Arachidonic acid metabolism regulates the development of retinopathy of prematurity among preterm infants

被引:1
作者
Kumar, Saurabh [1 ,2 ]
Patnaik, Satish [1 ,6 ]
Joshi, Manjunath B. [3 ]
Sharma, Neha [1 ,2 ]
Kaur, Tarandeep [1 ,7 ]
Jalali, Subhadra [4 ]
Kekunnaya, Ramesh [5 ]
Mahajan, Aatish [1 ]
Chakrabarti, Subhabrata [1 ]
Kaur, Inderjeet [1 ]
机构
[1] LV Prasad Eye Inst, Brien Holden Eye Res Ctr, Hyderabad, India
[2] Manipal Acad Higher Educ, Manipal, India
[3] Manipal Acad Higher Educ, Manipal Sch Life Sci, Dept Ageing Res, Manipal, India
[4] LV Prasad Eye Inst, Smt Kannuri Santhamma Ctr Vitreo Retinal Dis, Hyderabad, India
[5] LV Prasad Eye Inst, Jasti V Ramanamma Childrens Eye Care Ctr, Hyderabad, India
[6] Univ Calif Los Angeles, Brain Res Inst, Los Angeles, CA USA
[7] Harvard Med Sch, Dept Ophthalmol, Boston, MA USA
基金
英国惠康基金;
关键词
angiogenesis; arachidonic acid; inflammation; lipid; retinopathy of prematurity; soluble epoxide hydrolase; SOLUBLE EPOXIDE HYDROLASE; POLYUNSATURATED FATTY-ACIDS; LONG-CHAIN; NOTCH; VEGF; ANGIOGENESIS; ACTIVATION; EXPRESSION;
D O I
10.1111/jnc.16190
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Extremely preterm infants are at risk of developing retinopathy of prematurity (ROP), characterized by neovascularization and neuroinflammation leading to blindness. Polyunsaturated fatty acid (PUFA) supplementation is recommended in preterm infants to lower the risk of ROP, however, with no significant improvement in visual acuity. Reasonably, this could be as a result of the non-consideration of PUFA metabolizing enzymes. We hypothesize that abnormal metabolism of the arachidonic acid (AA) pathway may contribute to severe stages of ROP. The present study investigated the AA-metabolizing enzymes in ROP pathogenesis by a targeted gene expression analysis of blood (severe ROP = 70, No/Mild = 56), placenta (preterm placenta = 6, full term placenta = 3), and human primary retinal cell cultures and further confirmed at the protein level by performing IHC in sections of ROP retina. The lipid metabolites were identified by LC-MS in the vitreous humor (VH; severe ROP = 15, control = 15). Prostaglandins D2 (p = 0.02), leukotrienes B5 (p = 0.0001), 11,12-epoxyeicosatrienoic acid (p = 0.01), and lipid-metabolizing enzymes of the AA pathway such as CYP1B1, CYP2C8, COX2, and ALOX15 were significantly upregulated while EPHX2 was significantly (0.04) downregulated in ROP cases. Genes involved in hypoxic stress, angiogenesis, and apoptosis showed increased expression in ROP. An increase in the metabolic intermediates generated from the AA metabolism pathway further confirmed the role of these enzymes in ROP, while metabolites for EPHX2 activity were low in abundance. Inflammatory lipid intermediates were higher compared to anti-inflammatory lipids in VH and showed an association with enzyme activity. Both the placenta of preterm infants who developed ROP and hypoxic retinal cultures showed a reduced expression of EPHX2. These findings suggested a strong involvement of EPHX2 in regulating retinal neovascularization and inflammation. The study results underscore the role of arachidonic acid metabolism in the development of ROP and as a potential target for preventing vision loss among preterm-born infants.image Polyunsaturated fatty acids, including arachidonic acid (AA), form a major constituent of the retina providing energy for retinal cells. We investigated the role of lipid-metabolizing enzymes in the AA pathway in causing retinopathy of prematurity (ROP). Genes coding for the key enzymes in the AA pathway were significantly upregulated except EPHX2, which was downregulated. Significant alterations in their activities under hypoxia, as confirmed by the vitreous humor metabolomics, further demonstrated that a reduced synthesis of dihydroxyeicosatrienoic acid activates notch signaling, leading to neovascularization and inflammation. Targeting PUFA metabolism could serve as better therapeutics for the prevention of blindness because of ROP. Created with .image
引用
收藏
页码:3171 / 3187
页数:17
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