| Literature DB >> 30192814 |
Lucia Lopez-Anglada1, Cecilia Cueto-Felgueroso2, Laura Rosiñol3, Albert Oriol4, Ana Isabel Teruel5, Ana Lopez de la Guia6, Enrique Bengoechea7, Luis Palomera8, Felipe de Arriba9, Jose Mariano Hernandez10, Miquel Granell11, Francisco Javier Peñalver12, Ramon Garcia-Sanz13, Juan Besalduch14, Yolanda Gonzalez15, Rafael Benigno Martinez16, Miguel Teodoro Hernandez17, Norma C Gutierrez3, Paloma Puerta2, Antonio Valeri1, Bruno Paiva18, Joan Blade4, Maria-Victoria Mateos3, Jesus San Miguel18, Juan Jose Lahuerta1, Joaquin Martinez-Lopez1.
Abstract
We investigated the prognostic impact and clinical utility of serum free light chains (sFLC) and serum heavy-light chains (sHLC) in patients with multiple myeloma treated according to the GEM2005MENOS65, GEM2005MAS65, and GEM2010MAS65 PETHEMA/GEM phase III clinical trials. Serum samples collected at diagnosis were retrospectively analyzed for sFLC (n = 623) and sHLC (n = 183). After induction or autologous transplantation, 309 and 89 samples respectively were available for sFLC and sHLC assays. At diagnosis, a highly abnormal (HA) sFLC ratio (sFLCr) (<0.03 or >32) was not associated with higher risk of progression. After therapy, persistence of involved-sFLC levels >100 mg/L implied worse survival (overall survival [OS], P = 0.03; progression-free survival [PFS], P = 0.007). Among patients that achieved a complete response, sFLCr normalization did not necessarily indicate a higher quality response. We conducted sHLC investigations for IgG and IgA MM. Absolute sHLC values were correlated with monoclonal protein levels measured with serum protein electrophoresis. At diagnosis, HA-sHLCrs (<0.29 or >73) showed a higher risk of progression (P = 0.006). Additionally, involved-sHLC levels >5 g/L after treatment were associated with shorter survival (OS, P = 0.001; PFS, P = 0.018). The HA-sHLCr could have prognostic value at diagnosis; absolute values of involved-sFLC >100 mg/L and involved-sHLC >5 g/L could have prognostic value after treatment.Entities:
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Year: 2018 PMID: 30192814 PMCID: PMC6128544 DOI: 10.1371/journal.pone.0203392
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Reference ranges for serum IgG and IgA heavy-light chain concentrations, based on samples from healthy individuals (controls) and previously published data.
| Controls ( | 5.45–6.5 | 2.65–3.25 | 1.89–2.33 |
| 95% RI (min–max) | (3.16–8.18) | (1.75–5.28) | (1.02–3.22) |
| IgG HLC product inserts: SPAPLUS | 3.84–12.07 | 1.91–6.74 | 1.12–3.21 |
| IgG HLC product inserts: BNII | 4.03–9.78 | 1.97–5.71 | 0.98–2.75 |
| Katzmann et al. [ | 4.34–10.80 | 1.77–5.31 | 1.30–3. 70 [ |
| Controls ( | 1.16–1.50 | 0.76–0.94 | 1.43–1.70 |
| RI 95% (min–max) | (0.61–2.43) | (0.42–1.42) | (0.94–2.58) |
| IgA HLC product inserts: SPAPLUS | 0.57–2.08 | 0.44–2.04 | 0.78–1.94 |
| IgA HLC product inserts: BNII | 0.48–2.82 | 0.36–1.98 | 0.80–2.04 |
| Katzmann et al.[ | 0.53–2.62 | 0.38–1.81 | 0.70–2.20 [ |
* (minimum–maximum)
RI, reference interval; HLC, heavy-light chain; SPAplus: turbidimeter purchased from The Binding Site (Birmingham, UK); BNII: nephelometer, purchased from Dade Behring (Marburg, Germany)
Fig 1Flow chart: Patient inclusion and analyzed samples.
Fig 2Progression-free survival (PFS) relationships to serum free light chain (sFLC) evaluations.
(A) PFS among patients with “highly abnormal” sFLC ratios (<0.03 or >32, red lines, median PFS: 38 mo) compared to those with normal sFLC ratios (0.03–32, blue lines, median PFS: 29 mo). (B) PFS among patients with normal (blue, median PFS: 53 mo) or abnormal (red, median PFS: 42 mo) sFLC ratios after treatment, regardless of the response achieved. (C) PFS among patients that achieved complete response (CR) with normal (blue, median PFS: 60 mo) or abnormal (red, median PFS: 59 mo) sFLC ratios. (D) PFS among patients with absolute involved-sFLC levels <100 mg/L (blue, median PFS: 50 mo) or ≥100 mg/L (red, median PFS: 33 mo).
Relationship between accepted response categories and sFLCr normalization.
*sFLCr normalization was related to a better response (Χ2, P<0.0001); however, an analysis of the sFLCr normalization status in each response category showed that a normalized sFLCr did not affect survival.
CR: complete response; VGPR: very good partial response; PR: partial response; SD: stable disease; PD: progressive disease
Fig 3Absolute values of monoclonal proteins (MPs) measured with serum protein electrophoresis (sPE) vs. absolute values of the involved heavy-light chains (isHLC).
Correlation analysis shows agreement between the absolute values of IgA (blue, r = 0.65 and IgG (grey, r = 0.71) MPs and isHLC measurements.
Fig 4Progression-free survival (PFS) relationships to the absolute value of involved serum heavy-light chain (isHLC) and the ratio of highly abnormal sHLC (HA-sHLCr).
(A) PFS among patients with absolute values of isHLC <30 g/L (blue, median PFS: 39 mo), 30–50 g/L (green, median PFS: 26 mo), or >50 g/L (red, median PFS: 35 mo). (B) PFS among patients with HA-sHLCr (<0.29 or >73, red; median PFS: 29 mo) vs. those with normal sHLCr (0.29–73, blue; median PFS: 36 mo). (C) PFS among patients with after-treatment absolute values of isHLC <5 g/L (blue, median PFS: 66 mo) vs. ≥5 g/L (red, median PFS: 47 mo), regardless of the response achieved. (D) PFS among patients that achieved partial response (PR) after treatment with absolute values of isHLC <5 g/L (blue, median PFS: Non reached (NR) vs. ≥5 g/L red, median PFS: 28 mo).