Checkup Comprehensive for Women
The Comprehensive Checkup for Women conducts an in-depth evaluation of major body functions, key systems, and overall metabolism through a single blood and urine analysis.
What is included?Multi-Organ Screening Test
The multi-organ detection test for women provides an in-depth mapping of female health. Through the algorithmic cross-analysis of over 100 biochemical parameters, cutting-edge Scores, and key baseline biomarkers, the test is capable of directly and indirectly evaluating, screening, and inferring over 110 diseases, pathologies, and clinical dysfunctions (reaching up to 140 variants when considering subclinical stages and the gynecological sphere). This enables early detection ranging from cardiometabolic, endocrine, and hepatic alterations to renal, bone, and reproductive axis conditions.
Comprehensive scores and metrics
First-line assessment. The test incorporates a series of Scores that provide a comprehensive and immediate overview of global health status. By processing metabolic, vascular, and cellular data in an integrated manner, they offer an initial synthetic framework that allows evaluating the body's homeostasis, anticipating risks of multi-organ dysfunction, and estimating resilience, biological age, and the potential for healthy longevity before delving into the details of each specific function. These Scores are:
- Cardio-Kidney-Metabolic (CKM) Score: Multi-organ predictive model that integrates the functional interaction between the vascular endothelium, renal filtration, and insulin sensitivity. This index allows staging the cardiovascular-kidney-metabolic syndrome and anticipating the risk of cross-talk multi-organ dysfunction.
- Health Score: Global metric that algorithmically weights the biological homeostasis. It serves as a synthetic indicator of systemic health by consolidating hematological, hepatic, renal, endocrine, and lipid biomarkers.
- Oxidative Stress Score: Assessment of cellular redox homeostasis. This marker allows identifying the imbalance between reactive oxygen species production and endogenous antioxidant capacity, alerting to oxidative stress states that accelerate tissue damage.
- Longevity Score: Advanced estimation of biological age and immunometabolic resilience. The algorithm is based on the PhenoAge calculation coupled with the direct integration of the Oxidative Stress Score, jointly processing low-grade chronic inflammation and redox stress to provide evidence on healthy longevity and the rate of cellular aging.
Hematology, immunity, and inflammation
High-resolution comprehensive assessment of the hematopoietic system and bone marrow. Through the cross-analysis of the complete blood count, erythrocyte indices (MCV, MCH, and RDW), and iron dynamics (iron and ferritin), the system allows inferring and identifying the presence of micro-, normo-, or macrocytic anemias, deficiency anemias (iron deficiency or B12 deficiency), anemias associated with chronic processes, hemolytic syndromes, or latent genetic traits such as thalassemia minor.
Assessment of the innate and adaptive immune response. The differential white blood cell count breakdown acts as a biological indicator that offers clear evidence of active bacterial or viral infections, agranulocytosis, systemic allergic responses, hypereosinophilic syndromes of parasitic origin, or immunosuppressive states.
Ultra-specific study of platelets and their volumetric indices (MPV and PDW), whose findings allow for early identification of thrombocytopenia (bleeding risk), autoimmune destruction (ITP), or reactive or essential thrombocytosis.
Surveillance against systemic autoimmune and inflammatory processes. The integration of acute phase reactants (ESR and high-sensitivity C-reactive protein or hs-CRP) and autoantibodies (anti-CCP and rheumatoid factor) can support the suspicion of early development of rheumatological pathologies such as rheumatoid arthritis, systemic lupus erythematosus, or vasculitis.
Hemostatic function
Assessment of the secondary coagulation cascade. The determination of prothrombin time (PT) and activated partial thromboplastin time (aPTT) allows analyzing the extrinsic and intrinsic pathways of the cascade, guiding on the presence of congenital or acquired coagulopathies, vitamin K-dependent factor deficiencies, hepatic hemostasis impairment, or hypercoagulable states.
Cardiometabolic system
Comprehensive cardiometabolic risk stratification. As a starting point, the algorithm combinatorially processes the anthropometric indices—primarily analyzing body mass index (BMI), waist-to-hip ratio (WHR), and waist-to-height ratio (WHtR), alongside advanced parameters such as hypertriglyceridemic waist (HTGW), lipid accumulation product (LAP), body adiposity index (BAI), visceral adiposity index (VAI), and conicity index (CI)—with globally impactful predictive models, such as the Framingham Score, Endothelial Score, and Cardiovascular Score (CVS). This first-line multiparametric assessment allows early inference of an underlying metabolic syndrome and establishes an accurate projection of global coronary risk in the short and long term.
Advanced characterization of atherosclerotic risk and vascular health. The test tracks the atherogenic particle burden by evaluating the ApoB/ApoA1 ratio as well as 6 specific atherogenic indices: atherogenic coefficient (AC), atherogenic index of plasma (AIP), Castelli risk index I, Castelli index I integrating total bilirubin, Castelli risk index II, Castelli index II integrating total bilirubin, triglycerides/HDL-c index (THI), and the LDL-c/Lp(a) ratio. All of these are processed by an algorithm that dynamically weights each index within this family to maximize diagnostic sensitivity. This approach facilitates the detection of familial dyslipidemias or silent lipid metabolism disorders.
Specific evaluation of lipoprotein(a) [Lp(a)] as an independent genetic biomarker of cardiovascular risk. Being genetically determined and unresponsive to standard dietary interventions, elevated Lp(a) values serve as an independent indicator raising suspicion of an increased risk of early atherosclerosis, aortic stenosis, and ischemic or thrombotic events, even in individuals with normal LDL cholesterol (LDL-c) levels.
Screening for chronic vascular inflammation. Through high-sensitivity C-reactive protein (hs-CRP), the panel highlights the degree of atheromatous plaque instability, guiding on the risk of developing myocardial ischemic events.
Assessment of carbohydrate metabolism. The combination of glucose and glycated hemoglobin (HbA1c) allows anticipating the development of hypoglycemia or hyperglycemia, prediabetes, diabetes mellitus (types 1 and 2), or the risk of acute metabolic complications.
Assessment of purine metabolism. Serum urate determination points toward asymptomatic hyperuricemia states, providing an estimate of predisposition to the development of gouty arthritis (gout), tophi, or uric acid nephropathy.
Endocrine function
Evaluation of endocrine pancreatic function and insulin dynamics. Through the analysis of basal insulin and mathematical models (HOMA-IR, HOMA-B, HOMA-S, QUICKI), the analysis allows measuring peripheral sensitivity with ultra-specificity and revealing hyperinsulinism or insulin resistance states, a key alteration in metabolic syndrome and type 2 diabetes.
Mapping of glandular function and feedback loops. The cross-analysis of TSH and free T4 allows detecting thyroid dysfunctions such as clinical (and even subclinical) hypothyroidism or hyperthyroidism.
Assessment of the parathyroid axis and calcium metabolism. The analysis of intact parathyroid hormone (iPTH), vitamin D, and phosphorus offers evidence regarding the presence of hypoparathyroidism, hyperparathyroidism, or hypercalcemia of malignancy.
Adrenal, gonadal, and gynecological health coverage. The system allows identifying cortisol alterations (Cushing's syndrome or Addison's disease) and evaluating the ovarian-pituitary axis to guide on sex steroid imbalances such as menopause, polycystic ovary syndrome (PCOS), ovarian insufficiency, or fertility disorders. Likewise, the integration of beta-human chorionic gonadotropin (Beta-hCG) and the tumor marker CA 125 provides a valuable tool for gestational monitoring and gynecological differential diagnosis, helping discriminate between prevalent benign conditions (endometriosis, adenomyosis, uterine fibroids, pelvic inflammatory disease) and malignant neoplastic processes of ovarian, endometrial, or peritoneal origin requiring in-depth investigation.
Digestive system
Assessment of hepatocellular function, biliary excretion, and liver disease screening. The enzymatic profile (ALP, AST, ALT, GGT, and LDH) together with bilirubin levels (total, direct, and indirect) and alpha-fetoprotein (AFP) allow differentiating intra- or extrahepatic cholestasis processes, cholangitis, inflammatory or toxic liver diseases (hepatitis, cirrhosis), hereditary syndromes (Gilbert, Crigler-Najjar), and guiding early suspicion toward proliferative liver processes (hepatocellular carcinoma).
Non-invasive stratification of liver health. The system processes more than 15 scores and ratios through a dynamic weighting algorithm that adjusts the weights of each index to optimize diagnostic sensitivity across three key stages:
- Fat accumulation (NAFLD/MASLD): Evaluates steatosis risk using the fatty liver index (FLI), hepatic steatosis index (HSI), K-NAFLD score, liver fat score (LFS), NAFLD Logit score (NLS), and NAFLD Ridge score (NRS).
- Steatohepatitis (NASH/MASH): Determines the degree of liver inflammation by processing the acNASH model, FAT score, GHOLAM score, and HAIR score.
- Fibrosis and subclinical cirrhosis: Stages the risk of advanced tissue damage using the AST-to-platelet ratio index (APRI), BAAT score, BARD score, FibroMeter, Forns fibrosis index (FFI), NAFLD fibrosis score (NFS), and SAFE score.
Biliary tree screening. A coordinated increase in alkaline phosphatase and GGT raises suspicion of cholestasis or choledocholithiasis.
Comprehensive pancreatobiliary assessment and gynecological orientation. The joint evaluation of lipase, amylase levels (both total and pancreatic), and the tumor marker CA 19-9 allows estimating the presence and progression of acute and chronic pancreatitis, complementing the differential diagnosis of pancreatobiliary inflammatory conditions, guiding suspicion of pancreatic or biliary neoplasms, and alerting to the presence of mucinous gynecological (ovarian) tumors.
Gastrointestinal evaluation. The determination of carcinoembryonic antigen (CEA) coupled with serological screening of specific antibodies against Helicobacter pylori helps discriminate mucosal inflammatory processes, gastroduodenal ulcers, and chronic infections, providing a valuable complementary screening tool for the upper and lower digestive tract.
Musculoskeletal system
Striated muscle tissue integrity and lean mass assessment. Monitoring enzymes such as creatine kinase (CK) serves as an alert system to detect muscle damage, inflammatory myopathies, myotoxic side effects (such as those derived from statins), dystrophies, or rhabdomyolysis. Concurrently, muscle breakdown or loss (sarcopenia) is inferred by calculating the creatinine/cystatin C ratio, a marker that allows estimating striated muscle mass volume independently of renal function.
Bone remodeling assessment. Calcium, phosphorus, alkaline phosphatase (ALP), and vitamin D readings map out conditions such as vitamin D deficiency, osteopenia, osteoporosis, rickets, osteomalacia, or Paget's disease of bone.
Genitourinary system
Renal filtration and glomerular function. Creatinine, cystatin C, urea, blood urea nitrogen (BUN), and the urine albumin-to-creatinine ratio (ACR) allow predicting and classifying stages of acute/chronic renal failure or early microvascular damage (diabetic nephropathy, nephrotic/nephritic syndromes).
Fluid-electrolyte control and urinalysis. Urinalysis coupled with serum electrolytes can offer clear evidence of sodium, potassium, or chloride imbalances, dehydration, renal tubular acidosis, risk of nephrolithiasis, or urinary tract infections (cystitis, pyelonephritis).