Search PubMed⌕ Search

Biomedical subjects

Giampaolo Merlini

Publications and source records attributed to Giampaolo Merlini.

At least 19 recordsLinked to original sources

Mechanisms of renal damage in plasma cell dyscrasias: an overview.

The kidney is a target organ in plasma cell dyscrasias. Usually the offending molecules are the monoclonal light chains (LCs), but the complete immunoglobulins can participate in the pathogenesis of organ damage. The primary structure of the monoclonal proteins is at the basis of the ultrastructural organization of their aggregates which translates into characteristic kidney injuries. The kidney targeting is due to the concurrence of several factors such as the local catabolism of monoclonal LCs, specific interactions of the monoclonal proteins with tissue and cellular components, and local environmental conditions. Glomerulopathic LCs interact with mesangial cells producing, through two distinct pathways, LC amyloidosis or monoclonal immunoglobulin deposition disease. Tubulopathic LCs damage the proximal tubule causing Fanconi's syndrome or precipitate in the distal tubule determining the cast nephropathy. The use of electronmicroscopy combined with immuno-labeling has allowed the identification of other rare patterns of kidney damage. In patients with known plasma cell dyscrasia, the recognition of these patterns of renal injury should lead to appropriate therapeutic intervention.

Fanconi Syndrome↗

Therapy and management of systemic AL (primary) amyloidosis.

The optimal treatment of immunoglobulin light chain amyloidosis (AL) patients requires early diagnosis, correct amyloid typing, effective treatment and careful supportive therapy. In the last few years the therapeutic arsenal for the management of AL has been considerably enriched. Cardiac dysfunction can be accurately monitored by measuring the serum concentration of natriuretic peptide type-B and cardiac troponins and the quantitative test for circulating free light chains allows an easy assessment of haematological response to chemotherapy. These new tools can be combined in order to maximise the improvement of organ dysfunction and minimise toxicity, adapting the intervention to each patient.

Amyloidosis↗

Dangerous small B-cell clones.

The detection of a monoclonal immunoglobulin in serum or urine usually raises concerns about the size of the underlying B-cell-derived clone and possible systemic effects caused by its expansion. However, a small clone can synthesize a very toxic protein, producing devastating systemic damage and protean clinical presentations. The resulting "monoclonal component-related diseases," although difficult to diagnose, may be progressive and even fatal. The monoclonal protein can aggregate and deposit systemically as occurs in light-chain amyloidosis, monoclonal immunoglobulin deposition disease, crystal-storing histiocytosis, and monoclonal cryoglobulinemia. Alternatively, some monoclonal proteins possess antibody activity toward autogenous antigens and cause chronic cold agglutinin disease, mixed cryoglobulinemia, and peripheral neuropathies. Other humoral mediators may contribute to neuropathy in variant disorders such as the POEMS (polyneuropathy, organomegaly, endocrinopathy, M protein, and skin changes) syndrome. The clone synthesizing the noxious monoclonal proteins is often small, and sensitive techniques may be required to detect these immunoglobulins. A delay in diagnosis can allow irreversible organ damage and dramatically shorten survival. Prompt recognition of suggestive signs and symptoms should trigger a thorough diagnostic approach to reach the correct diagnosis quickly, because this is the key to effective therapy. Although the treatment of these conditions is not optimal, significant advances have been made, improving the duration and quality of life.

Amyloidosis↗

Circulating amyloidogenic free light chains and serum N-terminal natriuretic peptide type B decrease simultaneously in association with improvement of survival in AL.

N-terminal natriuretic peptide type B (NT-proBNP) is a marker of cardiac dysfunction in light chain amyloidosis (AL) and a powerful prognostic determinant. Serum NT-proBNP and circulating free light chains (FLCs) were measured at enrollment and after 3 cycles of chemotherapy in 51 patients with cardiac AL. In patients (n = 22, 43%) in whom FLCs decreased by more than 50% (hematologic response), NT-proBNP concentration decreased by a median of 48%, whereas in the remaining patients it increased by 47% (P = .01). The reduction of NT-proBNP was greater in patients (n = 9) in whom amyloidogenic FLCs disappeared at immunofixation (median 53%), than in the remaining responding patients (median 31%, P = .04). Left ventricular wall thickness decreased by at least 2 mm in 3 of 20 patients in whom NT-proBNP improved. Fifteen patients died. Thirteen of them, in whom NT-proBNP and FLCs did not improve, died after a median of 1.8 months. The decrease of FLCs translates into a simultaneous decrease of NT-proBNP and improved survival. Patients in whom chemotherapy fails to induce such a decrease are at risk of early death. Cardiac function in AL can rapidly improve due to a reduction of the circulating amyloidogenic precursor, despite the amount of cardiac amyloid deposits remaining apparently unaltered, as measured by echocardiography.

Adult↗

Update on treatment recommendations from the Third International Workshop on Waldenstrom's macroglobulinemia.

Waldenström macroglobulinemia (WM) is a B-cell disorder characterized by the infiltration of lymphoplasmacytic cells into bone marrow and the presence of an IgM monoclonal gammopathy. As part of the Third International Workshop on WM, held October 7 to 10, 2004 in Paris, France, a consensus panel charged with providing treatment recommendations for WM updated its recommendations on both frontline and salvage therapies. The panel considered encouraging results from recent studies that addressed the use of extended-dose rituximab as well as other treatment options: therapy with either nucleoside analogs and alkylator agents, rituximab in combination with nucleoside analogs, nucleoside analogs plus alkylator agents, or combination chemotherapies, such as CHOP (cyclophosphamide, doxorubicin, vincristine, prednisone) or cyclophosphamide and dexamethasone. The panel determined that these were reasonable treatment options for WM patients and such therapeutic approaches were likely to yield results that are at least as good as if not better than the currently recommended use of single-agent alkylator, nucleoside analog, or standard-dose rituximab therapy. Such approaches were deemed to be reasonable treatment for WM patients in both the upfront and salvage settings, though randomized studies addressing the efficacy and toxicity of such novel approaches over previously established standard of care options are needed.

Alkylating Agents↗

Structure, function and amyloidogenic propensity of apolipoprotein A-I.

Apolipoprotein A-I, the major structural apolipoprotein of high-density lipoproteins, efficiently protects humans from cholesterol accumulation in tissues; however, it can cause systemic amyloidosis in the presence of peculiar amino acid replacements. The wild-type molecule also has an intrinsic tendency to generate amyloid fibrils that localise within the atherosclerotic plaques. The structure, folding and metabolism of normal apolipoprotein A-I are extremely complex and as yet not completely clarified, but their understanding appears essential for the elucidation of the amyloid transition. We reviewed present knowledge on the structure, function and amyloidogenic propensity of apolipoprotein A-I with the aim of highlighting the possible molecular mechanisms that might contribute to the pathogenesis of this disease. Important clues on apolipoprotein A-I amyloidogenesis may be obtained from classical comparative studies of the properties of the wild-type versus the amyloidogenic counterpart. Additionally, in the case of apoA-I, further insights on the molecular mechanisms underlying its amyloidogenic propensity may derive from comparative studies between amyloidogenic variants and other mutations associated with hypoalphalipoproteinemia without amyloidosis.

Amino Acid Sequence↗

Nutritional status of outpatients with systemic immunoglobulin light-chain amyloidosis 1.

BACKGROUND: Maintenance of a good nutritional status is associated with prolonged survival in many chronic diseases. To date, the nutritional status of outpatients with immunoglobulin light-chain (AL) amyloidosis has not been evaluated. OBJECTIVE: The aims of this study were to obtain information regarding the nutritional status of AL amyloidosis outpatients and to investigate its prognostic role. DESIGN: One hundred six consecutive patients with histologically confirmed AL amyloidosis were enrolled. Anthropometric, biochemical, and clinical variables were measured. The Kaplan-Meier method was used to calculate survival. A Cox proportional hazard model was constructed to evaluate the prognostic effect of the nutritional variables. RESULTS: Unintentional weight loss (median: 11.3%; range: 2.6-34% of usual nonedematous body weight) was documented in 58 subjects (54.7%). Body mass index (BMI; in kg/m2) was <22 in 25 subjects (23.6%). Serum prealbumin was <200 mg/L (lower reference limit) in 26 patients (24.5%). A multivariate analysis showed that the percentage weight loss was significantly greater in patients with than in those without cardiac involvement (P = 0.03), and it also differed significantly by New York Heart Association class (P = 0.02) and Eastern Cooperative Oncology Group performance status (P = 0.001). Cardiac involvement (P = 0.008), hematologic response to therapy (P = 0.013), BMI (P = 0.001) and serum prealbumin (P = 0.001) were independent predictors of survival. CONCLUSIONS: Malnutrition is a prominent clinical feature of patients with AL amyloidosis. Appropriate nutritional evaluation that comprises the easily measurable nutritional variables associated with survival should be an integral part of the clinical assessment of AL amyloidosis outpatients.

Adult↗

Update on recommendations for assessing response from the Third International Workshop on Waldenstrom's Macroglobulinemia.

This report by an international consensus panel updates current recommendations for defining clinical response in Waldenstrom's macroglobulinemia (WM). The previously published response criteria incorporated parameters for monoclonal protein reduction and/or improvement of marrow and nodal involvement, and included definitions of complete and partial remissions. The criteria have been updated to include minor response and stable disease categories. In addition, the criteria now recognize that delayed responses after treatment with nucleoside analogues and biologic agents and the time point for assessing response in patients with WM should be considered so as to not miss or miscategorize a response. The new criteria should therefore help in better delineating responses to therapy in patients with WM, particularly with the wide use of nucleoside analogues and biologically based agents for this disease.

Antineoplastic Combined Chemotherapy Protocols↗

Long-term results of a risk-adapted approach to melphalan conditioning in autologous peripheral blood stem cell transplantation for primary (AL) amyloidosis.

BACKGROUND AND OBJECTIVES: High-dose melphalan with autologous peripheral blood stem cell transplantation (ASCT) is an effective treatment for systemic primary amyloidosis. This procedure is, however, associated with substantial toxicity and mortality, particularly if the heart is involved. Refined selection of patients suitable for transplantation and personalized adaptation of the doses of melphalan might improve the outcome. DESIGN AND METHODS: Twenty-two consecutive patients were selected for age, number of organ systems involved, heart and kidney function, and treated with risk-adapted melphalan conditioning. This was first-line therapy in 81% of cases. RESULTS: Fifty-five percent of the patients had amyloid involvement of two organ systems, with renal involvement predominant in half. Approximately 70% received full-dose melphalan. Toxicity was manageable and three transplant-related deaths (14%) occurred only in the early phase of the study. The median overall survival was 68 months. The intent-to-treat hematologic response rate was 55% at +12 months (complete, 36%; partial, 19%), which was accompanied by organ responses in 75%. Survival was positively influenced by: (i) hematologic response at +3 months (complete+partial responses 55%, median not reached, more than 108 months; no response, median 17 months) (p=0.001); (ii) amyloid involvement of a single organ system (p=0.016). Prolonged follow-up demonstrated that remissions are durable, but relapses may occur as 4 of 12 responsive patients (33%) relapsed, three from complete response, between +30 to +38 months. INTERPRETATION AND CONCLUSIONS: The present risk-adapted approach produced acceptable toxicity and peri-transplant mortality with prolonged survival in responsive patients. Additional therapy should be considered if no hematologic response is observed at +3 months after ASCT.

Adult↗

Renal apolipoprotein A-I amyloidosis: a rare and usually ignored cause of hereditary tubulointerstitial nephritis.

Apolipoprotein A-I amyloidosis is a rare, late-onset, autosomal dominant condition characterized by systemic deposition of amyloid in tissues, the major clinical problems being related to renal, hepatic, and cardiac involvement. Described is the clinical and histologic picture of renal involvement as a result of apolipoprotein A-I amyloidosis in five families of Italian ancestry. In all of the affected family members, the disease was caused by the Leu75Pro heterozygous mutation in exon 4 of apolipoprotein A-I gene, as demonstrated by direct sequencing and RFLP analysis. Immunohistochemistry confirmed that amyloid deposits were specifically stained with an anti-apolipoprotein A-I antibody. The clinical phenotype was mainly characterized by a variable combination of kidney and liver disturbance. The occurrence of renal involvement seemed to be almost universal, although its severity varied greatly ranging from subclinical organ damage to overt, slowly progressive renal dysfunction. The renal presentation was consistent with a tubulointerstitial disease, as suggested by the findings of defective urine-concentrating capacity, moderate polyuria, negative urinalysis, and mild tubular proteinuria. Histology confirmed tubulointerstitial nephritis. Surprising, amyloid was restricted to nonglomerular regions and limited to the renal medulla. This location of apolipoprotein A-I amyloid differs sharply from other systemic amyloidoses that are mainly characterized by glomerular and vascular deposits. The tubulointerstitial nephritis as a result of hereditary apolipoprotein A-I amyloidosis is a rare disease and a challenging diagnosis to recognize. Patients who present with familial tubulointerstitial nephritis associated with liver disease require a high index of suspicion for apolipoprotein A-I amyloidosis.

Adult↗

Clinical aspects of systemic amyloid diseases.

Amyloidosis is a protein misfolding disorder in which soluble proteins aggregate as insoluble amyloid fibrils. Protein aggregates and amyloid fibrils cause functional and structural organ damage respectively. To date, at least 24 different proteins have been recognized as causative agents of amyloid diseases, localized or systemic. The two most common forms of systemic amyloidosis are light-chain (AL) amyloidosis and reactive AA amyloidosis due to chronic inflammatory diseases. beta(2)-microglobulin amyloidosis is a common complication associated with long-term hemodialysis. Hereditary systemic amyloidoses are a group of autosomal dominant disorders caused by mutations in the genes of several plasma proteins. Heterogeneity in clinical presentation, pattern of amyloid-related organ toxicity and rate of disease progression is observed among systemic amyloidoses. In particular, beta(2)-microglobulin presents unique clinical features compared to the other systemic forms. The phenotypic features of hereditary systemic amyloidoses may instead overlap those of the two more common forms of acquired amyloidoses mentioned above and therefore a correct diagnosis can not rely only on clinical grounds. Unequivocal identification of the deposited protein is essential in order to avoid misdiagnosis and inappropriate treatment. Amyloid deposits can be reabsorbed and organ dysfunction reversed if the concentration of the amyloidogenic protein is reduced or zeroed. At present, the most effective approach to treatment of the systemic amyloidoses involves shutting down, or substantially reducing the synthesis of the amyloid precursor, or, as in the case of beta(2)-microglobulin, promoting its clearance.

Adult↗

Proteomics of beta2-microglobulin amyloid fibrils.

Knowledge on the chemical structure of beta2-microglobulin in natural amyloid fibrils is quite limited because of the difficulty in obtaining tissue samples suitable for biochemical studies. We have reviewed the available information on the chemical modifications and we present new data of beta2-microglobulin extracted from non-osteotendinous tissues. beta2-microglobulin can accumulate in these compartments after long-term haemodialysis but rarely forms amyloid deposits. We confirm that truncation at the N-terminus is an event specific to beta2-microglobulin derived from fibrils but is not observed in the beta2-microglobulin from plasma or from the insoluble non-fibrillar material deposited in the heart and spleen. We also confirm the partial deamidation of Asn 17 and Asn 42, as well as the oxidation of Met 99 in fibrillar beta2-microglobulin. Other previously reported chemical modifications cannot be excluded, but should involve less than 1-2% of the intact molecule.

Amino Acid Sequence↗

Lysozyme: a paradigmatic molecule for the investigation of protein structure, function and misfolding.

BACKGROUND: The term amyloidosis encompasses a wide group of conditions characterised by the tissue deposition of autologous proteins assembled in homogeneous regularly spaced antiparallel beta strands. The mechanism by which the different proteins gain a conformation, allowing monomers to bind to each other to form the regular amyloid fibril, is under intensive investigation. The discovery that human lysozyme, a protein thoroughly structurally and functionally characterised, can form amyloid fibrils has offered unique opportunities to unveil the molecular mechanisms involved in amyloid formation. Four amyloidogenic mutations have been identified and an apparently non-amyloidogenic polymorphism has been recently described. RESULTS AND CONCLUSIONS: Lysozyme is well characterised for structure, function, folding dynamics and metabolism and comparative studies are becoming available that highlight pathogenic differences between the wild-type and the amyloidogenic variants. The chemical structure of lysozyme in natural amyloid fibrils was characterised in high detail in the early cases, but it is still lacking in the cases most recently discovered. Amyloidogenic lysozymes represent a prototypic molecule for new pharmaceutical approaches in which the formation of amyloid fibrils is abrogated through a stabilisation of the precursor.

Amyloid↗

Immunoglobulin M monoclonal gammopathies of undetermined significance and indolent Waldenstrom's macroglobulinemia recognize the same determinants of evolution into symptomatic lymphoid disorders: proposal for a common prognostic scoring system.

PURPOSE: To evaluate the clinicohematologic variables at diagnosis that are prognostically related to neoplastic progression in patients with immunoglobulin M (IgM) monoclonal gammopathies of undetermined significance (MGUS), and indolent Waldenström's macroglobulinemia (IWM), and propose a scoring system to identify subsets of patients at different risk. PATIENTS AND METHODS: We evaluated 217 patients with IgM MGUS and 201 with IWM (male-female ratio, 131:86 and 117:84; mean age, 63.7 and 63.6 years, respectively) diagnosed on the basis of serum monoclonal component (MC) levels and bone marrow lymphoplasmacytic infiltration degree. The variables selected by univariate analyses were multivariately investigated; on the basis of their individual relative hazards, a scoring system was devised to identify subsets of patients at different risk of evolution. RESULTS: After a median follow-up of 56.1 and 60.2 months, 15 of 217 MGUS and 45 of 201 IWM patients, respectively, required chemotherapy for symptomatic WM (13 and 36), non-Hodgkin's lymphoma (2 and 6) and amyloidosis (0 and 3). The median time to evolution (TTE) was not reached for MGUS and was 141.5 months for IWM. The variables adversely related to evolution were qualitatively the same in both groups: MC levels, Hb concentrations and sex. A scoring system based on these parameters identified three risk groups with highly significant differences in TTE in both groups (P < .0001). CONCLUSION: MGUS and IWM identify disease entities with different propensities for symptomatic neoplastic evolution. As both have the same prognostic determinants of progression, we propose a practical scoring system that, identifying different risks of malignant evolution, may allow an individualized clinical approach.

Adult↗

Prognostic validation of the international classification of immunoglobulin M gammopathies: a survival advantage for patients with immunoglobulin M monoclonal gammopathy of undetermined significance?

PURPOSE: To verify the reliability of the new criteria for the diagnosis of IgM gammopathies recently proposed by an international panel of experts (Athens, 2002). EXPERIMENTAL DESIGN: A retrospective series of 698 patients with IgM gammopathy was reviewed paying attention to symptoms, serum IgM concentration, bone marrow infiltration, blood cell count and clinical course. Four clinical entities can be identified: IgM monoclonal gammopathy of undetermined significance (IgM-MGUS), asymptomatic and symptomatic Wandenstrom's macroglobulinemia (A-WM and S-WM, respectively), and IgM-related disorders, although this last was excluded from the study because of the scarcity of patients due to probable selection biases. The observed mortality was studied related to that expected in the general population of comparable age and sex and over an equivalent period of follow-up (standardized mortality ratio, SMR). RESULTS: IgM-MGUS, A-WM, and S-WM shared many clinical aspects but, with respect to the general population, patients with IgM-MGUS had a slight but definite survival advantage, those with A-WM had a mortality rate equivalent to that of the general population, whereas the SMR of patients with S-WM was 5.4. Within A-WM and S-WM the SMR values did not vary significantly in relation to marrow lymphocyte counts or serum IgM concentrations. CONCLUSIONS: Our findings represent a prognostic validation of the applied diagnostic criteria for three of the four identifiable clinical entities and highlight the importance of symptoms over serum IgM concentration and marrow infiltration.

Adult↗

Beta2-microglobulin isoforms display an heterogeneous affinity for type I collagen.

It has been claimed that beta2-microglobulin (beta2-m) interacts with type I and type II collagen, and this property has been linked to the tissue specificity of the beta2-m amyloid deposits that target the osteo-articular system. The binding parameters of the interaction between collagen and beta2-m were determined by band shift electrophoresis and surface plasma resonance by using bovine collagen of type I and type II and various isoforms of beta2-m. Wild-type beta2-m binds collagen type I with a Kd of 4.1 x 10(-4) M and type II with 2.3 x 10(-3) M. By the BIAcore system we monitored the binding properties of the conformers of the slow phase of folding of beta2-m. The folding intermediates during the slow phase of folding do not display any significant difference with respect to the binding properties of the fully folded molecule. The affinity of beta2-m truncated at the third N-terminal residue does not differ from that reported for the wild-type protein. Increased affinity for collagen type I is found in the case of N-terminal truncated species lacking of six residues. The Kd of this species is 3.4 x 10 (-5) M at pH 7.4 and its affinity increases to 4.9 x 10(-6) M at pH 6.4. Fluctuations of the affinity caused by beta2-m truncation and pH change can cause modifications of protein concentration in the solvent that surrounds the collagen, and could contribute to generate locally a critical protein concentration able to prime the protein aggregation.

Amyloidosis↗