Showing posts with label Diabetic Retinopathy. Show all posts
Showing posts with label Diabetic Retinopathy. Show all posts

Sunday, July 07, 2013

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Diabetic retinopathy severity inversely tied to cognition 

Diabetic retinopathy severity inversely tied to cognition
For patients with type 2 diabetes, the severity of diabetic retinopathy is inversely linked to cognitive impairment, according to a study published online April 30 in Diabetes Care.

For patients with type 2 diabetes, the severity of diabetic retinopathy is inversely linked to cognitive impairment, according to a study published online April 30 in Diabetes Care.
07 july 2013—For patients with type 2 diabetes, the severity of diabetic retinopathy (DR) is inversely linked to cognitive impairment, according to a study published online April 30 in Diabetes Care.
Roxanne R. Crosby-Nwaobi, Ph.D., from King's College London, and colleagues recruited 380 patients with type 2 diabetes from a population-based eye screening program. Participants were grouped by severity of DR: no/mild DR (252 patients) or proliferative diabetic retinopathy (PDR; 128 patients). Participants underwent psychosocial evaluation; depression screening; ophthalmic and physical examination, including blood assays; and cognitive assessments.
The researchers found that there was a significant inverse correlation between the severity of DR and cognitive impairment. The observed variance was partially explained by ethnicity (16 percent), education (7.3 percent), and retinopathy status (6.8 percent). Cognitive impairment scores on the Addenbrooke's Cognitive Examination-Revised were significantly lower in the no/mild DR group versus the PDR group. Twelve percent of the no/mild DR group and 5 percent of the PDR group had positive screening results for dementia or significant cognitive impairment, based on the Mini-Mental State Examination cut-off scores.
"Patients with minimal DR demonstrated more cognitive impairment than those with advanced DR," the authors write. "The increased prevalence of cognitive impairment in diabetes may be associated with factors other than evident retinal microvascular disease."

Monday, September 29, 2008

Candesartan Has Limited Effectiveness for Diabetic Retinopathy

29 sept 2008--Candesartan, an angiotensin II receptor blocker, modestly reduces the development of retinopathy in type 1 diabetes and encourages regression of the condition in type 2 diabetes, according to two Lancet reports released online.
In separate studies, industry-funded researchers randomized 3300 patients with type 1 diabetes and 1900 with type 2 diabetes to either daily candesartan or placebo, with follow-up for a median 4.7 years. (Type 1 diabetics were normotensive, and patients with type 2 disease could be either normotensive or receiving treatment for hypertension.)
Type 1 diabetics on candesartan had a modest reduction in the incidence of retinopathy, but there was no effect on progression among those who already had retinopathy.
Among type 2 diabetics with established retinopathy, candesartan lowered the risk for progression of the complication, although not significantly. The drug also prompted regression among those with early retinopathy.
Commentators conclude that candesartan has benefits, but "with some caveats" about their limit.
LINK(S):
Lancet article on candesartan in type 1 diabetes (Free abstract; full text requires subscription)
Lancet article on candesartan in type 2 diabetes (Free abstract; full text requires subscription)
Lancet comment (Subscription required)

Tuesday, November 06, 2007

Fenofibrate Reduces Need for Laser Treatment for Diabetic Retinopathy

Patients with diabetes who take fenofibrate are less likely to need laser treatment for retinopathy, but the drug's mechanism of action remains unclear, reports a Lancet study published online.
Nearly 10,000 adults with type 2 diabetes who did not require lipid-lowering therapy were randomized to receive daily fenofibrate or placebo. During a mean follow-up of about 5 years, significantly fewer fenofibrate recipients than placebo recipients underwent laser treatment for retinopathy (3.4% vs. 4.9%). Between-groups differences were seen within 8 months of treatment initiation.
In a substudy of patients who underwent serial retinal photography, fenofibrate appeared to protect against retinopathy progression only among those with the condition at baseline.
The authors found no association between plasma lipid levels and retinopathy. Rather, they speculate that fenofibrate "might have anti-apoptotic, anti-inflammatory, and anti-oxidative effects and might also improve vascular reactivity, thus attenuating progression of diabetic retinopathy and the need for laser treatment."

Tuesday, August 28, 2007

Primary and Secondary Interventions for Diabetic Retinopathy Reviewed

August 27, 2007 — A systematic review in the August 22/29 issue of the Journal of the American Medical Association provides an overview of primary and secondary interventions for diabetic retinopathy (DR).
"Diabetic retinopathy (DR) is the leading cause of blindness in the working-aged population in the United States," write Quresh Mohamed, MD, from the Centre for Eye Research Australia, University of Melbourne, and the Royal Victorian Eye and Ear Hospital in Melbourne, and colleagues. "There are many new interventions for DR, but evidence to support their use is uncertain."
To summarize and review the best available evidence for primary and secondary intervention in the management of DR, including diabetic macular edema (DME), the authors performed a systematic review of all pertinent English-language articles. These were identified with a keyword search of MEDLINE from 1966 through May 2007, EMBASE, the Cochrane Collaboration, the Association for Research in Vision and Ophthalmology database, and the National Institutes of Health Clinical Trials Database, as well as manual searches of reference lists of selected major reviews.
Inclusion criteria for the reviewed studies were all English-language randomized controlled trials with more than 12 months of follow-up and meta-analyses. Delphi consensus criteria were used to identify studies with good methodology.
Of 44 studies meeting the inclusion criteria, 3 were meta-analyses. Based on these studies, the study authors concluded that tight glycemic and blood pressure (BP) controls were associated with lower incidence and slower progression of DR.
In patients with severe nonproliferative and proliferative retinopathy, panretinal laser photocoagulation (PRP) was associated with a 50% decrease in the risk for moderate and severe visual loss. In eyes with macular edema, focal laser photocoagulation was associated with a 50% to 70% decrease in the risk for moderate visual loss.
Early vitrectomy was associated with improvement in visual recovery in patients with proliferative retinopathy and severe vitreous hemorrhage. When conventional treatment has failed, intravitreal corticosteroid injections may be an option for eyes with persistent visual loss.
Available evidence is not sufficient for the efficacy or safety of lipid-lowering therapy, medical interventions, or antivascular endothelial growth factors on the incidence or progression of DR.
"Tight glycemic and blood pressure control remains the cornerstone in the primary prevention of DR," the investigators write. "Pan-retinal and focal retinal laser photocoagulation reduces the risk of visual loss in patients with severe DR and macular edema, respectively. There is currently insufficient evidence to recommend routine use of other treatments."
Specific clinical recommendations for primary and secondary interventions for DR are as follows:
For glycemic control, any lowering of levels of hemoglobin A1c (HbA1c) is beneficial in reducing the development of new DR or slowing the progression of existing DR. A target of HbA1c level of less than 7% is ideal in patients with DR (level of evidence, A I).
For BP control, any lowering of systolic and/or diastolic BP is beneficial in reducing the development of new DR or slowing the progression of existing DR. A target systolic BP of less than 130 mm Hg is ideal in patients with DR (level of evidence, A I).
In terms of lipid-lowering therapy, reducing levels of low-density lipoprotein cholesterol is associated with decreased macrovascular complications of diabetes and may be beneficial in DME (level of evidence, A II).
For patients with proliferative DR, early PRP is recommended, especially when there are high-risk features (level of evidence, A I).
Patients with early, less severe proliferative DR, defined as flat, new vessels elsewhere without high-risk features, or those with severe nonproliferative DR may be observed closely. However, treatment is recommended, especially in patients with type 2 diabetes, if there are any signs of progression or any anticipated difficulty or delay in follow-up (level of evidence, A II).
In eyes with DME involving the center of the macula and decreasing visual acuity, focal laser photocoagulation is recommended. For DME threatening the center of the macula, focal laser therapy should be considered. However, patients must be warned of the potential risks of therapy, particularly when their vision is 6/6 or better. Ideally, treatment should be guided by fluorescein angiography, because laser therapy is not likely to be helpful when significant macular ischemia is present (level of evidence, A I).
In patients with type 1 diabetes, severe vitreous hemorrhage, and significant DR, early surgical vitrectomy (within 3 months) is recommended. For eyes with severe proliferative DR refractory to extensive PRP and/or associated with traction involving the macula, vitrectomy should be considered (level of evidence, B, II).
In selected cases of diffuse severe DME refractory to other treatments, vitrectomy may be helpful, especially when vitreomacular traction is present (level of evidence, B, III).
Although intravitreal triamcinolone (IVTA) may be helpful in diffuse DME refractory to focal laser therapy, patients must be warned about the high incidence of secondary intraocular pressure increase, cataract, other potential harms, and the possibility that repeat treatment will be needed (level of evidence, B, II).
There is currently insufficient evidence to recommend the routine use of intravitreal antivascular endothelial growth factor agents (level of evidence, B, II/III) or of protein kinase C inhibitors, growth factor antagonists, and other treatments (level of evidence, C, II/III).
Aspirin does not reduce the risk of developing DR, and it does not increase the incidence of retinal or vitreous hemorrhage (level of evidence, C, I).
"Although DR remains the leading cause of preventable blindness in working adults, there are primary and secondary interventions proven effective in limiting visual loss," the study authors conclude. "The indications, efficacy, and safety of newer medical and surgical treatments, however, require further evaluation."
The National Health and Medical Research Council of Australia funded this study. One of the authors was included as an inventor on patents relating to the formulation of triamcinolone for ocular use. Two authors have disclosed various financial relationships with Pfizer, Novartis, and Allergan.
JAMA. 2007;298:902-916.