45] | TIRKES T, JEON C Y, LI L,et al. Association of pancrea-tic steatosis with chronic pancreatitis, obesity, and type 2 diabetes mellitus[J]. Pancreas, 2019, 48(3):420-426. |
[46] | SREEDHAR U L, DESOUZA S V, PARK B,et al. A systematic review of intra-pancreatic fat deposition and pancreatic carcinogenesis[J]. J Gastrointest Surg, 2020, 24(11):2560-2569. |
[47] | LIPP M, TARJÁN D, LEE J,et al. Fatty pancreas is a risk factor for pancreatic cancer: A systematic review and meta-analysis of 2956 patients[J]. Cancers (Basel), 2023, 15(19):4876. |
[48] | YYAMAZAKI H, STREICHER S A, WU L,et al. Evidence for a causal link between intra-pancreatic fat deposition and pancreatic cancer: A prospective cohort and Mendelian randomization study[J]. Cell Rep Med, 2024, 5(2):101391. |
[49] | ZHOU L, XIAO W M, LI C P,et al. Impact of fatty pancreas on postoperative pancreatic fistulae: A meta-analysis[J]. Front Oncol, 2021, 11:622282. |
[50] |
KUL S, KARADENIZ A, DURSUN İ,et al. Non-alcoholic fatty pancreas disease is associated with increased epicardial adipose tissue and aortic intima-media thickness[J]. Acta Cardiol Sin, 2019, 35(2):118-125.
doi: 10.6515/ACS.201903_35(2).20181009A pmid: 30930559 |
[51] |
孙朋涛, 都雪朝, 王若顿, 等. 胰腺脂肪浸润对2型糖尿病患者冠状动脉粥样硬化严重程度的预测价值[J]. 中国医学科学院学报, 2020, 42(2):172-177.
doi: 10.3881/j.issn.1000-503X.11524 |
SUN P T, DU X C, WANG R D,et al. Predictive value of pancreatic steatosis for severity of coronary atherosclerosis in patients with type 2 diabetes mellitus[J]. Acta Acad Med Sinicae, 2020, 42(2)172–177. | |
[52] | LIU Y, SHAMAITIJIANG X, SKUDDER-HILL L,et al. Relationship of high-density lipoprotein subfractions and apolipoprotein A-I with fat in the pancreas[J]. Diabetes Obes Metab, 2025, 27(1):123-133. |
[53] |
THOMSEN M N, SKYTTE M J, SAMKANI A,et al. Dietary carbohydrate restriction augments weight loss-induced improvements in glycaemic control and liver fat in individuals with type 2 diabetes: a randomised controlled trial[J]. Diabetologia, 2022, 65(3):506-517.
doi: 10.1007/s00125-021-05628-8 pmid: 34993571 |
[54] | DELLA PEPA G, BRANCATO V, COSTABILE G,et al. An isoenergetic multifactorial diet reduces pancreatic fat and increases postprandial insulin response in patients with type 2 diabetes: A randomized controlled trial[J]. Diabetes Care, 2022, 45(9):1935-1942. |
[55] | MITSUSHIO K, BADEN M Y, KATO S,et al. Relationships between intra-pancreatic fat deposition and lifestyle factors: a cross-sectional study[J]. Front Endocrinol (Lausanne), 2023, 14:1219579. |
[56] | LI M, ZHENG Q, MILLER J D,et al. Aerobic training reduces pancreatic fat content and improves β-cell function: A randomized controlled trial using IDEAL-IQ magnetic resonance imaging[J]. Diabetes Metab Res Rev, 2022, 38(4):e3516. |
[57] |
HEISKANEN M A, MOTIANI K K, MARI A,et al. Exercise training decreases pancreatic fat content and improves beta cell function regardless of baseline glucose tolerance: a randomised controlled trial[J]. Diabetologia, 2018, 61(8):1817-1828.
doi: 10.1007/s00125-018-4627-x pmid: 29717337 |
[58] |
GHOSH A, DUTTA K, BHATT S P,et al. Dapagliflozin improves body fat patterning, and hepatic and pancreatic fat in patients with type 2 diabetes in north india[J]. J Clin Endocrinol Metab, 2022, 107(6):e2267-e2275.
doi: 10.1210/clinem/dgac138 pmid: 35263436 |
[59] | OWOLABI A I, CORBETT R C, FLATT P R,et al. Positive interplay between FFAR4/GPR120, DPP-IV inhibition and GLP-1 in beta cell proliferation and glucose homeostasis in obese high fat fed mice[J]. Peptides, 2024, 177:171218. |
[60] | JERMENDY G, KOLOSSVÁRY M, DROBNI Z,et al. Environmental factors slightly outweigh genetic influences in the development of pancreatic lipid accumulation: a classical twin study[J]. Metab Syndr Relat Disord, 2020, 18(9):413-418. |
[61] | SALMAN A A, SALMAN M A, SAID M,et al. Improvement of pancreatic steatosis and indices of insulin resistance after metabolic surgery[J]. Front Med (Lausanne), 2022, 9:894465. |
[1] | HUANG Ruikun, YANG Yanzhao, CHAI Weimin. Advances in application of photon-counting CT for pancreatic imaging [J]. Journal of Diagnostics Concepts & Practice, 2025, 24(02): 111-117. |
[2] | LI Weixia, YAN Fuhua. Photon-counting CT in liver disease: applications and advances [J]. Journal of Diagnostics Concepts & Practice, 2025, 24(02): 118-124. |
[3] | CAI Xinxin, DENG Rong, XU Xinxin, XU Zhihan, CHANG Rui, DONG Haipeng, LIN Huimin, YAN Fuhua. Study on consistency between liver fat fraction quantification based on photon-counting CT and MRI proton density fat fraction [J]. Journal of Diagnostics Concepts & Practice, 2025, 24(02): 146-154. |
[4] | CHANG Rui, LI Jiqiang, YANG Yanzhao, CHAI Weimin, YAN Fuhua, DONG Haipeng.. Evaluation value of single-phase images from photon-counting CT-based low-dose pancreatic dynamic volume perfusion scanning for pancreatic cancer imaging [J]. Journal of Diagnostics Concepts & Practice, 2025, 24(02): 155-162. |
[5] | ZHOU Shanshui, QIN Le, CHANG Rui, DU Lianjun, YAN Fuhua, LIU Fangtao. Prospective study on quantitative evaluation of femoral neck bone mineral density using spectral localizer radiograph from photon-counting detector CT [J]. Journal of Diagnostics Concepts & Practice, 2025, 24(02): 163-169. |
[6] | WANG Kangning, ZHU Lan, FENG Weiming, XIA Yihan, SHI Bowen, ZHANG Huan. Value of synthetic MRI in predicting treatment response to neoadjuvant chemoradiotherapy in patients with locally advanced rectal cancer [J]. Journal of Diagnostics Concepts & Practice, 2025, 24(02): 170-177. |
[7] | QIN Yu, LI Cheng, HUA Qing, ZHANG Huiting, JIA Wanru, DONG Yijie, ZHOU Jianqiao, XIA Shujun. Ultrasound viscoelastic imaging in differentiation of benign and malignant breast tumors [J]. Journal of Diagnostics Concepts & Practice, 2025, 24(02): 194-203. |
[8] | LÜ Haiying, LU Yong, HE Naying. Clinical applications of photon-counting CT in neuroimaging [J]. Journal of Diagnostics Concepts & Practice, 2025, 24(02): 212-219. |
[9] | NING Guang. Current situation and challenges of prevention and control of diabetes in China [J]. Journal of Diagnostics Concepts & Practice, 2025, 24(01): 1-6. |
[10] | ZHANG Ke, ZHANG Weiyi, SUN Haitian, CAO Mingfeng, ZHANG Xinhuan. Anoikis-related gene PDK4 and pathogenesis of type 2 diabetes mellitus: A bioinformatics-based study [J]. Journal of Diagnostics Concepts & Practice, 2025, 24(01): 27-34. |
[11] | ZOU Huimin, WANG Suijun. Evolution of diagnosis standards for diabetes in China and blood glucose management for special populations [J]. Journal of Diagnostics Concepts & Practice, 2025, 24(01): 14-20. |
[12] | ZHANG Huihui, FANG Shu, WU Mengxiong, LIU Fangtao, HE Naying, DONG Haipeng, YAN Fuhua. Study on deep learning reconstruction technology in improving image quality of pituitary neuroendocrine tumors in coronal T1WI magnetic resonance image [J]. Journal of Diagnostics Concepts & Practice, 2024, 23(06): 594-601. |
[13] | PEI Zhou, LUO Feihong. Progress in diagnosis and treatment of pediatric diabetes in China [J]. Journal of Diagnostics Concepts & Practice, 2024, 23(05): 461-466. |
[14] | LI Yanbing. Interpretation of 2024 American Diabetes Association’s Standards of Care in Diabetes — diabetes diagnosis and classification [J]. Journal of Diagnostics Concepts & Practice, 2024, 23(05): 467-473. |
[15] | ZHAO Lijuan, CHENG Tao, SHUI Xinjun, YUE Dongqi, QIN Shaochen, LIU Xiaoling, WANG Jiali, FU Yi. Advances in study on risk factors related to cerebral microbleeds and on treatment decision-making when cerebral microbleeds merging related diseases [J]. Journal of Diagnostics Concepts & Practice, 2024, 23(04): 430-438. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||