|
1
|
GBD 2015 Obesity Collaborators. Afshin A,
Forouzanfar MH, Reitsma MB, Sur P, Estep K, Lee A, Marczak L,
Mokdad AH, Moradi-Lakeh M, et al: Health effects of overweight and
obesity in 195 countries over 25 years. N Engl J Med. 377:13–27.
2017.PubMed/NCBI View Article : Google Scholar
|
|
2
|
Ministry of Health, Labour and Welfare:
Summary of the National Health and Nutrition Survey, 2024. Ministry
of Health, Labour and Welfare, Tokyo, 2024. https://www.mhlw.go.jp/stf/newpage_66279.html.
|
|
3
|
Freedman DM, Ron E, Ballard-Barbash R,
Doody MM and Linet MS: Body mass index and all-cause mortality in a
nationwide US cohort. Int J Obes (Lond). 30:822–829.
2006.PubMed/NCBI View Article : Google Scholar
|
|
4
|
Zhang Y, Wang J, Sun X, Cao Z, Xu X, Liu
D, Xin X and Qin M: Laparoscopic sleeve gastrectomy versus
laparoscopic Roux-en-Y gastric bypass for morbid obesity and
related comorbidities: A meta-analysis of 21 studies. Obes Surg.
25:19–26. 2015.PubMed/NCBI View Article : Google Scholar
|
|
5
|
Angrisani L, Santonicola A, Iovino P,
Ramos A, Shikora S and Kow L: Bariatric surgery survey 2018:
Similarities and disparities among the 5 IFSO chapters. Obes Surg.
31:1937–1948. 2021.PubMed/NCBI View Article : Google Scholar
|
|
6
|
Ohta M, Kasama K, Sasaki A, Naitoh T, Seki
Y, Inamine S, Oshiro T, Doki Y, Seto Y, Hayashi H, et al: Current
status of laparoscopic bariatric/metabolic surgery in Japan: The
sixth nationwide survey by the Japan consortium of obesity and
metabolic surgery. Asian J Endosc Surg. 14:170–177. 2021.PubMed/NCBI View Article : Google Scholar
|
|
7
|
Sasaki A, Wakabayashi G and Yonei Y:
Current status of bariatric surgery in Japan and effectiveness in
obesity and diabetes. J Gastroenterol. 49:57–63. 2014.PubMed/NCBI View Article : Google Scholar
|
|
8
|
Schauer PR, Bhatt DL, Kirwan JP, Wolski K,
Aminian A, Brethauer SA, Navaneethan SD, Singh RP, Pothier CE,
Nissen SE, et al: Bariatric surgery versus intensive medical
therapy for diabetes-5-year outcomes. N Engl J Med. 376:641–651.
2017.PubMed/NCBI View Article : Google Scholar
|
|
9
|
Dixon JB, Chuang LM, Chong K, Chen SC,
Lambert GW, Straznicky NE, Lambert EA and Lee WJ: Predicting the
glycemic response to gastric bypass surgery in patients with type 2
diabetes. Diabetes Care. 36:20–26. 2013.PubMed/NCBI View Article : Google Scholar
|
|
10
|
Lee WJ, Almulaifi A, Tsou JJ, Ser KH, Lee
YC and Chen SC: Laparoscopic sleeve gastrectomy for type 2 diabetes
mellitus: predicting the success by ABCD score. Surg Obes Relat
Dis. 11:991–996. 2015.PubMed/NCBI View Article : Google Scholar
|
|
11
|
Eriksson KF, Saltin B and Lindgärde F:
Increased skeletal muscle capillary density precedes diabetes
development in men with impaired glucose tolerance. A 15-year
follow-up. Diabetes. 43:805–808. 1994.PubMed/NCBI View Article : Google Scholar
|
|
12
|
Kriketos AD, Pan DA, Lillioja S, Cooney
GJ, Baur LA, Milner MR, Sutton JR, Jenkins AB, Bogardus C and
Storlien LH: Interrelationships between muscle morphology, insulin
action, and adiposity. Am J Physiol. 270 (6 Pt 2):R1332–R1339.
1996.PubMed/NCBI View Article : Google Scholar
|
|
13
|
Riddle MC, Cefalu WT, Evans PH, Gerstein
HC, Nauck MA, Oh WK, Rothberg AE, le Roux CW, Rubino F, Schauer P,
et al: Consensus report: Definition and interpretation of remission
in type 2 diabetes. Diabetes Care. 44:2438–2444. 2021.PubMed/NCBI View Article : Google Scholar
|
|
14
|
Brethauer SA, Kim J, El Chaar M, Papasavas
P, Eisenberg D, Rogers A, Ballem N, Kligman M and Kothari S: ASMBS
clinical issues committee. Standardized outcomes reporting in
metabolic and bariatric surgery. Obes Surg. 25:587–606.
2015.PubMed/NCBI View Article : Google Scholar
|
|
15
|
Shikata K, Haneda M, Koya D, Suzuki Y,
Tomino Y, Yamada K, Maeda S, Kawakami N, Uzu T, Nishimura M, et al:
diabetic nephropathy remission and regression team trial in Japan
(DNETT-Japan): Rationale and study design. Diabetes Res Clin Pract.
87:228–232. 2010.PubMed/NCBI View Article : Google Scholar
|
|
16
|
Dindo D, Demartines N and Clavien PA:
Classification of surgical complications: A new proposal with
evaluation in a cohort of 6336 patients and results of a survey.
Ann Surg. 240:205–213. 2004.PubMed/NCBI View Article : Google Scholar
|
|
17
|
Sjöström LM, Narbro K, Sjöström CD,
Karason K, Larsson B, Wedel H, Lystig T, Sullivan M, Bouchard C,
Carlsson B, et al: Effects of bariatric surgery on mortality in
Swedish obese subjects. N Engl J Med. 357:741–752. 2007.PubMed/NCBI View Article : Google Scholar
|
|
18
|
Mingrone G, Panunzi S, De Gaetano A,
Guidone C, Iaconelli A, Capristo E, Chamseddine G, Bornstein SR and
Rubino F: Metabolic surgery versus conventional medical therapy in
patients with type 2 diabetes: 10-year follow-up of an open-label,
single-centre, randomised controlled trial. Lancet. 397:293–304.
2021.PubMed/NCBI View Article : Google Scholar
|
|
19
|
Haruta H, Kasama K, Ohta M, Sasaki A,
Yamamoto H, Miyazaki Y, Oshiro T, Naitoh T, Hosoya Y, Togawa T, et
al: Long-term outcomes of bariatric and metabolic surgery in Japan:
results of a multi-institutional survey. Obes Surg. 27:754–762.
2017.PubMed/NCBI View Article : Google Scholar
|
|
20
|
Saiki A, Yamaguchi T, Tanaka S, Sasaki A,
Naitoh T, Seto Y, Matsubara H, Yokote K, Okazumi S, Ugi S, et al:
Background characteristics and postoperative outcomes of
insufficient weight loss after laparoscopic sleeve gastrectomy in
Japanese patients. Ann Gastroenterol Surg. 3:638–647.
2019.PubMed/NCBI View Article : Google Scholar
|
|
21
|
WHO Expert Consultation. Appropriate
body-mass index for Asian populations and its implications for
policy and intervention strategies. Lancet. 363:157–163.
2004.PubMed/NCBI View Article : Google Scholar
|
|
22
|
Dixon JB, Zimmet P, Alberti KG and Rubino
F: International Diabetes Federation Taskforce on Epidemiology and
Prevention. Bariatric surgery: An IDF statement for obese type 2
diabetes. Diabet Med. 28:628–642. 2011.PubMed/NCBI View Article : Google Scholar
|
|
23
|
Flølo TN, Andersen JR, Kolotkin RL,
Aasprang A, Natvig GK, Hufthammer KO and Våge V: Five-year outcomes
after vertical sleeve gastrectomy for severe obesity: a prospective
cohort study. Obes Surg. 27:1944–1951. 2017.PubMed/NCBI View Article : Google Scholar
|
|
24
|
Naitoh T, Kasama K, Seki Y, Ohta M, Oshiro
T, Sasaki A, Miyazaki Y, Yamaguchi T, Hayashi H, Imoto H, et al:
Efficacy of sleeve gastrectomy with duodenal-jejunal bypass for the
treatment of obese severe diabetes patients in Japan: A
retrospective multicenter study. Obes Surg. 28:497–505.
2018.PubMed/NCBI View Article : Google Scholar
|
|
25
|
Merz KE and Thurmond DC: Role of skeletal
muscle in insulin resistance and glucose uptake. Compr Physiol.
10:785–809. 2020.PubMed/NCBI View Article : Google Scholar
|
|
26
|
Sylow L, Tokarz VL, Richter EA and Klip A:
The many actions of insulin in skeletal muscle, the paramount
tissue determining glycemia. Cell Metab. 33:758–780.
2021.PubMed/NCBI View Article : Google Scholar
|
|
27
|
Arany Z, He H, Lin J, Hoyer K, Handschin
C, Toka O, Ahmad F, Matsui T, Chin S, Wu PH, et al: Transcriptional
coactivator PGC-1 alpha controls the energy state and contractile
function of cardiac muscle. Cell Metab. 1:259–271. 2005.PubMed/NCBI View Article : Google Scholar
|
|
28
|
Boström P, Wu J, Jedrychowski MP, Korde A,
Ye L, Lo JC, Rasbach KA, Boström EA, Choi JH, Long JZ, et al: A
PGC1-α-dependent myokine that drives brown-fat-like development of
white fat and thermogenesis. Nature. 481:463–468. 2012.PubMed/NCBI View Article : Google Scholar
|
|
29
|
Shan Z, Li Y, Zong G, Guo Y, Li J, Manson
JE, Hu FB, Willett WC, Schernhammer ES and Bhupathiraju SN:
Rotating night shift work and adherence to unhealthy lifestyle in
predicting risk of type 2 diabetes: Results from two large US
cohorts of female nurses. BMJ. 363(k4641)2018.PubMed/NCBI View Article : Google Scholar
|
|
30
|
Jassil FC, Papageorgiou M, Mackay E,
Carnemolla A, Kingett H, Doyle J, Kirk A, Lewis N, Montagut G,
Marvasti P, et al: One year changes in body composition and
musculoskeletal health following metabolic/bariatric surgery. J
Clin Endocrinol Metab. 110:e1598–e1608. 2025.PubMed/NCBI View Article : Google Scholar
|
|
31
|
Peterson MD, Sen A and Gordon PM:
Influence of resistance exercise on lean body mass in aging adults:
A meta-analysis. Med Sci Sports Exerc. 43:249–258. 2011.PubMed/NCBI View Article : Google Scholar
|
|
32
|
Srikanthan P and Karlamangla AS: Relative
muscle mass is inversely associated with insulin resistance and
prediabetes. Findings from the third national health and nutrition
examination survey. J Clin Endocrinol Metab. 96:2898–2903.
2011.PubMed/NCBI View Article : Google Scholar
|
|
33
|
Cleasby ME, Jamieson PM and Atherton PJ:
Insulin resistance and sarcopenia: Mechanistic links between common
co-morbidities. J Endocrinol. 229:R67–R81. 2016.PubMed/NCBI View Article : Google Scholar
|
|
34
|
Nguyen NTK, Vo NP, Huang SY and Wang W: .
Fat-free mass and skeletal muscle mass gain are associated with
diabetes remission after laparoscopic sleeve gastrectomy in males
but not in females. Int J Environ Res Public Health.
19(978)2022.PubMed/NCBI View Article : Google Scholar
|