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51. Competing Endogenous RNAs (ceRNAs) and Application of Their Regulatory Networks in Complex Traits and Diseases of Ruminants

52. Ferroptosis and circular RNAs

53. The role of LncRNAs and CircRNAs in osteoporosis: a focus on osteogenesis and osteoclastogenesis signaling pathways

54. N6-methyladenosine-modified circSLCO1B3 promotes intrahepatic cholangiocarcinoma progression via regulating HOXC8 and PD-L1

55. Mining key circRNA-associated-ceRNA networks for milk fat metabolism in cows with varying milk fat percentages

56. Identification of tomato circular RNAs in response to Botrytis cinerea

57. Construction of circular RNA‐based competing endogenous RNA network in colon cancer

58. CircHAS2 activates CCNE2 to promote cell proliferation and sensitizes the response of colorectal cancer to anlotinib

59. Hypoxia-induced circRNAs encoded by PPARA are highly expressed in human cardiomyocytes and are potential clinical biomarkers of acute myocardial infarction

60. Circular RNA-mediated miRNA sponge & RNA binding protein in biological modulation of breast cancer

61. Circular RNAs in intracranial aneurysms: Emerging roles in pathogenesis, diagnosis and therapeutic intervention

62. Circular RNA in cervical cancer: Fundamental mechanism and clinical potential

63. Identification of circRNA-associated ceRNA networks in the longissimus dorsi of yak under different feeding systems

64. CircCOCH plays a critical role in Hepatocellular carcinoma through modulating miR-450a and activating PI3K/mTOR pathway

65. N6-methyladenosine-modified circSLCO1B3 promotes intrahepatic cholangiocarcinoma progression via regulating HOXC8 and PD-L1.

66. Mining key circRNA-associated-ceRNA networks for milk fat metabolism in cows with varying milk fat percentages.

67. Screening radiation-differentially expressed circular RNAs and establishing dose classification models in the human lymphoblastoid cell line AHH-1.

68. More than the SRY: The Non-Coding Landscape of the Y Chromosome and Its Importance in Human Disease.

69. Noncoding RNA Contribution to Aging and Lifespan.

70. N6‐methyladenosine‐modified circTEAD1 stabilizes Yap1 mRNA to promote chordoma tumorigenesis.

71. Pulling the trigger: Noncoding RNAs in white adipose tissue browning.

72. Circular RNAs: characteristics, functions, mechanisms, and potential applications in thyroid cancer.

73. Construction of a novel mRNA–miRNA–lncRNA/circRNA triple subnetwork associated with immunity and aging in intervertebral disc degeneration.

74. CircHAS2 activates CCNE2 to promote cell proliferation and sensitizes the response of colorectal cancer to anlotinib.

75. Long noncoding RNAs and circular RNAs as potential diagnostic biomarkers of inflammatory bowel diseases: a systematic review and meta-analysis.

76. Role of circular RNAs in lung cancer.

77. Non-coding RNAs: targets for Chinese herbal medicine in treating myocardial fibrosis.

78. Hypoxia-induced circRNAs encoded by PPARA are highly expressed in human cardiomyocytes and are potential clinical biomarkers of acute myocardial infarction.

79. Evaluation of hsa_circ_0000018/let-7f-5p/ FAM96A axis in lung adenocarcinoma progression.

80. Circ MTA2 Drives Gastric Cancer Progression through Suppressing MTA2 Degradation via Interacting with UCHL3.

81. Genomic Alterations Affecting Competitive Endogenous RNAs (ceRNAs) and Regulatory Networks (ceRNETs) with Clinical Implications in Triple-Negative Breast Cancer (TNBC).

82. Identification of circRNA-associated ceRNA networks in the longissimus dorsi of yak under different feeding systems.

83. Functional Relevance of Extracellular Vesicle-Derived Long Non-Coding and Circular RNAs in Cancer Angiogenesis.

84. Helicobacter pylori upregulates circPGD and promotes development of gastric cancer.

85. Variants rs2758346, rs5746094, and rs2758331 of SOD2 gene: association study with breast cancer in a Mexican population and their analysis in silico.

86. Recent research progress of circular RNAs in hepatocellular carcinoma.

87. Exosomal circ50547 as a potential marker and promotor of gastric cancer progression via miR-217/HNF1B axis

88. What is the role of circRNAs in the pathogenesis of cervical cancer? A systematic literature review

89. Identification and characterization of circular RNAs involved in the fertility stability of cotton CMS-D2 restorer line under heat stress

90. Physiological and pathological functions of circular RNAs in the nervous system

91. ND630 controls ACACA and lipid reprogramming in prostate cancer by regulating the expression of circKIF18B_003

92. Long noncoding RNA/circular RNA regulates competitive endogenous RNA networks in rheumatoid arthritis: molecular mechanisms and traditional Chinese medicine therapeutic significances

93. Clinical relevance of circulating non-coding RNAs in metabolic diseases: Emphasis on obesity, diabetes, cardiovascular diseases and metabolic syndrome

94. Interplay of microRNAs and circRNAs in Epithelial Ovarian Cancer

95. The Role of Non-Coding RNAs in Regulating Cachexia Muscle Atrophy

97. Identification and characterization of circular RNAs involved in the fertility stability of cotton CMS-D2 restorer line under heat stress.

98. LncRNAs‐circRNAs as Rising Epigenetic Binary Superstars in Regulating Lipid Metabolic Reprogramming of Cancers.

99. FERROPTOSIS AND CIRCULAR RNAS: NEW HORIZONS IN CANCER THERAPY.

100. Roles of circular RNAs in osteogenic/osteoclastogenic differentiation.

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