Scaffold Implant Into the Epididymal Adipose Tissue Protects Mice From High Fat Diet Induced Ectopic Lipid Accumulation and Hyperinsulinemia

被引:4
|
作者
Hendley, Michael A. [1 ]
Isely, Christopher [2 ]
Murphy, Kendall P. [2 ]
Hall, Hayley E. [1 ]
Annamalai, Prakasam [2 ]
Gower, R. Michael [1 ,2 ]
机构
[1] Univ South Carolina, Biomed Engn Program, Columbia, SC 29208 USA
[2] Univ South Carolina, Dept Chem Engn, Columbia, SC 29208 USA
关键词
diabetes; insulin resistance; adipose tissue; scaffold; resveratrol; bioengineering; tissue engineering; INSULIN-RESISTANCE; IN-VITRO; RESVERATROL SUPPLEMENTATION; TRIGLYCERIDE ACCUMULATION; GLUCOSE-UPTAKE; MACROPHAGES; INFLAMMATION; ADIPOCYTES; MODULATION; MECHANISMS;
D O I
10.3389/fbioe.2020.00562
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Ectopic lipid accumulation, the deposition of lipids in lean tissue, is linked to type 2 diabetes through an association with insulin resistance. It occurs when adipose tissue fails to meet lipid storage needs and there is lipid spillover into tissues not equipped to store them. Ectopic lipid contributes to organ dysfunction because lipids can interfere with insulin signaling and other signaling pathways. Clinical studies indicate that decreasing ectopic lipids through diet and exercise is effective in treating type 2 diabetes; however, its prevalence continues to rise. We propose that strategies to improve lipid handling in the adipose tissue would be adjunctive to healthy lifestyle modification and may address difficulties in treating type 2 diabetes and other syndromes spurred by ectopic lipid. Herein, we investigate biomaterial implants as a means to increase lipid utilization in adipose tissue through the recruitment of highly metabolic cells. Poly(lactide-co-glycolide) scaffolds were implanted into the epididymal fat of mice fed a high fat diet that overwhelms the adipose tissue and promotes ectopic lipid accumulation. Over 5 weeks, mice with scaffolds gained less weight compared to mice without scaffolds and were protected from hyperinsulinemia. These effects correlated with a 53% decrease in triglyceride in the gastrocnemius and a 25% decrease in the liver. Scaffolds increased CPT1A protein levels in the epididymal fat and histology revealed high expression of CTP1A in the cells infiltrating the scaffold relative to the rest of the fat pad. In addition, lacing the scaffold with resveratrol increased CPT1A expression in the epididymal fat over scaffolds with no drug; however, this did not result in further decreases in weight gain or ectopic lipid. Mechanistically, we propose that the cellular activity caused by scaffold implant mitigates the lipid load imposed by the high fat diet and leads to a substantial decrease in lipid accumulation in the muscle and liver. In conclusion, this study establishes that a tissue engineering approach to modulate lipid utilization in the epididymal fat tissue can mitigate ectopic lipid accumulation in mice fed a high fat diet with positive effects on weight gain and whole-body insulin resistance.
引用
收藏
页数:15
相关论文
共 50 条
  • [41] The effects of detraining and training on adipose tissue lipid droplet in obese mice after chronic high-fat diet
    Ju Yong Bae
    Jinhee Woo
    Hee Tae Roh
    Yul Hyo Lee
    Kangeun Ko
    Sunghwun Kang
    Ki Ok Shin
    Lipids in Health and Disease, 16
  • [42] The effects of detraining and training on adipose tissue lipid droplet in obese mice after chronic high-fat diet
    Bae, Ju Yong
    Woo, Jinhee
    Roh, Hee Tae
    Lee, Yul Hyo
    Ko, Kangeun
    Kang, Sunghwun
    Shin, Ki Ok
    LIPIDS IN HEALTH AND DISEASE, 2017, 16
  • [43] Correction: Isocitrate dehydrogenase 2 protects mice from high-fat diet-induced metabolic stress by limiting oxidative damage to the mitochondria from brown adipose tissue
    Jae-Ho Lee
    Younghoon Go
    Do-Young Kim
    Sun Hee Lee
    Ok-Hee Kim
    Yong Hyun Jeon
    Taeg Kyu Kwon
    Jae-Hoon Bae
    Dae-Kyu Song
    Im Joo Rhyu
    In-Kyu Lee
    Minho Shong
    Byung-Chul Oh
    Christopher Petucci
    Jeen-Woo Park
    Timothy F. Osborne
    Seung-Soon Im
    Experimental & Molecular Medicine, 2020, 52 : 988 - 988
  • [44] High-fat diet-induced hyperinsulinemia and tissue-specific insulin resistance in Cry-deficient mice
    Barclay, Johanna L.
    Shostak, Anton
    Leliavski, Alexei
    Tsang, Anthony H.
    Joehren, Olaf
    Mueller-Fielitz, Helge
    Landgraf, Dominic
    Naujokat, Nadine
    van der Horst, Gijsbertus T. J.
    Oster, Henrik
    AMERICAN JOURNAL OF PHYSIOLOGY-ENDOCRINOLOGY AND METABOLISM, 2013, 304 (10): : E1053 - E1063
  • [45] Naringenin suppresses neutrophil infiltration into adipose tissue in high-fat diet-induced obese mice
    Tsuhako, Rika
    Yoshida, Hiroki
    Sugita, Chihiro
    Kurokawa, Masahiko
    JOURNAL OF NATURAL MEDICINES, 2020, 74 (01) : 229 - 237
  • [46] Naringenin suppresses neutrophil infiltration into adipose tissue in high-fat diet-induced obese mice
    Rika Tsuhako
    Hiroki Yoshida
    Chihiro Sugita
    Masahiko Kurokawa
    Journal of Natural Medicines, 2020, 74 : 229 - 237
  • [47] Adipose-Tissue-Specific Expression of Pig ApoR Protects Mice from Diet-Induced Obesity
    Ji, Miao
    Xu, Ke
    Zhang, Dawei
    Chen, Tingting
    Shen, Liangcai
    Wu, Wenjing
    Zhang, Jin
    JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 2020, 68 (07) : 2256 - 2262
  • [48] T cell accumulation in adipose tissue in obesity-related insulin resistance induced by a high-fat diet
    Wu, Huaizhu
    Feng, Lili
    Garcia, Gabriela E.
    Sweeney, John F.
    Smith, C. W.
    Ballantyne, Christie M.
    CIRCULATION, 2006, 114 (18) : 260 - 260
  • [49] Isoliquiritigenin Ameliorates High-Fat Diet-Induced Obesity in Mice by Activating Brown Adipose Tissue
    Zhao, Le
    Li, Minhao
    Zhu, Qingjun
    Fang, Xingqiang
    Yang, Haili
    Zhao, Yongju
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2025, 26 (04)
  • [50] Thalidomide Controls Adipose Tissue Inflammation Associated with High-Fat Diet-Induced Obesity in Mice
    Nakamitsu, Patricia Z.
    Compri, Cecilia M.
    Pinto, Livia de Fraia
    Gotardo, Erica M. F.
    de Oliveira, Caroline C.
    Ribeiro, Marcelo L.
    Pedrazzoli, Jose, Jr.
    Gambero, Alessandra
    ENDOCRINE METABOLIC & IMMUNE DISORDERS-DRUG TARGETS, 2015, 15 (02) : 151 - 158