| Literature DB >> 32084158 |
Eri Takematsu1, Adrianne Spencer1, Jeff Auster1, Po-Chih Chen1, Annette Graham2, Patricia Martin2, Aaron B Baker1,3,4,5.
Abstract
Non-healing chronic ulcers are a serious complication of diabetes and are a major healthcare problem. While a host of treatments have been explored to heal or prevent these ulcers from forming, these treatments have not been found to be consistently effective in clinical trials. An understanding of the changes in gene expression in the skin of diabetic patients may provide insight into the processes and mechanisms that precede the formation of non-healing ulcers. In this study, we investigated genome wide changes in gene expression in skin between patients with type 2 diabetes and non-diabetic patients using next generation sequencing. We compared the gene expression in skin samples taken from 27 patients (13 with type 2 diabetes and 14 non-diabetic). This information may be useful in identifying the causal factors and potential therapeutic targets for the prevention and treatment of diabetic related diseases.Entities:
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Year: 2020 PMID: 32084158 PMCID: PMC7034863 DOI: 10.1371/journal.pone.0225267
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Patient metadata.
| Sex | Age | Diabetic State | Sample Location |
|---|---|---|---|
| M | 59 | Normal | Lower Limb |
| F | 49 | Normal | Lower Limb |
| F | 49 | Normal | Lower Limb |
| M | 69 | Normal | Lower Limb |
| M | 69 | Normal | Lower Limb |
| F | 80 | Normal | Lower Limb |
| F | 39 | Normal | Breast |
| M | 62 | Normal | Lower Limb |
| F | 19 | Normal | Breast |
| F | 34 | Normal | Breast |
| F | 60 | Normal | Breast |
| F | 27 | Normal | Breast |
| F | 69 | Normal | Breast |
| M | 73 | Type II Diabetic | Lower Limb |
| F | 47 | Type II Diabetic | Lower Limb |
| M | 80 | Type II Diabetic | Lower Limb |
| M | 81 | Type II Diabetic | Lower Limb |
| M | 53 | Type II Diabetic | Lower Limb |
| M | 77 | Type II Diabetic | Lower Limb |
| M | 61 | Type II Diabetic | Lower Limb |
| M | 79 | Type II Diabetic | Lower Limb |
| M | 61 | Type II Diabetic | Lower Limb |
| M | 49 | Type II Diabetic | Lower Limb |
| M | 58 | Type II Diabetic | Lower Limb |
| F | 72 | Type II Diabetic | Lower Limb |
| F | 59 | Type II Diabetic | Lower Limb |
| F | 59 | Type II Diabetic | Lower Limb |
Comparison of study results with previous studies.
| Gene | This Study | Previous Studies | Model animal | Reference |
|---|---|---|---|---|
| CAMK4 | Increase in T2D | Increased phospho-CAMK4 | STZ-Induced Diabetes in Rat | 17 |
| ZNF224 | Increase in T2D | Reduced CIC activity | STZ-Induced Diabetes in Rat | 20 |
| ABHD16A | Increase in T2D | Genetic predisposition to coronary artery aneurysm and Kawasaki disease | Human | 41 |
| LRP1 | Increase in T2D | Upregulation in the epicardial fat tissue | T2D in Human | 43 |
| NOTCH3 | Increase in T2D | NOTCH3 polymorphism is a risk factor for ischemic disease and diabetes | Ischemic Stroke in Human | 47, 48 |
| SOD2 | Increase in T2D | SOD2 polymorphism is assocated with T2D | T2D in Human | 54 |
| HEBP2 | Increase in T2D | Methylation on this gene is found in T2D | T2D in Human | 61, 62 |
| CARS2 | Increase in T2D | Upregulated in muscle tissue | T2D in Human | 90 |
| MYO1F | Increase in T2D | MYO1F exaerbates atherogenesis | Coronary Artery Disease in Human | 94 |
| HIP1R | Increase in T2D | Downregulated in β-cell in T1D, but upregulated in the pancreas in T2D | T1D/T2D in Human | 98, 99 |
| vWF | Decrease in T2D | High levels of vWF | T2D in Human | 111–113 |
| NKX2-1 | Decrease in T2D | Mutation in NKX2-1 links to reduced mitochondrial activity | Human | 32 |
| MFN1 | Decrease in T2D | Downregulated | T2D in Human | 63 |
| PDP2 | Decrease in T2D | Decreased protein expression | T2D in Human | 65 |
| NGRN | Decrease in T2D | Downregulated | T2D in Human | 63 |
| CAPN10 | Decrease in T2D | Upregulated in pancreatic islet | T2D in Human | 81 |
| ERICH3-AS1 | Decrease in T2D | Downregulated in a sciatic nerve | Diabetic Mice | 83 |
| ZPR1 | Decrease in T2D | Upregulated in brain | High-Fat Diet Fed Mice | 89 |
| HNRNPR | Decrease in T2D | Downregulated in the islet-specific CD4 + T cells | T1D-Susceptible NOD Mice | 91 |
| DHX37 | Decrease in T2D | Downregulated in corneal epithelia | T1D Rat | 27, 92 |
| TPM3 | Decrease in T2D | Downregulated | Alloxan-Induced Diabetes in Rat | 95 |