Literature DB >> 1925506

Metabolic control in diabetic subjects following myocardial infarction: difficulties in improving blood glucose levels by intravenous insulin infusion.

R R Davies1, R W Newton, G P McNeill, B M Fisher, C M Kesson, D Pearson.   

Abstract

Optimal metabolic control during the first twelve hours after myocardial infarction may be associated with improved survival in diabetic subjects. A comparison of an intravenous insulin infusion regimen aimed at improving blood glucose levels (n = 35), with 'routine control' (n = 34) in the post infarction period has been carried out in diabetic subjects admitted to four Coronary Care Units over a two year period. However, glycaemic control was similar in both groups (intravenous infusion regimen, mean +/- SD capillary blood glucose 10.3 +/- 2.1 mmol/l, 'routine control' glucose 10.7 +/- 3.6 mmol/l). There were no differences in the rates of arrhythmias (31% v 32%), heart failure (46% v 47%) or mortality (17% v 18%). Mortality in diabetic subjects was lower than that quoted in previous studies but was higher than in non-diabetic subjects admitted to the Coronary Care Unit during the same period. Attempts to improve glycaemic control by means of intravenous insulin infusion were unsuccessful.

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Year:  1991        PMID: 1925506     DOI: 10.1177/003693309103600303

Source DB:  PubMed          Journal:  Scott Med J        ISSN: 0036-9330            Impact factor:   0.729


  7 in total

1.  Insulin infusion in diabetic patients with acute myocardial infarction.

Authors:  G Davey; P Mckeigue
Journal:  BMJ       Date:  1996-09-14

2.  The Japanese Clinical Practice Guidelines for Management of Sepsis and Septic Shock 2016 (J-SSCG 2016).

Authors:  Osamu Nishida; Hiroshi Ogura; Moritoki Egi; Seitaro Fujishima; Yoshiro Hayashi; Toshiaki Iba; Hitoshi Imaizumi; Shigeaki Inoue; Yasuyuki Kakihana; Joji Kotani; Shigeki Kushimoto; Yoshiki Masuda; Naoyuki Matsuda; Asako Matsushima; Taka-Aki Nakada; Satoshi Nakagawa; Shin Nunomiya; Tomohito Sadahiro; Nobuaki Shime; Tomoaki Yatabe; Yoshitaka Hara; Kei Hayashida; Yutaka Kondo; Yuka Sumi; Hideto Yasuda; Kazuyoshi Aoyama; Takeo Azuhata; Kent Doi; Matsuyuki Doi; Naoyuki Fujimura; Ryota Fuke; Tatsuma Fukuda; Koji Goto; Ryuichi Hasegawa; Satoru Hashimoto; Junji Hatakeyama; Mineji Hayakawa; Toru Hifumi; Naoki Higashibeppu; Katsuki Hirai; Tomoya Hirose; Kentaro Ide; Yasuo Kaizuka; Tomomichi Kan'o; Tatsuya Kawasaki; Hiromitsu Kuroda; Akihisa Matsuda; Shotaro Matsumoto; Masaharu Nagae; Mutsuo Onodera; Tetsu Ohnuma; Kiyohiro Oshima; Nobuyuki Saito; So Sakamoto; Masaaki Sakuraya; Mikio Sasano; Norio Sato; Atsushi Sawamura; Kentaro Shimizu; Kunihiro Shirai; Tetsuhiro Takei; Muneyuki Takeuchi; Kohei Takimoto; Takumi Taniguchi; Hiroomi Tatsumi; Ryosuke Tsuruta; Naoya Yama; Kazuma Yamakawa; Chizuru Yamashita; Kazuto Yamashita; Takeshi Yoshida; Hiroshi Tanaka; Shigeto Oda
Journal:  Acute Med Surg       Date:  2018-02-05

Review 3.  The optimal target for acute glycemic control in critically ill patients: a network meta-analysis.

Authors:  Tomoaki Yatabe; Shigeaki Inoue; Masahiko Sakaguchi; Moritoki Egi
Journal:  Intensive Care Med       Date:  2016-09-29       Impact factor: 17.440

4.  The Japanese Clinical Practice Guidelines for Management of Sepsis and Septic Shock 2016 (J-SSCG 2016).

Authors:  Osamu Nishida; Hiroshi Ogura; Moritoki Egi; Seitaro Fujishima; Yoshiro Hayashi; Toshiaki Iba; Hitoshi Imaizumi; Shigeaki Inoue; Yasuyuki Kakihana; Joji Kotani; Shigeki Kushimoto; Yoshiki Masuda; Naoyuki Matsuda; Asako Matsushima; Taka-Aki Nakada; Satoshi Nakagawa; Shin Nunomiya; Tomohito Sadahiro; Nobuaki Shime; Tomoaki Yatabe; Yoshitaka Hara; Kei Hayashida; Yutaka Kondo; Yuka Sumi; Hideto Yasuda; Kazuyoshi Aoyama; Takeo Azuhata; Kent Doi; Matsuyuki Doi; Naoyuki Fujimura; Ryota Fuke; Tatsuma Fukuda; Koji Goto; Ryuichi Hasegawa; Satoru Hashimoto; Junji Hatakeyama; Mineji Hayakawa; Toru Hifumi; Naoki Higashibeppu; Katsuki Hirai; Tomoya Hirose; Kentaro Ide; Yasuo Kaizuka; Tomomichi Kan'o; Tatsuya Kawasaki; Hiromitsu Kuroda; Akihisa Matsuda; Shotaro Matsumoto; Masaharu Nagae; Mutsuo Onodera; Tetsu Ohnuma; Kiyohiro Oshima; Nobuyuki Saito; So Sakamoto; Masaaki Sakuraya; Mikio Sasano; Norio Sato; Atsushi Sawamura; Kentaro Shimizu; Kunihiro Shirai; Tetsuhiro Takei; Muneyuki Takeuchi; Kohei Takimoto; Takumi Taniguchi; Hiroomi Tatsumi; Ryosuke Tsuruta; Naoya Yama; Kazuma Yamakawa; Chizuru Yamashita; Kazuto Yamashita; Takeshi Yoshida; Hiroshi Tanaka; Shigeto Oda
Journal:  J Intensive Care       Date:  2018-02-02

5.  Does intensive insulin therapy really reduce mortality in critically ill surgical patients? A reanalysis of meta-analytic data.

Authors:  Jan O Friedrich; Clarence Chant; Neill K J Adhikari
Journal:  Crit Care       Date:  2010-10-21       Impact factor: 9.097

Review 6.  Towards a feasible algorithm for tight glycaemic control in critically ill patients: a systematic review of the literature.

Authors:  Sofie Meijering; Anouk M Corstjens; Jaap E Tulleken; John H J M Meertens; Jan G Zijlstra; Jack J M Ligtenberg
Journal:  Crit Care       Date:  2006-02       Impact factor: 9.097

7.  Is intensive glucose control bad for critically ill patients? A systematic review and meta-analysis.

Authors:  Ren-Qi Yao; Chao Ren; Guo-Sheng Wu; Yi-Bing Zhu; Zhao-Fan Xia; Yong-Ming Yao
Journal:  Int J Biol Sci       Date:  2020-03-12       Impact factor: 6.580

  7 in total

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